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一种用于脂质和聚合物膜高通量粘度测量的囊泡微流变仪。

A vesicle microrheometer for high-throughput viscosity measurements of lipid and polymer membranes.

机构信息

Department of Mechanical Engineering, Northwestern University, Evanston, Illinois.

Department of Theory and Bio-Systems, Max Planck Institute of Colloids and Interfaces, Science Park Golm, Potsdam, Germany.

出版信息

Biophys J. 2022 Mar 15;121(6):910-918. doi: 10.1016/j.bpj.2022.02.015. Epub 2022 Feb 15.

Abstract

Viscosity is a key property of cell membranes that controls mobility of embedded proteins and membrane remodeling. Measuring it is challenging because existing approaches involve complex experimental designs and/or models, and the applicability of some methods is limited to specific systems and membrane compositions. As a result there is scarcity of systematic data, and the reported values for membrane viscosity vary by orders of magnitude for the same system. Here, we show how viscosity of membranes can be easily obtained from the transient deformation of giant unilamellar vesicles. The approach enables a noninvasive, probe-independent, and high-throughput measurement of the viscosity of membranes made of lipids or polymers with a wide range of compositions and phase state. Using this novel method, we have collected a significant amount of data that provides insights into the relation between membrane viscosity, composition, and structure.

摘要

黏度是细胞膜的一个关键特性,控制着嵌入蛋白质的流动性和膜重塑。测量它具有挑战性,因为现有的方法涉及复杂的实验设计和/或模型,并且一些方法的适用性仅限于特定的系统和膜组成。因此,系统数据稀缺,并且同一系统报告的膜黏度值相差几个数量级。在这里,我们展示了如何从巨大的单层囊泡的瞬态变形中轻松获得膜的黏度。该方法能够非侵入性、无探针且高通量地测量由脂质或聚合物组成的膜的黏度,这些膜具有广泛的组成和相态。使用这种新方法,我们收集了大量数据,这些数据深入了解了膜黏度、组成和结构之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c79/8943812/bb7906248abb/gr1.jpg

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