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溶剂变色缓冲荧光探针通过超分辨率成像解析脂滴融合过程中的脂质转运和形态变化。

Solvatochromic Buffering Fluorescent Probe Resolves the Lipid Transport and Morphological Changes during Lipid Droplet Fusion by Super-Resolution Imaging.

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China.

School of Chemistry, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China.

出版信息

Anal Chem. 2024 Mar 19;96(11):4709-4715. doi: 10.1021/acs.analchem.4c00292. Epub 2024 Mar 8.

Abstract

The varied functions of lipid droplets, which encompass the regulation of lipid and energy homeostasis, as well as their association with the occurrence of various metabolic diseases, are intricately linked to their dynamic properties. Super-resolution imaging techniques have emerged to decipher physiological processes and molecular mechanisms on the nanoscale. However, achieving long-term dynamic super-resolution imaging faces challenges due to the need for fluorescent probes with high photostability. This paper introduces , a "buffering probe" for imaging lipid droplet dynamics using structured illumination microscopy (SIM). The polarity-sensitive eliminates background fluorescence with a "cyan filter" strategy, enabling wash-free imaging of lipid droplets. In the fluorescent "off" state outside droplets, the probes act as a "buffering pool", replacing photobleached probes inside droplets and enabling photostable long-term SIM imaging. With this probe, three modes of lipid droplet fusion were observed, including the discovery of fusion from large to small lipid droplets. Fluorescence intensity tracking also revealed the direction of lipid transport during the lipid droplet fusion.

摘要

脂滴的多种功能,包括调节脂质和能量稳态,以及它们与各种代谢疾病发生的关联,都与其动态特性密切相关。超分辨率成像技术的出现,使我们能够在纳米尺度上解析生理过程和分子机制。然而,由于需要具有高光稳定性的荧光探针,实现长期动态超分辨率成像仍然面临挑战。本文介绍了一种用于结构光照明显微镜(SIM)成像脂滴动力学的“缓冲探针”。具有极性敏感性的 可以通过“青色色滤”策略消除背景荧光,实现脂滴的免洗成像。在荧光“关闭”状态下,探针在脂滴外充当“缓冲池”,取代脂滴内的光漂白探针,从而实现稳定的长时 SIM 成像。利用该探针,观察到了三种脂滴融合模式,包括从大到小的脂滴融合。荧光强度跟踪还揭示了在脂滴融合过程中脂质运输的方向。

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