-
3
-
-
10844277457
-
Bone repair in the twenty-first century: biology, chemistry or engineering?
-
K.A. Hing Bone repair in the twenty-first century: biology, chemistry or engineering? Philos. Trans. R. Soc. London, Ser. A 362 2004 2821 2850
-
(2004)
Philos. Trans. R. Soc. London, Ser. A
, vol.362
, pp. 2821-2850
-
-
Hing, K.A.1
-
4
-
-
0036853727
-
Bone graft substitutes in modern orthopedics
-
quiz 1310-1301
-
S.N. Parikh Bone graft substitutes in modern orthopedics Orthopedics 25 2002 1301 1309 (quiz 1310-1301)
-
(2002)
Orthopedics
, vol.25
, pp. 1301-1309
-
-
Parikh, S.N.1
-
5
-
-
85059207625
-
W.S.G.o.t.B.o.M.C.a.t.S.o.t.N. Millennium The burden of musculoskeletal conditions at the start of the new millennium
-
W.S.G.o.t.B.o.M.C.a.t.S.o.t.N. Millennium The burden of musculoskeletal conditions at the start of the new millennium World Health Organization technical report series 919 2003 i
-
(2003)
World Health Organization technical report series
, vol.919
, pp. i
-
-
-
7
-
-
84929131367
-
Biomimetic approaches in bone tissue engineering: integrating biological and physicomechanical strategies
-
M.A. Fernandez-Yague, S.A. Abbah, L. McNamara, D.I. Zeugolis, A. Pandit, and M.J. Biggs Biomimetic approaches in bone tissue engineering: integrating biological and physicomechanical strategies Adv. Drug Deliv. Rev. 84 2014 1 29
-
(2014)
Adv. Drug Deliv. Rev.
, vol.84
, pp. 1-29
-
-
Fernandez-Yague, M.A.1
Abbah, S.A.2
McNamara, L.3
Zeugolis, D.I.4
Pandit, A.5
Biggs, M.J.6
-
8
-
-
33846630773
-
Bone regeneration on a collagen sponge self-assembled peptide-amphiphile nanofiber hybrid scaffold
-
H. Hosseinkhani, M. Hosseinkhani, F. Tian, H. Kobayashi, and Y. Tabata Bone regeneration on a collagen sponge self-assembled peptide-amphiphile nanofiber hybrid scaffold Tissue Eng. 13 2007 11 19
-
(2007)
Tissue Eng.
, vol.13
, pp. 11-19
-
-
Hosseinkhani, H.1
Hosseinkhani, M.2
Tian, F.3
Kobayashi, H.4
Tabata, Y.5
-
9
-
-
33846817447
-
Bone regeneration through controlled release of bone morphogenetic protein-2 from 3-D tissue engineered nano-scaffold
-
H. Hosseinkhani, M. Hosseinkhani, A. Khademhosseini, and H. Kobayashi Bone regeneration through controlled release of bone morphogenetic protein-2 from 3-D tissue engineered nano-scaffold J. Control. Release 117 2007 380 386
-
(2007)
J. Control. Release
, vol.117
, pp. 380-386
-
-
Hosseinkhani, H.1
Hosseinkhani, M.2
Khademhosseini, A.3
Kobayashi, H.4
-
10
-
-
38049034497
-
Quantitative analysis of cell adhesion on aligned micro and nanofibers
-
F. Tian, H. Hosseinkhani, M. Hosseinkhani, A. Khademhosseini, Y. Yokoyama, G.G. Estrada, and H. Kobayashi Quantitative analysis of cell adhesion on aligned micro and nanofibers J. Biomed. Mater. Res. A 84 2008 291 299
-
(2008)
J. Biomed. Mater. Res. A
, vol.84
, pp. 291-299
-
-
Tian, F.1
Hosseinkhani, H.2
Hosseinkhani, M.3
Khademhosseini, A.4
Yokoyama, Y.5
Estrada, G.G.6
Kobayashi, H.7
-
11
-
-
44449152225
-
Suppression effect of basic fibroblast growth factor on mesenchymal stem cell proliferation activity Part II. Biological characteristics
-
H. Hosseinkhani, and M. Hosseinkhani Suppression effect of basic fibroblast growth factor on mesenchymal stem cell proliferation activity Part II. Biological characteristics Chim. Oggi 26 2008 64 66
-
(2008)
Chim. Oggi
, vol.26
, pp. 64-66
-
-
Hosseinkhani, H.1
Hosseinkhani, M.2
-
12
-
-
34249938497
-
Matrices and scaffolds for delivery of bioactive molecules in bone and cartilage tissue engineering
-
S.-H. Lee, and H. Shin Matrices and scaffolds for delivery of bioactive molecules in bone and cartilage tissue engineering Adv. Drug Deliv. Rev. 59 2007 339 359
-
(2007)
Adv. Drug Deliv. Rev.
, vol.59
, pp. 339-359
-
-
Lee, S.-H.1
Shin, H.2
-
13
-
-
0034672873
-
Application of chitosan-based polysaccharide biomaterials in cartilage tissue engineering: a review
-
J.-K.F. Suh, and H.W. Matthew Application of chitosan-based polysaccharide biomaterials in cartilage tissue engineering: a review Biomaterials 21 2000 2589 2598
-
(2000)
Biomaterials
, vol.21
, pp. 2589-2598
-
-
Suh, J.-K.F.1
Matthew, H.W.2
-
14
-
-
1842734858
-
Fabrication of microstructures in photosensitive biodegradable polymers for tissue engineering applications
-
E. Leclerc, K. Furukawa, F. Miyata, Y. Sakai, T. Ushida, and T. Fujii Fabrication of microstructures in photosensitive biodegradable polymers for tissue engineering applications Biomaterials 25 2004 4683 4690
-
(2004)
Biomaterials
, vol.25
, pp. 4683-4690
-
-
Leclerc, E.1
Furukawa, K.2
Miyata, F.3
Sakai, Y.4
Ushida, T.5
Fujii, T.6
-
15
-
-
79960396957
-
Current research on the blends of natural and synthetic polymers as new biomaterials: review
-
A. Sionkowska Current research on the blends of natural and synthetic polymers as new biomaterials: review Prog. Polym. Sci. 36 2011 1254 1276
-
(2011)
Prog. Polym. Sci.
, vol.36
, pp. 1254-1276
-
-
Sionkowska, A.1
-
16
-
-
84896391062
-
Designing protein-based biomaterials for medical applications
-
J.E. Gagner, W. Kim, and E.L. Chaikof Designing protein-based biomaterials for medical applications Acta Biomater. 10 2014 1542 1557
-
(2014)
Acta Biomater.
, vol.10
, pp. 1542-1557
-
-
Gagner, J.E.1
Kim, W.2
Chaikof, E.L.3
-
17
-
-
34547585979
-
Biodegradable polymers as biomaterials
-
L.S. Nair, and C.T. Laurencin Biodegradable polymers as biomaterials Prog. Polym. Sci. 32 2007 762 798
-
(2007)
Prog. Polym. Sci.
, vol.32
, pp. 762-798
-
-
Nair, L.S.1
Laurencin, C.T.2
-
18
-
-
84918594005
-
Biomineralization of natural collagenous nanofibrous membranes and their potential use in bone tissue engineering
-
M. Yang, G. Zhou, H. Castano-Izquierdo, Y. Zhu, and C. Mao Biomineralization of natural collagenous nanofibrous membranes and their potential use in bone tissue engineering J. Biomed. Nanotechnol. 11 2015 447 456
-
(2015)
J. Biomed. Nanotechnol.
, vol.11
, pp. 447-456
-
-
Yang, M.1
Zhou, G.2
Castano-Izquierdo, H.3
Zhu, Y.4
Mao, C.5
-
19
-
-
77955111796
-
New opportunities for an ancient material
-
F.G. Omenetto, and D.L. Kaplan New opportunities for an ancient material Science 329 2010 528 531
-
(2010)
Science
, vol.329
, pp. 528-531
-
-
Omenetto, F.G.1
Kaplan, D.L.2
-
20
-
-
0033803359
-
Promotive effects of a silk film on epidermal recovery from full-thickness skin wounds
-
A. Sugihara, K. Sugiura, H. Morita, T. Ninagawa, K. Tubouchi, R. Tobe, M. Izumiya, T. Horio, N.G. Abraham, and S. Ikehara Promotive effects of a silk film on epidermal recovery from full-thickness skin wounds Exp. Biol. Med. 225 2000 58 64
-
(2000)
Exp. Biol. Med.
, vol.225
, pp. 58-64
-
-
Sugihara, A.1
Sugiura, K.2
Morita, H.3
Ninagawa, T.4
Tubouchi, K.5
Tobe, R.6
Izumiya, M.7
Horio, T.8
Abraham, N.G.9
Ikehara, S.10
-
21
-
-
84884752989
-
A biosynthetic nerve guide conduit based on silk/SWNT/fibronectin nanocomposite for peripheral nerve regeneration
-
F. Mottaghitalab, M. Farokhi, A. Zaminy, M. Kokabi, M. Soleimani, F. Mirahmadi, M.A. Shokrgozar, and M. Sadeghizadeh A biosynthetic nerve guide conduit based on silk/SWNT/fibronectin nanocomposite for peripheral nerve regeneration PLoS One 8 2013 e74417
-
(2013)
PLoS One
, vol.8
-
-
Mottaghitalab, F.1
Farokhi, M.2
Zaminy, A.3
Kokabi, M.4
Soleimani, M.5
Mirahmadi, F.6
Shokrgozar, M.A.7
Sadeghizadeh, M.8
-
23
-
-
84861203750
-
High-strength silk protein scaffolds for bone repair
-
B.B. Mandal, A. Grinberg, E.S. Gil, B. Panilaitis, and D.L. Kaplan High-strength silk protein scaffolds for bone repair Proc. Natl. Acad. Sci. 109 2012 7699 7704
-
(2012)
Proc. Natl. Acad. Sci.
, vol.109
, pp. 7699-7704
-
-
Mandal, B.B.1
Grinberg, A.2
Gil, E.S.3
Panilaitis, B.4
Kaplan, D.L.5
-
24
-
-
84891094426
-
Nucleation of hydroxyapatite on Antheraea pernyi (A. pernyi) silk fibroin film
-
M. Yang, Y. Shuai, G. Zhou, N. Mandal, and L. Zhu Nucleation of hydroxyapatite on Antheraea pernyi (A. pernyi) silk fibroin film Biomed. Mater. Eng. 24 2014 731 740
-
(2014)
Biomed. Mater. Eng.
, vol.24
, pp. 731-740
-
-
Yang, M.1
Shuai, Y.2
Zhou, G.3
Mandal, N.4
Zhu, L.5
-
25
-
-
84875247269
-
Nucleation of hydroxyapatite crystals by self-assembled Bombyx mori silk fibroin
-
M. Yang, W. He, Y. Shuai, S. Min, and L. Zhu Nucleation of hydroxyapatite crystals by self-assembled Bombyx mori silk fibroin J. Polym. Sci. B Polym. Phys. 51 2013 742 748
-
(2013)
J. Polym. Sci. B Polym. Phys.
, vol.51
, pp. 742-748
-
-
Yang, M.1
He, W.2
Shuai, Y.3
Min, S.4
Zhu, L.5
-
27
-
-
13444302715
-
Sequential roles of Hedgehog and Wnt signaling in osteoblast development
-
H. Hu, M.J. Hilton, X. Tu, K. Yu, D.M. Ornitz, and F. Long Sequential roles of Hedgehog and Wnt signaling in osteoblast development Development 132 2005 49 60
-
(2005)
Development
, vol.132
, pp. 49-60
-
-
Hu, H.1
Hilton, M.J.2
Tu, X.3
Yu, K.4
Ornitz, D.M.5
Long, F.6
-
28
-
-
0034755005
-
Vascular regression is required for mesenchymal condensation and chondrogenesis in the developing limb
-
M. Yin, and M. Pacifici Vascular regression is required for mesenchymal condensation and chondrogenesis in the developing limb Dev. Dyn. 222 2001 522 533
-
(2001)
Dev. Dyn.
, vol.222
, pp. 522-533
-
-
Yin, M.1
Pacifici, M.2
-
29
-
-
0035499204
-
Hypoxia in cartilage: HIF-1α is essential for chondrocyte growth arrest and survival
-
E. Schipani, H.E. Ryan, S. Didrickson, T. Kobayashi, M. Knight, and R.S. Johnson Hypoxia in cartilage: HIF-1α is essential for chondrocyte growth arrest and survival Genes Dev. 15 2001 2865 2876
-
(2001)
Genes Dev.
