Using HBmito Crimson to Observe Mitochondrial Cristae Through STED Microscopy.

IF 1.1 Q3 BIOLOGY Bio-protocol Pub Date : 2025-01-05 DOI:10.21769/BioProtoc.5150
Xichuan Ge, Wei Ren, Chunyan Shan, Peng Xi, Baoxiang Gao
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Abstract

Mitochondrial cristae, formed by folding the mitochondrial inner membrane (IM), are essential for cellular energy supply. However, the observation of the IM is challenging due to the limitations in spatiotemporal resolution offered by conventional microscopy and the absence of suitable in vitro probes specifically targeting the IM. Here, we describe a detailed imaging protocol for the mitochondrial inner membrane using the Si-rhodamine dye HBmito Crimson, which has excellent photophysical properties, to label live cells for imaging via stimulated emission depletion (STED) microscopy. This allows for STED imaging over more than 500 frames (approximately one hour), with a spatial resolution of 40 nm, enabling the observation of cristae dynamics during various mitochondrial processes. The protocol includes detailed steps for cell staining, image acquisition, image processing, and resolution analysis. Utilizing the superior resolution of STED microscopy, the structure and complex dynamic changes of cristae can be visualized. Key features • The protocol is designed to visualize mitochondrial cristae in living cells using STED microscopy. • The protocol enables nanoscale observation of dynamic mitochondrial cristae. • Real-time observation of mitochondrial morphological changes, fusion, and fission events.

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利用HBmito Crimson在STED显微镜下观察线粒体嵴。
线粒体嵴是由线粒体内膜折叠形成的,是细胞能量供应的重要组成部分。然而,由于传统显微镜提供的时空分辨率的限制以及缺乏专门针对IM的合适的体外探针,对IM的观察具有挑战性。在这里,我们描述了一种详细的线粒体内膜成像方案,使用具有优异光物理性质的si -罗丹明染料HBmito Crimson标记活细胞,通过受激发射耗尽(STED)显微镜进行成像。这使得STED成像超过500帧(约1小时),空间分辨率为40纳米,能够在各种线粒体过程中观察嵴动力学。该方案包括细胞染色,图像采集,图像处理和分辨率分析的详细步骤。利用STED显微镜的高分辨率,可以看到嵴的结构和复杂的动态变化。•该方案旨在使用STED显微镜在活细胞中可视化线粒体嵴。•该方案使动态线粒体嵴的纳米级观察。实时观察线粒体形态变化,融合和裂变事件。
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