메뉴 건너뛰기




Volumn 31, Issue 1, 2016, Pages 196-203

Assessment of bone regeneration using adipose-derived stem cells in critical-size alveolar ridge defects: An experimental study in a dog model

Author keywords

Adipose derived stem cells; Dehiscence type defect; Fibronectin; Guided bone regeneration; Stem cells

Indexed keywords

BETA-TRICALCIUM PHOSPHATE; BIOMATERIAL; CALCIUM PHOSPHATE; FIBRONECTIN;

EID: 84979094713     PISSN: 08822786     EISSN: None     Source Type: Journal    
DOI: 10.11607/jomi.4190     Document Type: Article
Times cited : (18)

References (60)
  • 1
    • 14844286171 scopus 로고    scopus 로고
    • Dimensional ridge alterations following tooth extraction. An experimental study in the dog
    • Araújo MG, Lindhe J. Dimensional ridge alterations following tooth extraction. An experimental study in the dog. J Clin Periodontol 2005;32:212-218.
    • (2005) J Clin Periodontol , vol.32 , pp. 212-218
    • Araújo, M.G.1    Lindhe, J.2
  • 2
    • 84859105553 scopus 로고    scopus 로고
    • Current trends in mesenchymal stem cell application in bone augmentation: A review of the literature
    • Khojasteh A, Behnia H, Dashti SG, Stevens M. Current trends in mesenchymal stem cell application in bone augmentation: A review of the literature. J Oral Maxillofac Surg 2012;70:972-982.
    • (2012) J Oral Maxillofac Surg , vol.70 , pp. 972-982
    • Khojasteh, A.1    Behnia, H.2    Dashti, S.G.3    Stevens, M.4
  • 4
    • 70450160503 scopus 로고    scopus 로고
    • Engineering craniofacial structures: Facing the challenge
    • Zaky SH, Cancedda R. Engineering craniofacial structures: Facing the challenge. J Dent Res 2009;88:1077-1091.
    • (2009) J Dent Res , vol.88 , pp. 1077-1091
    • Zaky, S.H.1    Cancedda, R.2
  • 6
    • 77958174034 scopus 로고    scopus 로고
    • Bioengineering strategies for regeneration of craniofacial bone: A review of emerging technologies
    • Ward BB, Brown SE, Krebsbach PH. Bioengineering strategies for regeneration of craniofacial bone: A review of emerging technologies. Oral Dis 2010;16:709-716.
    • (2010) Oral Dis , vol.16 , pp. 709-716
    • Ward, B.B.1    Brown, S.E.2    Krebsbach, P.H.3
  • 7
    • 0141862027 scopus 로고    scopus 로고
    • Differential expression of stem cell mobilization-associated molecules on multi-lineage cells from adipose tissue and bone marrow
    • De Ugarte DA, Alfonso Z, Zuk PA, et al. Differential expression of stem cell mobilization-associated molecules on multi-lineage cells from adipose tissue and bone marrow. Immunol Lett 2003;89:267-270.
    • (2003) Immunol Lett , vol.89 , pp. 267-270
    • De Ugarte, D.A.1    Alfonso, Z.2    Zuk, P.A.3
  • 8
    • 9144240728 scopus 로고    scopus 로고
    • Osteogenic potential of human adipose tissue-derived stromal cells as an alternative stem cell source
    • Hattori H, Sato M, Masuoka K, et al. Osteogenic potential of human adipose tissue-derived stromal cells as an alternative stem cell source. Cells Tissues Organs 2004;178:2-12.
    • (2004) Cells Tissues Organs , vol.178 , pp. 2-12
    • Hattori, H.1    Sato, M.2    Masuoka, K.3
  • 9
    • 18744373595 scopus 로고    scopus 로고
    • Human adipose tissue is a source of multipotent stem cells
    • Zuk PA, Zhu M, Ashjian P, et al. Human adipose tissue is a source of multipotent stem cells. Mol Biol Cell 2002;13:4279-4295.