, vol.15
, pp. 2865-2876
-
-
Schipani, E.1
Ryan, H.E.2
Didrickson, S.3
Kobayashi, T.4
Knight, M.5
Johnson, R.S.6
-
30
-
-
2542631833
-
VEGFA is necessary for chondrocyte survival during bone development
-
E. Zelzer, R. Mamluk, N. Ferrara, R.S. Johnson, E. Schipani, and B.R. Olsen VEGFA is necessary for chondrocyte survival during bone development Development 131 2004 2161 2171
-
(2004)
Development
, vol.131
, pp. 2161-2171
-
-
Zelzer, E.1
Mamluk, R.2
Ferrara, N.3
Johnson, R.S.4
Schipani, E.5
Olsen, B.R.6
-
32
-
-
0022766085
-
Kinetics and differentiation of marrow stromal cells in diffusion chambers in vivo
-
I. Bab, B. Ashton, D. Gazit, G. Marx, M. Williamson, and M. Owen Kinetics and differentiation of marrow stromal cells in diffusion chambers in vivo J. Cell Sci. 84 1986 139 151
-
(1986)
J. Cell Sci.
, vol.84
, pp. 139-151
-
-
Bab, I.1
Ashton, B.2
Gazit, D.3
Marx, G.4
Williamson, M.5
Owen, M.6
-
34
-
-
70349840761
-
Electrospun materials as potential platforms for bone tissue engineering
-
J.-H. Jang, O. Castano, and H.-W. Kim Electrospun materials as potential platforms for bone tissue engineering Adv. Drug Deliv. Rev. 61 2009 1065 1083
-
(2009)
Adv. Drug Deliv. Rev.
, vol.61
, pp. 1065-1083
-
-
Jang, J.-H.1
Castano, O.2
Kim, H.-W.3
-
35
-
-
0024326174
-
Early strain-related changes in enzyme activity in osteocytes following bone loading in vivo
-
T.M. Skerry, L.E. Lanyon, L. Bitensky, and J. Chayen Early strain-related changes in enzyme activity in osteocytes following bone loading in vivo J. Bone Miner. Res. 4 1989 783 788
-
(1989)
J. Bone Miner. Res.
, vol.4
, pp. 783-788
-
-
Skerry, T.M.1
Lanyon, L.E.2
Bitensky, L.3
Chayen, J.4
-
36
-
-
0023784985
-
Cellular biology and biochemical mechanism of bone resorption: a review of recent developments on the formation, activation, and mode of action of osteoclasts
-
G. Vaes Cellular biology and biochemical mechanism of bone resorption: a review of recent developments on the formation, activation, and mode of action of osteoclasts Clin. Orthop. Relat. Res. 231 1988 239 271
-
(1988)
Clin. Orthop. Relat. Res.
, vol.231
, pp. 239-271
-
-
Vaes, G.1
-
37
-
-
0024327043
-
Molecular mechanisms of bone resorption by the osteoclast
-
R. Baron Molecular mechanisms of bone resorption by the osteoclast Anat. Rec. 224 1989 317 324
-
(1989)
Anat. Rec.
, vol.224
, pp. 317-324
-
-
Baron, R.1
-
38
-
-
0003970851
-
Bone lining cells
-
S. Miller, and W. Jee Bone lining cells Bone 4 1992 1 19
-
(1992)
Bone
, vol.4
, pp. 1-19
-
-
Miller, S.1
Jee, W.2
-
39
-
-
0016801068
-
The elastic and ultimate properties of compact bone tissue
-
D.T. Reilly, and A.H. Burstein The elastic and ultimate properties of compact bone tissue J. Biomech. 8 1975 393 405
-
(1975)
J. Biomech.
, vol.8
, pp. 393-405
-
-
Reilly, D.T.1
Burstein, A.H.2
-
40
-
-
0032983135
-
Bone poroelasticity
-
S.C. Cowin Bone poroelasticity J. Biomech. 32 1999 217 238
-
(1999)
J. Biomech.
, vol.32
, pp. 217-238
-
-
Cowin, S.C.1
-
41
-
-
0033226983
-
Cancellous bone biomechanics
-
D. Fyhrie, and J. Kimura Cancellous bone biomechanics J. Biomech. 32 1999 1139 1148
-
(1999)
J. Biomech.
, vol.32
, pp. 1139-1148
-
-
Fyhrie, D.1
Kimura, J.2
-
42
-
-
84899889621
-
Biomimetic porous scaffolds for bone tissue engineering
-
S. Wu, X. Liu, K.W. Yeung, C. Liu, and X. Yang Biomimetic porous scaffolds for bone tissue engineering Mater. Sci. Eng. R. Rep. 80 2014 1 36
-
(2014)
Mater. Sci. Eng. R. Rep.
, vol.80
, pp. 1-36
-
-
Wu, S.1
Liu, X.2
Yeung, K.W.3
Liu, C.4
Yang, X.5
-
43
-
-
0031651017
-
Processing and properties of hydroxyapatite-based biomaterials for use as hard tissue replacement implants
-
W. Suchanek, and M. Yoshimura Processing and properties of hydroxyapatite-based biomaterials for use as hard tissue replacement implants J. Mater. Res. 13 1998 94 117
-
(1998)
J. Mater. Res.
, vol.13
, pp. 94-117
-
-
Suchanek, W.1
Yoshimura, M.2
-
47
-
-
0029784249
-
The role of type I collagen in the regulation of the osteoblast phenotype
-
S. Shi, M. Kirk, and A.J. Kahn The role of type I collagen in the regulation of the osteoblast phenotype J. Bone Miner. Res. 11 1996 1139 1145
-
(1996)
J. Bone Miner. Res.
, vol.11
, pp. 1139-1145
-
-
Shi, S.1
Kirk, M.2
Kahn, A.J.3
-
48
-
-
39149143035
-
Molecular mechanisms controlling bone formation during fracture healing and distraction osteogenesis
-
Z. Ai-Aql, A. Alagl, D. Graves, L. Gerstenfeld, and T. Einhorn Molecular mechanisms controlling bone formation during fracture healing and distraction osteogenesis J. Dent. Res. 87 2008 107 118
-
(2008)
J. Dent. Res.
, vol.87
, pp. 107-118
-
-
Ai-Aql, Z.1
Alagl, A.2
Graves, D.3
Gerstenfeld, L.4
Einhorn, T.5
-
51
-
-
34548650403
-
The roles of hypoxia in the in vitro engineering of tissues
-
J. Malda, T.J. Klein, and Z. Upton The roles of hypoxia in the in vitro engineering of tissues Tissue Eng. 13 2007 2153 2162
-
(2007)
Tissue Eng.
, vol.13
, pp. 2153-2162
-
-
Malda, J.1
Klein, T.J.2
Upton, Z.3
-
52
-
-
0032891180
-
Endothelial cell responses to hypoxic stress
-
D.V. Faller Endothelial cell responses to hypoxic stress Clin. Exp. Pharmacol. Physiol. 26 1999 74 84
-
(1999)
Clin. Exp. Pharmacol. Physiol.
, vol.26
, pp. 74-84
-
-
Faller, D.V.1
-
53
-
-
33644877907
-
Overview of the fracture healing cascade
-
A. Phillips Overview of the fracture healing cascade Injury 36 2005 S5 S7
-
(2005)
Injury
, vol.36
, pp. S5-S7
-
-
Phillips, A.1
-
54
-
-
84865585993
-
Bone repair: new developments in growth factor delivery systems and their mathematical modeling
-
M.-A. Lauzon, É. Bergeron, B. Marcos, and N. Faucheux Bone repair: new developments in growth factor delivery systems and their mathematical modeling J. Control. Release 162 2012 502 520
-
(2012)
J. Control. Release
, vol.162
, pp. 502-520
-
-
Lauzon, M.-A.1
Bergeron, É.2
Marcos, B.3
Faucheux, N.4
-
55
-
-
38649128127
-
Activation of the hypoxia-inducible factor-1α pathway accelerates bone regeneration
-
C. Wan, S.R. Gilbert, Y. Wang, X. Cao, X. Shen, G. Ramaswamy, K.A. Jacobsen, Z.S. Alaql, A.W. Eberhardt, and L.C. Gerstenfeld Activation of the hypoxia-inducible factor-1α pathway accelerates bone regeneration Proc. Natl. Acad. Sci. 105 2008 686 691
-
(2008)
Proc. Natl. Acad. Sci.
, vol.105
, pp. 686-691
-
-
Wan, C.1
Gilbert, S.R.2
Wang, Y.3
Cao, X.4
Shen, X.5
Ramaswamy, G.6
Jacobsen, K.A.7
Alaql, Z.S.8
Eberhardt, A.W.9
Gerstenfeld, L.C.10
-
56
-
-
0242649840
-
Principles of bone healing
-
I.H. Kalfas Principles of bone healing Neurosurg. Focus. 10 2001 1 4
-
(2001)
Neurosurg. Focus.
, vol.10
, pp. 1-4
-
-
Kalfas, I.H.1
-
58
-
-
33745727555
-
Current concepts review: orthobiologics
-
B.C. Toolan Current concepts review: orthobiologics Foot Ankle Int. 27 2006 561 566
-
(2006)
Foot Ankle Int.
, vol.27
, pp. 561-566
-
-
Toolan, B.C.1
-
59
-
-
33846657400
-
The enhancement of osteogenesis by nano-fibrous scaffolds incorporating rhBMP-7 nanospheres
-
G. Wei, Q. Jin, W.V. Giannobile, and P.X. Ma The enhancement of osteogenesis by nano-fibrous scaffolds incorporating rhBMP-7 nanospheres Biomaterials 28 2007 2087 2096
-
(2007)
Biomaterials
, vol.28
, pp. 2087-2096
-
-
Wei, G.1
Jin, Q.2
Giannobile, W.V.3
Ma, P.X.4
-
60
-
-
80054062393
-
Biomimetic nanofibrous scaffolds for bone tissue engineering
-
J.M. Holzwarth, and P.X. Ma Biomimetic nanofibrous scaffolds for bone tissue engineering Biomaterials 32 2011 9622 9629
-
(2011)
Biomaterials
, vol.32
, pp. 9622-9629
-
-
Holzwarth, J.M.1
Ma, P.X.2
-
61
-
-
30444435767
-
Stem cells, tissue engineering and organogenesis in transplantation
-
R. Cortesini Stem cells, tissue engineering and organogenesis in transplantation Transpl. Immunol. 15 2005 81 89
-
(2005)
Transpl. Immunol.
, vol.15
, pp. 81-89
-
-
Cortesini, R.1
-
62
-
-
80053510053
-
Bone regeneration around dental implants as a treatment for peri-implantitis: a review of the literature
-
Trans Tech Publ
-
K. Subramani, R. Mathew, H. Hosseinkhani, and M. Hosseinkhani Bone regeneration around dental implants as a treatment for peri-implantitis: a review of the literature Journal of Biomimetics, Biomaterials and Biomedical Engineering 2011 Trans Tech Publ 21 33
-
(2011)
Journal of Biomimetics, Biomaterials and Biomedical Engineering
, pp. 21-33
-
-
Subramani, K.1
Mathew, R.2
Hosseinkhani, H.3
Hosseinkhani, M.4
-
63
-
-
78650072652
-
Proliferation and differentiation of mesenchymal stem cell on collagen sponge reinforced with polypropylene/polyethylene terephthalate blend fibers
-
S. Mohajeri, H. Hosseinkhani, N. Golshan Ebrahimi, L. Nikfarjam, M. Soleimani, and A.-M. Kajbafzadeh Proliferation and differentiation of mesenchymal stem cell on collagen sponge reinforced with polypropylene/polyethylene terephthalate blend fibers Tissue Eng. A 16 2010 3821 3830
-
(2010)
Tissue Eng. A
, vol.16
, pp. 3821-3830
-
-
Mohajeri, S.1
Hosseinkhani, H.2
Golshan Ebrahimi, N.3
Nikfarjam, L.4
Soleimani, M.5
Kajbafzadeh, A.-M.6
-
64
-
-
28444487378
-
Enhanced ectopic bone formation using a combination of plasmid DNA impregnation into 3-D scaffold and bioreactor perfusion culture
-
H. Hosseinkhani, M. Yamamoto, Y. Inatsugu, Y. Hiraoka, S. Inoue, H. Shimokawa, and Y. Tabata Enhanced ectopic bone formation using a combination of plasmid DNA impregnation into 3-D scaffold and bioreactor perfusion culture Biomaterials 27 2006 1387 1398
-
(2006)
Biomaterials
, vol.27
, pp. 1387-1398
-
-
Hosseinkhani, H.1
Yamamoto, M.2
Inatsugu, Y.3
Hiraoka, Y.4
Inoue, S.5
Shimokawa, H.6
Tabata, Y.7
-
65
-
-
33646020417
-
Osteogenic differentiation of mesenchymal stem cells in self-assembled peptide-amphiphile nanofibers
-
H. Hosseinkhani, M. Hosseinkhani, F. Tian, H. Kobayashi, and Y. Tabata Osteogenic differentiation of mesenchymal stem cells in self-assembled peptide-amphiphile nanofibers Biomaterials 27 2006 4079 4086
-
(2006)
Biomaterials
, vol.27
, pp. 4079-4086
-
-
Hosseinkhani, H.1
Hosseinkhani, M.2
Tian, F.3
Kobayashi, H.4
Tabata, Y.5
-
66
-
-
77958174034
-
Bioengineering strategies for regeneration of craniofacial bone: a review of emerging technologies
-
B. Ward, S. Brown, and P. Krebsbach Bioengineering strategies for regeneration of craniofacial bone: a review of emerging technologies Oral Dis. 16 2010 709 716
-
(2010)
Oral Dis.
