EPIGET Lab, Department of Clinical Sciences and Community Health, Università Degli Studi Di Milano, Milan, Italy.
Occupational Health Unit, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Milan, Italy.
Curr Environ Health Rep. 2021 Dec;8(4):309-322. doi: 10.1007/s40572-021-00327-3. Epub 2021 Nov 6.
Extracellular vesicles (EVs) are nano-sized lipid particles that participate in intercellular signaling through the trafficking of bioactive molecules from parental cells to recipient ones. This well-orchestrated communication system is crucial for the organism to respond to external cues in a coordinated manner; indeed, environmental and lifestyle exposures can modify both EV number and content, with consequences on cellular metabolism and homeostasis. In particular, a growing body of evidence suggests that exposome-induced changes in EV profile could regulate the aging process, both at the cellular and organismal levels. Here, we provide an overview of the role played by ambient-induced EVs on aging and age-related diseases. Among the several environmental factors that can affect the communication network operated by EVs, we focused on air pollution, ultraviolet light, diet, and physical exercise. Moreover, we performed a miRNA target analysis, to support the role of EV-miRNA emerging from the literature in the context of aging.
The overall emerging picture strongly supports a key regulatory role for EVs at the interface between external stimuli and cellular/organismal aging, thus providing novel insights into the molecular mechanisms linking a "healthy exposome" to well-being in old age. In addition, this knowledge will pave the way for research aimed at developing innovative antiaging strategies based on EVs.
细胞外囊泡 (EVs) 是纳米大小的脂质颗粒,通过将生物活性分子从亲代细胞运输到受体细胞来参与细胞间信号传递。这种精心协调的通讯系统对于生物体以协调的方式对外界刺激做出反应至关重要;事实上,环境和生活方式的暴露可以改变 EV 的数量和内容,从而影响细胞代谢和内稳态。特别是,越来越多的证据表明,外核诱导的 EV 谱变化可以调节细胞和机体水平的衰老过程。在这里,我们概述了环境诱导的 EV 在衰老和与年龄相关的疾病中的作用。在几种可能影响 EV 通讯网络的环境因素中,我们重点关注了空气污染、紫外线、饮食和体育锻炼。此外,我们进行了 miRNA 靶标分析,以支持 EV-miRNA 在衰老背景下从文献中出现的作用。
总体而言,这一新兴图景强烈支持 EV 在外部刺激与细胞/机体衰老之间的界面上发挥关键调节作用,从而为将“健康外核”与老年健康相关的分子机制提供新的见解。此外,这一知识将为基于 EV 开发创新抗衰老策略的研究铺平道路。