    • (2002) Mol Biol Cell , vol.13 , pp. 4279-4295
    • Zuk, P.A.1    Zhu, M.2    Ashjian, P.3
  • 10
    • 77949305438 scopus 로고    scopus 로고
    • The inverted periosteal flap: A source of stem cells enhancing bone regeneration
    • Soltan M, Smiler D, Soltan C. The inverted periosteal flap: A source of stem cells enhancing bone regeneration. Implant Dent 2009;18:373-379.
    • (2009) Implant Dent , vol.18 , pp. 373-379
    • Soltan, M.1    Smiler, D.2    Soltan, C.3
  • 11
    • 84857411570 scopus 로고    scopus 로고
    • Osteogenic potential of effective bone engineering using dental pulp stem cells, bone marrow stem cells, and periosteal cells for osseointegration of dental implants
    • Ito K, Yamada Y, Nakamura S, Ueda M. Osteogenic potential of effective bone engineering using dental pulp stem cells, bone marrow stem cells, and periosteal cells for osseointegration of dental implants. Int J Oral Maxillofac Implants 2011;26:947-954.
    • (2011) Int J Oral Maxillofac Implants , vol.26 , pp. 947-954
    • Ito, K.1    Yamada, Y.2    Nakamura, S.3    Ueda, M.4
  • 13
    • 77955922210 scopus 로고    scopus 로고
    • The innate osteogenic potential of the maxillary sinus (Schneiderian) membrane: An ectopic tissue transplant model simulating sinus lifting
    • Srouji S, Ben-David D, Lotan R, et al. The innate osteogenic potential of the maxillary sinus (Schneiderian) membrane: An ectopic tissue transplant model simulating sinus lifting. Int J Oral Maxillofac Surg 2010;39:793-801.
    • (2010) Int J Oral Maxillofac Surg , vol.39 , pp. 793-801
    • Srouji, S.1    Ben-David, D.2    Lotan, R.3
  • 14
    • 84886641414 scopus 로고    scopus 로고
    • Adipose-derived stem cells in tissue regeneration: A review
    • Zuk PA. Adipose-derived stem cells in tissue regeneration: A review. ISRN Stem Cells 2013: 713959. doi:10.1155/2013/713959.
    • (2013) ISRN Stem Cells
    • Zuk, P.A.1
  • 15
    • 52649147066 scopus 로고    scopus 로고
    • Adipose-derived stem cell: A better stem cell than BMSC
    • Zhu Y, Liu T, Song K, et al. Adipose-derived stem cell: A better stem cell than BMSC. Cell Biochem Funct 2008;26:664-675.
    • (2008) Cell Biochem Funct , vol.26 , pp. 664-675
    • Zhu, Y.1    Liu, T.2    Song, K.3
  • 16
    • 26444553353 scopus 로고    scopus 로고
    • Do adipose tissue-derived mesenchymal stem cells have the same osteogenic and chondrogenic potential as bone marrow-derived cells?
    • Im GI, Shin YW, Lee KB. Do adipose tissue-derived mesenchymal stem cells have the same osteogenic and chondrogenic potential as bone marrow-derived cells? Osteoarthritis Cartilage 2005;13:845-853.
    • (2005) Osteoarthritis Cartilage , vol.13 , pp. 845-853
    • Im, G.I.1    Shin, Y.W.2    Lee, K.B.3
  • 17
    • 10744228149 scopus 로고    scopus 로고
    • Comparison of multilineage cells from human adipose tissue and bone marrow
    • De Ugarte DA, Morizono K, Elbarbary A, et al. Comparison of multilineage cells from human adipose tissue and bone marrow. Cells Tissues Organs 2003;174:101-109.
    • (2003) Cells Tissues Organs , vol.174 , pp. 101-109
    • De Ugarte, D.A.1    Morizono, K.2    Elbarbary, A.3
  • 18
    • 84888985261 scopus 로고    scopus 로고
    • Adiposederived mesenchymal cells for bone regeneration: State of the art
    • [Epub ahead of print]
    • Barba M, Cicione C, Bernardini C, Michetti F, Lattanzi W. Adiposederived mesenchymal cells for bone regeneration: State of the art. Biomed Res Int 2013:416391. doi: 10.1155/2013/416391. [Epub ahead of print]
    • (2013) Biomed Res Int
    • Barba, M.1    Cicione, C.2    Bernardini, C.3    Michetti, F.4    Lattanzi, W.5
  • 19
    • 41049086500 scopus 로고    scopus 로고
    • Comparison of osteogenic ability of rat mesenchymal stem cells from bone marrow, periosteum, and adipose tissue
    • Hayashi O, Katsube Y, Hirose M, Ohgushi H, Ito H. Comparison of osteogenic ability of rat mesenchymal stem cells from bone marrow, periosteum, and adipose tissue. Calcif Tissue Int 2008;82:238-247.
