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Systematic age‐ organ‐ and diet‐associated ionome remodeling and the development of ionomic aging clocks

机译:系统的与年龄器官和饮食相关的离子组重塑以及ionomic衰老时钟的发展

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摘要

Aging involves coordinated yet distinct changes in organs and systems throughout life, including changes in essential trace elements. However, how aging affects tissue element composition (ionome) and how these changes lead to dysfunction and disease remain unclear. Here, we quantified changes in the ionome across eight organs and 16 age groups of mice. This global profiling revealed novel interactions between elements at the level of tissue, age, and diet, and allowed us to achieve a broader, organismal view of the aging process. We found that while the entire ionome steadily transitions along the young‐to‐old trajectory, individual organs are characterized by distinct element changes. The ionome of mice on calorie restriction (CR) moved along a similar but shifted trajectory, pointing that at the organismal level this dietary regimen changes metabolism in order to slow down aging. However, in some tissues CR mimicked a younger state of control mice. Even though some elements changed with age differently in different tissues, in general aging was characterized by the reduced levels of elements as well as their increased variance. The dataset we prepared also allowed to develop organ‐specific, ionome‐based markers of aging that could help monitor the rate of aging. In some tissues, these markers reported the lifespan‐extending effect of CR. These aging biomarkers have the potential to become an accessible tool to test the age‐modulating effects of interventions.
机译:衰老涉及整个生命中器官和系统的协调而独特的变化,包括必需微量元素的变化。但是,衰老如何影响组织元素组成(离子组)以及这些变化如何导致功能障碍和疾病仍不清楚。在这里,我们量化了小鼠八个器官和16个年龄组中离子组的变化。这一全球概况揭示了组织,年龄和饮食水平上元素之间的新颖相互作用,使我们能够对衰老过程获得更广泛的有机观察。我们发现,虽然整个离子组沿着年轻到老的轨迹稳定过渡,但各个器官的特征却是明显的元素变化。受卡路里限制(CR)的小鼠的离子组沿着相似但变化的轨迹运动,指出在机体水平上,这种饮食方案会改变新陈代谢,从而减缓衰老。但是,在某些组织中,CR模仿了对照小鼠的年轻状态。即使某些元素在不同组织中随年龄的变化而变化,但总的来说,衰老的特征是元素水平降低以及方差增加。我们准备的数据集还允许开发基于器官的,基于离子组的衰老标记,可以帮助监测衰老速率。在某些组织中,这些标记物报告了CR的寿命延长作用。这些老化的生物标志物有可能成为测试干预措施对年龄的调节作用的可访问工具。

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