, vol.16
, pp. 709-716
-
-
Ward, B.1
Brown, S.2
Krebsbach, P.3
-
67
-
-
77957588918
-
The return of a forgotten polymer - polycaprolactone in the 21st century
-
M.A. Woodruff, and D.W. Hutmacher The return of a forgotten polymer - polycaprolactone in the 21st century Prog. Polym. Sci. 35 2010 1217 1256
-
(2010)
Prog. Polym. Sci.
, vol.35
, pp. 1217-1256
-
-
Woodruff, M.A.1
Hutmacher, D.W.2
-
68
-
-
0034672872
-
Scaffolds in tissue engineering bone and cartilage
-
D.W. Hutmacher Scaffolds in tissue engineering bone and cartilage Biomaterials 21 2000 2529 2543
-
(2000)
Biomaterials
, vol.21
, pp. 2529-2543
-
-
Hutmacher, D.W.1
-
69
-
-
0026218510
-
Bone graft and bone graft substitutes: a review of current technology and applications
-
C.J. Damien, and J.R. Parsons Bone graft and bone graft substitutes: a review of current technology and applications J. Appl. Biomater. 2 1991 187 208
-
(1991)
J. Appl. Biomater.
, vol.2
, pp. 187-208
-
-
Damien, C.J.1
Parsons, J.R.2
-
70
-
-
21844438003
-
Porous scaffold design for tissue engineering
-
S.J. Hollister Porous scaffold design for tissue engineering Nat. Mater. 4 2005 518 524
-
(2005)
Nat. Mater.
, vol.4
, pp. 518-524
-
-
Hollister, S.J.1
-
71
-
-
24344458170
-
Engineering craniofacial scaffolds
-
S.J. Hollister, C. Lin, E. Saito, R. Schek, J. Taboas, J. Williams, B. Partee, C. Flanagan, A. Diggs, and E. Wilke Engineering craniofacial scaffolds Orthod. Craniofacial Res. 8 2005 162 173
-
(2005)
Orthod. Craniofacial Res.
, vol.8
, pp. 162-173
-
-
Hollister, S.J.1
Lin, C.2
Saito, E.3
Schek, R.4
Taboas, J.5
Williams, J.6
Partee, B.7
Flanagan, C.8
Diggs, A.9
Wilke, E.10
-
72
-
-
0035054981
-
Scaffold design and fabrication technologies for engineering tissues - state of the art and future perspectives
-
D.W. Hutmacher Scaffold design and fabrication technologies for engineering tissues - state of the art and future perspectives J. Biomater. Sci. Polym. Ed. 12 2001 107 124
-
(2001)
J. Biomater. Sci. Polym. Ed.
, vol.12
, pp. 107-124
-
-
Hutmacher, D.W.1
-
75
-
-
37049029660
-
Biomimetic materials for tissue engineering
-
P.X. Ma Biomimetic materials for tissue engineering Adv. Drug Deliv. Rev. 60 2008 184 198
-
(2008)
Adv. Drug Deliv. Rev.
, vol.60
, pp. 184-198
-
-
Ma, P.X.1
-
78
-
-
0029207803
-
The role of gas dissolution and induced crystallization during microcellular polymer processing: a study of poly (ethylene terephthalate) and carbon dioxide systems
-
D.F. Baldwin, M. Shimbo, and N.P. Suh The role of gas dissolution and induced crystallization during microcellular polymer processing: a study of poly (ethylene terephthalate) and carbon dioxide systems J. Eng. Mater. Technol. 117 1995 62 74
-
(1995)
J. Eng. Mater. Technol.
, vol.117
, pp. 62-74
-
-
Baldwin, D.F.1
Shimbo, M.2
Suh, N.P.3
-
79
-
-
84872934827
-
Techniques for fabrication and construction of three-dimensional scaffolds for tissue engineering
-
T. Lu, Y. Li, and T. Chen Techniques for fabrication and construction of three-dimensional scaffolds for tissue engineering Int. J. Nanomedicine 8 2013 337
-
(2013)
Int. J. Nanomedicine
, vol.8
, pp. 337
-
-
Lu, T.1
Li, Y.2
Chen, T.3
-
81
-
-
0037409864
-
Solid freeform fabrication of three-dimensional scaffolds for engineering replacement tissues and organs
-
K. Leong, C. Cheah, and C. Chua Solid freeform fabrication of three-dimensional scaffolds for engineering replacement tissues and organs Biomaterials 24 2003 2363 2378
-
(2003)
Biomaterials
, vol.24
, pp. 2363-2378
-
-
Leong, K.1
Cheah, C.2
Chua, C.3
-
82
-
-
0141480550
-
Use of stereolithography to manufacture critical-sized 3D biodegradable scaffolds for bone ingrowth
-
M.N. Cooke, J.P. Fisher, D. Dean, C. Rimnac, and A.G. Mikos Use of stereolithography to manufacture critical-sized 3D biodegradable scaffolds for bone ingrowth J. Biomed. Mater. Res. B Appl. Biomater. 64 2003 65 69
-
(2003)
J. Biomed. Mater. Res. B Appl. Biomater.
, vol.64
, pp. 65-69
-
-
Cooke, M.N.1
Fisher, J.P.2
Dean, D.3
Rimnac, C.4
Mikos, A.G.5
-
83
-
-
0036262843
-
Application of stereolithography for scaffold fabrication for tissue engineered heart valves
-
R. Sodian, M. Loebe, A. Hein, D.P. Martin, S.P. Hoerstrup, E.V. Potapov, H. Hausmann, T. Lueth, and R. Hetzer Application of stereolithography for scaffold fabrication for tissue engineered heart valves ASAIO J. 48 2002 12 16
-
(2002)
ASAIO J.
, vol.48
, pp. 12-16
-
-
Sodian, R.1
Loebe, M.2
Hein, A.3
Martin, D.P.4
Hoerstrup, S.P.5
Potapov, E.V.6
Hausmann, H.7
Lueth, T.8
Hetzer, R.9
-
84
-
-
11944263074
-
Biodegradable polymer scaffolds to regenerate organs
-
Springer
-
R. Thomson, M. Wake, M. Yaszemski, and A. Mikos Biodegradable polymer scaffolds to regenerate organs Biopolymers Ii 1995 Springer 245 274
-
(1995)
Biopolymers Ii
, pp. 245-274
-
-
Thomson, R.1
Wake, M.2
Yaszemski, M.3
Mikos, A.4
-
85
-
-
35948986208
-
Biodegradable synthetic polymers for tissue engineering
-
P.A. Gunatillake, and R. Adhikari Biodegradable synthetic polymers for tissue engineering Eur. Cell Mater. 5 2003 1 16
-
(2003)
Eur. Cell Mater.
, vol.5
, pp. 1-16
-
-
Gunatillake, P.A.1
Adhikari, R.2
-
86
-
-
33644934897
-
Biodegradable and bioactive porous polymer/inorganic composite scaffolds for bone tissue engineering
-
K. Rezwan, Q. Chen, J. Blaker, and A.R. Boccaccini Biodegradable and bioactive porous polymer/inorganic composite scaffolds for bone tissue engineering Biomaterials 27 2006 3413 3431
-
(2006)
Biomaterials
, vol.27
, pp. 3413-3431
-
-
Rezwan, K.1
Chen, Q.2
Blaker, J.3
Boccaccini, A.R.4
-
87
-
-
33744942905
-
Fabrication and characterization of six electrospun poly (α-hydroxy ester)-based fibrous scaffolds for tissue engineering applications
-
W.-J. Li, J.A. Cooper, R.L. Mauck, and R.S. Tuan Fabrication and characterization of six electrospun poly (α-hydroxy ester)-based fibrous scaffolds for tissue engineering applications Acta Biomater. 2 2006 377 385
-
(2006)
Acta Biomater.
, vol.2
, pp. 377-385
-
-
Li, W.-J.1
Cooper, J.A.2
Mauck, R.L.3
Tuan, R.S.4
-
90
-
-
0035840999
-
Polymeric biomaterials for tissue and organ regeneration
-
B. Seal, T. Otero, and A. Panitch Polymeric biomaterials for tissue and organ regeneration Mater. Sci. Eng. R. Rep. 34 2001 147 230
-
(2001)
Mater. Sci. Eng. R. Rep.
, vol.34
, pp. 147-230
-
-
Seal, B.1
Otero, T.2
Panitch, A.3
-
91
-
-
26944442373
-
Bone tissue engineering evaluation based on rat calvaria stromal cells cultured on modified PLGA scaffolds
-
Y.-C. Wu, S.-Y. Shaw, H.-R. Lin, T.-M. Lee, and C.-Y. Yang Bone tissue engineering evaluation based on rat calvaria stromal cells cultured on modified PLGA scaffolds Biomaterials 27 2006 896 904
-
(2006)
Biomaterials
, vol.27
, pp. 896-904
-
-
Wu, Y.-C.1
Shaw, S.-Y.2
Lin, H.-R.3
Lee, T.-M.4
Yang, C.-Y.5
-
92
-
-
70349319369
-
A review on biodegradable polymeric materials for bone tissue engineering applications
-
M.I. Sabir, X. Xu, and L. Li A review on biodegradable polymeric materials for bone tissue engineering applications J. Mater. Sci. 44 2009 5713 5724
-
(2009)
J. Mater. Sci.
, vol.44
, pp. 5713-5724
-
-
Sabir, M.I.1
Xu, X.2
Li, L.3
-
93
-
-
0036342449
-
Photocrosslinking characteristics and mechanical properties of diethyl fumarate/poly (propylene fumarate) biomaterials
-
J.P. Fisher, D. Dean, and A.G. Mikos Photocrosslinking characteristics and mechanical properties of diethyl fumarate/poly (propylene fumarate) biomaterials Biomaterials 23 2002 4333 4343
-
(2002)
Biomaterials
, vol.23
, pp. 4333-4343
-
-
Fisher, J.P.1
Dean, D.2
Mikos, A.G.3
-
94
-
-
84885018649
-
Synthetic biopolymer nanocomposites for tissue engineering scaffolds
-
M. Okamoto, and B. John Synthetic biopolymer nanocomposites for tissue engineering scaffolds Prog. Polym. Sci. 38 2013 1487 1503
-
(2013)
Prog. Polym. Sci.
, vol.38
, pp. 1487-1503
-
-
Okamoto, M.1
John, B.2
-
95
-
-
74249112625
-
A biodegradable porous composite scaffold of PGA/β-TCP for bone tissue engineering
-
H. Cao, and N. Kuboyama A biodegradable porous composite scaffold of PGA/β-TCP for bone tissue engineering Bone 46 2010 386 395
-
(2010)
Bone
, vol.46
, pp. 386-395
-
-
Cao, H.1
Kuboyama, N.2
-
96
-
-
39149086081
-
Human fetal bone cells associated with ceramic reinforced PLA scaffolds for tissue engineering
-
M.-O. Montjovent, S. Mark, L. Mathieu, C. Scaletta, A. Scherberich, C. Delabarde, P.-Y. Zambelli, P.-E. Bourban, L.A. Applegate, and D.P. Pioletti Human fetal bone cells associated with ceramic reinforced PLA scaffolds for tissue engineering Bone 42 2008 554 564
-
(2008)
Bone
, vol.42
, pp. 554-564
-
-
Montjovent, M.-O.1
Mark, S.2
Mathieu, L.3
Scaletta, C.4
Scherberich, A.5
Delabarde, C.6
Zambelli, P.-Y.7
Bourban, P.-E.8
Applegate, L.A.9
Pioletti, D.P.10
-
97
-
-
84924981716
-
Porous magnesium/PLGA composite scaffolds for enhanced bone regeneration following tooth extraction
-
A. Brown, S. Zaky, H. Ray, and C. Sfeir Porous magnesium/PLGA composite scaffolds for enhanced bone regeneration following tooth extraction Acta Biomater. 11 2015 543 553
-
(2015)
Acta Biomater.
