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Hormesis Against Aging and Diseases: Using Properties of Biological Adaptation for Health and Survival Improvement

机译:对抗衰老和疾病的兴奋剂:利用生物适应的特性促进健康和生存

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The idea of using hormesis for postponing aging and improving human health has been recently discussed in scientific literature. This paper shows that redundancy in renewal capacity, some portion of which become activated and manifested in hormesis effects, may originate as a result of interaction between living organisms and their environment. It is shown that such redundancy may normally exist for organisms in the wild, and not only in domesticated and laboratory animals. Further development of the hormesis idea requires: (i) investigating regularities of response to multiple stimuli; (ii) studying slow-time responses (e.g., physiological adaptation) to repeated stimuli; (iii) studying connection between slow and fast (e.g., developing at the cellular and sub-cellular levels) stress responses; (iv) translating knowledge accumulated in studies of animal model systems to humans; (v) evaluating unrealized potential for improving health and longevity using hormetic mechanisms. The use of mathematical and computer modeling for translating experimental knowledge about hormesis effects to humans, as well as connection between studying hormetic mechanisms and analyses of the age trajectories of physiological and biological indices affecting U-shapes curves of morbidity-mortality risks using longitudinal data on aging, health, and longevity are discussed.
机译:最近,科学文献中已经讨论了使用兴奋剂来延缓衰老和改善人体健康的想法。本文表明,更新能力的冗余(其中一部分被激活并表现为毒物效应)可能是由于生物体与其环境之间相互作用的结果。结果表明,这种冗余通常可能存在于野生生物中,不仅存在于驯养和实验动物中。兴奋剂概念的进一步发展要求:(i)研究对多种刺激反应的规律性; (ii)研究对重复刺激的慢时响应(例如生理适应); (iii)研究慢和快(例如,在细胞和亚细胞水平上发展)应激反应之间的联系; (iv)将动物模型系统研究中积累的知识转化为人类; (v)评估使用造假机制改善健康和长寿的未实现潜力。利用数学和计算机模型将有关毒物效应的实验知识翻译给人类,以及研究毒物作用机理与使用纵向数据对影响发病率-死亡率的U型曲线的生理和生物学指标的年龄轨迹进行分析之间的联系讨论了衰老,健康和长寿。

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