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间充质干细胞通过外显体介导的 microRNA Let-7i-5p 拮抗剂减轻肾纤维化
Authors Jin J, Qian F, Zheng D, He W, Gong J, He Q
Received 31 December 2020
Accepted for publication 30 April 2021
Published 25 May 2021 Volume 2021:16 Pages 3565—3578
DOI https://doi.org/10.2147/IJN.S299969
Checked for plagiarism Yes
Review by Single anonymous peer review
Peer reviewer comments 2
Editor who approved publication: Dr Yan Shen
Background: Renal fibrosis is a chronic and progressive process affecting kidneys in chronic kidney disease (CKD). Mesenchymal stem cells-derived exosomes (MSCs-Exo) have been shown to alleviate renal fibrosis and injury, but the mechanism of MSCs-Exo-induced renal protection remains unknown.
Methods: In this study, MSCs were transfected with let-7i-5p antagomir (anti-let-7i-5p), and then exosomes were isolated from the transfected MSCs to deliver anti-let-7i-5p oligonucleotides to inhibit the level of let-7i-5p in kidney tubular epithelial cells (NRK-52E).
Results: In both NRK-52E cells stimulated by TGF-β 1 and the mouse kidneys after unilateral ureteral obstruction (UUO), we demonstrated increased level of let-7i-5p. In addition, MSCs-Exo can deliver anti-let-7i-5p to reduce the level of let-7i-5p in NRK-52E cells and increase the expression of its target gene TSC1. Moreover, exosomal anti-let-7i-5p reduced extracellular matrix (ECM) deposition and attenuated epithelial–mesenchymal transition (EMT) process in transforming growth factor beta 1 (TGF-β 1)-stimulated NRK-52E cells and in the kidneys of UUO-treated mice. Meanwhile, mice received exosomal anti-let-7i-5p displayed reduced renal fibrosis and improved kidney function when challenged with UUO. Furthermore, exosomal anti-let-7i-5p promoted the activation the tuberous sclerosis complex subunit 1/mammalian target of rapamycin (TSC1/mTOR) signaling pathway in vivo and in vitro.
Conclusion: In conclusion, exosomal anti-let-7i-5p from MSCs exerts anti-fibrotic effects in TGF-β 1-induced fibrogenic responses in NRK52E cells in vitro as well as in UUO-induced renal fibrosis model in vivo. These results provided a novel perspective on improving renal fibrosis by MSCs-Exo.
Keywords: chronic kidney disease, renal fibrosis, mesenchymal stem cells, exosomes and microRNAs