-
1
-
-
0027595948
-
Tissue engineering
-
R. Langer, and J.P. Vacanti Tissue engineering Science 260 5110 1993 920 926 (Pubitemid 23209960)
-
(1993)
Science
, vol.260
, Issue.5110
, pp. 920-926
-
-
Langer, R.1
Vacanti, J.P.2
-
2
-
-
0034672872
-
Scaffolds in tissue engineering bone and cartilage
-
D.W. Hutmacher Scaffolds in tissue engineering bone and cartilage Biomaterials 21 24 2000 2529 2543
-
(2000)
Biomaterials
, vol.21
, Issue.24
, pp. 2529-2543
-
-
Hutmacher, D.W.1
-
3
-
-
1942516513
-
Scaffolds for tissue fabrication
-
P.X. Ma Scaffolds for tissue fabrication Mater Today 7 5 2004 30 40
-
(2004)
Mater Today
, vol.7
, Issue.5
, pp. 30-40
-
-
Ma, P.X.1
-
4
-
-
78649270937
-
Genipin-cross-linked collagen/chitosan biomimetic scaffolds for articular cartilage tissue engineering applications
-
L. Yan, Y. Wang, L. Ren, G. Wu, S.G. Caridade, and J. Fan Genipin-cross-linked collagen/chitosan biomimetic scaffolds for articular cartilage tissue engineering applications J Biomed Mater Res A 95A 2 2010 465 475
-
(2010)
J Biomed Mater Res A
, vol.95 A
, Issue.2
, pp. 465-475
-
-
Yan, L.1
Wang, Y.2
Ren, L.3
Wu, G.4
Caridade, S.G.5
Fan, J.6
-
5
-
-
77649158306
-
Polymeric materials for bone and cartilage repair
-
D. Puppi, F. Chiellini, A.M. Piras, and E. Chiellini Polymeric materials for bone and cartilage repair Prog Polym Sci 35 4 2010 403 440
-
(2010)
Prog Polym Sci
, vol.35
, Issue.4
, pp. 403-440
-
-
Puppi, D.1
Chiellini, F.2
Piras, A.M.3
Chiellini, E.4
-
6
-
-
34248401214
-
Calcium-phosphate derived from mineralized algae for bone tissue engineering applications
-
DOI 10.1016/j.matlet.2006.11.099, PII S0167577X06014182
-
J.M. Oliveira, J.M.R. Grech, I.B. Leonor, J.F. Mano, and R.L. Reis Calcium-phosphate derived from mineralized algae for bone tissue engineering applications Mater Lett 61 16 2007 3495 3499 (Pubitemid 46738599)
-
(2007)
Materials Letters
, vol.61
, Issue.16
, pp. 3495-3499
-
-
Oliveira, J.M.1
Grech, J.M.R.2
Leonor, I.B.3
Mano, J.F.4
Reis, R.L.5
-
7
-
-
77956183767
-
Dendrimers and derivatives as a potential therapeutic tool in regenerative medicine strategies - A review
-
J.M. Oliveira, A.J. Salgado, N. Sousa, J.F. Mano, and R.L. Reis Dendrimers and derivatives as a potential therapeutic tool in regenerative medicine strategies - a review Prog Polym Sci 35 9 2010 1163 1194
-
(2010)
Prog Polym Sci
, vol.35
, Issue.9
, pp. 1163-1194
-
-
Oliveira, J.M.1
Salgado, A.J.2
Sousa, N.3
Mano, J.F.4
Reis, R.L.5
-
8
-
-
29844458890
-
Hydroxyapatite reinforced chitosan and polyester blends for biomedical applications
-
DOI 10.1002/mame.200500163
-
V.M. Correlo, L.F. Boesel, M. Bhattacharya, J.F. Mano, N.M. Neves, and R.L. Reis Hydroxyapatite reinforced chitosan and polyester blends for biomedical applications Macromol Mater Eng 290 12 2005 1157 1165 (Pubitemid 43036219)
-
(2005)
Macromolecular Materials and Engineering
, vol.290
, Issue.12
, pp. 1157-1165
-
-
Correlo, V.M.1
Boesel, L.F.2
Bhattacharya, M.3
Mano, J.F.4
Neves, N.M.5
Reis, R.L.6
-
9
-
-
0037411474
-
Sodium silicate gel as a precursor for the in vitro nucleation and growth of a bone-like apatite coating in compact and porous polymeric structures
