模块化(生物学)
计算生物学
合成生物学
效应器
计算机科学
系统生物学
解耦(概率)
生物
工程类
控制工程
遗传学
细胞生物学
作者
Sichen Yuan,Alexa Bremmer,Xicheng Yang,Jiayue Li,Quanyin Hu
摘要
Splittable systems have emerged as a powerful approach for the precise spatiotemporal control of biological processes. This concept relies on splitting a functional molecule into inactive fragments, which can be reassembled under specific conditions or stimuli to regain activity. Several binding pairs and orthogonal split fragments are introduced by fusing with other modalities to develop more complex and robust designs. One of the pillars of these splittable systems is modularity, which involves decoupling targeting, activation, and effector functions. Challenges, such as off-target effects and overactivation, can be addressed through precise control. This review provides an overview of the design principles, strategies, and applications of splittable systems across diverse fields including immunotherapy, gene editing, prodrug activation, biosensing, and synthetic biology.
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