Institute for Molecules and Materials, Radboud University, Heyendaalseweg 135, Nijmegen, 6525 AJ, the Netherlands.
Small. 2023 Sep;19(38):e2303138. doi: 10.1002/smll.202303138. Epub 2023 May 22.
Complex coacervates are phase-separated liquid droplets composed of oppositely charged multivalent molecules. The unique material properties of the complex coacervate interior favours the sequestration of biomolecules and facilitates reactions. Recently, it is shown that coacervates can be used for direct cytosolic delivery of sequestered biomolecules in living cells. Here, it is studied that the physical properties required for complex coacervates composed of oligo-arginine and RNA to cross phospholipid bilayers and enter liposomes penetration depends on two main parameters: the difference in ζ-potential between the complex coacervates and the liposomes, and the partitioning coefficient (K ) of lipids into the complex coacervates. Following these guidelines, a range of complex coacervates is found that is able to penetrate the membrane of living cells, thus paving the way for further development of coacervates as delivery vehicles of therapeutic agents.
复杂凝聚物是由带相反电荷的多价分子组成的相分离的液滴。复杂凝聚物内部的独特材料特性有利于生物分子的隔离,并促进反应。最近,研究表明凝聚物可用于将被隔离的生物分子直接递送到活细胞的细胞质中。在这里,研究了由聚精氨酸和 RNA 组成的复杂凝聚物穿过磷脂双层膜和进入脂质体的物理性质取决于两个主要参数:复杂凝聚物和脂质体之间的 ζ 电位差,以及脂质分配系数(K)进入复杂凝聚物。遵循这些准则,发现了一系列能够穿透活细胞膜的复杂凝聚物,从而为凝聚物作为治疗药物的递送载体的进一步发展铺平了道路。