Gavia-García Graciela, Rosado-Pérez Juana, Arista-Ugalde Taide Laurita, Aguiñiga-Sánchez Itzen, Santiago-Osorio Edelmiro, Mendoza-Núñez Víctor Manuel
Research Unit on Gerontology, FES Zaragoza, National Autonomous University of Mexico, Mexico City 09230, Mexico.
Hematopoiesis and Leukemia Laboratory, Research Unit on Cell Differentiation and Cancer, FES Zaragoza, National Autonomous University of Mexico, Mexico City 09230, Mexico.
Biology (Basel). 2021 Mar 24;10(4):253. doi: 10.3390/biology10040253.
A great amount of scientific evidence supports that Oxidative Stress (OxS) can contribute to telomeric attrition and also plays an important role in the development of certain age-related diseases, among them the metabolic syndrome (MetS), which is characterised by clinical and biochemical alterations such as obesity, dyslipidaemia, arterial hypertension, hyperglycaemia, and insulin resistance, all of which are considered as risk factors for type 2 diabetes mellitus (T2DM) and cardiovascular diseases, which are associated in turn with an increase of OxS. In this sense, we review scientific evidence that supports the association between OxS with telomere length (TL) dynamics and the relationship with MetS components in aging. It was analysed whether each MetS component affects the telomere length separately or if they all affect it together. Likewise, this review provides a summary of the structure and function of telomeres and telomerase, the mechanisms of telomeric DNA repair, how telomere length may influence the fate of cells or be linked to inflammation and the development of age-related diseases, and finally, how the lifestyles can affect telomere length.
大量科学证据表明,氧化应激(OxS)会导致端粒损耗,并且在某些与年龄相关疾病的发展过程中也起着重要作用,其中包括代谢综合征(MetS),其特征在于临床和生化改变,如肥胖、血脂异常、动脉高血压、高血糖和胰岛素抵抗,所有这些都被视为2型糖尿病(T2DM)和心血管疾病的危险因素,而这些疾病又与氧化应激增加相关。从这个意义上讲,我们回顾了支持氧化应激与端粒长度(TL)动态变化之间关联以及与衰老过程中代谢综合征各组分关系的科学证据。分析了代谢综合征的每个组分是单独影响端粒长度,还是它们共同影响端粒长度。同样,本综述总结了端粒和端粒酶的结构与功能、端粒DNA修复机制、端粒长度如何影响细胞命运或与炎症及与年龄相关疾病的发展相关联,以及最后生活方式如何影响端粒长度。