Université de Bordeaux, CNRS, Centre de Recherche Paul Pascal, UMR5031, 115 avenue du Dr. Schweitzer, 33600, Pessac, France.
Small Methods. 2023 Dec;7(12):e2300496. doi: 10.1002/smtd.202300496. Epub 2023 Jul 18.
The design and construction of synthetic cells - human-made microcompartments that mimic features of living cells - have experienced a real boom in the past decade. While many efforts have been geared toward assembling membrane-bounded compartments, coacervate droplets produced by liquid-liquid phase separation have emerged as an alternative membrane-free compartmentalization paradigm. Here, the dual role of coacervate droplets in synthetic cell research is discussed: encapsulated within membrane-enclosed compartments, coacervates act as surrogates of membraneless organelles ubiquitously found in living cells; alternatively, they can be viewed as crowded cytosol-like chassis for constructing integrated synthetic cells. After introducing key concepts of coacervation and illustrating the chemical diversity of coacervate systems, their physicochemical properties and resulting bioinspired functions are emphasized. Moving from suspensions of free floating coacervates, the two nascent roles of these droplets in synthetic cell research are highlighted: organelle-like modules and cytosol-like templates. Building the discussion on recent studies from the literature, the potential of coacervate droplets to assemble integrated synthetic cells capable of multiple life-inspired functions is showcased. Future challenges that are still to be tackled in the field are finally discussed.
在过去的十年中,合成细胞的设计和构建——模仿活细胞特征的人工微室——经历了真正的繁荣。虽然许多研究都集中在组装膜结合的隔室上,但液-液相分离产生的凝聚液滴已成为一种替代无膜分隔的范例。在这里,讨论了凝聚液滴在合成细胞研究中的双重作用:封装在膜封闭的隔室内,凝聚液滴作为普遍存在于活细胞中的无膜细胞器的替代物;或者,它们可以被视为构建集成合成细胞的拥挤细胞质样底盘。在介绍凝聚的关键概念并说明凝聚体系的化学多样性之后,强调了它们的物理化学性质和由此产生的仿生功能。从自由漂浮凝聚液滴的悬浮液开始,突出了这些液滴在合成细胞研究中的两个新的作用:类细胞器模块和细胞质样模板。在讨论文献中的最新研究的基础上,展示了凝聚液滴组装具有多种仿生功能的集成合成细胞的潜力。最后讨论了该领域仍有待解决的未来挑战。