Ivanov Tsvetomir, Doan-Nguyen Thao P, Belahouane Mohammed Amin, Dai Zhen, Cao Shoupeng, Landfester Katharina, Caire da Silva Lucas
Department of Physical Chemistry of Polymers, Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.
Department of Chemistry, McGill University, H3A 0B8, Montreal, Canada.
Macromol Rapid Commun. 2024 Dec;45(24):e2400626. doi: 10.1002/marc.202400626. Epub 2024 Nov 26.
Coacervates are versatile compartments formed by liquid-liquid phase separation. Their dynamic behavior and molecularly crowded microenvironment make them ideal materials for creating cell-like systems such as synthetic cells and microreactors. Recently, combinations of synthetic and natural molecules have been exploited via simple or complex coacervation to create compartments that can be used to build hierarchical chemical systems with life-like properties. This review highlights recent advances in the design of coacervate compartments and their application as biomimetic compartments for the design of cell-like chemical reactors and cell mimicking systems. It first explores the variety of materials used for coacervation and the influence of their chemical structure on their controlled dynamic behavior. Then, the applications of coacervates as cell-like systems are reviewed, focusing on how they can be used as cell-like microreactors through their ability to sequester molecules and provide a distinct and regulatory microenvironment for chemical reactions in aqueous media.
凝聚相是通过液-液相分离形成的多功能隔室。它们的动态行为和分子拥挤的微环境使其成为创建细胞样系统(如合成细胞和微反应器)的理想材料。最近,通过简单或复杂的凝聚作用,合成分子和天然分子的组合已被用于创建隔室,这些隔室可用于构建具有类似生命特性的分级化学系统。本文综述了凝聚相隔室设计的最新进展及其作为仿生隔室在设计细胞样化学反应器和细胞模拟系统中的应用。首先探讨了用于凝聚的各种材料及其化学结构对其可控动态行为的影响。然后,综述了凝聚相作为细胞样系统的应用,重点关注它们如何通过隔离分子的能力以及为水性介质中的化学反应提供独特的调节微环境,用作细胞样微反应器。