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Slowing down aging from within: mechanistic aspects of anti-aging hormetic effects of mild heat stress on human cells

机译:从内部延缓衰老:轻度热应激对人体细胞的抗衰老激素作用的机理

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摘要

Since aging is primarily the result of a failure of maintenance and repair mechanisms, various approaches are being developed in order to stimulate these pathways and modulate the process of aging. One such approach, termed hormesis, involves challenging cells and organisms by mild stress that often results in anti-aging and life prolonging effects. In a series of experimental studies, we have reported that repeated mild heat stress (RMHS) has anti-aging hormetic effects on growth and various cellular and biochemical characteristics of human skin fibroblasts undergoing aging in vitro. These beneficial effects of repeated challenge include the maintenance of stress protein profile, reduction in the accumulation of oxidatively and glycoxidatively damaged proteins, stimulation of the proteasomal activities for the degradation of abnormal proteins, improved cellular resistance to other stresses, and enhanced levels of cellular antioxidant ability. In order to elucidate the molecular mechanisms of hormetic effects of RMHS, we are now undertaking studies on signal transduction pathways, energy production and utilisation kinetics, and the proteomic analysis of patterns of proteins synthesised and their posttranslational modifications in various types of human cells undergoing cellular aging in vitro. Human applications of hormesis include early intervention and modulation of the aging process to prevent or delay the onset of age-related conditions, such as sarcopenia, Alzheimer's disease, Parkinson's disease, cataracts and osteoporosis.
机译:由于老化主要是维护和修复机制失败的结果,因此正在开发各种方法来刺激这些途径并调节老化过程。一种这样的方法,称为“兴奋剂”,涉及通过轻度压力挑战细胞和生物,这通常会导致抗衰老和延长寿命。在一系列的实验研究中,我们报告了反复的轻度热应激(RMHS)对体外老化的人皮肤成纤维细胞的生长以及各种细胞和生化特征具有抗衰老作用。反复挑战的这些有益效果包括维持应激蛋白分布,减少氧化和糖氧化损伤蛋白的积累,刺激蛋白酶体活性以降解异常蛋白,改善细胞对其他应激的抵抗力以及增强细胞抗氧化剂水平能力。为了阐明RMHS的致敏作用的分子机制,我们目前正在研究信号转导途径,能量产生和利用动力学,以及蛋白质合成的蛋白质组学及其在翻译后修饰的各种类型人类细胞中的蛋白质组学分析。体外老化。人为性兴奋剂的应用包括早期干预和调节衰老过程,以预防或延迟与年龄相关的疾病的发作,例如肌肉减少症,阿尔茨海默氏病,帕金森氏病,白内障和骨质疏松症。

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