Cleveland Diagnostics, 3615 Superior Ave., Cleveland, OH 44114, USA.
Centro de Investigacao em Materiais Ceramicos e Compositos, Department of Chemistry, 3810-193 Aveiro, Portugal.
Int J Mol Sci. 2022 Nov 19;23(22):14366. doi: 10.3390/ijms232214366.
Liquid-liquid phase separation underlies the formation of membrane-less organelles inside living cells. The mechanism of this process can be examined using simple aqueous mixtures of two or more solutes, which are able to phase separate at specific concentration thresholds. This work presents the first experimental evidence that mesoscopic changes precede visually detected macroscopic phase separation in aqueous mixtures of two polymers and a single polymer and salt. Dynamic light scattering (DLS) analysis indicates the formation of mesoscopic polymer agglomerates in these systems. These agglomerates increase in size with increasing polymer concentrations prior to visual phase separation. Such mesoscopic changes are paralleled by changes in water structure as evidenced by Attenuated Total Reflection-Fourier Transform Infrared (ATR-FTIR) spectroscopic analysis of OH-stretch bands. Through OH-stretch band analysis, we obtain quantitative estimates of the relative fractions of four subpopulations of water structures coexisting in aqueous solutions. These estimates indicate that abrupt changes in hydrogen bond arrangement take place at concentrations below the threshold of macroscopic phase separation. We used these experimental observations to develop a model of phase separation in aqueous media.
液-液相分离是活细胞内无膜细胞器形成的基础。可以使用两种或多种溶质的简单水相混合物来检查这个过程的机制,这些混合物能够在特定的浓度阈值下相分离。本工作首次提供了实验证据,表明在两种聚合物和一种聚合物与盐的水相混合物中,微观变化先于视觉上检测到的宏观相分离。动态光散射(DLS)分析表明,在这些体系中形成了介观聚合物聚集体。在发生明显的相分离之前,这些聚集体随着聚合物浓度的增加而增大。这种介观变化与水结构的变化平行,这可以通过衰减全反射傅里叶变换红外(ATR-FTIR)光谱分析 OH 伸缩带得到证明。通过 OH 伸缩带分析,我们获得了共存于水溶液中的四种水结构亚群的相对分数的定量估计。这些估计表明,在宏观相分离阈值以下的浓度下,氢键排列会发生突然变化。我们利用这些实验观察结果,开发了一种在水介质中相分离的模型。