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秀丽隐杆线虫:从衰老线虫中学到的可以和不可以学到的东西。

Caenorhabditis elegans: What We Can and Cannot Learn from Aging Worms.

机构信息

1 Department of Biochemistry, National University of Singapore , Singapore, Singapore .

2 Yale-NUS College , Singapore, Singapore .

出版信息

Antioxid Redox Signal. 2015 Jul 20;23(3):256-79. doi: 10.1089/ars.2014.6210. Epub 2015 Apr 29.

Abstract

SIGNIFICANCE

The nematode Caenorhabditis elegans is a widely used model organism for research into aging. However, nematodes diverged from other animals between 600 and 1300 million years ago. Beyond the intuitive impression that some aspects of aging appear to be universal, is there evidence that insights into the aging process of nematodes may be applicable to humans?

RECENT ADVANCES

There have been a number of results in nematodes that appear to contradict long-held beliefs about mechanisms and causes of aging. For example, ablation of several key antioxidant systems has often failed to result in lifespan shortening in C. elegans.

CRITICAL ISSUES

While it is clear that some central signaling pathways controlling lifespan are broadly conserved across large evolutionary distances, it is less clear to what extent downstream molecular mechanisms of aging are conserved. In this review we discuss the biology of C. elegans and mammals in the context of aging and age-dependent diseases. We consider evidence from studies that attempt to investigate basic, possibly conserved mechanisms of aging especially in the context of the free radical theory of aging. Practical points, such as the need for blinding of lifespan studies and for appropriate biomarkers, are also considered.

FUTURE DIRECTIONS

As data on the aging process(es) in different organisms increase, it is becoming increasingly clear that there are both conserved (public) and private aspects to aging. It is important to explore the dividing lines between these two aspects and to be aware of the large gray areas in-between.

摘要

意义

秀丽隐杆线虫是一种广泛用于衰老研究的模式生物。然而,线虫与其他动物在 6 亿至 13 亿年前就已经分化。除了衰老的某些方面似乎普遍存在这一直观印象之外,是否有证据表明对线虫衰老过程的了解可能适用于人类?

最新进展

在秀丽隐杆线虫中出现了一些结果,这些结果似乎与长期以来关于衰老机制和原因的观点相矛盾。例如,几个关键抗氧化系统的消融通常不会导致线虫寿命缩短。

关键问题

虽然控制寿命的一些核心信号通路在很大的进化距离上广泛保守是显而易见的,但衰老的下游分子机制在多大程度上保守尚不清楚。在这篇综述中,我们根据衰老和与年龄相关的疾病讨论了秀丽隐杆线虫和哺乳动物的生物学。我们考虑了试图研究基本的、可能保守的衰老机制的研究证据,特别是在自由基衰老理论的背景下。还考虑了一些实际问题,如需要对寿命研究进行盲法处理和适当的生物标志物。

未来方向

随着不同生物体衰老过程数据的增加,越来越明显的是,衰老既有保守的(公有)方面,也有私人方面。探索这两个方面的分界线以及它们之间的灰色地带非常重要。

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