The potential of therapeutic strategies targeting mitochondrial biogenesis for the treatment of insulin resistance and type 2 diabetes mellitus

被引:0
作者
Wenwen Ding
Xiaoxue Yang
Kaiyi Lai
Yu Jiang
Ying Liu
机构
[1] Beijing University of Chinese Medicine,School of Life Sciences
[2] University of Pittsburgh,Department of Pharmacology and Chemical Biology, School of Medicine
来源
Archives of Pharmacal Research | 2024年 / 47卷
关键词
Mitochondrial biogenesis; Type 2 diabetes mellitus; Diabetic complications; Insulin resistance; Natural products;
D O I
暂无
中图分类号
学科分类号
摘要
Type 2 diabetes mellitus (T2DM) is a persistent metabolic disorder marked by deficiencies in insulin secretion and/or function, affecting various tissues and organs and leading to numerous complications. Mitochondrial biogenesis, the process by which cells generate new mitochondria utilizing existing ones plays a crucial role in energy homeostasis, glucose metabolism, and lipid handling. Recent evidence suggests that promoting mitochondrial biogenesis can alleviate insulin resistance in the liver, adipose tissue, and skeletal muscle while improving pancreatic β-cell function. Moreover, enhanced mitochondrial biogenesis has been shown to ameliorate T2DM symptoms and may contribute to therapeutic effects for the treatment of diabetic nephropathy, cardiomyopathy, retinopathy, and neuropathy. This review summarizes the intricate connection between mitochondrial biogenesis and T2DM, highlighting the potential of novel therapeutic strategies targeting mitochondrial biogenesis for T2DM treatment and its associated complications. It also discusses several natural products that exhibit beneficial effects on T2DM by promoting mitochondrial biogenesis.
引用
收藏
页码:219 / 248
页数:29
相关论文
共 1413 条
  • [1] Aguer C(2012)Skeletal muscle mitochondrial energetics in obesity and type 2 diabetes mellitus: endocrine aspects Best Pract Res Clin Endocrinol Metab 26 805-819
  • [2] Harper ME(2019)Pro-renin receptor suppresses mitochondrial biogenesis and function via AMPK/SIRT-1/PGC-1alpha pathway in diabetic kidney PLOS ONE 14 e0225728-74
  • [3] Akhtar S(2020)Potential therapeutic targets of epigallocatechin gallate (EGCG), the most abundant catechin in green tea, and its role in the therapy of various types of cancer Molecules 25 3146-2066
  • [4] Siragy HM(2013)Diagnosis and classification of diabetes mellitus Diabetes Care 36 S67-551
  • [5] Almatroodi SA(2022)Mitochondrial biogenesis, telomere length and cellular senescence in Parkinson’s disease and Lewy body dementia Sci Rep 12 17578-476
  • [6] Almatroudi A(2018)CHTM1, a novel metabolic marker deregulated in human malignancies Oncogene 37 2052-392
  • [7] Khan AA(2013)Resveratrol supplementation improves white adipose tissue function in a depot-specific manner in Zucker diabetic fatty rats Am J Physiol Regul Integr Comp Physiol 305 R542-F328
  • [8] Alhumaydhi FA(2020)Diabetes mellitus, mitochondrial dysfunction and Ca Int J Mol Sci 21 6559-541
  • [9] Alsahli MA(2009)-dependent permeability transition pore J Cardiovasc Pharmacol 54 468-1577
  • [10] Rahmani AH(2016)Grapes, wines, resveratrol, and heart health Int J Biochem Cell Biol 81 383-1432