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评估神经元内的线粒体运动:手动追踪与自动追踪方法

Assessing Mitochondrial Movement Within Neurons: Manual Versus Automated Tracking Methods.

作者信息

Bros Helena, Hauser Anja, Paul Friedemann, Niesner Raluca, Infante-Duarte Carmen

机构信息

Institute for Medical Immunology, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Experimental and Clinical Research Center, A joint cooperation between the Charité-Universitätsmedizin Berlin and the Max-Delbrück Center for Molecular Medicine, Berlin, Germany.

出版信息

Traffic. 2015 Aug;16(8):906-17. doi: 10.1111/tra.12291. Epub 2015 May 12.

Abstract

Owing to the small size of mitochondria and the complexity of their motility patterns, mitochondrial tracking is technically challenging. Mitochondria are often tracked manually; however, this is time-consuming and prone to measurement error. Here, we examined the suitability of four commercial and open-source software alternatives for automated mitochondrial tracking in neurons compared with manual measurements. We show that all the automated tracking tools dramatically underestimated track length, mitochondrial displacement and movement duration, with reductions ranging from 45 to 77% of the values obtained manually. In contrast, mitochondrial velocity was generally overestimated. Only the number of motile mitochondria and their directionality were similar between strategies. Despite these discrepancies, we show that automated tools successfully detected transport alterations after applying an oxidant agent. Thus, automated methods appear to be suitable for assessing relative transport differences between experimental groups, but not for absolute quantification of mitochondrial dynamics. Although useful for objective and time-efficient measurements of mitochondrial movements, results provided by automated methods should be interpreted with caution.

摘要

由于线粒体体积小且其运动模式复杂,线粒体追踪在技术上具有挑战性。线粒体通常通过手动追踪;然而,这既耗时又容易产生测量误差。在这里,我们研究了四种商业和开源软件替代方案用于神经元中自动线粒体追踪与手动测量相比的适用性。我们发现,所有自动追踪工具都极大地低估了轨迹长度、线粒体位移和运动持续时间,减少幅度在手动获得值的45%至77%之间。相比之下,线粒体速度通常被高估。只有运动线粒体的数量及其方向性在不同策略之间相似。尽管存在这些差异,但我们表明自动工具在应用氧化剂后成功检测到了运输变化。因此,自动方法似乎适用于评估实验组之间的相对运输差异,但不适用于线粒体动力学的绝对量化。虽然自动方法对于线粒体运动的客观和高效测量很有用,但对其提供的结果应谨慎解释。

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