凝聚
生物正交化学
细胞器
生物相容性
化学
生物分子
两亲性
纳米技术
人工细胞
材料科学
组合化学
生物化学
有机化学
点击化学
共聚物
膜
聚合物
作者
Shoupeng Cao,Tsvetomir Ivanov,Julian Heuer,Calum T. J. Ferguson,Katharina Landfester,Lucas Caire da Silva
标识
DOI:10.1038/s41467-023-44278-9
摘要
Abstract Artificial organelles can manipulate cellular functions and introduce non-biological processes into cells. Coacervate droplets have emerged as a close analog of membraneless cellular organelles. Their biomimetic properties, such as molecular crowding and selective partitioning, make them promising components for designing cell-like materials. However, their use as artificial organelles has been limited by their complex molecular structure, limited control over internal microenvironment properties, and inherent colloidal instability. Here we report the design of dipeptide coacervates that exhibit enhanced stability, biocompatibility, and a hydrophobic microenvironment. The hydrophobic character facilitates the encapsulation of hydrophobic species, including transition metal-based catalysts, enhancing their efficiency in aqueous environments. Dipeptide coacervates carrying a metal-based catalyst are incorporated as active artificial organelles in cells and trigger an internal non-biological chemical reaction. The development of coacervates with a hydrophobic microenvironment opens an alternative avenue in the field of biomimetic materials with applications in catalysis and synthetic biology.
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