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使用环境敏感探针测量模型膜和细胞膜的脂质堆积情况。

Measuring lipid packing of model and cellular membranes with environment sensitive probes.

作者信息

Sezgin Erdinc, Sadowski Tomasz, Simons Kai

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, 01307 Dresden, Germany.

出版信息

Langmuir. 2014 Jul 15;30(27):8160-6. doi: 10.1021/la501226v. Epub 2014 Jun 30.

Abstract

The extent of lipid packing is one of the key physicochemical features of biological membranes and is involved in many membrane processes. Polarity sensitive fluorescent probes are commonly used tools to measure membrane lipid packing in both artificial and biological membranes. In this paper, we have systematically compared eight different probes to measure membrane lipid ordering. We investigated how these probes behave in small unilamellar liposomes, phase-separated giant unilamellar vesicles, cell-derived giant plasma membrane vesicles, and live cells. We have tested the order sensitivity of a variety of measurable parameters, including generalized polarization, peak shift, or intensity shift. We also investigated internalization and photostability of the probes to assess probe potential for time-lapse live cell imaging. These results provide a catalogue of properties to facilitate the choice of probe according to need.

摘要

脂质堆积程度是生物膜的关键物理化学特征之一,且参与许多膜相关过程。极性敏感荧光探针是测量人工膜和生物膜中膜脂质堆积的常用工具。在本文中,我们系统地比较了八种不同的探针来测量膜脂质有序性。我们研究了这些探针在小单层脂质体、相分离的大单层囊泡、细胞衍生的大质膜囊泡和活细胞中的行为表现。我们测试了各种可测量参数的有序敏感性,包括广义极化、峰位移动或强度移动。我们还研究了探针的内化和光稳定性,以评估其用于延时活细胞成像的潜力。这些结果提供了一份特性目录,便于根据需要选择探针。

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