-
DOI 10.1016/S0142-9612(03)00060-7
-
A.L. Oliveira, P.B. Malafaya, and R.L. Reis Sodium silicate gel as a precursor for the in vitro nucleation and growth of a bone-like apatite coating in compact and porous polymeric structures Biomaterials 24 15 2003 2575 2584 (Pubitemid 36506480)
-
(2003)
Biomaterials
, vol.24
, Issue.15
, pp. 2575-2584
-
-
Oliveira, A.L.1
Malafaya, P.B.2
Reis, R.L.3
-
10
-
-
33748929635
-
Novel hydroxyapatite/chitosan bilayered scaffold for osteochondral tissue-engineering applications: Scaffold design and its performance when seeded with goat bone marrow stromal cells
-
DOI 10.1016/j.biomaterials.2006.07.034, PII S0142961206006594, Biomaterials and Stem Cells
-
J.M. Oliveira, M.T. Rodrigues, S.S. Silva, P.B. Malafaya, M.E. Gomes, and C.A. Viegas Novel hydroxyapatite/chitosan bilayered scaffold for osteochondral tissue-engineering applications: scaffold design and its performance when seeded with goat bone marrow stromal cells Biomaterials 27 36 2006 6123 6137 (Pubitemid 44429972)
-
(2006)
Biomaterials
, vol.27
, Issue.36
, pp. 6123-6137
-
-
Oliveira, J.M.1
Rodrigues, M.T.2
Silva, S.S.3
Malafaya, P.B.4
Gomes, M.E.5
Viegas, C.A.6
Dias, I.R.7
Azevedo, J.T.8
Mano, J.F.9
Reis, R.L.10
-
11
-
-
0037290140
-
Silk-based biomaterials
-
DOI 10.1016/S0142-9612(02)00353-8, PII S0142961202003538
-
G.H. Altman, F. Diaz, C. Jakuba, T. Calabro, R.L. Horan, and J. Chen Silk-based biomaterials Biomaterials 24 3 2003 401 416 (Pubitemid 35291198)
-
(2003)
Biomaterials
, vol.24
, Issue.3
, 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
-
12
-
-
34547602612
-
Silk as a biomaterial
-
DOI 10.1016/j.progpolymsci.2007.05.013, PII S0079670007000731, Polymers in Biomedical Applications
-
C. Vepari, and D.L. Kaplan Silk as a biomaterial Prog Polym Sci 32 8-9 2007 991 1007 (Pubitemid 47198292)
-
(2007)
Progress in Polymer Science (Oxford)
, vol.32
, Issue.8-9
, pp. 991-1007
-
-
Vepari, C.1
Kaplan, D.L.2
-
13
-
-
70049107766
-
Biomedical applications of chemically-modified silk fibroin
-
A.R. Murphy, and D.L. Kaplan Biomedical applications of chemically-modified silk fibroin J Mater Chem 19 36 2009 6443 6450
-
(2009)
J Mater Chem
, vol.19
, Issue.36
, pp. 6443-6450
-
-
Murphy, A.R.1
Kaplan, D.L.2
-
14
-
-
10044274310
-
Three-dimensional aqueous-derived biomaterial scaffolds from silk fibroin
-
DOI 10.1016/j.biomaterials.2004.07.044, PII S0142961204006982
-
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 15 2005 2775 2785 (Pubitemid 39600730)
-
(2005)
Biomaterials
, vol.26
, Issue.15
, pp. 2775-2785
-
-
Kim, U.-J.1
Park, J.2
Joo Kim, H.3
Wada, M.4
Kaplan, D.L.5
-
15
-
-
2542519952
-
Structure and properties of silk hydrogels
-
DOI 10.1021/bm0345460
-
U. Kim, J. Park, C. Li, H. Jin, R. Valluzzi, and D.L. Kaplan Structure and properties of silk hydrogels Biomacromolecules 5 3 2004 786 792 (Pubitemid 38702247)
-
(2004)
Biomacromolecules
, vol.5
, Issue.3
, pp. 786-792
-
-
Kim, U.-J.1
Park, J.2
Li, C.3
Jin, H.-J.4
Valluzzi, R.5
Kaplan, D.L.6
-
16
-
-
0035199543
-
Functionalized silk-based biomaterials for bone formation
-
