Ding Supeng, Feng Lu, Wu Jiayang, Zhu Fei, Tan Ze'en, Yao Rui
Department of Mechanical Engineering, Biomanufacturing and Rapid Forming Technology, Key Laboratory of Beijing, Tsinghua University, Beijing 100084, People's Republic of China.
Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.
ACS Biomater Sci Eng. 2018 Sep 10;4(9):3108-3124. doi: 10.1021/acsbiomaterials.8b00399. Epub 2018 Aug 9.
Combining the advantages of 3D bioprinting technology and biological characteristics of stem cells, bioprinting of stem cells is recognized as a novel technology with broad applications in biological study, drug testing, tissue engineering, regenerative medicine, etc. However, the biological performance and functional reconstruction of stem cells are greatly influenced by both the bioprinting process and post-bioprinting culture conditions, which are critical factors to consider for further applications. Here we review the recent development of stem cell bioprinting technology and conclude on the major factors regulating stem cell viability, proliferation, differentiation, and function from the aspects of the choice of bioprinting techniques, the modulation of bioprinting parameters, and the regulation of the stem cell niche in the whole lifespan of bioprinting practices. We aim to provide a comprehensive consideration and guidance regarding the bioprinting of stem cells for optimization of this promising technology in biological and medical applications.
结合3D生物打印技术的优势和干细胞的生物学特性,干细胞生物打印被认为是一种在生物学研究、药物测试、组织工程、再生医学等领域具有广泛应用前景的新技术。然而,干细胞的生物学性能和功能重建受到生物打印过程和生物打印后培养条件的极大影响,这些是进一步应用时需要考虑的关键因素。在此,我们综述了干细胞生物打印技术的最新进展,并从生物打印技术的选择、生物打印参数的调控以及生物打印实践全过程中干细胞微环境的调节等方面,总结了调节干细胞活力、增殖、分化和功能的主要因素。我们旨在为干细胞生物打印提供全面的考量和指导,以优化这一在生物学和医学应用中颇具前景的技术。