Author:
Chen Wenya,Wu Peipei,Jin Can,Chen Yinjie,Li Chong,Qian Hui
Abstract
AbstractStem cells (SCs) have been used therapeutically for decades, yet their applications are limited by factors such as the risk of immune rejection and potential tumorigenicity. Extracellular vesicles (EVs), a key paracrine component of stem cell potency, overcome the drawbacks of stem cell applications as a cell-free therapeutic agent and play an important role in treating various diseases. However, EVs derived from two-dimensional (2D) planar culture of SCs have low yield and face challenges in large-scale production, which hinders the clinical translation of EVs. Three-dimensional (3D) culture, given its ability to more realistically simulate the in vivo environment, can not only expand SCs in large quantities, but also improve the yield and activity of EVs, changing the content of EVs and improving their therapeutic effects. In this review, we briefly describe the advantages of EVs and EV-related clinical applications, provide an overview of 3D cell culture, and finally focus on specific applications and future perspectives of EVs derived from 3D culture of different SCs.
Graphical Abstract
Funder
the National Natural Science Foundation of China
the National Natural Science Foundation of China
the Jiangsu Province’s Major Project in Research and Development
Zhenjiang Key Laboratory of High Technology Research on Exosomes Foundation and Transformation Application
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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