    • (2008) Calcif Tissue Int , vol.82 , pp. 238-247
    • Hayashi, O.1    Katsube, Y.2    Hirose, M.3    Ohgushi, H.4    Ito, H.5
  • 20
    • 33846381749 scopus 로고    scopus 로고
    • Osseointegration of anodized titanium implants coated with fibroblast growth factor-fibronectin (FGF-FN) fusion protein
    • Park JM, Koak JY, Jang JH, et al. Osseointegration of anodized titanium implants coated with fibroblast growth factor-fibronectin (FGF-FN) fusion protein. Int J Oral Maxillofac Implants 2005;21: 859-866.
    • (2005) Int J Oral Maxillofac Implants , vol.21 , pp. 859-866
    • Park, J.M.1    Koak, J.Y.2    Jang, J.H.3
  • 21
    • 84877840005 scopus 로고    scopus 로고
    • Fibronectin and vitronectin promote human fetal osteoblast cell attachment and proliferation on nanoporous titanium surfaces
    • Rivera-Chacon DM, Alvarado-Velez M, Acevedo-Morantes CY, et al. Fibronectin and vitronectin promote human fetal osteoblast cell attachment and proliferation on nanoporous titanium surfaces. J Biomed Nanotechnol 2013;9:1092-1097.
    • (2013) J Biomed Nanotechnol , vol.9 , pp. 1092-1097
    • Rivera-Chacon, D.M.1    Alvarado-Velez, M.2    Acevedo-Morantes, C.Y.3
  • 22
    • 84873450371 scopus 로고    scopus 로고
    • Effects of coating a titanium alloy with fibronectin on the expression of osteoblast gene markers in the MC3T3 osteoprogenitor cell line
    • Rapuano BE, Hackshaw KM, Schniepp HC, MacDonald DE. Effects of coating a titanium alloy with fibronectin on the expression of osteoblast gene markers in the MC3T3 osteoprogenitor cell line. Int J Oral Maxillofac Implants 2012;27:1081-1090.
    • (2012) Int J Oral Maxillofac Implants , vol.27 , pp. 1081-1090
    • Rapuano, B.E.1    Hackshaw, K.M.2    Schniepp, H.C.3    MacDonald, D.E.4
  • 23
    • 0035377206 scopus 로고    scopus 로고
    • Lateral ridge augmentation using different bone fillers and barrier membrane application. A histologic and histomorphometric pilot study in the canine mandible
    • von Arx T, Cochran DL, Hermann JS, Schenk RK, Buser D. Lateral ridge augmentation using different bone fillers and barrier membrane application. A histologic and histomorphometric pilot study in the canine mandible. Clin Oral Implants Res 2001;12:260-269.
    • (2001) Clin Oral Implants Res , vol.12 , pp. 260-269
    • von Arx, T.1    Cochran, D.L.2    Hermann, J.S.3    Schenk, R.K.4    Buser, D.5
  • 24
    • 84894314074 scopus 로고    scopus 로고
    • Application of a new material (β-TCP/Collagen Composites) in extraction socket preservation: An experimental study in dogs
    • Takahashi Y, Marukawa E, Omura K. Application of a new material (β-TCP/Collagen Composites) in extraction socket preservation: An experimental study in dogs. Int J Oral Maxillofac Implants 2013; 28:444-452.
    • (2013) Int J Oral Maxillofac Implants , vol.28 , pp. 444-452
    • Takahashi, Y.1    Marukawa, E.2    Omura, K.3
  • 25
    • 84865259063 scopus 로고    scopus 로고
    • Guided bone regeneration using cyanoacrylate-combined calcium phosphate in a dehiscence defect: A histologic study in dogs
    • Lee JS, Ko SH, Kim YT, Jung UW, Choi SH. Guided bone regeneration using cyanoacrylate-combined calcium phosphate in a dehiscence defect: A histologic study in dogs. J Oral Maxillofac Surg 2012;70: 2070-2079.
