Embryonic Stem Cell–Derived mmu-miR-291a-3p Inhibits Cellular Senescence in Human Dermal Fibroblasts Through the TGF-β Receptor 2 Pathway

Author:

Bae Yun-Ui12,Son Youlim12,Kim Chang-Hyun1,Kim Kwang Seok3ORCID,Hyun Se Hee3,Woo Hyun Goo4,Jee Byul A5,Choi Jun-Hyuk6,Sung Hoon-Ki7,Choi Hyung-Chul8,Park So Young9,Bae Ju-Hyun9,Doh Kyung-Oh9,Kim Jae-Ryong12

Affiliation:

1. Department of Biochemistry and Molecular Biology, College of Medicine, Daegu, Republic of Korea

2. Smart-Aging Convergence Research Center, Yeungnam University, Daegu, Republic of Korea

3. Division of Applied Radiation Bioscience, Korea Institute of Radiological and Medical Sciences, Seoul, Republic of Korea

4. Department of Physiology, Graduate School, Ajou University, Suwon, Republic of Korea

5. Department of Biomedical Sciences, Graduate School, Ajou University, Suwon, Republic of Korea

6. Department of Pathology, College of Medicine, Yeungnam University, Daegu, Republic of Korea

7. Physiology and Experimental Medicine Program, Hospital for Sick Children Research Institute, Laboratory Medicine and Pathobiology, University of Toronto, Ontario, Canada

8. Department of Pharmacology, College of Medicine, Yeungnam University, Daegu, Republic of Korea

9. Department of Physiology, College of Medicine, Yeungnam University, Daegu, Republic of Korea

Abstract

Abstract Senescent cells accumulate in various tissues over time and contribute to tissue dysfunction and aging-associated phenotypes. Accumulating evidence suggests that cellular senescence can be inhibited through pharmacological intervention, as well as through treatment with soluble factors derived from embryonic stem cells (ESCs). In an attempt to investigate the anti-senescence factors secreted by ESCs, we analyzed mouse ESC-derived extracellular microRNAs in conditioned medium via microRNA array analysis. We selected mmu-miR-291a-3p as a putative anti-senescence factor via bioinformatics analysis. We validated its inhibitory effects on replicative, Adriamycin-induced, and ionizing radiation–induced senescence in human dermal fibroblasts. Treatment of senescent cells with mmu-miR-291a-3p decreased senescence-associated β-galactosidase activity, enhanced proliferative potential, and reduced mRNA and protein expression of TGF-β receptor 2, p53, and p21. mmu-miR-291a-3p in conditioned medium was enclosed in ESC-derived exosomes and exosomes purified from ESC conditioned medium inhibited cellular senescence. The inhibitory effects of mmu-miR-291a-3p were mediated through the TGF-β receptor 2 signaling pathway. Hsa-miR-371a-3p and hsa-miR-520e, the human homologs of mmu-miR-291a-3p, showed similar anti-senescence activity. Furthermore, mmu-miR-291a-3p accelerated the excisional skin wound healing process in aged mice. Our results indicate that the ESC-derived mmu-miR-291a-3p is a novel candidate agent that can be utilized for cell-free therapeutic intervention against aging and aging-related diseases.

Funder

Basic Science Research Program

Medical Research Center Program

Publisher

Oxford University Press (OUP)

Subject

Geriatrics and Gerontology,Aging

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