IEEE Rev Biomed Eng. 2019;12:333-351. doi: 10.1109/RBME.2018.2824335. Epub 2018 Apr 12.
Stem-cell-based therapy is a promising approach for the treatment of a myriad of diseases and injuries. However, the low rate of cell survival and the uncontrolled differentiation of the injected stem cells currently remain key challenges in advancing stem cell therapeutics. Hydrogels are biomaterials that are potentially highly effective candidates for scaffold systems for stem cells and other molecular encapsulation approaches to target in vivo delivery. Hydrogel-based strategies can potentially address several current challenges in stem cell therapy. We present a concise overview of the recent advances in applications of hydrogels in stem cell therapies, with a focus particularly on the recent advances in the design and approaches for application of hydrogels in tissue engineering. The capability of hydrogels to either enhance the function of the transplanted stem cells by promoting their controlled differentiation or enhance the recruitment of endogenous adult stem cells to the injury site for repair is also reviewed. Finally, the importance of impacts and the desired relationship between the scaffold system and the encapsulated stem cells are discussed.
基于干细胞的疗法是治疗多种疾病和损伤的有前途的方法。然而,目前细胞存活率低和注射的干细胞不受控制的分化仍然是推进干细胞治疗的关键挑战。水凝胶是一种生物材料,作为干细胞的支架系统和其他分子包封方法的体内递药的潜在高效候选物。基于水凝胶的策略有可能解决干细胞治疗中的几个当前挑战。我们简要概述了水凝胶在干细胞治疗中的应用的最新进展,特别关注了水凝胶在组织工程中的设计和应用方面的最新进展。水凝胶通过促进其受控分化来增强移植的干细胞的功能,或者增强内源性成体干细胞向损伤部位募集以进行修复的能力,这一点也得到了综述。最后,讨论了支架系统和封装的干细胞之间的相互作用的重要性和理想关系。