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Wang X, Zhang X, Sun L, Subramanian B, Maf fini MV, Soto A, Sonnenschein C, Kaplan DL (2009) Preadipocytes stimulate ductal morphogenesis and functional differentiation of human mammary epithelial cells on 3D silk scaffolds. Tissue Eng Part A 15:3087-3098
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Kim HJ, Kim UJ, Vunjak-Novakovic G, Min BH, Kaplan DL (2005) In fl uence of macroporous protein scaffolds on bone tissue engineering from bone marrow stem cells. Biomaterials 26:4442-4452
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Mauney JR, Nguyen T, Gillen K, Kirker-Head C, Gimble JM, Kaplan DL (2007) Engineering adipose-like tissue in vitro and in vivo utilizing human bone marrow and adipose-derived mesenchymal stem cells with silk fibroin 3D scaffolds. Biomaterials 28:5280-5290
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Wang Y, Kim UJ, Blasioli DJ, Kim HJ, Kaplan DL (2005) In vitro cartilage tissue engineering with 3D porous aqueous-derived silk scaffolds and mesenchymal stem cells. Biomaterials 26: 7082-7094
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Schneider A, Wang XY, Kaplan DL, Garlick JA, Egles C (2009) Biofunctionalized electrospun silk mats as a topical bioactive dressing for accelerated wound healing. Acta Biomater 5:2570-2578
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Hofmann S, Hagenmuller H, Koch AM, Muller R, Vunjak-Novakovic G, Kaplan DL, Merkle HP, Meinel L (2007) Control of in vitro tissueengineered bone-like structures using human mesenchymal stem cells and porous silk scaffolds. Biomaterials 28:1152-1162
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Kim HJ, Kim UJ, Kim HS, Li C, Wada M, Leisk GG, Kaplan DL (2008) Bone tissue engineering with premineralized silk scaffolds. Bone 42:1226-1234
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Rockwood DN, Gil ES, Park SH, Kluge JA, Grayson W, Bhumiratana S, Rajkhowa R, Wang X, Kim SJ, Vunjak-Novakovic G, Kaplan DL (2011) Ingrowth of human mesenchymal stem cells into porous silk particle reinforced silk composite scaffolds: An in vitro study. Acta Biomater 7:144-151
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Kardestuncer T, McCarthy MB, Karageorgiou V, Kaplan D, Gronowicz G (2006) RGDtethered silk substrate stimulates the differentiation of human tendon cells. Clin Orthop Relat Res 448:234-239
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Silk matrix for tissue engineered anterior cruciate ligaments
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Sequential biochemical and mechanical stimulation in the development of tissue-engineered ligaments
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Tissueengineered three-dimensional in vitro models for normal and diseased kidney
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A complex 3D human tissue culture system based on mammary stromal cells and silk scaffolds for modeling breast morphogenesis and function
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Wang X, Sun L, Maf fini MV, Soto A, Sonnenschein C, Kaplan DL (2010) A complex 3D human tissue culture system based on mammary stromal cells and silk scaffolds for modeling breast morphogenesis and function. Biomaterials 31:3920-3929
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Cervical tissue engineering using silk scaffolds and human cervical cells
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House M, Sanchez CC, Rice WL, Socrate S, Kaplan DL (2010) Cervical tissue engineering using silk scaffolds and human cervical cells. Tissue Eng Part A 16:2101-2112
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Tissue Eng Part A
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Structure and properties of silk hydrogels
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Kim UJ, Park J, Li C, Jin HJ, Valluzzi R, Kaplan DL (2004) Structure and properties of silk hydrogels. Biomacromolecules 5:786-792
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Electrogelation for protein adhesives
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Vortexinduced injectable silk fibroin hydrogels
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Yucel T, Cebe P, Kaplan DL (2009) Vortexinduced injectable silk fibroin hydrogels. Biophys J 97:2044-2050
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Biophys J
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Porous 3-D scaffolds from regenerated silk fibroin
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In vivo degradation of three-dimensional silk fibroin scaffolds
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Wang Y, Rudym DD, Walsh A, Abrahamsen L, Kim HJ, Kim HS, Kirker-Head C, Kaplan DL (2008) In vivo degradation of three-dimensional silk fibroin scaffolds. Biomaterials 29: 3415-3428
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Electrospun silk biomaterial scaffolds for regenerative medicine
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Zhang X, Reagan MR, Kaplan DL (2009) Electrospun silk biomaterial scaffolds for regenerative medicine. Adv Drug Deliv Rev 61: 988-1006
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Silk nanospheres and microspheres from silk/pva blend films for drug delivery
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Wang X, Yucel T, Lu Q, Hu X, Kaplan DL (2010) Silk nanospheres and microspheres from silk/pva blend films for drug delivery. Biomaterials 31:1025-1035
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Silk microspheres for encapsulation and controlled release
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Wang X, Wenk E, Matsumoto A, Meinel L, Li C, Kaplan DL (2007) Silk microspheres for encapsulation and controlled release. J Control Release 117:360-370
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J Control Release
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Silk fibroin as an organic polymer for controlled drug delivery
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Hofmann S, Foo CT, Rossetti F, Textor M, Vunjak-Novakovic G, Kaplan DL, Merkle HP, Meinel L (2006) Silk fibroin as an organic polymer for controlled drug delivery. J Control Release 111:219-227
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J Control Release
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Stabilization of enzymes in silk films
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Lu S, Wang X, Lu Q, Hu X, Uppal N, Omenetto FG, Kaplan DL (2009) Stabilization of enzymes in silk films. Biomacromolecules 10: 1032-1042
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Water-stable silk films with reduced beta-sheet content
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Jin HJ, Park J, Karageorgiou V, Kim UJ, Valluzzi R, Kaplan DL (2005) Water-stable silk films with reduced beta-sheet content. Adv Funct Mater 15:1241-1247
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Silk film biomaterials for cornea tissue engineering
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Lawrence BD, Marchant JK, Pindrus MA, Omenetto FG, Kaplan DL (2009) Silk film biomaterials for cornea tissue engineering. Biomaterials 30:1299-1308
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