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缺氧条件下的间充质干细胞在组织再生中的应用。

Hypoxia-Conditioned Mesenchymal Stem Cells in Tissue Regeneration Application.

机构信息

Department of Orthopedic Surgery, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.

NUS Tissue Engineering Program, Life Sciences Institute, National University of Singapore, Singapore, Singapore.

出版信息

Tissue Eng Part B Rev. 2022 Oct;28(5):966-977. doi: 10.1089/ten.TEB.2021.0145. Epub 2022 Jan 10.

Abstract

Mesenchymal stem cells (MSCs) have been demonstrated as promising cell sources for tissue regeneration due to their capability of self-regeneration, differentiation, and immunomodulation. MSCs also exert extensive paracrine effects through release of trophic factors and extracellular vesicles (EVs). However, despite extended exploration of MSCs in preclinical studies, the results are far from satisfactory due to the poor engraftment and low level of survival after implantation. Hypoxia preconditioning has been proposed as an engineering approach to improve the therapeutic potential of MSCs. During culture, hypoxic conditions can promote MSC proliferation, survival, and migration through various cellular responses to the reduction of oxygen tension. The multilineage differentiation potential of MSCs is altered under hypoxia, with consistent reports of enhanced chondrogenesis. Hypoxia also stimulates the paracrine activities of MSCs and increases the production of secretome both in terms of soluble factors as well as EVs. The secretome from hypoxia-preconditioned MSCs play important roles in promoting cell proliferation and migration, enhancing angiogenesis while inhibiting apoptosis and inflammation. In this review, we summarize current knowledge of hypoxia-induced changes in MSCs and discuss the application of hypoxia-preconditioned MSCs as well as hypoxic secretome in different kinds of disease models. Impact statement Mesenchymal stem cells (MSCs) have been applied in numerous cell-based and secretome-based therapies for tissue regeneration. Hypoxic conditions enhance the function of MSCs by increasing proliferation, survival, homing, differentiation, and paracrine activities. A timely up-to-date comprehensive overview of the effect of low oxygen tension to MSC, with emphasis on the influence and molecular mechanism of hypoxia preconditioning toward MSC's functionality is provided, including the therapeutic use of hypoxia-preconditioned MSC as well as hypoxic secretome in various prove-of-concept disease models. This knowledge would contribute to future engineering of MSC culture conditions for improved translational application.

摘要

间充质干细胞(MSCs)由于其自我再生、分化和免疫调节的能力,已被证明是组织再生有前途的细胞来源。MSCs 还通过释放营养因子和细胞外囊泡(EVs)发挥广泛的旁分泌作用。然而,尽管在临床前研究中对 MSCs 进行了广泛的探索,但由于植入后植入和存活率低,结果远非令人满意。缺氧预处理已被提出作为一种工程方法来提高 MSCs 的治疗潜力。在培养过程中,缺氧条件可以通过细胞对氧张力降低的各种反应来促进 MSC 的增殖、存活和迁移。MSCs 的多能分化潜能在缺氧下发生改变,一致报道增强了软骨生成。缺氧还刺激 MSCs 的旁分泌活性,并增加分泌组的产生,无论是可溶性因子还是 EVs。来自缺氧预处理 MSC 的分泌组在促进细胞增殖和迁移、增强血管生成同时抑制细胞凋亡和炎症方面发挥重要作用。在这篇综述中,我们总结了缺氧对 MSCs 诱导变化的最新认识,并讨论了缺氧预处理 MSC 以及缺氧分泌组在不同疾病模型中的应用。 影响说明 间充质干细胞(MSCs)已应用于多种基于细胞和基于分泌组的组织再生治疗方法。缺氧条件通过增加增殖、存活、归巢、分化和旁分泌活性来增强 MSCs 的功能。提供了对低氧张力对 MSC 的影响的最新全面概述,重点介绍了缺氧预处理对 MSC 功能的影响和分子机制,包括缺氧预处理 MSC 以及缺氧分泌组在各种概念验证疾病模型中的治疗用途。这些知识将有助于未来对 MSC 培养条件的工程设计,以提高转化应用。

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