    • (2012) J Oral Maxillofac Surg , vol.70 , pp. 2070-2079
    • Lee, J.S.1    Ko, S.H.2    Kim, Y.T.3    Jung, U.W.4    Choi, S.H.5
  • 26
    • 84892566078 scopus 로고    scopus 로고
    • Guided bone regeneration using chitosan-collagen membranes in dog dehiscence-type defect model
    • Li X, Wang X, Zhao T, et al. Guided bone regeneration using chitosan-collagen membranes in dog dehiscence-type defect model. J Oral Maxillofac Surg 2014;72:1-14.
    • (2014) J Oral Maxillofac Surg , vol.72 , pp. 1-14
    • Li, X.1    Wang, X.2    Zhao, T.3
  • 27
    • 0019947037 scopus 로고
    • A method for the study of undecalcified bones and teeth with attached soft tissues. The Säge-Schliff (sawing and grinding) technique
    • Donath K, Breuner G. A method for the study of undecalcified bones and teeth with attached soft tissues. The Säge-Schliff (sawing and grinding) technique. J Oral Pathol Med 1982;11:318-326.
    • (1982) J Oral Pathol Med , vol.11 , pp. 318-326
    • Donath, K.1    Breuner, G.2
  • 28
    • 0016838346 scopus 로고
    • A simple differential staining method for semi-thin sections of ossifying cartilage and bone tissues embedded in epoxy resin
    • Jenö L, Géza L. A simple differential staining method for semi-thin sections of ossifying cartilage and bone tissues embedded in epoxy resin. Mikroskopie 1975;31:1-4.
    • (1975) Mikroskopie , vol.31 , pp. 1-4
    • Jenö, L.1    Géza, L.2
  • 29
    • 0035067539 scopus 로고    scopus 로고
    • Multilineage cells from human adipose tissue: Implications for cell-based therapies
    • Zuk PA, Zhu M, Mizuno H, et al. Multilineage cells from human adipose tissue: Implications for cell-based therapies. Tissue Eng 2001;7:211-228.
    • (2001) Tissue Eng , vol.7 , pp. 211-228
    • Zuk, P.A.1    Zhu, M.2    Mizuno, H.3
  • 30
    • 33746632617 scopus 로고    scopus 로고
    • The use of adult stem cells in rebuilding the human face
    • Robey PG, Bianco P. The use of adult stem cells in rebuilding the human face. J Am Dent Assoc 2006;137:961-972.
    • (2006) J Am Dent Assoc , vol.137 , pp. 961-972
    • Robey, P.G.1    Bianco, P.2
  • 31
    • 79960278431 scopus 로고    scopus 로고
    • Embryonic stem cells in scaffold-free three-dimensional cell culture: Osteogenic differentiation and bone generation
    • Handschel J, Naujoks C, Depprich R, et al. Embryonic stem cells in scaffold-free three-dimensional cell culture: Osteogenic differentiation and bone generation. Head Face Med 2011;7:12.
    • (2011) Head Face Med , vol.7 , pp. 12
    • Handschel, J.1    Naujoks, C.2    Depprich, R.3
  • 32
    • 4444265779 scopus 로고    scopus 로고
    • Translational research for injectable tissue-engineered bone regeneration using mesenchymal stem cells and platelet-rich plasma: From basic research to clinical case study
    • Yamada Y, Ueda M, Hibi H, Nagasaka T. Translational research for injectable tissue-engineered bone regeneration using mesenchymal stem cells and platelet-rich plasma: From basic research to clinical case study. Cell Transplant 2004;13:343-355.
    • (2004) Cell Transplant , vol.13 , pp. 343-355
    • Yamada, Y.1    Ueda, M.2    Hibi, H.3    Nagasaka, T.4
  • 33
    • 43049142289 scopus 로고    scopus 로고
    • Marrow-derived mesenchymal stem cells-directed bone regeneration in the dog mandible: A comparison between biphasic calcium phosphate and natural bone mineral
    • Jafarian M, Eslaminejad MB, Khojasteh A, et al. Marrow-derived mesenchymal stem cells-directed bone regeneration in the dog mandible: A comparison between biphasic calcium phosphate and natural bone mineral. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2008;105:14-24.
