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Delivery of miR-675 by stem cell-derived exosomes encapsulated in silk fibroin hydrogel prevents aging-induced vascular dysfunction in mouse hindlimb.

Authors :
Han, Chaoshan
Zhou, Jin
Liu, Bin
Liang, Chun
Pan, Xiangbin
Zhang, Yu
Zhang, Yuqing
Wang, Yanli
Shao, Lianbo
Zhu, Bao
Wang, Juanjuan
Yin, Qian
Yu, Xi-Yong
Li, Yangxin
Source :
Materials Science & Engineering: C. Jun2019, Vol. 99, p322-332. 11p.
Publication Year :
2019

Abstract

Abstract Vascular disease is a major complication of aging, but the molecular mechanisms underlying the aging-induced vascular dysfunction remain unclear, and there is no effective treatment to prevent aging induced diseases. The objectives of the present study are to identify the signaling pathway mediating aging-induced vascular dysfunction and to develop an exosome based therapy to inhibit aging process. We used 11-month-old C57BL6 mice as pre-aging animal model and H 2 O 2 treated H9C2 cells as an in vitro aging model to examine the therapeutic effect of miR-675. We found decreased expression of the potential aging modulator miR-675 in aging muscle, and H 2 O 2 treatment decreased the expression of miR-675 and upregulated the expression of the aging marker β-gal and TGF-β1. We also found that miR-675 mimic decreased β-gal staining in H 2 O 2 treated H9C2 cells. Dual-luciferase reporter assays verified TGF-β1 as the target gene of miR-675. Moreover, senescent H9C2 cells incubated with exosomes isolated from UMSCs transfected with the miR-675 mimic showed increased expression of miR-675, reduced activity of the aging marker β-gal and reduced protein levels of TGF-β1. We employed silk fibroin hydrogel to encapsulate exosomes in order to prolong the half-life of exosome in vivo. Fourier transform infrared spectroscopy (FTIR) revealed that exosomes were successfully encapsulated by the hydrogel. Laser Doppler perfusion imaging showed that the miR-675 exosomes encapsulated in silk fibroin hydrogel promote blood perfusion in ischemic hindlimbs. We demonstrated that miR-675 exosomes encapsulated in silk fibroin hydrogel provided sustained release of exosomes in vitro, and increased the retention time of red fluorescent PKH26-exosome in the tissue. Taken together, this study identified miR-675 as an important regulator of cell senescence and provided a novel strategy to deliver powerful exosomes by silk fibroin hydrogel to treat aging-induced vascular dysfunction. Graphical abstract The miR-675 exosomes was obtained from the cell culture supernatant of human umbilical cord mesenchymal stem cells transfected with the miR-675 mimic. Subsequently, miR-675 was added to the ultrasound-treated silk fibroin solution. The Fibroin-miR-675 exosomes-hydrogel can be self-assemblied at 37 ℃。. When the ischemic hind limbs of mice was treated by miR-675 exosomes encapsulated in silk fibroin hydrogel improve the retention of exosomes and stability of miR-675,and blood perfusion. Unlabelled Image Highlights • miR-675 is a modulator of the aging process. • miR-675 prevents the aging process by inhibiting the TGF-β1/p21 signaling pathway. • miR-675 delivered by exosomes in silk fibroin hydrogel can promote blood perfusion. • Exosomes and fibroin hydrogel improve stability and retention time of miR-675. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
*EXOSOMES
*SILK fibroin

Details

Language :
English
ISSN :
09284931
Volume :
99
Database :
Academic Search Index
Journal :
Materials Science & Engineering: C
Publication Type :
Academic Journal
Accession number :
135379673
Full Text :
https://doi.org/10.1016/j.msec.2019.01.122