Identification of Senomorphic miRNAs in Embryonic Progenitor and Adult Stem Cell-Derived Extracellular Vesicles.

IF 8 1区 医学 Q1 CELL BIOLOGY
Aging Cell Pub Date : 2025-04-24 DOI:10.1111/acel.70071
Tianpeng Zhang, Allancer D C Nunes, Jieun Lee, Dana Larocca, Giovanni Camussi, Sai Kiang Lim, Vicky U Bascones, Luise Angelini, Ryan D O'Kelly, Xiao Dong, Laura J Niedernhofer, Paul D Robbins
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引用次数: 0

Abstract

Extracellular vesicles (EVs) are secreted by most cell types, transmitting crucial signaling molecules like proteins, small RNAs, and DNA. We previously demonstrated that EVs from murine and human mesenchymal stem cells (MSCs) functioned as senomorphics to suppress markers of senescence and the inflammatory senescence-associated secretory phenotype (SASP) in cell culture and in aged mice. Here we demonstrate that EVs from additional types of human adult stem cells and embryonic progenitor cells have a senomorphic activity. Based on their miRNA profiles showing prevalence in stem cell EVs versus nonstem cell EVs and the number of age-related genes targeted, we identified eight miRNAs as potential senomorphic miRNAs. Analysis of these miRNAs by transfection into etoposide-induced senescent IMR90 human fibroblasts revealed that each of the miRNAs alone regulated specific senescence and SASP markers, but none had complete senomorphic activity. Evaluation of ~300 combinations of miRNAs for senotherapeutic activity identified a senomorphic cocktail of miR-181a-5p, miR-92a-3p, miR-21-5p, and miR-186-5p that markedly reduced the expression of p16INK4a, p21Cip1, IL-1β, and IL-6 and the percentage of SA-ß-gal-positive cells. Transcriptome analysis identified multiple pathways affected by the miRNA cocktail, including cellular senescence and inhibition of PCAF and HIPK2 in the p53 signaling pathway. Finally, treatment of aged mice with liposomes containing the four miRNA cocktail suppressed markers of senescence and inflammation in multiple tissues. These studies suggest that EVs derived from stem cells suppress senescence and inflammation, at least in part, through miRNAs and that a senomorphic miRNA cocktail could be used to target senescence and inflammation to extend health span.

胚胎祖细胞和成体干细胞来源的细胞外囊泡中同胚性mirna的鉴定。
细胞外囊泡(EVs)由大多数细胞类型分泌,传递关键的信号分子,如蛋白质、小rna和DNA。我们之前已经证明,来自小鼠和人间充质干细胞(MSCs)的EVs在细胞培养和老年小鼠中具有抑制衰老标记物和炎症性衰老相关分泌表型(SASP)的功能。在这里,我们证明了来自其他类型的人类成体干细胞和胚胎祖细胞的ev具有异胚性活性。基于它们的miRNA谱显示干细胞ev与非干细胞ev的患病率以及靶向年龄相关基因的数量,我们确定了8个miRNA作为潜在的同源miRNA。将这些miRNAs转染到依托泊苷诱导的衰老IMR90人成纤维细胞中分析,发现每个miRNAs单独调节特定的衰老和SASP标记,但没有一个具有完全的同型活性。对约300种mirna组合的治疗活性评估发现,miR-181a-5p、miR-92a-3p、miR-21-5p和miR-186-5p的同源性混合物显著降低了p16INK4a、p21Cip1、IL-1β和IL-6的表达以及SA-ß-gal阳性细胞的百分比。转录组分析发现了受miRNA鸡尾酒影响的多种途径,包括细胞衰老和p53信号通路中PCAF和HIPK2的抑制。最后,用含有四种miRNA混合物的脂质体治疗老年小鼠,抑制了多个组织的衰老和炎症标志物。这些研究表明,干细胞衍生的ev至少在一定程度上通过miRNA抑制衰老和炎症,一种同源miRNA鸡尾酒可用于靶向衰老和炎症,以延长健康寿命。
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来源期刊
Aging Cell
Aging Cell Biochemistry, Genetics and Molecular Biology-Cell Biology
自引率
2.60%
发文量
212
期刊介绍: Aging Cell is an Open Access journal that focuses on the core aspects of the biology of aging, encompassing the entire spectrum of geroscience. The journal's content is dedicated to publishing research that uncovers the mechanisms behind the aging process and explores the connections between aging and various age-related diseases. This journal aims to provide a comprehensive understanding of the biological underpinnings of aging and its implications for human health. The journal is widely recognized and its content is abstracted and indexed by numerous databases and services, which facilitates its accessibility and impact in the scientific community. These include: Academic Search (EBSCO Publishing) Academic Search Alumni Edition (EBSCO Publishing) Academic Search Premier (EBSCO Publishing) Biological Science Database (ProQuest) CAS: Chemical Abstracts Service (ACS) Embase (Elsevier) InfoTrac (GALE Cengage) Ingenta Select ISI Alerting Services Journal Citation Reports/Science Edition (Clarivate Analytics) MEDLINE/PubMed (NLM) Natural Science Collection (ProQuest) PubMed Dietary Supplement Subset (NLM) Science Citation Index Expanded (Clarivate Analytics) SciTech Premium Collection (ProQuest) Web of Science (Clarivate Analytics) Being indexed in these databases ensures that the research published in Aging Cell is discoverable by researchers, clinicians, and other professionals interested in the field of aging and its associated health issues. This broad coverage helps to disseminate the journal's findings and contributes to the advancement of knowledge in geroscience.
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