S. Sofia, M.B. McCarthy, G. Gronowicz, and D.L. Kaplan Functionalized silk-based biomaterials for bone formation J Biomed Mater Res 54 1 2001 139 148
-
(2001)
J Biomed Mater Res
, vol.54
, Issue.1
, pp. 139-148
-
-
Sofia, S.1
McCarthy, M.B.2
Gronowicz, G.3
Kaplan, D.L.4
-
17
-
-
33748975682
-
Stem cell-based tissue engineering with silk biomaterials
-
DOI 10.1016/j.biomaterials.2006.07.008, PII S0142961206006016, Biomaterials and Stem Cells
-
Y.Z. Wang, H.J. Kim, G. Vunjak-Novakovic, and D.L. Kaplan Stem cell-based tissue engineering with silk biomaterials Biomaterials 27 36 2006 6064 6082 (Pubitemid 44437574)
-
(2006)
Biomaterials
, vol.27
, Issue.36
, pp. 6064-6082
-
-
Wang, Y.1
Kim, H.-J.2
Vunjak-Novakovic, G.3
Kaplan, D.L.4
-
18
-
-
72149093216
-
Silk nanospheres and microspheres from silk/PVA blend films for drug delivery
-
X. Wang, T. Yucel, Q. Lu, X. Hu, and D.L. Kaplan Silk nanospheres and microspheres from silk/PVA blend films for drug delivery Biomaterials 31 6 2010 1025 1035
-
(2010)
Biomaterials
, vol.31
, Issue.6
, pp. 1025-1035
-
-
Wang, X.1
Yucel, T.2
Lu, Q.3
Hu, X.4
Kaplan, D.L.5
-
19
-
-
2542588554
-
Porous 3-D scaffolds from regenerated silk fibroin
-
DOI 10.1021/bm034327e
-
R. Nazarov, H. Jin, and D.L. Kaplan Porous 3-D scaffolds from regenerated silk fibroin Biomacromolecules 5 3 2004 718 726 (Pubitemid 38702237)
-
(2004)
Biomacromolecules
, vol.5
, Issue.3
, pp. 718-726
-
-
Nazarov, R.1
Jin, H.-J.2
Kaplan, D.L.3
-
20
-
-
77956792999
-
Fine-tuning scaffolds for tissue regeneration: Effects of formic acid processing on tissue reaction to silk fibroin
-
S. Ghanaati, C. Orth, R.E. Unger, M. Barbeck, M.J. Webber, and A. Motta Fine-tuning scaffolds for tissue regeneration: effects of formic acid processing on tissue reaction to silk fibroin J Tissue Eng Regen M 4 6 2010 464 472
-
(2010)
J Tissue Eng Regen M
, vol.4
, Issue.6
, pp. 464-472
-
-
Ghanaati, S.1
Orth, C.2
Unger, R.E.3
Barbeck, M.4
Webber, M.J.5
Motta, A.6
-
21
-
-
84855934009
-
Designing silk-based 3D architectures with controlled lamellar morphology
-
A.L. Oliveira, L. Sun, H.J. Kim, X. Hu, W. Rice, and J. Kluge Designing silk-based 3D architectures with controlled lamellar morphology Tissue Eng PT A 14 5 2008 718 719
-
(2008)
Tissue Eng PT A
, vol.14
, Issue.5
, pp. 718-719
-
-
Oliveira, A.L.1
Sun, L.2
Kim, H.J.3
Hu, X.4
Rice, W.5
Kluge, J.6
-
22
-
-
33746237655
-
Outgrowth endothelial cells isolated and expanded from human peripheral blood progenitor cells as a potential source of autologous cells for endothelialization of silk fibroin biomaterials
-
DOI 10.1016/j.biomaterials.2006.06.015, PII S0142961206005722
-
S. Fuchs, A. Motta, C. Migliaresi, and C.J. Kirkpatrick Outgrowth endothelial cells isolated and expanded from human peripheral blood progenitor cells as a potential source of autologous cells for endothelialization of silk fibroin biomaterials Biomaterials 27 31 2006 5399 5408 (Pubitemid 44093717)
-
(2006)
Biomaterials
, vol.27
, Issue.31
, pp. 5399-5408
-
-
Fuchs, S.1
Motta, A.2
Migliaresi, C.3
Kirkpatrick, C.J.4
-
23
-
-
26944459231
-
Silk implants for the healing of critical size bone defects
-