, vol.11
, pp. 543-553
-
-
Brown, A.1
Zaky, S.2
Ray, H.3
Sfeir, C.4
-
98
-
-
84868500032
-
Incorporation of stromal cell-derived factor-1α in PCL/gelatin electrospun membranes for guided bone regeneration
-
W. Ji, F. Yang, J. Ma, M.J. Bouma, O.C. Boerman, Z. Chen, J.J. van den Beucken, and J.A. Jansen Incorporation of stromal cell-derived factor-1α in PCL/gelatin electrospun membranes for guided bone regeneration Biomaterials 34 2013 735 745
-
(2013)
Biomaterials
, vol.34
, pp. 735-745
-
-
Ji, W.1
Yang, F.2
Ma, J.3
Bouma, M.J.4
Boerman, O.C.5
Chen, Z.6
Van Den Beucken, J.J.7
Jansen, J.A.8
-
99
-
-
84861574444
-
Poly (propylene fumarate) reinforced dicalcium phosphate dihydrate cement composites for bone tissue engineering
-
D.L. Alge, J. Bennett, T. Treasure, S. Voytik-Harbin, W.S. Goebel, and T.M.G. Chu Poly (propylene fumarate) reinforced dicalcium phosphate dihydrate cement composites for bone tissue engineering J. Biomed. Mater. Res. A 100 2012 1792 1802
-
(2012)
J. Biomed. Mater. Res. A
, vol.100
, pp. 1792-1802
-
-
Alge, D.L.1
Bennett, J.2
Treasure, T.3
Voytik-Harbin, S.4
Goebel, W.S.5
Chu, T.M.G.6
-
100
-
-
34249930633
-
Natural-origin polymers as carriers and scaffolds for biomolecules and cell delivery in tissue engineering applications
-
P.B. Malafaya, G.A. Silva, and R.L. Reis Natural-origin polymers as carriers and scaffolds for biomolecules and cell delivery in tissue engineering applications Adv. Drug Deliv. Rev. 59 2007 207 233
-
(2007)
Adv. Drug Deliv. Rev.
, vol.59
, pp. 207-233
-
-
Malafaya, P.B.1
Silva, G.A.2
Reis, R.L.3
-
101
-
-
80455174726
-
Natural and genetically engineered proteins for tissue engineering
-
S. Gomes, I.B. Leonor, J.F. Mano, R.L. Reis, and D.L. Kaplan Natural and genetically engineered proteins for tissue engineering Prog. Polym. Sci. 37 2012 1 17
-
(2012)
Prog. Polym. Sci.
, vol.37
, pp. 1-17
-
-
Gomes, S.1
Leonor, I.B.2
Mano, J.F.3
Reis, R.L.4
Kaplan, D.L.5
-
103
-
-
84877026658
-
Collagen - emerging collagen based therapies hit the patient
-
E.A.A. Neel, L. Bozec, J.C. Knowles, O. Syed, V. Mudera, R. Day, and J.K. Hyun Collagen - emerging collagen based therapies hit the patient Adv. Drug Deliv. Rev. 65 2013 429 456
-
(2013)
Adv. Drug Deliv. Rev.
, vol.65
, pp. 429-456
-
-
Neel, E.A.A.1
Bozec, L.2
Knowles, J.C.3
Syed, O.4
Mudera, V.5
Day, R.6
Hyun, J.K.7
-
104
-
-
0035912971
-
Biomedical applications of collagen
-
C.H. Lee, A. Singla, and Y. Lee Biomedical applications of collagen Int. J. Pharm. 221 2001 1 22
-
(2001)
Int. J. Pharm.
, vol.221
, pp. 1-22
-
-
Lee, C.H.1
Singla, A.2
Lee, Y.3
-
105
-
-
77949659351
-
The use of injectable forms of fibrin and fibronectin to support axonal ingrowth after spinal cord injury
-
V.R. King, A. Alovskaya, D.Y. Wei, R.A. Brown, and J.V. Priestley The use of injectable forms of fibrin and fibronectin to support axonal ingrowth after spinal cord injury Biomaterials 31 2010 4447 4456
-
(2010)
Biomaterials
, vol.31
, pp. 4447-4456
-
-
King, V.R.1
Alovskaya, A.2
Wei, D.Y.3
Brown, R.A.4
Priestley, J.V.5
-
106
-
-
75749121889
-
Self-assembly of fibronectin mimetic peptide-amphiphile nanofibers
-
E.L. Rexeisen, W. Fan, T.O. Pangburn, R.R. Taribagil, F.S. Bates, T.P. Lodge, M. Tsapatsis, and E. Kokkoli Self-assembly of fibronectin mimetic peptide-amphiphile nanofibers Langmuir 26 2009 1953 1959
-
(2009)
Langmuir
, vol.26
, pp. 1953-1959
-
-
Rexeisen, E.L.1
Fan, W.2
Pangburn, T.O.3
Taribagil, R.R.4
Bates, F.S.5
Lodge, T.P.6
Tsapatsis, M.7
Kokkoli, E.8
-
107
-
-
0342749273
-
Fibrin gel as a three dimensional matrix in cardiovascular tissue engineering
-
Q. Ye, G. Zünd, P. Benedikt, S. Jockenhoevel, S.P. Hoerstrup, S. Sakyama, J.A. Hubbell, and M. Turina Fibrin gel as a three dimensional matrix in cardiovascular tissue engineering Eur. J. Cardiothorac. Surg. 17 2000 587 591
-
(2000)
Eur. J. Cardiothorac. Surg.
, vol.17
, pp. 587-591
-
-
Ye, Q.1
Zünd, G.2
Benedikt, P.3
Jockenhoevel, S.4
Hoerstrup, S.P.5
Sakyama, S.6
Hubbell, J.A.7
Turina, M.8
-
108
-
-
45249084145
-
Fibrin: a versatile scaffold for tissue engineering applications
-
T.A. Ahmed, E.V. Dare, and M. Hincke Fibrin: a versatile scaffold for tissue engineering applications Tissue Eng. B Rev. 14 2008 199 215
-
(2008)
Tissue Eng. B Rev.
, vol.14
, pp. 199-215
-
-
Ahmed, T.A.1
Dare, E.V.2
Hincke, M.3
-
109
-
-
0035066222
-
Fibrin gel - advantages of a new scaffold in cardiovascular tissue engineering
-
S. Jockenhoevel, G. Zund, S.P. Hoerstrup, K. Chalabi, J.S. Sachweh, L. Demircan, B.J. Messmer, and M. Turina Fibrin gel - advantages of a new scaffold in cardiovascular tissue engineering Eur. J. Cardiothorac. Surg. 19 2001 424 430
-
(2001)
Eur. J. Cardiothorac. Surg.
, vol.19
, pp. 424-430
-
-
Jockenhoevel, S.1
Zund, G.2
Hoerstrup, S.P.3
Chalabi, K.4
Sachweh, J.S.5
Demircan, L.6
Messmer, B.J.7
Turina, M.8
-
110
-
-
18244374743
-
Smart materials as scaffolds for tissue engineering
-
F. Rosso, G. Marino, A. Giordano, M. Barbarisi, D. Parmeggiani, and A. Barbarisi Smart materials as scaffolds for tissue engineering J. Cell. Physiol. 203 2005 465 470
-
(2005)
J. Cell. Physiol.
, vol.203
, pp. 465-470
-
-
Rosso, F.1
Marino, G.2
Giordano, A.3
Barbarisi, M.4
Parmeggiani, D.5
Barbarisi, A.6
-
111
-
-
0034988430
-
Comparison of five procedures for the purification of insoluble elastin
-
W. Daamen, T. Hafmans, J. Veerkamp, and T. Van Kuppevelt Comparison of five procedures for the purification of insoluble elastin Biomaterials 22 2001 1997 2005
-
(2001)
Biomaterials
, vol.22
, pp. 1997-2005
-
-
Daamen, W.1
Hafmans, T.2
Veerkamp, J.3
Van Kuppevelt, T.4
-
112
-
-
78649884694
-
Applications of elastin-like polypeptides in tissue engineering
-
D.L. Nettles, A. Chilkoti, and L.A. Setton Applications of elastin-like polypeptides in tissue engineering Adv. Drug Deliv. Rev. 62 2010 1479 1485
-
(2010)
Adv. Drug Deliv. Rev.
, vol.62
, pp. 1479-1485
-
-
Nettles, D.L.1
Chilkoti, A.2
Setton, L.A.3
-
113
-
-
3242678876
-
Rapid fabrication of keratin-hydroxyapatite hybrid sponges toward osteoblast cultivation and differentiation
-
A. Tachibana, S. Kaneko, T. Tanabe, and K. Yamauchi Rapid fabrication of keratin-hydroxyapatite hybrid sponges toward osteoblast cultivation and differentiation Biomaterials 26 2005 297 302
-
(2005)
Biomaterials
, vol.26
, pp. 297-302
-
-
Tachibana, A.1
Kaneko, S.2
Tanabe, T.3
Yamauchi, K.4
-
114
-
-
0035831277
-
Thiolated dermal bovine collagen as a novel support for bioactive substances - conjugation with lysozyme
-
A. Kurimoto, T. Tanabe, A. Tachibana, and K. Yamauchi Thiolated dermal bovine collagen as a novel support for bioactive substances - conjugation with lysozyme J. Biotechnol. 86 2001 1 8
-
(2001)
J. Biotechnol.
, vol.86
, pp. 1-8
-
-
Kurimoto, A.1
Tanabe, T.2
Tachibana, A.3
Yamauchi, K.4
-
115
-
-
84887288919
-
Gelatin-based nanoparticles as drug and gene delivery systems: reviewing three decades of research
-
A.O. Elzoghby Gelatin-based nanoparticles as drug and gene delivery systems: reviewing three decades of research J. Control. Release 172 2013 1075 1091
-
(2013)
J. Control. Release
, vol.172
, pp. 1075-1091
-
-
Elzoghby, A.O.1
-
116
-
-
78649445971
-
Biocompatibility and osteogenesis of biomimetic Bioglass-Collagen-Phosphatidylserine composite scaffolds for bone tissue engineering
-
C. Xu, P. Su, X. Chen, Y. Meng, W. Yu, A.P. Xiang, and Y. Wang Biocompatibility and osteogenesis of biomimetic Bioglass-Collagen-Phosphatidylserine composite scaffolds for bone tissue engineering Biomaterials 32 2011 1051 1058
-
(2011)
Biomaterials
, vol.32
, pp. 1051-1058
-
-
Xu, C.1
Su, P.2
Chen, X.3
Meng, Y.4
Yu, W.5
Xiang, A.P.6
Wang, Y.7
-
117
-
-
84868463422
-
Improving the osteogenic potential of BMP-2 with hyaluronic acid hydrogel modified with integrin-specific fibronectin fragment
-
M. Kisiel, M.M. Martino, M. Ventura, J.A. Hubbell, J. Hilborn, and D.A. Ossipov Improving the osteogenic potential of BMP-2 with hyaluronic acid hydrogel modified with integrin-specific fibronectin fragment Biomaterials 34 2013 704 712
-
(2013)
Biomaterials
, vol.34
, pp. 704-712
-
-
Kisiel, M.1
Martino, M.M.2
Ventura, M.3
Hubbell, J.A.4
Hilborn, J.5
Ossipov, D.A.6
-
118
-
-
49449094276
-
Microporous nanofibrous fibrin-based scaffolds for bone tissue engineering
-
T. Osathanon, M.L. Linnes, R.M. Rajachar, B.D. Ratner, M.J. Somerman, and C.M. Giachelli Microporous nanofibrous fibrin-based scaffolds for bone tissue engineering Biomaterials 29 2008 4091 4099
-
(2008)
Biomaterials
, vol.29
, pp. 4091-4099
-
-
Osathanon, T.1
Linnes, M.L.2
Rajachar, R.M.3
Ratner, B.D.4
Somerman, M.J.5
Giachelli, C.M.6
-
119
-
-
84904098101
-
Mineralization and bone regeneration using a bioactive elastin-like recombinamer membrane
-
E. Tejeda-Montes, A. Klymov, M.R. Nejadnik, M. Alonso, J.C. Rodriguez-Cabello, X.F. Walboomers, and A. Mata Mineralization and bone regeneration using a bioactive elastin-like recombinamer membrane Biomaterials 35 2014 8339 8347
-
(2014)
Biomaterials
, vol.35
, pp. 8339-8347
-
-
Tejeda-Montes, E.1
Klymov, A.2
Nejadnik, M.R.3
Alonso, M.4
Rodriguez-Cabello, J.C.5
Walboomers, X.F.6
Mata, A.7
-
120
-
-
84893685031
-
Reduction of ectopic bone growth in critically-sized rat mandible defects by delivery of rhBMP-2 from kerateine biomaterials
-
C.J. Kowalczewski, S. Tombyln, D.C. Wasnick, M.R. Hughes, M.D. Ellenburg, M.F. Callahan, T.L. Smith, M.E. Van Dyke, L.R. Burnett, and J.M. Saul Reduction of ectopic bone growth in critically-sized rat mandible defects by delivery of rhBMP-2 from kerateine biomaterials Biomaterials 35 2014 3220 3228
-
(2014)
Biomaterials
, vol.35
, pp. 3220-3228
-
-
Kowalczewski, C.J.1
Tombyln, S.2
Wasnick, D.C.3
Hughes, M.R.4
Ellenburg, M.D.5
Callahan, M.F.6
Smith, T.L.7
Van Dyke, M.E.8
Burnett, L.R.9
Saul, J.M.10
-
121
-
-
78650173842
-
Three-dimensional culture of rat BMMSCs in a porous chitosan-gelatin scaffold: a promising association for bone tissue engineering in oral reconstruction
-
S.C. Miranda, G.A. Silva, R.C. Hell, M.D. Martins, J.B. Alves, and A.M. Goes Three-dimensional culture of rat BMMSCs in a porous chitosan-gelatin scaffold: a promising association for bone tissue engineering in oral reconstruction Arch. Oral Biol. 56 2011 1 15
-
(2011)
Arch. Oral Biol.
