Enviromimetics: From exercise mimetics to cognitomimetics in the quest for enhanced brain health and cognition.

IF 4.4 2区 医学 Q1 NEUROSCIENCES
Anthony J Hannan
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引用次数: 0

Abstract

Enviromimetics were first proposed over two decades ago, as novel therapeutics to mimic or enhance the beneficial effects of environmental stimulation. In the intervening period, subclasses of enviromimetics have been proposed, most notably exercise mimetics. Epimimetics constitute an additional subclass of enviromimetics, which act via epigenetic mechanisms. In this article, the concept of enviromimetics is updated, including its subclasses, and explored in the context of the development of novel therapeutic approaches to a wide range of human disorders, with a specific focus on neurological diseases and psychiatric disorders. Furthermore, a new concept is introduced, that of 'cognitomimetics', which specifically mimic or enhance the therapeutic effects of cognitive stimulation. One focus of discussion is the beneficial molecular and cellular mechanisms induced by environmental exposures and lifestyle factors, including increased physical activity and cognitive stimulation. Exercise mimetics represent the largest, and most experimentally tractable, subclass of enviromimetics, due to the biologically pervasive and readily quantifiable therapeutic impacts of physical activity, both within the nervous system, and throughout the body. These mechanisms provide new insights into molecular targets for these novel therapeutic approaches. It is hoped that this will lead to new ways to prevent, ameliorate and eventually cure a wide range of human illnesses, particularly brain disorders, which collectively constitute the largest, and most rapidly growing, global burden of disease.

环境模拟:从运动模拟到认知模拟,探索增强大脑健康和认知能力。
环境模拟学在二十多年前首次被提出,作为一种模仿或增强环境刺激有益效果的新型治疗方法。在此期间,环境模仿学的子类被提出,最著名的是运动模仿学。表观拟态构成了环境拟态的另一个子类,它通过表观遗传机制起作用。在这篇文章中,环境模拟学的概念被更新,包括它的子类,并在发展新的治疗方法的背景下探索了广泛的人类疾病,特别关注神经疾病和精神疾病。此外,还引入了一个新的概念,即“认知仿生学”,它专门模仿或增强认知刺激的治疗效果。讨论的一个重点是环境暴露和生活方式因素(包括增加的身体活动和认知刺激)诱导的有益分子和细胞机制。运动模仿学是环境模仿学中规模最大、实验最容易处理的一个子类,因为体育活动在神经系统和全身范围内具有生物学上普遍和易于量化的治疗作用。这些机制为这些新型治疗方法的分子靶点提供了新的见解。希望这将带来预防、改善并最终治愈各种人类疾病的新方法,特别是脑部疾病,这些疾病共同构成了最大和增长最快的全球疾病负担。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Physiology-London
Journal of Physiology-London 医学-神经科学
CiteScore
9.70
自引率
7.30%
发文量
817
审稿时长
2 months
期刊介绍: The Journal of Physiology publishes full-length original Research Papers and Techniques for Physiology, which are short papers aimed at disseminating new techniques for physiological research. Articles solicited by the Editorial Board include Perspectives, Symposium Reports and Topical Reviews, which highlight areas of special physiological interest. CrossTalk articles are short editorial-style invited articles framing a debate between experts in the field on controversial topics. Letters to the Editor and Journal Club articles are also published. All categories of papers are subjected to peer reivew. The Journal of Physiology welcomes submitted research papers in all areas of physiology. Authors should present original work that illustrates new physiological principles or mechanisms. Papers on work at the molecular level, at the level of the cell membrane, single cells, tissues or organs and on systems physiology are all acceptable. Theoretical papers and papers that use computational models to further our understanding of physiological processes will be considered if based on experimentally derived data and if the hypothesis advanced is directly amenable to experimental testing. While emphasis is on human and mammalian physiology, work on lower vertebrate or invertebrate preparations may be suitable if it furthers the understanding of the functioning of other organisms including mammals.
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