DOI 10.1016/j.bone.2005.06.010, PII S8756328205002590
-
L. Meinel, R. Fajardo, S. Hofmann, R. Langer, J. Chen, and B. Snyder Silk implants for the healing of critical size bone defects Bone 37 5 2005 688 698 (Pubitemid 41476392)
-
(2005)
Bone
, vol.37
, Issue.5
, 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
-
24
-
-
2942588974
-
Bone tissue engineering using human mesenchymal stem cells: Effects of scaffold material and medium flow
-
L. Meinel, V. Karageorgiou, R. Fajardo, B. Snyder, V. Shinde-Patil, and L. Zichner Bone tissue engineering using human mesenchymal stem cells: effects of scaffold material and medium flow Ann Biomed Eng 32 1 2004 112 122
-
(2004)
Ann Biomed Eng
, vol.32
, Issue.1
, pp. 112-122
-
-
Meinel, L.1
Karageorgiou, V.2
Fajardo, R.3
Snyder, B.4
Shinde-Patil, V.5
Zichner, L.6
-
25
-
-
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 9 2010 1116 1127
-
(2010)
Prog Polym Sci
, vol.35
, Issue.9
, pp. 1116-1127
-
-
Kundu, B.1
Kundu, S.C.2
-
26
-
-
62149106670
-
Cell proliferation and migration in silk fibroin 3D scaffolds
-
B.B. Mandal, and S.C. Kundu Cell proliferation and migration in silk fibroin 3D scaffolds Biomaterials 30 15 2009 2956 2965
-
(2009)
Biomaterials
, vol.30
, Issue.15
, pp. 2956-2965
-
-
Mandal, B.B.1
Kundu, S.C.2
-
27
-
-
47949108730
-
Direct-write assembly of microperiodic silk fibroin scaffolds for tissue engineering applications
-
S. Ghosh, S.T. Parker, X. Wang, D.L. Kaplan, and J.A. Lewis Direct-write assembly of microperiodic silk fibroin scaffolds for tissue engineering applications Adv Funct Mater 18 13 2008 1883 1889
-
(2008)
Adv Funct Mater
, vol.18
, Issue.13
, pp. 1883-1889
-
-
Ghosh, S.1
Parker, S.T.2
Wang, X.3
Kaplan, D.L.4
Lewis, J.A.5
-
28
-
-
67649399557
-
Comparative study of silk fibroin porous scaffolds derived from salt/water and sucrose/hexafluoroisopropanol in cartilage formation
-
K. Makaya, S. Terada, K. Ohgo, and T. Asakura Comparative study of silk fibroin porous scaffolds derived from salt/water and sucrose/ hexafluoroisopropanol in cartilage formation J Biosci Bioeng 108 1 2009 68 75
-
(2009)
J Biosci Bioeng
, vol.108
, Issue.1
, pp. 68-75
-
-
Makaya, K.1
Terada, S.2
Ohgo, K.3
Asakura, T.4
-
29
-
-
77951045827
-
The synergistic effects of 3-D silk fibroin matrix scaffold properties and hydrodynamic environment in cartilage tissue engineering
-
Y. Wang, E. Bella, C.S. Lee, C. Migliaresi, L. Pelcastre, and Z. Schwartz The synergistic effects of 3-D silk fibroin matrix scaffold properties and hydrodynamic environment in cartilage tissue engineering Biomateirals 31 17 2010 4672 4681
-
(2010)
Biomateirals
, vol.31
, Issue.17
, pp. 4672-4681
-
-
Wang, Y.1
Bella, E.2
Lee, C.S.3
Migliaresi, C.4
Pelcastre, L.5
Schwartz, Z.6
-
30
-
-
53149113001
-
Gel spinning of silk tubes for tissue engineering
-
M.L. Lovett, C.M. Cannizzaro, G. Vunjak-Novakovic, and D.L. Kaplan Gel spinning of silk tubes for tissue engineering Biomaterials 29 35 2008 4650 4657
-
(2008)
Biomaterials
, vol.29
, Issue.35
, pp. 4650-4657
-
-
Lovett, M.L.1
Cannizzaro, C.M.2
Vunjak-Novakovic, G.3
Kaplan, D.L.4
-
31
-
-
0042364941
-
