Rudnitsky Ekaterina, Braiman Alex, Wolfson Marina, Muradian Khachik K, Gorbunova Vera, Turgeman Gadi, Fraifeld Vadim E
The Shraga Segal Department of Microbiology, Immunology and Genetics, Faculty of Health Sciences, Ben-Gurion University of the Negev, P.O.Box 653, 8410501, Beer-Sheva, Israel.
Department of Biology of Aging and Experimental Life Span Extension, State Institute of Gerontology of National Academy of Medical Sciences of Ukraine, Kiev, 4114, Ukraine.
Biogerontology. 2025 Apr 21;26(3):96. doi: 10.1007/s10522-025-10240-z.
Mesenchymal stem cells (MSCs) and blood plasma/MSC-derived extracellular vesicles (EVs) offer promising tools to promote longevity and treat age-related diseases. MSCs have low immunogenicity and tumorigenicity, and their efficacy is relatively independent of the donor age in humans (but not in rodents). Systemic administration of MSCs and stem cell/blood-derived EVs modified the omic profiles of various organs of aged rodents towards the young ones. The application of EVs appears to be even more beneficial than MSCs. Remarkably, over 70% of microRNAs, which are over-presented in ESC-derived EVs, were found to target longevity-associated genes. Along with MSCs, other types of stem cells were reported to display health- and lifespan-extending effects. Pluripotent Muse cells, a specific subpopulation of MSCs, which possess a number of unique features, could be particularly relevant for promoting healthspan. The rejuvenation potential of MSCs, EVs, and Muse cells warrants further investigation in both animal models and clinical trials, using aging clocks for biological age determination as one of the endpoints.
间充质干细胞(MSCs)以及血浆/MSC来源的细胞外囊泡(EVs)为促进长寿和治疗与年龄相关的疾病提供了有前景的工具。MSCs具有低免疫原性和低致瘤性,并且在人类中其功效相对独立于供体年龄(但在啮齿动物中并非如此)。全身性给予MSCs以及干细胞/血液来源的EVs可使衰老啮齿动物各器官的组学图谱向年轻动物的图谱转变。EVs的应用似乎比MSCs更有益。值得注意的是,在胚胎干细胞来源的EVs中过度表达的超过70%的微小RNA被发现靶向与长寿相关的基因。与MSCs一起,据报道其他类型的干细胞也具有促进健康和延长寿命的作用。多能缪斯细胞是MSCs的一个特定亚群,具有许多独特特征,可能对促进健康寿命特别相关。MSCs、EVs和缪斯细胞的年轻化潜力值得在动物模型和临床试验中进一步研究,将衰老时钟用于生物年龄测定作为终点之一。