Introduction to the theory of aging networks.

Interdisciplinary topics in gerontology Pub Date : 2015-01-01 Epub Date: 2014-10-14 DOI:10.1159/000364922
Tarynn M Witten
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引用次数: 5

Abstract

This chapter will briefly address the history of systems biology and complexity theory and its use in understanding the dynamics of aging at the 'omic' level of biological organization. Using the idea of treating a biological organism like a network, we will examine how network mathematics, particularly graph theory, can provide deeper insight and can even predict potential genes and proteins that are related to the control of organismal life span. We will begin with a review of the history of network analysis at the cellular level and follow that by an introduction to the various commonly used network analysis variables. We will then demonstrate how these variables can be used to predict potential targets for experimental analysis. Lastly, we will close with some of the challenges that network methods face.

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老化网络理论导论。
本章将简要介绍系统生物学和复杂性理论的历史,以及它在理解生物组织的“组学”水平上的衰老动力学中的应用。使用将生物有机体视为网络的想法,我们将研究网络数学,特别是图论,如何提供更深入的见解,甚至可以预测与生物体寿命控制相关的潜在基因和蛋白质。我们将从回顾细胞水平的网络分析历史开始,然后介绍各种常用的网络分析变量。然后,我们将演示如何使用这些变量来预测实验分析的潜在目标。最后,我们将以网络方法面临的一些挑战作为结束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Introduction to the theory of aging networks. Applications to aging networks. Computational systems biology for aging research. How does the body know how old it is? Introducing the epigenetic clock hypothesis. The great evolutionary divide: two genomic systems biologies of aging.
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