Telomeres and Mitochondrial Metabolism: Implications for Cellular Senescence and Age-related Diseases

被引:0
作者
Xingyu Gao
Xiao Yu
Chang Zhang
Yiming Wang
Yanan Sun
Hui Sun
Haiying Zhang
Yingai Shi
Xu He
机构
[1] Jilin University,The Key Laboratory of Pathobiology, Ministry of Education, College of Basic Medical Sciences
来源
Stem Cell Reviews and Reports | 2022年 / 18卷
关键词
Telomeres; Mitochondrial metabolism; Cellular senescence; Aging;
D O I
暂无
中图分类号
学科分类号
摘要
Cellular senescence is an irreversible cell arrest process, which is determined by a variety of complicated mechanisms, including telomere attrition, mitochondrial dysfunction, metabolic disorders, loss of protein homeostasis, epigenetic changes, etc. Cellular senescence is causally related to the occurrence and development of age-related disease. The elderly is liable to suffer from disorders such as neurodegenerative diseases, cancer, and diabetes. Therefore, it is increasingly imperative to explore specific countermeasures for the treatment of age-related diseases. Numerous studies on humans and mice emphasize the significance of metabolic imbalance caused by short telomeres and mitochondrial damages in the onset of age-related diseases. Although the experimental data are relatively independent, more and more evidences have shown that there is mutual crosstalk between telomeres and mitochondrial metabolism in the process of cellular senescence. This review systematically discusses the relationship between telomere length, mitochondrial metabolic disorder, as well as their underlying mechanisms for cellular senescence and age-related diseases. Future studies on telomere and mitochondrial metabolism may shed light on potential therapeutic strategies for age-related diseases.
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页码:2315 / 2327
页数:12
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共 374 条
[1]  
Yan C(2021)Cellular senescence affects cardiac regeneration and repair in ischemic heart disease Aging & Disease 12 552-569
[2]  
Xu Z(2009)A comparative analysis of the cell biology of senescence and aging Cellular and Molecular Life Sciences 66 2503-2524
[3]  
Huang W(2014)Senescence and apoptosis: dueling or complementary cell fates? EMBO Reports 15 1139-1153
[4]  
Hwang ES(2008)DNA damage and ageing: new-age ideas for an age-old problem Nature Cell Biology 10 1241-1247
[5]  
Yoon G(2021)Anti-aging properties of phytoconstituents and phyto-nanoemulsions and their application in managing aging-related diseases Advanced Drug Delivery Reviews 176 113886-583
[6]  
Kang HT(2021)The anti-aging effect of velvet antler polypeptide is dependent on modulation of the gut microbiota and regulation of the PPARα/APOE4 pathway Journal of Integrative Neuroscience 20 573-500
[7]  
Childs BG(2022)Small berries as health-promoting ingredients: a review on anti-aging effects and mechanisms in Caenorhabditis elegans Food & Function 13 478-446
[8]  
Baker DJ(2014)The role of senescent cells in ageing Nature 509 439-825
[9]  
Kirkland JL(2011)Glucose reduction prevents replicative senescence and increases mitochondrial respiration in human mesenchymal stem cells Cell Transplantation 20 813-167
[10]  
Campisi J(2016)Structure and function of the telomeric CST complex Computational and Structural Biotechnology Journal 14 161-1629