with tyramine treated hyaluronan hydrogel Articular cartilage repair with iPSCs

With tyramine treated hyaluronan hydrogel articular

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with tyramine-treated hyaluronan hydrogelArticular cartilage repair with iPSCs-derived chondrocytes and tyramine-treated hyaluronan hydrogelCCF©2014Figure 2 A broad outline for the use of induced pluripotent stem cells in articular cartilage repair. iPSCs: Induced pluripotent stem cells.Lietman SA. Induced pluripotent stem cells in cartilage repair
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153March 18, 2016|Volume 7|Issue 3|WJO|3088-3098 [PMID: 25183299 DOI: 10.1002/stem.1823] 5 Poole AR, Kobayashi M, Yasuda T, Laverty S, Mwale F, Kojima T, Sakai T, Wahl C, El-Maadawy S, Webb G, Tchetina E, Wu W. Type II collagen degradation and its regulation in articular cartilage in osteoarthritis. Ann Rheum Dis2002; 61 Suppl 2: ii78-ii81 [PMID: 12379630]6 Diekman BO, Christoforou N, Willard VP, Sun H, Sanchez-Adams J, Leong KW, Guilak F. Cartilage tissue engineering using differentiated and purified induced pluripotent stem cells. Proc Natl Acad Sci USA2012; 109: 19172-19177 [PMID: 23115336 DOI: 10.1073/pnas.1210422109] 7 Decker RS, Koyama E, Enomoto-Iwamoto M, Maye P, Rowe D, Zhu S, Schultz PG, Pacifici M. Mouse limb skeletal growth and synovial joint development are coordinately enhanced by Kartogenin. Dev Biol2014; 395: 255-267 [PMID: 25238962]8 Akiyama H, Kim JE, Nakashima K, Balmes G, Iwai N, Deng JM, Zhang Z, Martin JF, Behringer RR, Nakamura T, de Crombrugghe B. Osteo-chondroprogenitor cells are derived from Sox9 expressing precursors. Proc Natl Acad Sci USA2005; 102: 14665-14670 [PMID: 16203988 DOI: 10.1073/pnas.0504750102] 9 Koga T, Matsui Y, Asagiri M, Kodama T, de Crombrugghe B, Nakashima K, Takayanagi H. NFAT and Osterix cooperatively regulate bone formation. Nat Med2005; 11: 880-885 [PMID: 16041384 DOI: 10.1038/nm1270] 10 Kronenberg HM. Developmental regulation of the growth plate. Nature2003; 423: 332-336 [PMID: 12748651 DOI: 10.1038/nature 01657] 11 Benya PD, Padilla SR, Nimni ME. Independent regulation of collagen types by chondrocytes during the loss of differentiated function in culture. Cell1978; 15: 1313-1321 [PMID: 729001]12 Prockop DJ. Further proof of the plasticity of adult stem cells and their role in tissue repair. J Cell Biol2003; 160: 807-809 [PMID: 12642607 DOI: 10.1083/jcb.200302117] 13 Sekiya I, Larson BL, Vuoristo JT, Cui JG, Prockop DJ. Adipogenic differentiation of human adult stem cells from bone marrow stroma (MSCs). J Bone Miner Res2004; 19: 256-264 [PMID: 14969395 DOI: 10.1359/jbmr.0301220] 14 de Peppo GM, Vunjak-Novakovic G, Marolt D. Cultivation of human bone-like tissue from pluripotent stem cell-derived osteogenic progenitors in perfusion bioreactors. Methods Mol Biol2014; 1202: 173-184 [PMID: 24281874 DOI: 10.1007/7651_2013_52] 15 Bhumiratana S, Eton RE, Oungoulian SR, Wan LQ, Ateshian GA, Vunjak-Novakovic G. Large, stratified, and mechanically functional human cartilage grown in vitro by mesenchymal condensation. Proc Natl Acad Sci USA2014; 111: 6940-6945 [PMID: 24778247 DOI: 10.1073/pnas.1324050111] 16 Ahfeldt T, Schinzel RT, Lee YK, Hendrickson D, Kaplan A, Lum DH, Camahort R, Xia F, Shay J, Rhee EP, Clish CB, Deo RC, Shen T, Lau FH, Cowley A, Mowrer G, Al-Siddiqi H, Nahrendorf M, Musunuru K, Gerszten RE, Rinn JL, Cowan CA. Programming human pluripotent stem cells into white and brown adipocytes.
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