    • (2008) Oral Surg Oral Med Oral Pathol Oral Radiol Endod , vol.105 , pp. 14-24
    • Jafarian, M.1    Eslaminejad, M.B.2    Khojasteh, A.3
  • 34
    • 0141720695 scopus 로고    scopus 로고
    • Investigation of allogeneic mesenchymal stem cell-based alveolar bone formation: Preliminary findings
    • De Kok IJ, Peter SJ, Archambault M, et al. Investigation of allogeneic mesenchymal stem cell-based alveolar bone formation: Preliminary findings. Clin Oral Implants Res 2003;14:481-489.
    • (2003) Clin Oral Implants Res , vol.14 , pp. 481-489
    • De Kok, I.J.1    Peter, S.J.2    Archambault, M.3
  • 35
    • 25444520289 scopus 로고    scopus 로고
    • Evaluation of mesenchymal stem cells following implantation in alveolar sockets: A canine safety study
    • De Kok IJ, Drapeau SJ, Young R, Cooper LF. Evaluation of mesenchymal stem cells following implantation in alveolar sockets: A canine safety study. Int J Oral Maxillofac Implants 2005;20:511-518.
    • (2005) Int J Oral Maxillofac Implants , vol.20 , pp. 511-518
    • De Kok, I.J.1    Drapeau, S.J.2    Young, R.3    Cooper, L.F.4
  • 36
    • 33748368899 scopus 로고    scopus 로고
    • Simultaneous implant placement and bone regeneration around dental implants using tissueengineered bone with fibrin glue, mesenchymal stem cells and platelet-rich plasma
    • Ito K, Yamada Y, Naiki T, Ueda M. Simultaneous implant placement and bone regeneration around dental implants using tissueengineered bone with fibrin glue, mesenchymal stem cells and platelet-rich plasma. Clin Oral Implants Res 2006;17:579-586.
    • (2006) Clin Oral Implants Res , vol.17 , pp. 579-586
    • Ito, K.1    Yamada, Y.2    Naiki, T.3    Ueda, M.4
  • 37
    • 33751321960 scopus 로고    scopus 로고
    • Repair of canine mandibular bone defects with bone marrow stromal cells and porous betatricalcium phosphate
    • Yuan J, Cui L, Zhang WJ, Liu W, Cao Y. Repair of canine mandibular bone defects with bone marrow stromal cells and porous betatricalcium phosphate. Biomaterials 2007;28:1005-1013.
    • (2007) Biomaterials , vol.28 , pp. 1005-1013
    • Yuan, J.1    Cui, L.2    Zhang, W.J.3    Liu, W.4    Cao, Y.5
  • 38
    • 49049101867 scopus 로고    scopus 로고
    • Mesenchymal stem cells enhance bone regeneration in rat calvarial critical size defects more than platelete-rich plasma
    • Khojasteh A, Eslaminejad MB, Nazarian H. Mesenchymal stem cells enhance bone regeneration in rat calvarial critical size defects more than platelete-rich plasma. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2008;106:356-362.
    • (2008) Oral Surg Oral Med Oral Pathol Oral Radiol Endod , vol.106 , pp. 356-362
    • Khojasteh, A.1    Eslaminejad, M.B.2    Nazarian, H.3
  • 39
    • 3042771201 scopus 로고    scopus 로고
    • Autogenous injectable bone for regeneration with mesenchymal stem cells and platelet-rich plasma: Tissue-engineered bone regeneration
    • Yamada Y, Ueda M, Naiki T, et al. Autogenous injectable bone for regeneration with mesenchymal stem cells and platelet-rich plasma: Tissue-engineered bone regeneration. Tissue Eng 2004;10:955-964.