Mechanism of silk processing in insects and spiders
-
DOI 10.1038/nature01809
-
H. Jin, and D.L. Kaplan Mechanism of silk processing in insects and spiders Nature 424 6952 2003 1057 1061 (Pubitemid 37064306)
-
(2003)
Nature
, vol.424
, Issue.6952
, pp. 1057-1061
-
-
Jin, H.-J.1
Kaplan, D.L.2
-
32
-
-
33748973572
-
Bone and cartilage tissue constructs grown using human bone marrow stromal cells, silk scaffolds and rotating bioreactors
-
DOI 10.1016/j.biomaterials.2006.07.015, PII S0142961206006211, Biomaterials and Stem Cells
-
D. Marolt, A. Augst, L.E. Freed, C. Vepari, R. Fajardo, and N. Patel Bone and cartilage tissue constructs grown using human bone marrow stromal cells, silk scaffolds and rotating bioreactors Biomaterials 27 36 2006 6138 6149 (Pubitemid 44437575)
-
(2006)
Biomaterials
, vol.27
, Issue.36
, 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
-
33
-
-
34547926819
-
Bone regeneration on macroporous aqueous-derived silk 3-D scaffolds
-
DOI 10.1002/mabi.200700030
-
H.J. Kim, U.J. Kim, G.G. Leisk, C. Bayan, I. Georgakoudi, and D.L. Kaplan Bone regeneration on macroporous aqueous-derived silk 3-D scaffolds Macromol Biosci 7 5 2007 643 655 (Pubitemid 47264638)
-
(2007)
Macromolecular Bioscience
, vol.7
, Issue.5
, pp. 643-655
-
-
Kim, H.J.1
Kim, U.-J.2
Leisk, G.G.3
Bayan, C.4
Georgakoudi, I.5
Kaplan, D.L.6
-
34
-
-
58449084444
-
Bone-like resorbable silk-based scaffolds for load-bearing osteoregenerative applications
-
A.M. Collins, N.J.V. Skaer, T. Gheysens, D. Knight, C. Bertram, and H.I. Roach Bone-like resorbable silk-based scaffolds for load-bearing osteoregenerative applications Adv Mater 21 1 2009 75 78
-
(2009)
Adv Mater
, vol.21
, Issue.1
, pp. 75-78
-
-
Collins, A.M.1
Skaer, N.J.V.2
Gheysens, T.3
Knight, D.4
Bertram, C.5
Roach, H.I.6
-
35
-
-
77953629181
-
Reinforcing silk scaffolds with silk particles
-
R. Rajkhowa, E.S. Gil, J. Kluge, K. Numata, L. Wang, and X. Wang Reinforcing silk scaffolds with silk particles Macromol Biosci 10 6 2010 599 611
-
(2010)
Macromol Biosci
, vol.10
, Issue.6
, pp. 599-611
-
-
Rajkhowa, R.1
Gil, E.S.2
Kluge, J.3
Numata, K.4
Wang, L.5
Wang, X.6
-
36
-
-
64249126222
-
Degradable particulate composite reinforced with nanofibres for biomedical applications
-
E.D. Pinho, A. Martins, J.V. Araúo, R.L. Reis, and N.M. Neves Degradable particulate composite reinforced with nanofibres for biomedical applications Acta Biomater 5 4 2009 1104 1114
-
(2009)
Acta Biomater
, vol.5
, Issue.4
, pp. 1104-1114
-
-
Pinho, E.D.1
Martins, A.2
Araúo, J.V.3
Reis, R.L.4
Neves, N.M.5
-
37
-
-
0000951118
-
13C cross polarization-magic angle spinning NMR, X-ray diffraction, and infra spectroscopy
-
13C cross polarization-magic angle spinning NMR, X-ray diffraction, and infra spectroscopy Macromolecules 18 10 1985 1841 1845
-
(1985)
Macromolecules
, vol.18
, Issue.10
, pp. 1841-1845
-
-
Asakura, T.1
Kuzuhara, A.2
Tabeta, R.3
Saitô, H.4
-
39
-
-
0005169077
-
An unstable lattice in silk fibroin
-
O. Kratky, E. Schauenstein, and A. Sekora An unstable lattice in silk fibroin Nature 165 4191 1950 319 320
-
(1950)
Nature
, vol.165
, Issue.4191
, pp. 319-320
-
-
Kratky, O.1
