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题名Isoquercetin regulates SREBP-1C via AMPK pathway in skeletal muscle to exert antihyperlipidemic and anti-inflammatory effects in STZ induced diabetic rats
作者
发表日期2020
发表期刊Molecular Biology Reports
ISSN/eISSN0301-4851
卷号47期号:1页码:593-602
摘要

Diabetes mellitus (DM) is a cluster of metabolic diseases that exhibits high blood glucose levels accompanied by hyperlipidemia and inflammation. DM is the primary risk factor contributes majorly to cardiovascular disease (CVD) mediated morbidity and mortality. The incidence of dyslipidemia seems to attribute considerably to the initiation of CVDs. The beneficial action of isoquercetin on hyperlipidemia and related signaling pathways are not documented yet, hence we decide to carry out this study. The experimental rats were divided into five groups: Group 1, control rats; group 2, isoquercetin control (40 mg/kg b.w); group 3, diabetic rats (STZ-40 mg/kg b.w); group 4, diabetic + isoquercetin (40 mg/kg b.w); and group 5, diabetic + glibenclamide (600 µg/kg b.w). The animals were sacrificed at the end of the experimental duration of 45 days. Results of our analysis reveal that isoquercetin have a major impact on the tissue lipid profile, isoquercetin strongly regulates the expression of various lipid-metabolizing enzymes, C-reactive protein, expression of various inflammatory genes, SREBP-1C genes and proteins and AMP-activated protein kinase-α (AMPK) signaling pathway genes and proteins. Results recommend that isoquercetin can be effective in mitigating the consequences of hyperlipidemia and DM. Graphic Abstract: [Figure not available: see fulltext.].

关键词AMPK-α HMG-Co-A Hyperlipidemia SREBP-1C Streptozotocin
DOI10.1007/s11033-019-05166-y
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收录类别SCIE
语种英语English
WOS研究方向Biochemistry & Molecular Biology
WOS类目Biochemistry & Molecular Biology
WOS记录号WOS:000493718700001
引用统计
被引频次:19[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符https://repository.uic.edu.cn/handle/39GCC9TT/1148
专题理工科技学院
通讯作者Xu, Baojun
作者单位
1.Food Science and Technology Program,Beijing Normal University-Hong Kong Baptist University United International College,Zhuhai,2000, Jintong Road, Tangjiawan,519087,China
2.Biomedicine Research and Development Center,Zhuhai Campus of the Zunyi Medical University,Zhuhai,519041,China
第一作者单位北师香港浸会大学
通讯作者单位北师香港浸会大学
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Jayachandran, Muthukumaran,Zhang, Tongze,Wu, Ziyuanet al. Isoquercetin regulates SREBP-1C via AMPK pathway in skeletal muscle to exert antihyperlipidemic and anti-inflammatory effects in STZ induced diabetic rats[J]. Molecular Biology Reports, 2020, 47(1): 593-602.
APA Jayachandran, Muthukumaran, Zhang, Tongze, Wu, Ziyuan, Liu, Yinhua, & Xu, Baojun. (2020). Isoquercetin regulates SREBP-1C via AMPK pathway in skeletal muscle to exert antihyperlipidemic and anti-inflammatory effects in STZ induced diabetic rats. Molecular Biology Reports, 47(1), 593-602.
MLA Jayachandran, Muthukumaran,et al."Isoquercetin regulates SREBP-1C via AMPK pathway in skeletal muscle to exert antihyperlipidemic and anti-inflammatory effects in STZ induced diabetic rats". Molecular Biology Reports 47.1(2020): 593-602.
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