机构:[1]Institute of Nephrology, Zhong Da Hospital, Southeast University, Nanjing, Jiangsu, 210009, China[2]Department of Pediatric Nephrology, the Second Affiliated Hospital of Nanjing Medical University, Nanjing, 210003, China[3]Renal Division, Department of Medicine, Emory University, Atlanta, GA 30322, USA[4]College of Animal Science and Veterinary Medicine, Shanxi Agricultural University, Taigu, Shanxi, 030801, China[5]Division of Cardiology, Department of Medicine, Emory University, Atlanta, GA 30322, USA[6]Department of Cardiology, The First Affiliated Hospital of Nanjing Medical University, Nanjing, Jiangsu, China内科系统心血管内科江苏省人民医院[7]The Key Laboratory of Remodeling-related Cardiovascular Diseases, Beijing Anzhen Hospital Affiliated to Capital Medical University, Beijing Institute of Heart Lung and Blood Vessel Diseases, Beijing 100029, China首都医科大学附属安贞医院
Uremic cardiomyopathy and muscle atrophy are associated with insulin resistance and contribute to chronic kidney disease (CKD)-induced morbidity and mortality. We hypothesized that restoration of miR-26a levels would enhance exosome-mediated microRNA transfer to improve muscle wasting and cardiomyopathy that occur in CKD. Methods: Using next generation sequencing and qPCR, we found that CKD mice had a decreased level of miR-26a in heart and skeletal muscle. We engineered an exosome vector that contained Lamp2b, an exosomal membrane protein gene fused with a muscle-specific surface peptide that targets muscle delivery. We transfected this vector into muscle satellite cells and then transduced these cells with adenovirus that expresses miR-26a to produce exosomes encapsulated miR-26a (Exo/miR-26a). Exo/miR-26a was injected once per week for 8 weeks into the tibialis anterior (TA) muscle of 5/6 nephrectomized CKD mice. Results: Treatment with Exo/miR-26a resulted in increased expression of miR-26a in skeletal muscle and heart. Overexpression of miR-26a increased the skeletal muscle cross-sectional area, decreased the upregulation of FBXO32/atrogin-1 and TRIM63/MuRF1 and depressed cardiac fibrosis lesions. In the hearts of CKD mice, FoxO1 was activated, and connective tissue growth factor, fibronectin and collagen type I alpha 1 were increased. These responses were blunted by injection of Exo/miR-26a. Echocardiograms showed that cardiac function was improved in CKD mice treated with Exo/miR-26a. Conclusion: Overexpression of miR-26a in muscle prevented CKD-induced muscle wasting and attenuated cardiomyopathy via exosome-mediated miR-26a transfer. These results suggest possible therapeutic strategies for using exosome delivery of miR-26a to treat complications of CKD.
基金:
Research reported in this publication was supported by the National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS) of the National Institutes of Health under Award Number R01 AR060268 and American Heart Association Discover and Innovation Grants supported by Bayer Group (17IBDG33780000) to X.H.W; The National Natural Science Foundation of China (81700618), the Natural Science Foundation of Jiangsu Province (BK20181487), China Young Nephrologist Research Funding and the Fundamental Research Funds for the Central Universities (2242018K41089) to B.W; The Natural Science Foundation of Jiangsu Province (BK20161071) to A.Q.Z; and The National Natural Science Foundation of China (31772690) to H.D.W; National Key Research Program (2018YFC1314000) to B.C.L. This research project was also supported in part (microRNA deep sequencing) by the Genomics core of Yerkes National Primate Research Center under Award number NIH ORIP/OD P51OD011132 and in part (luciferase constructs) by the Emory Integrated Genomics Core (EIGC), which is subsidized by the Emory University School of Medicine and is one of the Emory Integrated Core Facilities under NIH Award Number UL1TR000454. The content is solely the responsibility of the authors and does not necessarily reflect the official views of the NIH or the US Government.
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外文
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出版当年[2018]版:
大类|1 区医学
小类|1 区医学:研究与实验
最新[2023]版:
大类|1 区医学
小类|1 区医学:研究与实验
第一作者:
第一作者机构:[1]Institute of Nephrology, Zhong Da Hospital, Southeast University, Nanjing, Jiangsu, 210009, China[3]Renal Division, Department of Medicine, Emory University, Atlanta, GA 30322, USA
共同第一作者:
通讯作者:
通讯机构:[3]Renal Division, Department of Medicine, Emory University, Atlanta, GA 30322, USA[*1]Renal / Medicine, WMB Room 338C, M/S 1930/001/1AG, 1639 Pierce Dr., Emory University, School of Medicine, Atlanta, GA, 30322-0001.
推荐引用方式(GB/T 7714):
Bin Wang,Aiqing Zhang,Haidong Wang,et al.miR-26a Limits Muscle Wasting and Cardiac Fibrosis through Exosome-Mediated microRNA Transfer in Chronic Kidney Disease[J].THERANOSTICS.2019,9(7):1864-1877.doi:10.7150/thno.29579.
APA:
Bin Wang,Aiqing Zhang,Haidong Wang,Janet D. Klein,Lin Tan...&Xiaonan H. Wang.(2019).miR-26a Limits Muscle Wasting and Cardiac Fibrosis through Exosome-Mediated microRNA Transfer in Chronic Kidney Disease.THERANOSTICS,9,(7)
MLA:
Bin Wang,et al."miR-26a Limits Muscle Wasting and Cardiac Fibrosis through Exosome-Mediated microRNA Transfer in Chronic Kidney Disease".THERANOSTICS 9..7(2019):1864-1877