Schauenstein, E.2
Sekora, A.3
-
40
-
-
0034023387
-
Conformational transitions model silk peptides
-
D. Wilson, R. Valluzzi, and D. Kaplan Conformational transitions in model silk peptides Biophys J 78 5 2000 2690 2701 (Pubitemid 30313827)
-
(2000)
Biophysical Journal
, vol.78
, Issue.5
, pp. 2690-2701
-
-
Wilson, D.1
Valluzzi, R.2
Kaplan, D.3
-
41
-
-
0038317945
-
Structural characterization and artificial fiber formation of Bombyx mori silk fibroin in hexafluoro-iso-propanol solvent system
-
DOI 10.1002/bip.10350
-
C. Zhao, j. Yao, H. Masuda, R. Kishore, and T. Asakura Structural characterization and artificial fiber formation of Bombyx mori silk fibroin in hexafluoro-iso-propanol solvent system Biopolymers 69 2 2003 253 259 (Pubitemid 36693247)
-
(2003)
Biopolymers
, vol.69
, Issue.2
, pp. 253-259
-
-
Zhao, C.1
Yao, J.2
Masuda, H.3
Kishore, R.4
Asakura, T.5
-
42
-
-
28844434957
-
Thermally induced α-helix to β-sheet transition in renegated silk fibers and films
-
DOI 10.1021/bm0503524
-
L.F. Drummy, D.M. Phillips, M.O. Stone, B.L. Farmer, and R.R. Naik Thermally induced α-helix to β-sheet transition in regenerated silk fibers and films Biomacromolecules 6 6 2005 3328 3333 (Pubitemid 41764095)
-
(2005)
Biomacromolecules
, vol.6
, Issue.6
, pp. 3328-3333
-
-
Drummy, L.F.1
Phillips, D.M.2
Stone, M.O.3
Farmer, B.L.4
Naik, R.R.5
-
43
-
-
76949108660
-
Water-insoluble silk films with silk-I structure
-
Q. Lu, X. Hu, X.Q. Wang, J. Kluge, S.Z. Lu, and P. Cebe Water-insoluble silk films with silk-I structure Acta Biomater 6 4 2010 1380 1387
-
(2010)
Acta Biomater
, vol.6
, Issue.4
, pp. 1380-1387
-
-
Lu, Q.1
Hu, X.2
Wang, X.Q.3
Kluge, J.4
Lu, S.Z.5
Cebe, P.6
-
44
-
-
23744461411
-
Water-stable silk films with reduced β-sheet content
-
DOI 10.1002/adfm.200400405
-
H.J. Jin, J. Park, V. Karageorgiou, U.J. Kim, R. Valluzzi, and P. Cebe Water-stable silk films with reduced β-sheet content Adv Funct Mater 15 8 2005 1241 1247 (Pubitemid 41119966)
-
(2005)
Advanced Functional Materials
, vol.15
, Issue.8
, pp. 1241-1247
-
-
Jin, H.-J.1
Park, J.2
Karageorgiou, V.3
Kim, U.-J.4
Valluzzi, R.5
Cebe, P.6
Kaplan, D.L.7
-
45
-
-
28844444578
-
New process to form a silk fibroin porous 3-D structure
-
DOI 10.1021/bm050431f
-
Yasushi Tamada New process to form a silk fibroin porous 3-D structure Biomacromolecules 6 6 2005 3100 3106 (Pubitemid 41764068)
-
(2005)
Biomacromolecules
, vol.6
, Issue.6
, pp. 3100-3106
-
-
Tamada, Y.1
-
46
-
-
34249883067
-
Conformation transition kinetics of Bombyx mori silk protein
-
DOI 10.1002/prot.21414
-
X. Chen, Z.Z. Shao, D.P. Knight, and F. Vollrath Conformation transition kinetics of Bombyx mori silk protein Proteins 68 1 2007 223 231 (Pubitemid 46871596)
-
(2007)
Proteins: Structure, Function and Genetics
, vol.68
, Issue.1
, pp. 223-231
-
-
Chen, X.1
Shao, Z.2
Knight, D.P.3
Vollrath, F.4
-
47
-
-
0024459685
-
Immobilization of biocatalysts with Bombyx mori silk fibroin by several kinds of physical treatment and its application to glucose sensors
-
