Literature DB >> 32873490

Recent Advances in Epigenetics of Macrovascular Complications in Diabetes Mellitus.

Mingchang Pang1, Yalan Li2, Wen Gu1, Zhen Sun2, Zhongqun Wang2, Lihua Li3.   

Abstract

Diabetes mellitus is a metabolic and endocrine disorder characterised by hyperglycaemia. Type 2 diabetes mellitus accounts for >90% of people with diabetes. Disorders of blood glucose metabolism and a series of adverse reactions triggered by hyperglycaemia-such as oxidative stress and inflammation-are conducive to the occurrence of diabetic macrovascular complications, which pose severe challenges to the quality of life and life expectancy of people with diabetes. In recent years, epigenetics has attracted more and more researchers' attention as they explore the causes and treatment of diabetes. Epigenetics refers to the regulation of gene expression without changes in gene content. Research focusses on DNA methylation, histone post-translational modification and non-coding RNA. A series of studies have shown that epigenetic regulation accelerates the development of atherosclerosis by interfering with the physiological activities of macrophages, endothelial cells and smooth muscle cells, such as inflammation, lipid deposition and apoptosis. Therefore, it is particularly important to explore new epigenetic discoveries to reduce the severity and harmfulness of diabetes. This study reviewed recent advances in epigenetics in the pathogenesis of diabetes mellitus and its macrovascular complications.
Copyright © 2020 Australian and New Zealand Society of Cardiac and Thoracic Surgeons (ANZSCTS) and the Cardiac Society of Australia and New Zealand (CSANZ). Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Atherosclerosis; Diabetes mellitus; Epigenetics; Macrovascular complications

Mesh:

Year:  2020        PMID: 32873490     DOI: 10.1016/j.hlc.2020.07.015

Source DB:  PubMed          Journal:  Heart Lung Circ        ISSN: 1443-9506            Impact factor:   2.975


  4 in total

1.  Small-molecule antagonism of the interaction of the RAGE cytoplasmic domain with DIAPH1 reduces diabetic complications in mice.

Authors:  Michaele B Manigrasso; Piul Rabbani; Lander Egaña-Gorroño; Nosirudeen Quadri; Laura Frye; Boyan Zhou; Sergey Reverdatto; Lisa S Ramirez; Stephen Dansereau; Jinhong Pan; Huilin Li; Vivette D D'Agati; Ravichandran Ramasamy; Robert J DeVita; Alexander Shekhtman; Ann Marie Schmidt
Journal:  Sci Transl Med       Date:  2021-11-24       Impact factor: 17.956

Review 2.  Histone Methylation and Oxidative Stress in Cardiovascular Diseases.

Authors:  Xin Yi; Qiu-Xia Zhu; Xing-Liang Wu; Tuan-Tuan Tan; Xue-Jun Jiang
Journal:  Oxid Med Cell Longev       Date:  2022-03-16       Impact factor: 6.543

Review 3.  Hypoxia and hypoxia-inducible factors in diabetes and its complications.

Authors:  Sergiu-Bogdan Catrina; Xiaowei Zheng
Journal:  Diabetologia       Date:  2021-01-26       Impact factor: 10.122

4.  Hypermethylation Effects of Yiqihuoxue Decoction in Diabetic Atherosclerosis Using Genome-Wide DNA Methylation Analyses.

Authors:  Qing-Bing Zhou; Yao Chen; Yan Zhang; Dan-Dan Li; Hong-Qin Wang; Zi-Jun Jia; Yu Jin; Feng-Qin Xu; Ying Zhang
Journal:  J Inflamm Res       Date:  2022-01-08
  4 in total

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