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衰老分子机制的建模

Modelling the molecular mechanisms of aging.

作者信息

Mc Auley Mark T, Guimera Alvaro Martinez, Hodgson David, Mcdonald Neil, Mooney Kathleen M, Morgan Amy E, Proctor Carole J

机构信息

Faculty of Science and Engineering, University of Chester, Chester, U.K.

MRC/Arthritis Research UK Centre for Musculoskeletal Ageing (CIMA), Newcastle University, Newcastle upon Tyne, Ormskirk, U.K.

出版信息

Biosci Rep. 2017 Feb 23;37(1). doi: 10.1042/BSR20160177. Print 2017 Feb 28.

Abstract

The aging process is driven at the cellular level by random molecular damage that slowly accumulates with age. Although cells possess mechanisms to repair or remove damage, they are not 100% efficient and their efficiency declines with age. There are many molecular mechanisms involved and exogenous factors such as stress also contribute to the aging process. The complexity of the aging process has stimulated the use of computational modelling in order to increase our understanding of the system, test hypotheses and make testable predictions. As many different mechanisms are involved, a wide range of models have been developed. This paper gives an overview of the types of models that have been developed, the range of tools used, modelling standards and discusses many specific examples of models that have been grouped according to the main mechanisms that they address. We conclude by discussing the opportunities and challenges for future modelling in this field.

摘要

衰老过程在细胞水平上是由随着年龄增长而缓慢积累的随机分子损伤驱动的。尽管细胞拥有修复或清除损伤的机制,但它们并非100%有效,且其效率会随着年龄增长而下降。衰老过程涉及许多分子机制,诸如压力等外部因素也会促使衰老进程。衰老过程的复杂性激发了人们使用计算模型,以增进我们对该系统的理解、检验假设并做出可验证的预测。由于涉及多种不同机制,人们开发了各种各样的模型。本文概述了已开发的模型类型、所使用的工具范围、建模标准,并讨论了许多根据其解决的主要机制进行分类的模型的具体示例。我们通过讨论该领域未来建模的机遇与挑战来结束本文。

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