Conrad Nathaniel, Chang Grace, Fygenson Deborah K, Saleh Omar A
Department of Physics, University of California, Santa Barbara, California 93106, USA.
J Chem Phys. 2022 Dec 21;157(23):234203. doi: 10.1063/5.0130808.
Liquid-liquid phase separation (LLPS) in macromolecular solutions (e.g., coacervation) is relevant both to technology and to the process of mesoscale structure formation in cells. The LLPS process is characterized by a phase diagram, i.e., binodal lines in the temperature/concentration plane, which must be quantified to predict the system's behavior. Experimentally, this can be difficult due to complications in handling the dense macromolecular phase. Here, we develop a method for accurately quantifying the phase diagram without direct handling: We confine the sample within micron-scale, water-in-oil emulsion droplets and then use precision fluorescent imaging to measure the volume fraction of the condensate within the droplet. We find that this volume fraction grows linearly with macromolecule concentration; thus, by applying the lever rule, we can directly extract the dense and dilute binodal concentrations. We use this approach to study a model LLPS system of self-assembled, fixed-valence DNA particles termed nanostars (NSs). We find that temperature/concentration phase diagrams of NSs display, with certain exceptions, a larger co-existence regime upon increasing salt or valence, in line with expectations. Aspects of the measured phase behavior validate recent predictions that account for the role of valence in modulating the connectivity of the condensed phase. Generally, our results on NS phase diagrams give fundamental insight into limited-valence phase separation, while the method we have developed will likely be useful in the study of other LLPS systems.
大分子溶液中的液-液相分离(LLPS,例如凝聚)与技术以及细胞中中尺度结构形成过程都相关。LLPS过程由相图表征,即在温度/浓度平面上的双节线,必须对其进行量化以预测系统行为。在实验上,由于处理致密大分子相存在复杂性,这可能会很困难。在此,我们开发了一种无需直接处理就能准确量化相图的方法:我们将样品限制在微米尺度的油包水乳液滴内,然后使用精密荧光成像来测量液滴内凝聚物的体积分数。我们发现该体积分数随大分子浓度呈线性增长;因此,通过应用杠杆规则,我们可以直接提取致密和稀释双节线浓度。我们使用这种方法来研究一种称为纳米星(NSs)的自组装、固定价态DNA颗粒的模型LLPS系统。我们发现,除了某些例外情况,NSs的温度/浓度相图在增加盐或价态时显示出更大的共存区域,这与预期一致。所测量的相行为的各个方面验证了最近考虑价态在调节凝聚相连通性中作用的预测。一般来说,我们关于NS相图的结果为有限价态相分离提供了基本见解,而我们开发的方法可能在研究其他LLPS系统中有用。