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操纵外显子组以实现更好的衰老控制。

Manipulating the exposome to enable better ageing.

机构信息

Wolfson Wohl Cancer Research Centre, Institute of Cancer Sciences, University of Glasgow, Glasgow G61 1QH, U.K.

Research Institute of Wildlife Ecology, Department of Interdisciplinary Life Sciences, University of Veterinary Medicine, Savoyenstreet 1, 1160 Vienna, Austria.

出版信息

Biochem J. 2021 Jul 30;478(14):2889-2898. doi: 10.1042/BCJ20200958.

Abstract

The sum total of life course exposures creates an exposome that has a significant impact on age-related health. Understanding the interplay between exposome factors and the (epi) genome, offers pertinent insights into the ageing process and its relationship with the accumulation of allostatic load. We propose to exploit this to develop a biomimetic approach that will provide insight into how evolution through natural selection in other species has solved many age related human health issues. In particular, we will emphasise the need to reconnect a more mechanistic approach to medical science with a broader natural sciences approach, using biomimetics to mitigate the global burden of age related ill health. In particular, we will discuss how such an approach indicates leverage of the activities of the Nrf 2 gene to enhance health span via reintroduction of the classical 'Food as Medicine' concept, including modulation of the microbiome and the creation of more salutogenic and biophilic environments. Additionally, we will discuss how this approach integrates with novel and developing senotherapies.

摘要

生命历程中各种暴露因素的总和构成了一个“暴露组”,对与年龄相关的健康有着重大影响。了解暴露组因素与(表观)基因组之间的相互作用,为我们深入了解衰老过程及其与全身适应综合征积累的关系提供了重要线索。我们建议利用这一点来开发一种仿生方法,深入了解自然选择在其他物种中的进化如何解决了许多与年龄相关的人类健康问题。特别是,我们将强调需要将更具机制性的医学科学方法与更广泛的自然科学方法重新联系起来,利用仿生学来减轻与年龄相关的健康不良的全球负担。特别是,我们将讨论这种方法如何利用 Nrf2 基因的活性来通过重新引入经典的“食物即药物”概念来延长健康寿命,包括调节微生物组和创造更有益健康和仿生的环境。此外,我们还将讨论这种方法如何与新出现和正在发展的衰老疗法相结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54fb/8331090/cbc2a1eedfa4/BCJ-478-2889-g0001.jpg

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