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The Current Status of Mesenchymal Stromal Cells: Controversies, Unresolved Issues and Some Promising Solutions to Improve Their Therapeutic Efficacy

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.650664

关键词

MSC bioengineering; MSC homing; MSC immunomodulation; MSC preconditioning; MSC therapeutic efficacy

资金

  1. Spanish Ministry of Science, Innovation and Universities [RTI2018-093938-B-I00]
  2. Carlos III Health Institute through the Spanish Network of Cell Therapy (TerCel), RETICS subprogram of the I CD CI 2013-2016 Spanish National Plan (European Regional Development Fund) [RD16/0011/0001, RD16/0011/0002, RD16/0011/0011, RD16/0011/0013]
  3. Regional Government of Madrid [S2017/BMD-3692]

向作者/读者索取更多资源

MSCs are widely used in advanced therapies for various purposes, mainly related to inflammatory processes. Despite their demonstrated efficacy in preclinical models and early clinical trials, there are still controversies regarding their specific phenotype, delivery methods, and varied cell products. Strategies for bioengineering MSCs are being explored to enhance their properties and functional capabilities.
Mesenchymal stromal cells (MSCs) currently constitute the most frequently used cell type in advanced therapies with different purposes, most of which are related with inflammatory processes. Although the therapeutic efficacy of these cells has been clearly demonstrated in different disease animal models and in numerous human phase I/II clinical trials, only very few phase III trials using MSCs have demonstrated the expected potential therapeutic benefit. On the other hand, diverse controversial issues on the biology and clinical applications of MSCs, including their specific phenotype, the requirement of an inflammatory environment to induce immunosuppression, the relevance of the cell dose and their administration schedule, the cell delivery route (intravascular/systemic vs. local cell delivery), and the selected cell product (i.e., use of autologous vs. allogeneic MSCs, freshly cultured vs. frozen and thawed MSCs, MSCs vs. MSC-derived extracellular vesicles, etc.) persist. In the current review article, we have addressed these issues with special emphasis in the new approaches to improve the properties and functional capabilities of MSCs after distinct cell bioengineering strategies.

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