    • (2004) Tissue Eng , vol.10 , pp. 955-964
    • Yamada, Y.1    Ueda, M.2    Naiki, T.3
  • 40
    • 61349182562 scopus 로고    scopus 로고
    • Osteogenic differentiation of rat mesenchymal stem cells from adipose tissue in comparison with bone marrow mesenchymal stem cells: Melatonin as a differentiation factor
    • Zaminy A, Ragerdi Kashani I, Barbarestani M, et al. Osteogenic differentiation of rat mesenchymal stem cells from adipose tissue in comparison with bone marrow mesenchymal stem cells: Melatonin as a differentiation factor. Iran Biomed J 2008;12:133-141.
    • (2008) Iran Biomed J , vol.12 , pp. 133-141
    • Zaminy, A.1    Ragerdi Kashani, I.2    Barbarestani, M.3
  • 41
    • 84893366105 scopus 로고    scopus 로고
    • Consideration of bone regeneration effect of stem cells: Comparison of bone regeneration between bone marrow stem cells and adipose-derived stem cells
    • Han DS, Chang HK, Kim KR, Woo SM. Consideration of bone regeneration effect of stem cells: Comparison of bone regeneration between bone marrow stem cells and adipose-derived stem cells. J Craniofac Surg 2014;25:196-201.
    • (2014) J Craniofac Surg , vol.25 , pp. 196-201
    • Han, D.S.1    Chang, H.K.2    Kim, K.R.3    Woo, S.M.4
  • 42
    • 84860675226 scopus 로고    scopus 로고
    • Guided bone regeneration in pig calvarial bone defects using autologous mesenchymal stem/progenitor cells-a comparison of different tissue sources
    • Stockmann P, Park J, von Wilmowsky C, et al. Guided bone regeneration in pig calvarial bone defects using autologous mesenchymal stem/progenitor cells-a comparison of different tissue sources. J Craniomaxillofac Surg 2012;40:310-320.
    • (2012) J Craniomaxillofac Surg , vol.40 , pp. 310-320
    • Stockmann, P.1    Park, J.2    von Wilmowsky, C.3
  • 43
    • 84867468016 scopus 로고    scopus 로고
    • Comparing the osteogenic potential of canine mesenchymal stem cells derived from adipose tissues, bone marrow, umbilical cord blood, and Wharton's jelly for treating bone defects
    • Kang BJ, Ryu HH, Park SS, et al. Comparing the osteogenic potential of canine mesenchymal stem cells derived from adipose tissues, bone marrow, umbilical cord blood, and Wharton's jelly for treating bone defects. J Vet Sci 2012;13:299-310.
    • (2012) J Vet Sci , vol.13 , pp. 299-310
    • Kang, B.J.1    Ryu, H.H.2    Park, S.S.3
  • 44
    • 84881317295 scopus 로고    scopus 로고
    • Reconstruction of critical-size mandibular defects in immunoincompetent rats with human adipose-derived stromal cells
    • Streckbein P, Jäckel S, Malik CY, et al. Reconstruction of critical-size mandibular defects in immunoincompetent rats with human adipose-derived stromal cells. J Craniomaxillofac Surg 2013;41:496-503.
    • (2013) J Craniomaxillofac Surg , vol.41 , pp. 496-503
    • Streckbein, P.1    Jäckel, S.2    Malik, C.Y.3
  • 45
    • 84876110873 scopus 로고    scopus 로고
    • A comparison of tissue-engineered bone from adipose-derived stem cell with autogenous bone repair in maxillary alveolar cleft model in dogs
    • Pourebrahim N, Hashemibeni B, Shahnaseri S, et al. A comparison of tissue-engineered bone from adipose-derived stem cell with autogenous bone repair in maxillary alveolar cleft model in dogs. J Oral Maxillofac Surg 2013;42:562-568.
    • (2013) J Oral Maxillofac Surg , vol.42 , pp. 562-568
    • Pourebrahim, N.1    Hashemibeni, B.2    Shahnaseri, S.3
  • 46
    • 68249112444 scopus 로고    scopus 로고
    • An experimental design to study adipocyte stem cells for reconstruction of calvarial defects
    • Bohnenblust ME, Steigelman MB, Wang Q, Walker JA, Wang HT. An experimental design to study adipocyte stem cells for reconstruction of calvarial defects. J Craniofac Surg 2009;20:340-346.
