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Novel oral edaravone attenuates diastolic dysfunction of diabetic cardiomyopathy by activating the Nrf2 signaling pathway.

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机构: [1]Department of Cardiology, First Affiliated Hospital of Kunming Medical University, 296 Xichang Road, Wuhua District, Kunming, 650032, China [2]Yunnan Key Laboratory of Stem Cells and Regeneration Medicine, Biomedical Engineering Research Center, 1168 Chunrong West Road, Chenggong District, Kunming, 650500, China [3]Department of Ultrasound, Second Affiliated Hospital of Kunming Medical University, 376 Dianmian Avenue, Wuhua District, Kunming, 650032, China [4]Department of Pharmacology, College of Basic Medicine, Kunming Medical University, 1168 Chunrong West Road, Chenggong District, Kunming, 650500, China [5]Health and Biomedical Innovation, Clinical and Health Sciences, University of South Australia, 101 Currie Street, Adelaide, 5001, Australia
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Oxidative stress plays a crucial role in the pathophysiology of diastolic dysfunction associated with diabetic cardiomyopathy. Novel oral edaravone (OED) alleviates oxidative stress by scavenging free radicals and may be suitable for the treatment of chronic diseases such as diabetic cardiomyopathy. Oral administration of OED to type 2 diabetic rats (induced by high-sugar/high-fat diet and intraperitoneal injection of streptozotocin) for 4 w decreased malondialdehyde and increased superoxide dismutase. Moreover, it significantly improved ratios of early to late diastolic peak velocity, myocardium hypertrophy accompanied by decreased cross-sectional areas of cardiomyocytes, the proportion of apoptotic cells, collagen volume fractions, and deposition of collagen I/III. In H9c2 cells, OED reduced reactive oxygen species, cell surface area, and numbers of terminal deoxynucleotidyl transferase-mediated dUTP nick end-labeling-positive cells induced by glucolipotoxicity. OED remarkably upregulated expression of the nuclear factor E2-related factor (Nrf2) signaling pathway both in vivo and in vitro. In addition, OED promoted Nrf2 nuclear translocation and upregulated nicotinamide adenine dinucleotide phosphate quinone oxidoreductase and heme oxygenase. Silencing of Nrf2 abolished the protective effect of OED in H9c2 cells. Our findings demonstrate that OED has the therapeutic potential to ameliorate diastolic dysfunction associated with diabetic cardiomyopathy. Its effect was mainly achieved by attenuating hyperglycemia and hyperlipidemia-induced cardiomyocyte hypertrophy, apoptosis, and fibrosis by activating the Nrf2 signaling pathway.Copyright © 2022 Elsevier B.V. All rights reserved.

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大类 | 3 区 医学
小类 | 2 区 药学
最新[2023]版:
大类 | 3 区 医学
小类 | 2 区 药学
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出版当年[2022]版:
Q1 PHARMACOLOGY & PHARMACY
最新[2023]版:
Q1 PHARMACOLOGY & PHARMACY

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第一作者机构: [1]Department of Cardiology, First Affiliated Hospital of Kunming Medical University, 296 Xichang Road, Wuhua District, Kunming, 650032, China
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通讯机构: [1]Department of Cardiology, First Affiliated Hospital of Kunming Medical University, 296 Xichang Road, Wuhua District, Kunming, 650032, China [4]Department of Pharmacology, College of Basic Medicine, Kunming Medical University, 1168 Chunrong West Road, Chenggong District, Kunming, 650500, China [5]Health and Biomedical Innovation, Clinical and Health Sciences, University of South Australia, 101 Currie Street, Adelaide, 5001, Australia [*1]First Affiliated Hospital of Kunming Medical University, 296 Xichang Road, Wuhua District, Kunming, 650032, China [*2]Kunming Medical University, 1168 Chunrong West Road, Chenggong District, Kunming, 650500, China [*3]University of South Australia, 101 Currie Street, Adelaide, 5001, Australia.
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