M. Demura, T. Asakura, and T. Kuroo Immobilization of biocatalysts with Bombyx mori silk fibroin by several kinds of physical treatment and its application to glucose sensors Biosensors 4 6 1989 361 372 (Pubitemid 19249194)
-
(1989)
Biosensors
, vol.4
, Issue.6
, pp. 361-372
-
-
Demura, M.1
Asakura, T.2
Kuroo, T.3
-
48
-
-
17844400927
-
Porosity of 3D biomaterial scaffolds and osteogenesis
-
DOI 10.1016/j.biomaterials.2005.02.002
-
V. Karageorgiou, and D. Kaplan Porosity of 3D biomaterial scaffolds and osteogenesis Biomaterials 26 27 2005 5474 5491 (Pubitemid 40592136)
-
(2005)
Biomaterials
, vol.26
, Issue.27
, pp. 5474-5491
-
-
Karageorgiou, V.1
Kaplan, D.2
-
49
-
-
33847352455
-
Micro-computed tomography (μ -CT) as a potential tool to assess the effect of dynamic coating routes on the formation of biomimetic apatite layers on 3D-plotted biodegradable polymeric scaffolds
-
DOI 10.1007/s10856-006-0683-8, Special Issue: Selected Papers from the 20th European Conference on Biomaterials, Nantes, France
-
A.L. Oliveira, P.B. Malafaya, S.A. Costa, R.A. Sousa, and R.L. Reis Micro-computed tomography (μ-CT) as a potential tool to assess the effect of dynamic coating routes on the formation of biomimetic apatite layers on 3D-plotted biodegradable polymeric scaffolds J Mater Sci-Mater M 18 2 2007 211 223 (Pubitemid 46332842)
-
(2007)
Journal of Materials Science: Materials in Medicine
, vol.18
, Issue.2
, pp. 211-223
-
-
Oliveira, A.L.1
Malafaya, P.B.2
Costa, S.A.3
Sousa, R.A.4
Reis, R.L.5
-
50
-
-
28444460178
-
A comparison of micro CT with other techniques used in the characterization of scaffolds
-
DOI 10.1016/j.biomaterials.2005.08.035, PII S0142961205007957
-
S.T. Ho, and D.W. Hutmacher A comparison of micro CT with other techniques used in the characterization of scaffolds Biomaterials 27 18 2006 1362 1376 (Pubitemid 41739562)
-
(2006)
Biomaterials
, vol.27
, Issue.8
, pp. 1362-1376
-
-
Ho, S.T.1
Hutmacher, D.W.2
-
51
-
-
46449104176
-
Compressive moduli of the human medial meniscus in the axial and radial directions at equilibrium and at a physiological strain rate
-
H.N. Chia, and M.L. Hull Compressive moduli of the human medial meniscus in the axial and radial directions at equilibrium and at a physiological strain rate J Orthopaed Res 26 7 2008 951 956
-
(2008)
J Orthopaed Res
, vol.26
, Issue.7
, pp. 951-956
-
-
Chia, H.N.1
Hull, M.L.2
-
52
-
-
77956873814
-
Meniscus and cartilage exhibit distinct intra-tissue strain distributions under unconfined compression
-
J.H. Lai, and M.E. Levenston Meniscus and cartilage exhibit distinct intra-tissue strain distributions under unconfined compression Osteoarthr Cartilage 18 10 2010 1291 1299
-
(2010)
Osteoarthr Cartilage
, vol.18
, Issue.10
, pp. 1291-1299
-
-
Lai, J.H.1
Levenston, M.E.2
-
53
-
-
33846677220
-
A biomimetic three-dimensional woven composite scaffold for functional tissue engineering of cartilage
-
DOI 10.1038/nmat1822, PII NMAT1822
-
F.T. Moutos, L.E. Freed, and F. Guilak A biomimetic three-dimensional woven composite scaffold for functional tissue engineering of cartilage Nat Mater 6 2 2007 162 167 (Pubitemid 46197652)
-
(2007)
Nature Materials
, vol.6
, Issue.2
, pp. 162-167
-
-
Moutos, F.T.1
Freed, L.E.2
Guilak, F.3
|