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反馈动力学与细胞功能:为何系统生物学被称为系统生物学。

Feedback dynamics and cell function: Why systems biology is called Systems Biology.

作者信息

Wolkenhauer Olaf, Mesarovic Mihajlo

机构信息

Department of Computer Science, University of Rostock, Albert Einstein Str. 21, 18059 Rostock, Mecklenburg-Vorpommern, Germany.

出版信息

Mol Biosyst. 2005 May;1(1):14-6. doi: 10.1039/b502088n. Epub 2005 Apr 8.

Abstract

A new paradigm, like Systems Biology, should challenge the way research has been conducted previously. This Opinion article aims to present Systems Biology, not as the application of engineering principles to biology but as a merger of systems- and control theory with molecular- and cell biology. In our view, the central dogma of Systems Biology is that it is system dynamics that gives rise to the functioning and function of cells. The concepts of feedback regulation and control of pathways and the coordination of cell function are emphasized as an important area of Systems Biology research. The hurdles and risks for this area are discussed from the perspective of dynamic pathway modelling. Most of all, the aim of this article is to promote mathematical modelling and simulation as a part of molecular- and cell biology. Systems Biology is a success if it is widely accepted that there is nothing more practical than a good theory.

摘要

一种新的范式,如系统生物学,应该挑战以往的研究方式。这篇观点文章旨在介绍系统生物学,并非将工程原理应用于生物学,而是系统与控制理论同分子与细胞生物学的融合。我们认为,系统生物学的核心信条是,正是系统动力学产生了细胞的功能和作用。反馈调节、途径控制以及细胞功能协调等概念被强调为系统生物学研究的一个重要领域。本文从动态途径建模的角度讨论了该领域的障碍和风险。最重要的是,本文旨在推动数学建模与模拟成为分子与细胞生物学的一部分。如果人们广泛认同没有什么比一个好理论更实用,那么系统生物学就是成功的。

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