, vol.56
, pp. 1-15
-
-
Miranda, S.C.1
Silva, G.A.2
Hell, R.C.3
Martins, M.D.4
Alves, J.B.5
Goes, A.M.6
-
122
-
-
0011365189
-
Silk polymers: materials science and biotechnology
-
D. Kaplan Silk polymers: materials science and biotechnology Am. Chem. Soc. 1994
-
(1994)
Am. Chem. Soc.
-
-
Kaplan, D.1
-
125
-
-
84869500624
-
Development of ethyl alcohol-precipitated silk sericin/polyvinyl alcohol scaffolds for accelerated healing of full-thickness wounds
-
T. Siritienthong, J. Ratanavaraporn, and P. Aramwit Development of ethyl alcohol-precipitated silk sericin/polyvinyl alcohol scaffolds for accelerated healing of full-thickness wounds Int. J. Pharm. 439 2012 175 186
-
(2012)
Int. J. Pharm.
, vol.439
, pp. 175-186
-
-
Siritienthong, T.1
Ratanavaraporn, J.2
Aramwit, P.3
-
126
-
-
84924912532
-
2 +-induced self-assembly of Bombyx mori silk sericin into a nanofibrous network-like protein matrix for directing controlled nucleation of hydroxylapatite nano-needles
-
2 +-induced self-assembly of Bombyx mori silk sericin into a nanofibrous network-like protein matrix for directing controlled nucleation of hydroxylapatite nano-needles J. Mater. Chem. B 3 2015 2455 2462
-
(2015)
J. Mater. Chem. B
, vol.3
, pp. 2455-2462
-
-
Yang, M.1
Zhou, G.2
Shuai, Y.3
Wang, J.4
Zhu, L.5
Mao, C.6
-
127
-
-
84906810068
-
Tuning molecular weights of Bombyx mori (B. mori) silk sericin to modify its assembly structures and materials formation
-
M. Yang, Y. Shuai, G. Zhou, N. Mandal, L. Zhu, and C. Mao Tuning molecular weights of Bombyx mori (B. mori) silk sericin to modify its assembly structures and materials formation ACS Appl. Mater. Interfaces 6 2014 13782 13789
-
(2014)
ACS Appl. Mater. Interfaces
, vol.6
, pp. 13782-13789
-
-
Yang, M.1
Shuai, Y.2
Zhou, G.3
Mandal, N.4
Zhu, L.5
Mao, C.6
-
128
-
-
84898646492
-
Biomimetic nucleation of hydroxyapatite crystals mediated by Antheraea pernyi silk sericin promotes osteogenic differentiation of human bone marrow derived mesenchymal stem cells
-
M. Yang, Y. Shuai, C. Zhang, Y. Chen, L. Zhu, C. Mao, and H. OuYang Biomimetic nucleation of hydroxyapatite crystals mediated by Antheraea pernyi silk sericin promotes osteogenic differentiation of human bone marrow derived mesenchymal stem cells Biomacromolecules 15 2014 1185 1193
-
(2014)
Biomacromolecules
, vol.15
, pp. 1185-1193
-
-
Yang, M.1
Shuai, Y.2
Zhang, C.3
Chen, Y.4
Zhu, L.5
Mao, C.6
Ouyang, H.7
-
129
-
-
0033103740
-
Hydrophobic interaction of P25, containing Asn-linked oligosaccharide chains, with the HL complex of silk fibroin produced by Bombyx mori
-
K. Tanaka, S. Inoue, and S. Mizuno Hydrophobic interaction of P25, containing Asn-linked oligosaccharide chains, with the HL complex of silk fibroin produced by Bombyx mori Insect Biochem. Mol. Biol. 29 1999 269 276
-
(1999)
Insect Biochem. Mol. Biol.
, vol.29
, pp. 269-276
-
-
Tanaka, K.1
Inoue, S.2
Mizuno, S.3
-
130
-
-
0345118157
-
Mapping domain structures in silks from insects and spiders related to protein assembly
-
E. Bini, D.P. Knight, and D.L. Kaplan Mapping domain structures in silks from insects and spiders related to protein assembly J. Mol. Biol. 335 2004 27 40
-
(2004)
J. Mol. Biol.
, vol.335
, pp. 27-40
-
-
Bini, E.1
Knight, D.P.2
Kaplan, D.L.3
-
132
-
-
84888376504
-
Elucidating silk structure using solid-state NMR
-
T. Asakura, Y. Suzuki, Y. Nakazawa, G.P. Holland, and J.L. Yarger Elucidating silk structure using solid-state NMR Soft Matter 9 2013 11440 11450
-
(2013)
Soft Matter
, vol.9
, pp. 11440-11450
-
-
Asakura, T.1
Suzuki, Y.2
Nakazawa, Y.3
Holland, G.P.4
Yarger, J.L.5
-
133
-
-
0034023387
-
Conformational transitions in model silk peptides
-
D. Wilson, R. Valluzzi, and D. Kaplan Conformational transitions in model silk peptides Biophys. J. 78 2000 2690 2701
-
(2000)
Biophys. J.
, vol.78
, pp. 2690-2701
-
-
Wilson, D.1
Valluzzi, R.2
Kaplan, D.3
-
134
-
-
28544444427
-
Processing and modification of films made from recombinant spider silk proteins
-
D. Huemmerich, U. Slotta, and T. Scheibel Processing and modification of films made from recombinant spider silk proteins Appl. Phys. A 82 2006 219 222
-
(2006)
Appl. Phys. A
, vol.82
, pp. 219-222
-
-
Huemmerich, D.1
Slotta, U.2
Scheibel, T.3
-
136
-
-
0035988683
-
Silk matrix for tissue engineered anterior cruciate ligaments
-
G.H. Altman, R.L. Horan, H.H. Lu, J. Moreau, I. Martin, J.C. Richmond, and D.L. Kaplan Silk matrix for tissue engineered anterior cruciate ligaments Biomaterials 23 2002 4131 4141
-
(2002)
Biomaterials
, vol.23
, pp. 4131-4141
-
-
Altman, G.H.1
Horan, R.L.2
Lu, H.H.3
Moreau, J.4
Martin, I.5
Richmond, J.C.6
Kaplan, D.L.7
-
137
-
-
10044274310
-
Three-dimensional aqueous-derived biomaterial scaffolds from silk fibroin
-
U.-J. Kim, J. Park, H.J. Kim, M. Wada, and D.L. Kaplan Three-dimensional aqueous-derived biomaterial scaffolds from silk fibroin Biomaterials 26 2005 2775 2785
-
(2005)
Biomaterials
, vol.26
, pp. 2775-2785
-
-
Kim, U.-J.1
Park, J.2
Kim, H.J.3
Wada, M.4
Kaplan, D.L.5
-
138
-
-
2542588554
-
Porous 3-D scaffolds from regenerated silk fibroin
-
R. Nazarov, H.-J. Jin, and D.L. Kaplan Porous 3-D scaffolds from regenerated silk fibroin Biomacromolecules 5 2004 718 726
-
(2004)
Biomacromolecules
, vol.5
, pp. 718-726
-
-
Nazarov, R.1
Jin, H.-J.2
Kaplan, D.L.3
-
139
-
-
79952987084
-
Silk fibroin as a vehicle for drug delivery applications
-
E. Wenk, H.P. Merkle, and L. Meinel Silk fibroin as a vehicle for drug delivery applications J. Control. Release 150 2011 128 141
-
(2011)
J. Control. Release
, vol.150
, pp. 128-141
-
-
Wenk, E.1
Merkle, H.P.2
Meinel, L.3
-
140
-
-
0037290140
-
Silk-based biomaterials
-
G.H. Altman, F. Diaz, C. Jakuba, T. Calabro, R.L. Horan, J. Chen, H. Lu, J. Richmond, and D.L. Kaplan Silk-based biomaterials Biomaterials 24 2003 401 416
-
(2003)
Biomaterials
, vol.24
, pp. 401-416
-
-
Altman, G.H.1
Diaz, F.2
Jakuba, C.3
Calabro, T.4
Horan, R.L.5
Chen, J.6
Lu, H.7
Richmond, J.8
Kaplan, D.L.9
-
141
-
-
84896548969
-
Structural and functional changes of silk fibroin scaffold due to hydrolytic degradation
-
M. Farokhi, F. Mottaghitalab, J. Hadjati, R. Omidvar, M. Majidi, A. Amanzadeh, M. Azami, S.M. Tavangar, M.A. Shokrgozar, and J. Ai Structural and functional changes of silk fibroin scaffold due to hydrolytic degradation J. Appl. Polym. Sci. 131 2014
-
(2014)
J. Appl. Polym. Sci.
, vol.131
-
-
Farokhi, M.1
Mottaghitalab, F.2
Hadjati, J.3
Omidvar, R.4
Majidi, M.5
Amanzadeh, A.6
Azami, M.7
Tavangar, S.M.8
Shokrgozar, M.A.9
Ai, J.10
-
142
-
-
0024877440
-
A Devonian spinneret: early evidence of spiders and silk use
-
W.A. Shear, J.M. Palmer, J.A. Coddington, and P.M. Bonamo A Devonian spinneret: early evidence of spiders and silk use Science 246 1989 479 481
-
(1989)
Science
, vol.246
, pp. 479-481
-
-
Shear, W.A.1
Palmer, J.M.2
Coddington, J.A.3
Bonamo, P.M.4
-
143
-
-
84883312621
-
Preparation of porous scaffolds from silk fibroin extracted from the silk gland of Bombyx mori (B. mori)
-
M. Yang, Y. Shuai, W. He, S. Min, and L. Zhu Preparation of porous scaffolds from silk fibroin extracted from the silk gland of Bombyx mori (B. mori) Int. J. Mol. Sci. 13 2012 7762 7775
-
(2012)
Int. J. Mol. Sci.
, vol.13
, pp. 7762-7775
-
-
Yang, M.1
Shuai, Y.2
He, W.3
Min, S.4
Zhu, L.5
-
144
-
-
82955217788
-
Preparation of a silk fibroin spongy wound dressing and its therapeutic efficiency in skin defects
-
S. Min, X. Gao, C. Han, Y. Chen, M. Yang, L. Zhu, H. Zhang, L. Liu, and J. Yao Preparation of a silk fibroin spongy wound dressing and its therapeutic efficiency in skin defects J. Biomater. Sci. Polym. Ed. 23 2012 97 110
-
(2012)
J. Biomater. Sci. Polym. Ed.
, vol.23
, pp. 97-110
-
-
Min, S.1
Gao, X.2
Han, C.3
Chen, Y.4
Yang, M.5
Zhu, L.6
Zhang, H.7
Liu, L.8
Yao, J.9
-
145
-
-
58149103420
-
Development of silk-like materials based on Bombyx mori and Nephila clavipes dragline silk fibroins
-
M. Yang, J. Kawamura, Z. Zhu, K. Yamauchi, and T. Asakura Development of silk-like materials based on Bombyx mori and Nephila clavipes dragline silk fibroins Polymer 50 2009 117 124
-
(2009)
Polymer
, vol.50
, pp. 117-124
-
-
Yang, M.1
Kawamura, J.2
Zhu, Z.3
Yamauchi, K.4
Asakura, T.5
-
146
-
-
38849117672
-
Synthesis and characterization of silklike materials containing the calcium-binding sequence from calbindin D9k or the shell nacreous matrix protein MSI60
-
M. Yang, T. Muto, D. Knight, A.M. Collins, and T. Asakura Synthesis and characterization of silklike materials containing the calcium-binding sequence from calbindin D9k or the shell nacreous matrix protein MSI60 Biomacromolecules 9 2007 416 420
-
(2007)
Biomacromolecules
, vol.9
, pp. 416-420
-
-
Yang, M.1
Muto, T.2
Knight, D.3
Collins, A.M.4
Asakura, T.5
-
147
-
-
36849030330
-
Design of silk-like biomaterials inspired by mussel-adhesive protein
-
M. Yang, K. Yamauchi, M. Kurokawa, and T. Asakura Design of silk-like biomaterials inspired by mussel-adhesive protein Tissue Eng. 13 2007 2941 2947
-
(2007)
Tissue Eng.
