Controlling the human microbiome.

IF 9 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell Systems Pub Date : 2023-02-15 DOI:10.1016/j.cels.2022.12.010
Yang-Yu Liu
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Abstract

We coexist with a vast number of microbes that live in and on our bodies. Those microbes and their genes are collectively known as the human microbiome, which plays important roles in human physiology and diseases. We have acquired extensive knowledge of the organismal compositions and metabolic functions of the human microbiome. However, the ultimate proof of our understanding of the human microbiome is reflected in our ability to manipulate it for health benefits. To facilitate the rational design of microbiome-based therapies, there are many fundamental questions to be addressed at the systems level. Indeed, we need a deep understanding of the ecological dynamics associated with such a complex ecosystem before we rationally design control strategies. In light of this, this review discusses progress from various fields, e.g., community ecology, network science, and control theory, that are helping us make progress toward the ultimate goal of controlling the human microbiome.

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控制人类微生物群
我们与生活在我们体内和身上的大量微生物共存。这些微生物及其基因统称为人体微生物组,在人体生理和疾病中发挥着重要作用。我们已经对人体微生物组的生物构成和代谢功能有了广泛的了解。然而,我们对人类微生物组了解的最终证明是,我们有能力操纵人类微生物组来造福人类健康。为了促进基于微生物组疗法的合理设计,我们需要在系统层面解决许多基本问题。事实上,在合理设计控制策略之前,我们需要深入了解与这种复杂生态系统相关的生态动力学。有鉴于此,本综述将讨论来自不同领域(如群落生态学、网络科学和控制理论)的进展,这些进展有助于我们朝着控制人类微生物组的最终目标迈进。
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来源期刊
Cell Systems
Cell Systems Medicine-Pathology and Forensic Medicine
CiteScore
16.50
自引率
1.10%
发文量
84
审稿时长
42 days
期刊介绍: In 2015, Cell Systems was founded as a platform within Cell Press to showcase innovative research in systems biology. Our primary goal is to investigate complex biological phenomena that cannot be simply explained by basic mathematical principles. While the physical sciences have long successfully tackled such challenges, we have discovered that our most impactful publications often employ quantitative, inference-based methodologies borrowed from the fields of physics, engineering, mathematics, and computer science. We are committed to providing a home for elegant research that addresses fundamental questions in systems biology.
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