Fang Y L, Chen X G, W T Godbey
Department of Chemical & Biomolecular Engineering, Laboratory for Gene Therapy and Cellular Engineering, Tulane University, 300 Lindy Boggs Center, New Orleans, Louisiana, 70118.
J Biomed Mater Res B Appl Biomater. 2015 Nov;103(8):1679-99. doi: 10.1002/jbm.b.33354. Epub 2014 Dec 30.
As a promising strategy to aid or replace tissue/organ transplantation, gene delivery has been used for regenerative medicine applications to create or restore normal function at the cell and tissue levels. Gene delivery has been successfully performed ex vivo and in vivo in these applications. Excellent proliferation capabilities and differentiation potentials render certain cells as excellent candidates for ex vivo gene delivery for regenerative medicine applications, which is why multipotent and pluripotent cells have been intensely studied in this vein. In this review, gene delivery is discussed in detail, along with its applications to tissue engineering and regenerative medicine. A definition of a stem cell is compared to a definition of a stem property, and both provide the foundation for an in-depth look at gene delivery investigations from a germ lineage angle.
作为辅助或替代组织/器官移植的一种有前景的策略,基因递送已被用于再生医学应用,以在细胞和组织水平上创造或恢复正常功能。在这些应用中,基因递送已在体外和体内成功实施。出色的增殖能力和分化潜能使某些细胞成为再生医学应用中体外基因递送的优秀候选者,这就是为什么多能和全能细胞在这方面受到了深入研究。在本综述中,将详细讨论基因递送及其在组织工程和再生医学中的应用。将干细胞的定义与干细胞特性的定义进行了比较,两者都为从种系角度深入研究基因递送研究提供了基础。