, vol.13
, pp. 2941-2947
-
-
Yang, M.1
Yamauchi, K.2
Kurokawa, M.3
Asakura, T.4
-
149
-
-
26944459231
-
Silk implants for the healing of critical size bone defects
-
L. Meinel, R. Fajardo, S. Hofmann, R. Langer, J. Chen, B. Snyder, G. Vunjak-Novakovic, and D. Kaplan Silk implants for the healing of critical size bone defects Bone 37 2005 688 698
-
(2005)
Bone
, vol.37
, pp. 688-698
-
-
Meinel, L.1
Fajardo, R.2
Hofmann, S.3
Langer, R.4
Chen, J.5
Snyder, B.6
Vunjak-Novakovic, G.7
Kaplan, D.8
-
150
-
-
81355138635
-
Accelerated healing with the use of a silk fibroin membrane for the guided bone regeneration technique
-
J.-Y. Song, S.-G. Kim, J.-W. Lee, W.-S. Chae, H. Kweon, Y.-Y. Jo, K.-G. Lee, Y.-C. Lee, J.-Y. Choi, and J.-Y. Kim Accelerated healing with the use of a silk fibroin membrane for the guided bone regeneration technique Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod. 112 2011 e26 e33
-
(2011)
Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod.
, vol.112
, pp. e26-e33
-
-
Song, J.-Y.1
Kim, S.-G.2
Lee, J.-W.3
Chae, W.-S.4
Kweon, H.5
Jo, Y.-Y.6
Lee, K.-G.7
Lee, Y.-C.8
Choi, J.-Y.9
Kim, J.-Y.10
-
151
-
-
27544465971
-
Biological efficacy of silk fibroin nanofiber membranes for guided bone regeneration
-
K.-H. Kim, L. Jeong, H.-N. Park, S.-Y. Shin, W.-H. Park, S.-C. Lee, T.-I. Kim, Y.-J. Park, Y.-J. Seol, and Y.-M. Lee Biological efficacy of silk fibroin nanofiber membranes for guided bone regeneration J. Biotechnol. 120 2005 327 339
-
(2005)
J. Biotechnol.
, vol.120
, pp. 327-339
-
-
Kim, K.-H.1
Jeong, L.2
Park, H.-N.3
Shin, S.-Y.4
Park, W.-H.5
Lee, S.-C.6
Kim, T.-I.7
Park, Y.-J.8
Seol, Y.-J.9
Lee, Y.-M.10
-
152
-
-
84883001996
-
Biocompatibility and osteoconduction of macroporous silk fibroin implants in cortical defects in sheep
-
L. Uebersax, T. Apfel, K.M. Nuss, R. Vogt, H.Y. Kim, L. Meinel, D.L. Kaplan, J.A. Auer, H.P. Merkle, and B. von Rechenberg Biocompatibility and osteoconduction of macroporous silk fibroin implants in cortical defects in sheep Eur. J. Pharm. Biopharm. 85 2013 107 118
-
(2013)
Eur. J. Pharm. Biopharm.
, vol.85
, pp. 107-118
-
-
Uebersax, L.1
Apfel, T.2
Nuss, K.M.3
Vogt, R.4
Kim, H.Y.5
Meinel, L.6
Kaplan, D.L.7
Auer, J.A.8
Merkle, H.P.9
Von Rechenberg, B.10
-
153
-
-
84876321593
-
Bombyx mori silk fibroin scaffolds for bone regeneration studied by bone differentiation experiment
-
S. Miyamoto, R. Koyanagi, Y. Nakazawa, A. Nagano, Y. Abiko, M. Inada, C. Miyaura, and T. Asakura Bombyx mori silk fibroin scaffolds for bone regeneration studied by bone differentiation experiment J. Biosci. Bioeng. 115 2013 575 578
-
(2013)
J. Biosci. Bioeng.
, vol.115
, pp. 575-578
-
-
Miyamoto, S.1
Koyanagi, R.2
Nakazawa, Y.3
Nagano, A.4
Abiko, Y.5
Inada, M.6
Miyaura, C.7
Asakura, T.8
-
154
-
-
84905576334
-
Effect of plasma-irradiated silk fibroin in bone regeneration
-
R. Uchida, U.K. Bhawal, H. Kiba, K. Arai, Y. Tanimoto, N. Kuboyama, T. Asakura, and N. Nishiyama Effect of plasma-irradiated silk fibroin in bone regeneration J. Biosci. Bioeng. 118 2014 333 340
-
(2014)
J. Biosci. Bioeng.
, vol.118
, pp. 333-340
-
-
Uchida, R.1
Bhawal, U.K.2
Kiba, H.3
Arai, K.4
Tanimoto, Y.5
Kuboyama, N.6
Asakura, T.7
Nishiyama, N.8
-
155
-
-
68549132235
-
Osteoblast: osteoclast co-cultures on silk fibroin, chitosan and PLLA films
-
G.L. Jones, A. Motta, M.J. Marshall, A.J. El Haj, and S.H. Cartmell Osteoblast: osteoclast co-cultures on silk fibroin, chitosan and PLLA films Biomaterials 30 2009 5376 5384
-
(2009)
Biomaterials
, vol.30
, pp. 5376-5384
-
-
Jones, G.L.1
Motta, A.2
Marshall, M.J.3
El Haj, A.J.4
Cartmell, S.H.5
-
156
-
-
84880920195
-
Calcium phosphate ceramics in bone tissue engineering: a review of properties and their influence on cell behavior
-
S. Samavedi, A.R. Whittington, and A.S. Goldstein Calcium phosphate ceramics in bone tissue engineering: a review of properties and their influence on cell behavior Acta Biomater. 9 2013 8037 8045
-
(2013)
Acta Biomater.
, vol.9
, pp. 8037-8045
-
-
Samavedi, S.1
Whittington, A.R.2
Goldstein, A.S.3
-
157
-
-
78449284735
-
Biocompatibility evaluation of HDPE-UHMWPE reinforced β-TCP nanocomposites using highly purified human osteoblast cells
-
M. Shokrgozar, M. Farokhi, F. Rajaei, M. Bagheri, S. Azari, I. Ghasemi, F. Mottaghitalab, K. Azadmanesh, and J. Radfar Biocompatibility evaluation of HDPE-UHMWPE reinforced β-TCP nanocomposites using highly purified human osteoblast cells J. Biomed. Mater. Res. A 95 2010 1074 1083
-
(2010)
J. Biomed. Mater. Res. A
, vol.95
, pp. 1074-1083
-
-
Shokrgozar, M.1
Farokhi, M.2
Rajaei, F.3
Bagheri, M.4
Azari, S.5
Ghasemi, I.6
Mottaghitalab, F.7
Azadmanesh, K.8
Radfar, J.9
-
158
-
-
78349269106
-
Synthesis of nano β-TCP and the effects on the mechanical and biological properties of β-TCP/HDPE/UHMWPE nanocomposites
-
M. Abadi, I. Ghasemi, A. Khavandi, M. Shokrgozar, M. Farokhi, S.S. Homaeigohar, and A. Eslamifar Synthesis of nano β-TCP and the effects on the mechanical and biological properties of β-TCP/HDPE/UHMWPE nanocomposites Polym. Compos. 31 2010 1745 1753
-
(2010)
Polym. Compos.
, vol.31
, pp. 1745-1753
-
-
Abadi, M.1
Ghasemi, I.2
Khavandi, A.3
Shokrgozar, M.4
Farokhi, M.5
Homaeigohar, S.S.6
Eslamifar, A.7
-
159
-
-
84857368364
-
Porous crosslinked poly (ε-caprolactone fumarate)/nanohydroxyapatite composites for bone tissue engineering
-
M. Farokhi, S. Sharifi, Y. Shafieyan, Z. Bagher, F. Mottaghitalab, A. Hatampoor, M. Imani, and M. Shokrgozar Porous crosslinked poly (ε-caprolactone fumarate)/nanohydroxyapatite composites for bone tissue engineering J. Biomed. Mater. Res. A 100 2012 1051 1060
-
(2012)
J. Biomed. Mater. Res. A
, vol.100
, pp. 1051-1060
-
-
Farokhi, M.1
Sharifi, S.2
Shafieyan, Y.3
Bagher, Z.4
Mottaghitalab, F.5
Hatampoor, A.6
Imani, M.7
Shokrgozar, M.8
-
161
-
-
0034782891
-
Osteoinduction, osteoconduction and osseointegration
-
T. Albrektsson, and C. Johansson Osteoinduction, osteoconduction and osseointegration Eur. Spine J. 10 2001 S96 S101
-
(2001)
Eur. Spine J.
, vol.10
, pp. S96-S101
-
-
Albrektsson, T.1
Johansson, C.2
-
162
-
-
33644789527
-
Role of scaffold internal structure on in vivo bone formation in macroporous calcium phosphate bioceramics
-
M. Mastrogiacomo, S. Scaglione, R. Martinetti, L. Dolcini, F. Beltrame, R. Cancedda, and R. Quarto Role of scaffold internal structure on in vivo bone formation in macroporous calcium phosphate bioceramics Biomaterials 27 2006 3230 3237
-
(2006)
Biomaterials
, vol.27
, pp. 3230-3237
-
-
Mastrogiacomo, M.1
Scaglione, S.2
Martinetti, R.3
Dolcini, L.4
Beltrame, F.5
Cancedda, R.6
Quarto, R.7
-
163
-
-
84880959581
-
In vitro evaluation of biomimetic nanocomposite scaffold using endometrial stem cell derived osteoblast-like cells
-
M. Azami, J. Ai, S. Ebrahimi-Barough, M. Farokhi, and S.E. Fard In vitro evaluation of biomimetic nanocomposite scaffold using endometrial stem cell derived osteoblast-like cells Tissue Cell 45 2013 328 337
-
(2013)
Tissue Cell
, vol.45
, pp. 328-337
-
-
Azami, M.1
Ai, J.2
Ebrahimi-Barough, S.3
Farokhi, M.4
Fard, S.E.5
-
164
-
-
84919775713
-
Effect of magnesium substitution on structural and biological properties of synthetic hydroxyapatite powder
-
M. Mehrjoo, J. Javadpour, M.A. Shokrgozar, M. Farokhi, S. Javadian, and S. Bonakdar Effect of magnesium substitution on structural and biological properties of synthetic hydroxyapatite powder Mater. Express 5 2015 41 48
-
(2015)
Mater. Express
, vol.5
, pp. 41-48
-
-
Mehrjoo, M.1
Javadpour, J.2
Shokrgozar, M.A.3
Farokhi, M.4
Javadian, S.5
Bonakdar, S.6
-
165
-
-
84902084009
-
Silk as a biocohesive sacrificial binder in the fabrication of hydroxyapatite load bearing scaffolds
-
S.L. McNamara, J. Rnjak-Kovacina, D.F. Schmidt, T.J. Lo, and D.L. Kaplan Silk as a biocohesive sacrificial binder in the fabrication of hydroxyapatite load bearing scaffolds Biomaterials 35 2014 6941 6953
-
(2014)
Biomaterials
, vol.35
, pp. 6941-6953
-
-
McNamara, S.L.1
Rnjak-Kovacina, J.2
Schmidt, D.F.3
Lo, T.J.4
Kaplan, D.L.5
-
166
-
-
84909592246
-
Hydroxyapatite and silk combination-coated dental implants result in superior bone formation in the peri-implant area compared with hydroxyapatite and collagen combination-coated implants
-
H. Kweon, S.-W. Lee, B.-D. Hahn, Y.-C. Lee, and S.-G. Kim Hydroxyapatite and silk combination-coated dental implants result in superior bone formation in the peri-implant area compared with hydroxyapatite and collagen combination-coated implants J. Oral Maxillofac. Surg. 72 2014 1928 1936
-
(2014)
J. Oral Maxillofac. Surg.
, vol.72
, pp. 1928-1936
-
-
Kweon, H.1
Lee, S.-W.2
Hahn, B.-D.3
Lee, Y.-C.4
Kim, S.-G.5
-
167
-
-
84855968318
-
Effect of self-assembled nanofibrous silk/polycaprolactone layer on the osteoconductivity and mechanical properties of biphasic calcium phosphate scaffolds
-
S. Roohani-Esfahani, Z. Lu, J. Li, R. Ellis-Behnke, D. Kaplan, and H. Zreiqat Effect of self-assembled nanofibrous silk/polycaprolactone layer on the osteoconductivity and mechanical properties of biphasic calcium phosphate scaffolds Acta Biomater. 8 2012 302 312
-
(2012)
Acta Biomater.
, vol.8
, pp. 302-312
-
-
Roohani-Esfahani, S.1
Lu, Z.2
Li, J.3
Ellis-Behnke, R.4
Kaplan, D.5
Zreiqat, H.6
-
168
-
-
84905905940
-
Mechanical reinforcement of injectable calcium phosphate cement/silk fibroin (SF) composite by mineralized SF
-
C. Cao, H. Li, J. Li, C. Liu, H. Yang, and B. Li Mechanical reinforcement of injectable calcium phosphate cement/silk fibroin (SF) composite by mineralized SF Ceram. Int. 40 2014 13987 13993
-
(2014)
Ceram. Int.
