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使用三维单分子定位显微镜对与线粒体功能障碍相关的纳米级改变进行定量分析。

Quantifying nanoscopic alterations associated with mitochondrial dysfunction using three-dimensional single-molecule localization microscopy.

作者信息

Brenner Benjamin, Xu Fengyuanshan, Zhang Yang, Kweon Junghun, Fang Raymond, Sheibani Nader, Zhang Sarah X, Sun Cheng, Zhang Hao F

机构信息

Department of Biomedical Engineering, Northwestern University, Evanston, IL, USA.

Currently with Program of Polymer and Color Chemistry, Department of Textile Engineering, Chemistry and Science, North Carolina State University, Raleigh, NC, USA.

出版信息

Biomed Opt Express. 2024 Feb 12;15(3):1571-1584. doi: 10.1364/BOE.510351. eCollection 2024 Mar 1.

Abstract

Mitochondrial morphology provides unique insights into their integrity and function. Among fluorescence microscopy techniques, 3D super-resolution microscopy uniquely enables the analysis of mitochondrial morphological features individually. However, there is a lack of tools to extract morphological parameters from super-resolution images of mitochondria. We report a quantitative method to extract mitochondrial morphological metrics, including volume, aspect ratio, and local protein density, from 3D single-molecule localization microscopy images, with single-mitochondrion sensitivity. We validated our approach using simulated ground-truth SMLM images of mitochondria. We further tested our morphological analysis on mitochondria that have been altered functionally and morphologically in controlled manners. This work sets the stage to quantitatively analyze mitochondrial morphological alterations associated with disease progression on an individual basis.

摘要

线粒体形态为深入了解其完整性和功能提供了独特视角。在荧光显微镜技术中,三维超分辨率显微镜能够独特地单独分析线粒体的形态特征。然而,目前缺乏从线粒体超分辨率图像中提取形态参数的工具。我们报告了一种定量方法,可从三维单分子定位显微镜图像中提取线粒体形态指标,包括体积、纵横比和局部蛋白质密度,且具有单线粒体敏感性。我们使用模拟的线粒体真实单分子定位显微镜(SMLM)图像验证了我们的方法。我们还进一步对以可控方式在功能和形态上发生改变的线粒体进行了形态分析测试。这项工作为在个体层面定量分析与疾病进展相关的线粒体形态改变奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2f4/10942681/6ae8cd912759/boe-15-3-1571-g001.jpg

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