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基于反馈反应网络的人工动态平衡系统:设计原理与未来前景。

Artificial Homeostasis Systems Based on Feedback Reaction Networks: Design Principles and Future Promises.

机构信息

Centre for Nano and Material Sciences, Jain (Deemed-to-be University), Jain Global Campus, Bangalore, 562112, Karnataka, India.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 2;63(14):e202318134. doi: 10.1002/anie.202318134. Epub 2024 Feb 2.

Abstract

Feedback-controlled chemical reaction networks (FCRNs) are indispensable for various biological processes, such as cellular mechanisms, patterns, and signaling pathways. Through the intricate interplay of many feedback loops (FLs), FCRNs maintain a stable internal cellular environment. Currently, creating minimalistic synthetic cells is the long-term objective of systems chemistry, which is motivated by such natural integrity. The design, kinetic optimization, and analysis of FCRNs to exhibit functions akin to those of a cell still pose significant challenges. Indeed, reaching synthetic homeostasis is essential for engineering synthetic cell components. However, maintaining homeostasis in artificial systems against various agitations is a difficult task. Several biological events can provide us with guidelines for a conceptual understanding of homeostasis, which can be further applicable in designing artificial synthetic systems. In this regard, we organize our review with artificial homeostasis systems driven by FCRNs at different length scales, including homogeneous, compartmentalized, and soft material systems. First, we stretch a quick overview of FCRNs in different molecular and supramolecular systems, which are the essential toolbox for engineering different nonlinear functions and homeostatic systems. Moreover, the existing history of synthetic homeostasis in chemical and material systems and their advanced functions with self-correcting, and regulating properties are also emphasized.

摘要

反馈控制的化学反应网络(FCRNs)对于各种生物过程是不可或缺的,例如细胞机制、模式和信号通路。通过许多反馈回路(FL)的复杂相互作用,FCRNs 维持着稳定的细胞内环境。目前,创建极简合成细胞是系统化学的长期目标,这是受到自然完整性的启发。设计、动力学优化和分析表现出类似于细胞功能的 FCRN 仍然面临重大挑战。实际上,实现合成动态平衡对于工程合成细胞组件至关重要。然而,在人工系统中维持对各种干扰的动态平衡是一项艰巨的任务。许多生物学事件为我们提供了对动态平衡的概念性理解的指导,这些指导可以进一步应用于设计人工合成系统。在这方面,我们按照由不同长度尺度的 FCRNs 驱动的人工动态平衡系统组织综述,包括均相、分隔和软物质系统。首先,我们快速概述了不同分子和超分子系统中的 FCRNs,这是工程不同非线性功能和动态平衡系统的基本工具包。此外,我们还强调了化学和材料系统中合成动态平衡的现有历史及其具有自我修正和调节特性的先进功能。

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