, vol.40
, pp. 13987-13993
-
-
Cao, C.1
Li, H.2
Li, J.3
Liu, C.4
Yang, H.5
Li, B.6
-
169
-
-
84899695423
-
Mechanically-reinforced electrospun composite silk fibroin nanofibers containing hydroxyapatite nanoparticles
-
H. Kim, L. Che, Y. Ha, and W. Ryu Mechanically-reinforced electrospun composite silk fibroin nanofibers containing hydroxyapatite nanoparticles Mater. Sci. Eng. C 40 2014 324 335
-
(2014)
Mater. Sci. Eng. C
, vol.40
, pp. 324-335
-
-
Kim, H.1
Che, L.2
Ha, Y.3
Ryu, W.4
-
170
-
-
84885179425
-
Electrospun composites of PHBV, silk fibroin and nano-hydroxyapatite for bone tissue engineering
-
E.I. Paşcu, J. Stokes, and G.B. McGuinness Electrospun composites of PHBV, silk fibroin and nano-hydroxyapatite for bone tissue engineering Mater. Sci. Eng. C 33 2013 4905 4916
-
(2013)
Mater. Sci. Eng. C
, vol.33
, pp. 4905-4916
-
-
Paşcu, E.I.1
Stokes, J.2
McGuinness, G.B.3
-
171
-
-
84921472237
-
Nanoclay-reinforced electrospun chitosan/PVA nanocomposite nanofibers for biomedical applications
-
M. Koosha, H. Mirzadeh, M.A. Shokrgozar, and M. Farokhi Nanoclay-reinforced electrospun chitosan/PVA nanocomposite nanofibers for biomedical applications RSC Adv. 5 2015 10479 10487
-
(2015)
RSC Adv.
, vol.5
, pp. 10479-10487
-
-
Koosha, M.1
Mirzadeh, H.2
Shokrgozar, M.A.3
Farokhi, M.4
-
172
-
-
79959824065
-
Clay enriched silk biomaterials for bone formation
-
A.J. Mieszawska, J.G. Llamas, C.A. Vaiana, M.P. Kadakia, R.R. Naik, and D.L. Kaplan Clay enriched silk biomaterials for bone formation Acta Biomater. 7 2011 3036 3041
-
(2011)
Acta Biomater.
, vol.7
, pp. 3036-3041
-
-
Mieszawska, A.J.1
Llamas, J.G.2
Vaiana, C.A.3
Kadakia, M.P.4
Naik, R.R.5
Kaplan, D.L.6
-
173
-
-
84877835262
-
Fabrication and characterization of novel diopside/silk fibroin nanocomposite scaffolds for potential application in maxillofacial bone regeneration
-
L. Ghorbanian, R. Emadi, S.M. Razavi, H. Shin, and A. Teimouri Fabrication and characterization of novel diopside/silk fibroin nanocomposite scaffolds for potential application in maxillofacial bone regeneration Int. J. Biol. Macromol. 58 2013 275 280
-
(2013)
Int. J. Biol. Macromol.
, vol.58
, pp. 275-280
-
-
Ghorbanian, L.1
Emadi, R.2
Razavi, S.M.3
Shin, H.4
Teimouri, A.5
-
174
-
-
0034660201
-
Fine organization of Bombyx mori fibroin heavy chain gene
-
C.-Z. Zhou, F. Confalonieri, N. Medina, Y. Zivanovic, C. Esnault, T. Yang, M. Jacquet, J. Janin, M. Duguet, and R. Perasso Fine organization of Bombyx mori fibroin heavy chain gene Nucleic Acids Res. 28 2000 2413 2419
-
(2000)
Nucleic Acids Res.
, vol.28
, pp. 2413-2419
-
-
Zhou, C.-Z.1
Confalonieri, F.2
Medina, N.3
Zivanovic, Y.4
Esnault, C.5
Yang, T.6
Jacquet, M.7
Janin, J.8
Duguet, M.9
Perasso, R.10
-
175
-
-
79251648023
-
Regeneration of the femoral epicondyle on calcium-binding silk scaffolds developed using transgenic silk fibroin produced by transgenic silkworm
-
A. Nagano, Y. Tanioka, N. Sakurai, H. Sezutsu, N. Kuboyama, H. Kiba, Y. Tanimoto, N. Nishiyama, and T. Asakura Regeneration of the femoral epicondyle on calcium-binding silk scaffolds developed using transgenic silk fibroin produced by transgenic silkworm Acta Biomater. 7 2011 1192 1201
-
(2011)
Acta Biomater.
, vol.7
, pp. 1192-1201
-
-
Nagano, A.1
Tanioka, Y.2
Sakurai, N.3
Sezutsu, H.4
Kuboyama, N.5
Kiba, H.6
Tanimoto, Y.7
Nishiyama, N.8
Asakura, T.9
-
176
-
-
68049127790
-
Apatite-coated silk fibroin scaffolds to healing mandibular border defects in canines
-
J. Zhao, Z. Zhang, S. Wang, X. Sun, X. Zhang, J. Chen, D.L. Kaplan, and X. Jiang Apatite-coated silk fibroin scaffolds to healing mandibular border defects in canines Bone 45 2009 517 527
-
(2009)
Bone
, vol.45
, pp. 517-527
-
-
Zhao, J.1
Zhang, Z.2
Wang, S.3
Sun, X.4
Zhang, X.5
Chen, J.6
Kaplan, D.L.7
Jiang, X.8
-
177
-
-
43149114420
-
Bone tissue engineering with premineralized silk scaffolds
-
H.J. Kim, U.-J. Kim, H.S. Kim, C. Li, M. Wada, G.G. Leisk, and D.L. Kaplan Bone tissue engineering with premineralized silk scaffolds Bone 42 2008 1226 1234
-
(2008)
Bone
, vol.42
, pp. 1226-1234
-
-
Kim, H.J.1
Kim, U.-J.2
Kim, H.S.3
Li, C.4
Wada, M.5
Leisk, G.G.6
Kaplan, D.L.7
-
178
-
-
33847125639
-
The effect of genetically engineered spider silk-dentin matrix protein 1 chimeric protein on hydroxyapatite nucleation
-
J. Huang, C. Wong, A. George, and D.L. Kaplan The effect of genetically engineered spider silk-dentin matrix protein 1 chimeric protein on hydroxyapatite nucleation Biomaterials 28 2007 2358 2367
-
(2007)
Biomaterials
, vol.28
, pp. 2358-2367
-
-
Huang, J.1
Wong, C.2
George, A.3
Kaplan, D.L.4
-
179
-
-
4344636836
-
Silk fibroin regulated mineralization of hydroxyapatite nanocrystals
-
X. Kong, F. Cui, X. Wang, M. Zhang, and W. Zhang Silk fibroin regulated mineralization of hydroxyapatite nanocrystals J. Cryst. Growth 270 2004 197 202
-
(2004)
J. Cryst. Growth
, vol.270
, pp. 197-202
-
-
Kong, X.1
Cui, F.2
Wang, X.3
Zhang, M.4
Zhang, W.5
-
180
-
-
79952117283
-
Study of synthesis of nano-hydroxyapatite using a silk fibroin template
-
J. Wang, F. Yu, L. Qu, X. Meng, and G. Wen Study of synthesis of nano-hydroxyapatite using a silk fibroin template Biomed. Mater. 5 2010 041002
-
(2010)
Biomed. Mater.
, vol.5
, pp. 041002
-
-
Wang, J.1
Yu, F.2
Qu, L.3
Meng, X.4
Wen, G.5
-
181
-
-
84964310768
-
Silk fibroin nanoparticle as a novel drug delivery system
-
F. Mottaghitalab, M. Farokhi, M.A. Shokrgozar, F. Atyabi, and H. Hosseinkhani Silk fibroin nanoparticle as a novel drug delivery system J. Control. Release 206 2015 161 176
-
(2015)
J. Control. Release
, vol.206
, pp. 161-176
-
-
Mottaghitalab, F.1
Farokhi, M.2
Shokrgozar, M.A.3
Atyabi, F.4
Hosseinkhani, H.5
-
182
-
-
84906782250
-
Silk-based biomaterials for sustained drug delivery
-
T. Yucel, M.L. Lovett, and D.L. Kaplan Silk-based biomaterials for sustained drug delivery J. Control. Release 190 2014 381 397
-
(2014)
J. Control. Release
, vol.190
, pp. 381-397
-
-
Yucel, T.1
Lovett, M.L.2
Kaplan, D.L.3
-
185
-
-
77957372082
-
Silk fibroin microparticles as carriers for delivery of human recombinant bone morphogenetic protein-2: in vitro and in vivo bioactivity
-
P.C. Bessa, E.R. Balmayor, J. Hartinger, G. Zanoni, D. Dopler, A. Meinl, A. Banerjee, M. Casal, H. Redl, and R.L. Reis Silk fibroin microparticles as carriers for delivery of human recombinant bone morphogenetic protein-2: in vitro and in vivo bioactivity Tissue Eng. C Methods 16 2010 937 945
-
(2010)
Tissue Eng. C Methods
, vol.16
, pp. 937-945
-
-
Bessa, P.C.1
Balmayor, E.R.2
Hartinger, J.3
Zanoni, G.4
Dopler, D.5
Meinl, A.6
Banerjee, A.7
Casal, M.8
Redl, H.9
Reis, R.L.10
-
186
-
-
33751400488
-
Homogeneous osteogenesis and bone regeneration by demineralized bone matrix loading with collagen-targeting bone morphogenetic protein-2
-
B. Chen, H. Lin, J. Wang, Y. Zhao, B. Wang, W. Zhao, W. Sun, and J. Dai Homogeneous osteogenesis and bone regeneration by demineralized bone matrix loading with collagen-targeting bone morphogenetic protein-2 Biomaterials 28 2007 1027 1035
-
(2007)
Biomaterials
, vol.28
, pp. 1027-1035
-
-
Chen, B.1
Lin, H.2
Wang, J.3
Zhao, Y.4
Wang, B.5
Zhao, W.6
Sun, W.7
Dai, J.8
-
187
-
-
34347234496
-
BMP-silk composite matrices heal critically sized femoral defects
-
C. Kirker-Head, V. Karageorgiou, S. Hofmann, R. Fajardo, O. Betz, H. Merkle, M. Hilbe, B. Von Rechenberg, J. McCool, and L. Abrahamsen BMP-silk composite matrices heal critically sized femoral defects Bone 41 2007 247 255
-
(2007)
Bone
, vol.41
, pp. 247-255
-
-
Kirker-Head, C.1
Karageorgiou, V.2
Hofmann, S.3
Fajardo, R.4
Betz, O.5
Merkle, H.6
Hilbe, M.7
Von Rechenberg, B.8
McCool, J.9
Abrahamsen, L.10
-
188
-
-
32644479707
-
Electrospun silk-BMP-2 scaffolds for bone tissue engineering
-
C. Li, C. Vepari, H.-J. Jin, H.J. Kim, and D.L. Kaplan Electrospun silk-BMP-2 scaffolds for bone tissue engineering Biomaterials 27 2006 3115 3124
-
(2006)
Biomaterials
, vol.27
, pp. 3115-3124
-
-
Li, C.1
Vepari, C.2
Jin, H.-J.3
Kim, H.J.4
Kaplan, D.L.5
-
189
-
-
84861700017
-
A silk hydrogel-based delivery system of bone morphogenetic protein for the treatment of large bone defects
-
T. Diab, E.M. Pritchard, B.A. Uhrig, J.D. Boerckel, D.L. Kaplan, and R.E. Guldberg A silk hydrogel-based delivery system of bone morphogenetic protein for the treatment of large bone defects J. Mech. Behav. Biomed. Mater. 11 2012 123 131
-
(2012)
J. Mech. Behav. Biomed. Mater.
, vol.11
, pp. 123-131
-
-
Diab, T.1
Pritchard, E.M.2
Uhrig, B.A.3
Boerckel, J.D.4
Kaplan, D.L.5
Guldberg, R.E.6
-
190
-
-
84890457779
-
Bio-hybrid silk fibroin/calcium phosphate/PLGA nanocomposite scaffold to control the delivery of vascular endothelial growth factor
-
M. Farokhi, F. Mottaghitalab, M.A. Shokrgozar, J. Ai, J. Hadjati, and M. Azami Bio-hybrid silk fibroin/calcium phosphate/PLGA nanocomposite scaffold to control the delivery of vascular endothelial growth factor Mater. Sci. Eng. C 35 2014 401 410
-
(2014)
Mater. Sci. Eng. C
, vol.35
, pp. 401-410
-
-
Farokhi, M.1
Mottaghitalab, F.2
Shokrgozar, M.A.3
Ai, J.4
Hadjati, J.5
Azami, M.6
-
193
-
-
84884136280
-
Sustained release of platelet-derived growth factor and vascular endothelial growth factor from silk/calcium phosphate/PLGA based nanocomposite scaffold
-
M. Farokhi, F. Mottaghitalab, J. Ai, and M.A. Shokrgozar Sustained release of platelet-derived growth factor and vascular endothelial growth factor from silk/calcium phosphate/PLGA based nanocomposite scaffold Int. J. Pharm. 454 2013 216 225
-
(2013)
Int. J. Pharm.
