干细胞
基质凝胶
移植
细胞外基质
再生医学
生物材料
组织工程
干细胞疗法
医学
细胞生物学
细胞
化学
生物医学工程
外科
生物
生物化学
作者
Andrew S. Lee,Mohammed Inayathullah,M.A. Lijkwan,Xin Zhao,Wenchao Sun,Su‐Jin Park,Wan Xing Hong,Mansi Parekh,Andrey V. Malkovskiy,Edward Lau,Xulei Qin,Venkata Raveendra Pothineni,Verónica Sánchez-Freire,Wendy Y. Zhang,Nigel G. Kooreman,Antje Ebert,Charles K. Chan,Patricia K. Nguyen,R. Jayakumar,Joseph C. Wu
标识
DOI:10.1038/s41551-018-0191-4
摘要
Stem-cell-based therapies hold considerable promise for regenerative medicine. However, acute donor-cell death within several weeks after cell delivery remains a critical hurdle for clinical translation. Co-transplantation of stem cells with pro-survival factors can improve cell engraftment, but this strategy has been hampered by the typically short half-lives of the factors and by the use of Matrigel and other scaffolds that are not chemically defined. Here, we report a collagen-dendrimer biomaterial crosslinked with pro-survival peptide analogues that adheres to the extracellular matrix and slowly releases the peptides, significantly prolonging stem cell survival in mouse models of ischaemic injury. The biomaterial can serve as a generic delivery system to improve functional outcomes in cell-replacement therapy.
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