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细胞衰老中的线粒体:自噬是否是最薄弱的一环?

Mitochondria in Cell Senescence: Is Mitophagy the Weakest Link?

机构信息

The ABC - Newcastle University Ageing Biology Centre, Newcastle University Institute for Ageing, UK.

The ABC - Newcastle University Ageing Biology Centre, Newcastle University Institute for Ageing, UK.

出版信息

EBioMedicine. 2017 Jul;21:7-13. doi: 10.1016/j.ebiom.2017.03.020. Epub 2017 Mar 14.

Abstract

UNLABELLED

Cell senescence is increasingly recognized as a major contributor to the loss of health and fitness associated with aging. Senescent cells accumulate dysfunctional mitochondria; oxidative phosphorylation efficiency is decreased and reactive oxygen species production is increased. In this review we will discuss how the turnover of mitochondria (a term referred to as mitophagy) is perturbed in senescence contributing to mitochondrial accumulation and Senescence-Associated Mitochondrial Dysfunction (SAMD). We will further explore the subsequent cellular consequences; in particular SAMD appears to be necessary for at least part of the specific Senescence-Associated Secretory Phenotype (SASP) and may be responsible for tissue-level metabolic dysfunction that is associated with aging and obesity. Understanding the complex interplay between these major senescence-associated phenotypes will help to select and improve interventions that prolong healthy life in humans.

SEARCH STRATEGY AND SELECTION CRITERIA

Data for this review were identified by searches of MEDLINE, PubMed, and references from relevant articles using the search terms "mitochondria AND senescence", "(autophagy OR mitophagy) AND senescence", "mitophagy AND aging" and related terms. Additionally, searches were performed based on investigator names. Abstracts and reports from meetings were excluded. Articles published in English between 1995 and 2017 were included. Articles were selected according to their relevance to the topic as perceived by the authors.

摘要

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细胞衰老越来越被认为是与衰老相关的健康和功能丧失的主要原因。衰老细胞积累功能失调的线粒体;氧化磷酸化效率降低,活性氧产生增加。在这篇综述中,我们将讨论线粒体周转(术语称为线粒体自噬)在衰老过程中是如何失调的,导致线粒体积累和衰老相关的线粒体功能障碍(SAMD)。我们将进一步探讨随后的细胞后果;特别是 SAMD 似乎是至少部分特定的衰老相关分泌表型(SASP)所必需的,并且可能负责与衰老和肥胖相关的组织水平代谢功能障碍。了解这些主要衰老相关表型之间的复杂相互作用将有助于选择和改进干预措施,从而延长人类的健康寿命。

检索策略和选择标准

本综述的数据通过在 MEDLINE、PubMed 中搜索,并使用搜索词“线粒体和衰老”、“(自噬或线粒体自噬)和衰老”、“线粒体自噬和衰老”以及相关术语,从相关文章的参考文献中确定。此外,还根据调查员的名字进行了搜索。摘要和会议报告被排除在外。包括 1995 年至 2017 年期间以英文发表的文章。根据作者认为与主题相关的程度选择文章。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e8f/5514379/12318e22b518/gr1.jpg

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