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间充质干细胞作为细胞间信号网络的基石:医学新纪元的基础。

Mesenchymal Stem Cells as a Cornerstone in a Galaxy of Intercellular Signals: Basis for a New Era of Medicine.

机构信息

Research Unit, Fundación Hospital de Jove, 33290 Gijón, Spain.

Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, 33006 Oviedo, Spain.

出版信息

Int J Mol Sci. 2021 Mar 30;22(7):3576. doi: 10.3390/ijms22073576.

Abstract

Around 40% of the population will suffer at some point in their life a disease involving tissue loss or an inflammatory or autoimmune process that cannot be satisfactorily controlled with current therapies. An alternative for these processes is represented by stem cells and, especially, mesenchymal stem cells (MSC). Numerous preclinical studies have shown MSC to have therapeutic effects in different clinical conditions, probably due to their mesodermal origin. Thereby, MSC appear to play a central role in the control of a galaxy of intercellular signals of anti-inflammatory, regenerative, angiogenic, anti-fibrotic, anti-oxidative stress effects of anti-apoptotic, anti-tumor, or anti-microbial type. This concept forces us to return to the origin of natural physiological processes as a starting point to understand the evolution of MSC therapy in the field of regenerative medicine. These biological effects, demonstrated in countless preclinical studies, justify their first clinical applications, and draw a horizon of new therapeutic strategies. However, several limitations of MSC as cell therapy are recognized, such as safety issues, handling difficulties for therapeutic purposes, and high economic cost. For these reasons, there is an ongoing tendency to consider the use of MSC-derived secretome products as a therapeutic tool, since they reproduce the effects of their parent cells. However, it will be necessary to resolve key aspects, such as the choice of the ideal type of MSC according to their origin for each therapeutic indication and the implementation of new standardized production strategies. Therefore, stem cell science based on an intelligently designed production of MSC and or their derivative products will be able to advance towards an innovative and more personalized medical biotechnology.

摘要

大约 40%的人口在其生命的某个阶段会患有某种疾病,涉及组织损失或炎症或自身免疫过程,而目前的治疗方法无法令人满意地控制这些疾病。这些过程的替代方法是干细胞,特别是间充质干细胞(MSC)。大量的临床前研究表明,MSC 在不同的临床情况下具有治疗效果,这可能是由于其中胚层起源。因此,MSC 似乎在控制抗炎、再生、血管生成、抗纤维化、抗氧化应激、抗细胞凋亡、抗肿瘤或抗微生物类型的一系列细胞间信号方面发挥着核心作用。这一概念迫使我们回归到自然生理过程的起源,作为理解 MSC 治疗在再生医学领域的发展的起点。这些在无数临床前研究中得到证实的生物学效应,证明了它们的首次临床应用,并为新的治疗策略描绘了一个前景。然而,人们已经认识到 MSC 作为细胞疗法存在一些局限性,例如安全性问题、治疗目的的处理困难以及高昂的经济成本。出于这些原因,人们倾向于考虑使用 MSC 衍生的分泌产物作为治疗工具,因为它们复制了其亲本细胞的作用。然而,仍有必要解决一些关键问题,例如根据每种治疗适应症的来源选择理想的 MSC 类型,以及实施新的标准化生产策略。因此,基于 MSC 及其衍生产品的智能设计生产的干细胞科学将能够推动创新和更个性化的医疗生物技术的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afcd/8036553/e9407eb393ef/ijms-22-03576-g001.jpg

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