    • (2009) J Craniofac Surg , vol.20 , pp. 340-346
    • Bohnenblust, M.E.1    Steigelman, M.B.2    Wang, Q.3    Walker, J.A.4    Wang, H.T.5
  • 47
    • 84893359724 scopus 로고    scopus 로고
    • Consideration of bone regeneration effect of stem cells: Comparison between adiposederived stem cells and demineralized bone matrix
    • Han DS, Chang HK, Park JH, Kim KR, Woo SM. Consideration of bone regeneration effect of stem cells: Comparison between adiposederived stem cells and demineralized bone matrix. J Craniofac Surg 2014;25:189-195.
    • (2014) J Craniofac Surg , vol.25 , pp. 189-195
    • Han, D.S.1    Chang, H.K.2    Park, J.H.3    Kim, K.R.4    Woo, S.M.5
  • 48
    • 7944224528 scopus 로고    scopus 로고
    • Tissue-engineered injectable bone regeneration for osseointegrated dental implants
    • Yamada Y, Ueda M, Naiki T, Nagasaka T. Tissue-engineered injectable bone regeneration for osseointegrated dental implants. Clin Oral Implants Res 2004;15:589-597.
    • (2004) Clin Oral Implants Res , vol.15 , pp. 589-597
    • Yamada, Y.1    Ueda, M.2    Naiki, T.3    Nagasaka, T.4
  • 49
    • 41049086500 scopus 로고    scopus 로고
    • Comparison of osteogenic ability of rat mesenchymal stem cells from bone marrow, periosteum, and adipose tissue
    • Hayashi O, Katsube Y, Hirose M, Ohgushi H, Ito H. Comparison of osteogenic ability of rat mesenchymal stem cells from bone marrow, periosteum, and adipose tissue. Calcif Tissue Int 2008;82:238-247.
    • (2008) Calcif Tissue Int , vol.82 , pp. 238-247
    • Hayashi, O.1    Katsube, Y.2    Hirose, M.3    Ohgushi, H.4    Ito, H.5
  • 50
    • 42049101783 scopus 로고    scopus 로고
    • Comparison of the effectiveness of autologous fibrin glue and macroporous biphasic calcium phosphate as carriers in the osteogenesis process with or without mesenchymal stem cells
    • Lee LT, Kwan PC, Chen YF, Wong YK. Comparison of the effectiveness of autologous fibrin glue and macroporous biphasic calcium phosphate as carriers in the osteogenesis process with or without mesenchymal stem cells. J Chin Med Assoc 2008;71:66-73.
    • (2008) J Chin Med Assoc , vol.71 , pp. 66-73
    • Lee, L.T.1    Kwan, P.C.2    Chen, Y.F.3    Wong, Y.K.4
  • 51
    • 42049100727 scopus 로고    scopus 로고
    • Bone regeneration in a rabbit critical-sized skull defect using autologous adipose-derived cells
    • Di Bella C, Farlie P, Penington AJ. Bone regeneration in a rabbit critical-sized skull defect using autologous adipose-derived cells. Tissue Eng Part A 2008;14:483-490.
    • (2008) Tissue Eng Part A , vol.14 , pp. 483-490
    • Di Bella, C.1    Farlie, P.2    Penington, A.J.3
  • 52
    • 0037341879 scopus 로고    scopus 로고
    • Extracellular matrix production by human osteoblasts cultured on biodegradable polymers applicable for tissue engineering
    • El-Amin SF, Lu HH, Khan Y, et al. Extracellular matrix production by human osteoblasts cultured on biodegradable polymers applicable for tissue engineering. Biomaterials 2003;24:1213-1221.
    • (2003) Biomaterials , vol.24 , pp. 1213-1221
    • El-Amin, S.F.1    Lu, H.H.2    Khan, Y.3
  • 53
    • 70349671748 scopus 로고    scopus 로고
    • Self-assembling peptide nanofiber scaffolds, platelet-rich plasma, and mesenchymal stem cells for injectable bone regeneration with tissue engineering
    • Yoshimi R, Yamada Y, Ito K, et al. Self-assembling peptide nanofiber scaffolds, platelet-rich plasma, and mesenchymal stem cells for injectable bone regeneration with tissue engineering. J Craniofac Surg 2009;20:1523-1530.
