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间质基质/干细胞的治疗特性:再生医学中细胞无细胞治疗需要细胞预刺激。

Therapeutic Properties of Mesenchymal Stromal/Stem Cells: The Need of Cell Priming for Cell-Free Therapies in Regenerative Medicine.

机构信息

Research Department, IRCCS ISMETT (Istituto Mediterraneo per i Trapianti e Terapie ad alta Specializzazione), 90127 Palermo, Italy.

出版信息

Int J Mol Sci. 2021 Jan 14;22(2):763. doi: 10.3390/ijms22020763.

Abstract

Mesenchymal stromal/stem cells (MSCs) are multipotent adult stem cells that support homeostasis during tissue regeneration. In the last decade, cell therapies based on the use of MSCs have emerged as a promising strategy in the field of regenerative medicine. Although these cells possess robust therapeutic properties that can be applied in the treatment of different diseases, variables in preclinical and clinical trials lead to inconsistent outcomes. MSC therapeutic effects result from the secretion of bioactive molecules affected by either local microenvironment or MSC culture conditions. Hence, MSC paracrine action is currently being explored in several clinical settings either using a conditioned medium (CM) or MSC-derived exosomes (EXOs), where these products modulate tissue responses in different types of injuries. In this scenario, MSC paracrine mechanisms provide a promising framework for enhancing MSC therapeutic benefits, where the composition of secretome can be modulated by priming of the MSCs. In this review, we examine the literature on the priming of MSCs as a tool to enhance their therapeutic properties applicable to the main processes involved in tissue regeneration, including the reduction of fibrosis, the immunomodulation, the stimulation of angiogenesis, and the stimulation of resident progenitor cells, thereby providing new insights for the therapeutic use of MSCs-derived products.

摘要

间充质基质/干细胞 (MSCs) 是多能成体干细胞,在组织再生过程中支持内稳态。在过去的十年中,基于 MSCs 使用的细胞疗法已成为再生医学领域有前途的策略。尽管这些细胞具有强大的治疗特性,可应用于治疗不同疾病,但临床前和临床试验中的变量导致结果不一致。MSC 的治疗效果来自于生物活性分子的分泌,这些分子受局部微环境或 MSC 培养条件的影响。因此,MSC 的旁分泌作用目前正在几个临床环境中进行探索,无论是使用条件培养基 (CM) 还是 MSC 衍生的外泌体 (EXO),这些产品在不同类型的损伤中调节组织反应。在这种情况下,MSC 的旁分泌机制为增强 MSC 的治疗益处提供了一个有前途的框架,其中可以通过 MSC 的预培养来调节分泌组的组成。在这篇综述中,我们检查了关于 MSC 预培养的文献,作为一种增强其治疗特性的工具,这些特性可应用于组织再生涉及的主要过程,包括减少纤维化、免疫调节、刺激血管生成和刺激驻留祖细胞,从而为 MSC 衍生产品的治疗用途提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb75/7828743/c185cc24efe7/ijms-22-00763-g001.jpg

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