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Permeabilization of brain tissue in situ enables multiregion analysis of mitochondrial function in a single mouse brain

机译:大脑组织的通透性可在单个小鼠大脑中进行线粒体功能的多区域分析

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摘要

Mitochondria function as the core energy providers in the brain and symptoms of neurodegenerative diseases are often attributed to their dysregulation. Assessing mitochondrial function is classically performed in isolated mitochondria; however, this process requires significant isolation time, demand for abundant tissue and disruption of the cooperative mitochondrial reticulum, all of which reduce reliability when attempting to assess in vivo mitochondrial bioenergetics. Here we introduce a method that advances the assessment of mitochondrial respiration in the brain by permeabilizing existing brain tissue to grant direct access to the mitochondrial reticulum in situ. The permeabilized brain preparation allows for instant analysis of mitochondrial function with unaltered mitochondrial morphology using significantly small sample sizes (∼2 mg), which permits the analysis of mitochondrial function in multiple subregions within a single mouse brain. Here this technique was applied to assess regional variation in brain mitochondrial function with acute ischaemia–reperfusion injuries and to determine the role of reactive oxygen species in exacerbating dysfunction through the application of a transgenic mouse model overexpressing catalase within mitochondria. Through creating accessibility to small regions for the investigation of mitochondrial function, the permeabilized brain preparation enhances the capacity for examining regional differences in mitochondrial regulation within the brain, as the majority of genetic models used for unique approaches exist in the mouse model.
机译:线粒体充当大脑的核心能量提供者,神经退行性疾病的症状通常归因于其失调。线粒体功能的评估通常在孤立的线粒体中进行;但是,此过程需要大量的隔离时间,需要大量组织,并且破坏了线粒体协同网状结构,所有这些都降低了评估体内线粒体生物能学时的可靠性。在这里,我们介绍了一种方法,该方法通过透化现有的脑组织以直接访问线粒体网状结构,从而促进大脑中线粒体呼吸的评估。透化的脑准备可以使用非常小的样本量(〜2 mg)来立即分析具有不变的线粒体形态的线粒体功能,从而可以分析单个小鼠大脑中多个子区域的线粒体功能。在这里,该技术被用于评估线粒体中过表达过氧化氢酶的转基因小鼠模型,并在急性缺血-再灌注损伤中评估脑线粒体功能的区域变化,并确定活性氧在加剧功能障碍中的作用。通过创建可访问的小区域来研究线粒体功能,通透性大脑准备工作增强了检查大脑内线粒体调控区域差异的能力,因为大多数独特方法的遗传模型都存在于小鼠模型中。

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