    • (2009) J Craniofac Surg , vol.20 , pp. 1523-1530
    • Yoshimi, R.1    Yamada, Y.2    Ito, K.3
  • 54
    • 84865220186 scopus 로고    scopus 로고
    • Effect of adipose tissue-derived osteogenic and endothelial cells on bone allograft osteogenesis and vascularization in critical-sized calvarial defects
    • Cornejo A, Sahar DE, Stephenson SM, et al. Effect of adipose tissue-derived osteogenic and endothelial cells on bone allograft osteogenesis and vascularization in critical-sized calvarial defects. Tissue Eng Part A 2012;18:1552-1561.
    • (2012) Tissue Eng Part A , vol.18 , pp. 1552-1561
    • Cornejo, A.1    Sahar, D.E.2    Stephenson, S.M.3
  • 55
    • 84857784368 scopus 로고    scopus 로고
    • Calcium phosphate ceramic systems in growth factor and drug delivery for bone tissue engineering: A review
    • Bose S, Tarafder S. Calcium phosphate ceramic systems in growth factor and drug delivery for bone tissue engineering: A review. Acta Biomater 2012;8:1401-1421.
    • (2012) Acta Biomater , vol.8 , pp. 1401-1421
    • Bose, S.1    Tarafder, S.2
  • 56
    • 0035808170 scopus 로고    scopus 로고
    • In vivo bone formation by human bone marrow stromal cells: Effect of carrier particle size and shape
    • Mankani MH, Kuznetsov SA, Fowler B, Kingman A, Robey PG. In vivo bone formation by human bone marrow stromal cells: Effect of carrier particle size and shape. Biotechnol Bioeng 2001;72:96-107.
    • (2001) Biotechnol Bioeng , vol.72 , pp. 96-107
    • Mankani, M.H.1    Kuznetsov, S.A.2    Fowler, B.3    Kingman, A.4    Robey, P.G.5
  • 57
    • 80054099730 scopus 로고    scopus 로고
    • The comparative effectiveness of demineralized bone matrix, beta-tricalcium phosphate, and bovine-derived anorganic bone matrix on inflammation and bone formation using a paired calvarial defect model in rats
    • Khoshzaban A, Mehrzad S, Tavakoli V, et al. The comparative effectiveness of demineralized bone matrix, beta-tricalcium phosphate, and bovine-derived anorganic bone matrix on inflammation and bone formation using a paired calvarial defect model in rats. Clin Cosmet Investig Dent 2011;3:69-78.
    • (2011) Clin Cosmet Investig Dent , vol.3 , pp. 69-78
    • Khoshzaban, A.1    Mehrzad, S.2    Tavakoli, V.3
  • 58
    • 84859784428 scopus 로고    scopus 로고
    • Initial adhesion of bone marrow stromal cells to various bone graft substitutes
    • Jo YJ, Kim KH, Koo KT, et al. Initial adhesion of bone marrow stromal cells to various bone graft substitutes. J Periodontal Implant Sci 2011;41:67-72.
    • (2011) J Periodontal Implant Sci , vol.41 , pp. 67-72
    • Jo, Y.J.1    Kim, K.H.2    Koo, K.T.3
  • 59
    • 0032029899 scopus 로고    scopus 로고
    • Bone regeneration by implantation of purified, culture-expanded human mesenchymal stem cells
    • Bruder SP, Kurth AA, Shea M, et al. Bone regeneration by implantation of purified, culture-expanded human mesenchymal stem cells. J Orthop Res 1998;16:155-162.
    • (1998) J Orthop Res , vol.16 , pp. 155-162
    • Bruder, S.P.1    Kurth, A.A.2    Shea, M.3
  • 60
    • 33645016079 scopus 로고    scopus 로고
    • In vitro evaluation of a poly(lactide-co-glycolide)-collagen composite scaffold for bone regeneration
    • Lee SJ, Lim GJ, Lee JW, Atala A, Yoo JJ. In vitro evaluation of a poly(lactide-co-glycolide)-collagen composite scaffold for bone regeneration. Biomaterials 2006;27:3466-3472.
    • (2006) Biomaterials , vol.27 , pp. 3466-3472
    • Lee, S.J.1    Lim, G.J.2    Lee, J.W.3    Atala, A.4    Yoo, J.J.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.