, vol.454
, pp. 216-225
-
-
Farokhi, M.1
Mottaghitalab, F.2
Ai, J.3
Shokrgozar, M.A.4
-
194
-
-
67749114142
-
Mandibular repair in rats with premineralized silk scaffolds and BMP-2-modified bMSCs
-
X. Jiang, J. Zhao, S. Wang, X. Sun, X. Zhang, J. Chen, D.L. Kaplan, and Z. Zhang Mandibular repair in rats with premineralized silk scaffolds and BMP-2-modified bMSCs Biomaterials 30 2009 4522 4532
-
(2009)
Biomaterials
, vol.30
, pp. 4522-4532
-
-
Jiang, X.1
Zhao, J.2
Wang, S.3
Sun, X.4
Zhang, X.5
Chen, J.6
Kaplan, D.L.7
Zhang, Z.8
-
195
-
-
84865631850
-
Synthesis and inflammatory response of a novel silk fibroin scaffold containing BMP7 adenovirus for bone regeneration
-
Y. Zhang, C. Wu, T. Luo, S. Li, X. Cheng, and R.J. Miron Synthesis and inflammatory response of a novel silk fibroin scaffold containing BMP7 adenovirus for bone regeneration Bone 51 2012 704 713
-
(2012)
Bone
, vol.51
, pp. 704-713
-
-
Zhang, Y.1
Wu, C.2
Luo, T.3
Li, S.4
Cheng, X.5
Miron, R.J.6
-
196
-
-
84897991395
-
Electrophoretic deposition of tetracycline modified silk fibroin coatings for functionalization of titanium surfaces
-
Z. Zhang, Y. Qu, X. Li, S. Zhang, Q. Wei, Y. Shi, and L. Chen Electrophoretic deposition of tetracycline modified silk fibroin coatings for functionalization of titanium surfaces Appl. Surf. Sci. 303 2014 255 262
-
(2014)
Appl. Surf. Sci.
, vol.303
, pp. 255-262
-
-
Zhang, Z.1
Qu, Y.2
Li, X.3
Zhang, S.4
Wei, Q.5
Shi, Y.6
Chen, L.7
-
197
-
-
84912073763
-
The effects of tetracycline-loaded silk fibroin membrane on proliferation and osteogenic potential of mesenchymal stem cells
-
S.-H. Jin, H. Kweon, J.-B. Park, and C.-H. Kim The effects of tetracycline-loaded silk fibroin membrane on proliferation and osteogenic potential of mesenchymal stem cells J. Surg. Res. 192 2014 e1 e9
-
(2014)
J. Surg. Res.
, vol.192
, pp. e1-e9
-
-
Jin, S.-H.1
Kweon, H.2
Park, J.-B.3
Kim, C.-H.4
-
198
-
-
84879418286
-
Nanomaterial scaffolds for stem cell proliferation and differentiation in tissue engineering
-
C. Zhao, A. Tan, G. Pastorin, and H.K. Ho Nanomaterial scaffolds for stem cell proliferation and differentiation in tissue engineering Biotechnol. Adv. 31 2013 654 668
-
(2013)
Biotechnol. Adv.
, vol.31
, pp. 654-668
-
-
Zhao, C.1
Tan, A.2
Pastorin, G.3
Ho, H.K.4
-
200
-
-
33748777399
-
Stem cells and adipose tissue engineering
-
C.T. Gomillion, and K.J. Burg Stem cells and adipose tissue engineering Biomaterials 27 2006 6052 6063
-
(2006)
Biomaterials
, vol.27
, pp. 6052-6063
-
-
Gomillion, C.T.1
Burg, K.J.2
-
201
-
-
84879422279
-
Enabling stem cell therapies for tissue repair: current and future challenges
-
V.W. Wong, M. Sorkin, and G.C. Gurtner Enabling stem cell therapies for tissue repair: current and future challenges Biotechnol. Adv. 31 2013 744 751
-
(2013)
Biotechnol. Adv.
, vol.31
, pp. 744-751
-
-
Wong, V.W.1
Sorkin, M.2
Gurtner, G.C.3
-
202
-
-
77956188263
-
Osteogenesis of human stem cells in silk biomaterial for regenerative therapy
-
B. Kundu, and S.C. Kundu Osteogenesis of human stem cells in silk biomaterial for regenerative therapy Prog. Polym. Sci. 35 2010 1116 1127
-
(2010)
Prog. Polym. Sci.
, vol.35
, pp. 1116-1127
-
-
Kundu, B.1
Kundu, S.C.2
-
203
-
-
70350302335
-
A comparison of Thai silk fibroin-based and chitosan-based materials on in vitro biocompatibility for bone substitutes
-
N. Vachiraroj, J. Ratanavaraporn, S. Damrongsakkul, R. Pichyangkura, T. Banaprasert, and S. Kanokpanont A comparison of Thai silk fibroin-based and chitosan-based materials on in vitro biocompatibility for bone substitutes Int. J. Biol. Macromol. 45 2009 470 477
-
(2009)
Int. J. Biol. Macromol.
, vol.45
, pp. 470-477
-
-
Vachiraroj, N.1
Ratanavaraporn, J.2
Damrongsakkul, S.3
Pichyangkura, R.4
Banaprasert, T.5
Kanokpanont, S.6
-
204
-
-
33748973572
-
Bone and cartilage tissue constructs grown using human bone marrow stromal cells, silk scaffolds and rotating bioreactors
-
D. Marolt, A. Augst, L.E. Freed, C. Vepari, R. Fajardo, N. Patel, M. Gray, M. Farley, D. Kaplan, and G. Vunjak-Novakovic Bone and cartilage tissue constructs grown using human bone marrow stromal cells, silk scaffolds and rotating bioreactors Biomaterials 27 2006 6138 6149
-
(2006)
Biomaterials
, vol.27
, pp. 6138-6149
-
-
Marolt, D.1
Augst, A.2
Freed, L.E.3
Vepari, C.4
Fajardo, R.5
Patel, N.6
Gray, M.7
Farley, M.8
Kaplan, D.9
Vunjak-Novakovic, G.10
-
205
-
-
34547432454
-
Control of in vitro tissue-engineered bone-like structures using human mesenchymal stem cells and porous silk scaffolds
-
S. Hofmann, H. Hagenmüller, A.M. Koch, R. Müller, G. Vunjak-Novakovic, D.L. Kaplan, H.P. Merkle, and L. Meinel Control of in vitro tissue-engineered bone-like structures using human mesenchymal stem cells and porous silk scaffolds Biomaterials 28 2007 1152 1162
-
(2007)
Biomaterials
, vol.28
, pp. 1152-1162
-
-
Hofmann, S.1
Hagenmüller, H.2
Koch, A.M.3
Müller, R.4
Vunjak-Novakovic, G.5
Kaplan, D.L.6
Merkle, H.P.7
Meinel, L.8
-
206
-
-
79956140280
-
Critical-size calvarial bone defects healing in a mouse model with silk scaffolds and SATB2-modified iPSCs
-
J.-H. Ye, Y.-J. Xu, J. Gao, S.-G. Yan, J. Zhao, Q. Tu, J. Zhang, X.-J. Duan, C.A. Sommer, and G. Mostoslavsky Critical-size calvarial bone defects healing in a mouse model with silk scaffolds and SATB2-modified iPSCs Biomaterials 32 2011 5065 5076
-
(2011)
Biomaterials
, vol.32
, pp. 5065-5076
-
-
Ye, J.-H.1
Xu, Y.-J.2
Gao, J.3
Yan, S.-G.4
Zhao, J.5
Tu, Q.6
Zhang, J.7
Duan, X.-J.8
Sommer, C.A.9
Mostoslavsky, G.10
-
207
-
-
68949090044
-
Non-mulberry silk gland fibroin protein 3-D scaffold for enhanced differentiation of human mesenchymal stem cells into osteocytes
-
B.B. Mandal, and S. Kundu Non-mulberry silk gland fibroin protein 3-D scaffold for enhanced differentiation of human mesenchymal stem cells into osteocytes Acta Biomater. 5 2009 2579 2590
-
(2009)
Acta Biomater.
, vol.5
, pp. 2579-2590
-
-
Mandal, B.B.1
Kundu, S.2
-
208
-
-
79951579260
-
Nucleation and growth of mineralized bone matrix on silk-hydroxyapatite composite scaffolds
-
S. Bhumiratana, W.L. Grayson, A. Castaneda, D.N. Rockwood, E.S. Gil, D.L. Kaplan, and G. Vunjak-Novakovic Nucleation and growth of mineralized bone matrix on silk-hydroxyapatite composite scaffolds Biomaterials 32 2011 2812 2820
-
(2011)
Biomaterials
, vol.32
, pp. 2812-2820
-
-
Bhumiratana, S.1
Grayson, W.L.2
Castaneda, A.3
Rockwood, D.N.4
Gil, E.S.5
Kaplan, D.L.6
Vunjak-Novakovic, G.7
-
209
-
-
77957299682
-
Osteoinductive silk-silica composite biomaterials for bone regeneration
-
A.J. Mieszawska, N. Fourligas, I. Georgakoudi, N.M. Ouhib, D.J. Belton, C.C. Perry, and D.L. Kaplan Osteoinductive silk-silica composite biomaterials for bone regeneration Biomaterials 31 2010 8902 8910
-
(2010)
Biomaterials
, vol.31
, pp. 8902-8910
-
-
Mieszawska, A.J.1
Fourligas, N.2
Georgakoudi, I.3
Ouhib, N.M.4
Belton, D.J.5
Perry, C.C.6
Kaplan, D.L.7
-
210
-
-
84927173854
-
Transplantation of human placenta-derived mesenchymal stem cells in a silk fibroin/hydroxyapatite scaffold improves bone repair in rabbits
-
J. Jin, J. Wang, J. Huang, F. Huang, J. Fu, X. Yang, and Z. Miao Transplantation of human placenta-derived mesenchymal stem cells in a silk fibroin/hydroxyapatite scaffold improves bone repair in rabbits J. Biosci. Bioeng. 118 2014 593 598
-
(2014)
J. Biosci. Bioeng.
, vol.118
, pp. 593-598
-
-
Jin, J.1
Wang, J.2
Huang, J.3
Huang, F.4
Fu, J.5
Yang, X.6
Miao, Z.7
-
211
-
-
77953649638
-
Relationships between degradability of silk scaffolds and osteogenesis
-
S.-H. Park, E.S. Gil, H. Shi, H.J. Kim, K. Lee, and D.L. Kaplan Relationships between degradability of silk scaffolds and osteogenesis Biomaterials 31 2010 6162 6172
-
(2010)
Biomaterials
, vol.31
, pp. 6162-6172
-
-
Park, S.-H.1
Gil, E.S.2
Shi, H.3
Kim, H.J.4
Lee, K.5
Kaplan, D.L.6
-
212
-
-
67849092255
-
Osteogenic and adipogenic differentiation of rat bone marrow cells on non-mulberry and mulberry silk gland fibroin 3D scaffolds
-
B.B. Mandal, and S.C. Kundu Osteogenic and adipogenic differentiation of rat bone marrow cells on non-mulberry and mulberry silk gland fibroin 3D scaffolds Biomaterials 30 2009 5019 5030
-
(2009)
Biomaterials
, vol.30
, pp. 5019-5030
-
-
Mandal, B.B.1
Kundu, S.C.2
-
213
-
-
75149160418
-
The osteogenic properties of CaP/silk composite scaffolds
-
Y. Zhang, C. Wu, T. Friis, and Y. Xiao The osteogenic properties of CaP/silk composite scaffolds Biomaterials 31 2010 2848 2856
-
(2010)
Biomaterials
, vol.31
, pp. 2848-2856
-
-
Zhang, Y.1
Wu, C.2
Friis, T.3
Xiao, Y.4
-
214
-
-
84861622526
-
Development of silk-based scaffolds for tissue engineering of bone from human adipose-derived stem cells
-
C. Correia, S. Bhumiratana, L.-P. Yan, A.L. Oliveira, J.M. Gimble, D. Rockwood, D.L. Kaplan, R.A. Sousa, R.L. Reis, and G. Vunjak-Novakovic Development of silk-based scaffolds for tissue engineering of bone from human adipose-derived stem cells Acta Biomater. 8 2012 2483 2492
-
(2012)
Acta Biomater.
, vol.8
, pp. 2483-2492
-
-
Correia, C.1
Bhumiratana, S.2
Yan, L.-P.3
Oliveira, A.L.4
Gimble, J.M.5
Rockwood, D.6
Kaplan, D.L.7
Sousa, R.A.8
Reis, R.L.9
Vunjak-Novakovic, G.10
-
215
-
-
84901400678
-
Composite chitosan/silk fibroin nanofibers for modulation of osteogenic differentiation and proliferation of human mesenchymal stem cells
-
G.-J. Lai, K. Shalumon, S.-H. Chen, and J.-P. Chen Composite chitosan/silk fibroin nanofibers for modulation of osteogenic differentiation and proliferation of human mesenchymal stem cells Carbohydr. Polym. 111 2014 288 297
-
(2014)
Carbohydr. Polym.
, vol.111
, pp. 288-297
-
-
Lai, G.-J.1
Shalumon, K.2
Chen, S.-H.3
Chen, J.-P.4
|