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作为脂质结构的函数,功能化荧光脂质的质膜标记效率、内化和分配。

Plasma membrane labelling efficiency, internalization and partitioning of functionalized fluorescent lipids as a function of lipid structure.

作者信息

Sezgin Erdinc

机构信息

Science for Life Laboratory, Department of Women's and Children's Health, Karolinska Institutet 17165 Solna Sweden

出版信息

RSC Chem Biol. 2025 Sep 1. doi: 10.1039/d5cb00116a.

Abstract

Labeling the plasma membrane for advanced imaging remains a significant challenge. For time-lapse live cell imaging, probe internalization and photobleaching are major limitations affecting most membrane-specific dyes. In fixed or permeabilized cells, many membrane probes either lose signal after fixation or fail to remain localized to the plasma membrane. Thus, improved probes are critically needed for applications in spatial biology. In this study, we systematically compared a range of custom-synthesized and commercially available lipid-based probes for their efficiency in labeling the plasma membrane in live, fixed, and permeabilized cells. We identified a superior probe, which outperformed others due to its lipid structure. This comparison provides insights into ideal lipid probes for visualizing the plasma membrane using advanced imaging techniques.

摘要

标记质膜以进行高级成像仍然是一项重大挑战。对于延时活细胞成像,探针内化和光漂白是影响大多数膜特异性染料的主要限制因素。在固定或通透的细胞中,许多膜探针要么在固定后失去信号,要么无法保持定位于质膜。因此,空间生物学应用迫切需要改进的探针。在本研究中,我们系统地比较了一系列定制合成和市售的基于脂质的探针在活细胞、固定细胞和通透细胞中标记质膜的效率。我们鉴定出一种优异的探针,由于其脂质结构,其性能优于其他探针。这种比较为使用先进成像技术可视化质膜的理想脂质探针提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/054b/12487978/118447b8cbd9/d5cb00116a-f1.jpg

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