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大鼠下丘脑线粒体功能研究方法

Method for functional study of mitochondria in rat hypothalamus.

作者信息

Benani Alexandre, Barquissau Valentin, Carneiro Lionel, Salin Bénédicte, Colombani Anne-Laure, Leloup Corinne, Casteilla Louis, Rigoulet Michel, Pénicaud Luc

机构信息

Université Paul Sabatier de Toulouse, CNRS, UMR 5241 Métabolisme, Plasticité, Mitochondrie, Toulouse, France.

出版信息

J Neurosci Methods. 2009 Apr 15;178(2):301-7. doi: 10.1016/j.jneumeth.2008.12.023. Epub 2008 Dec 27.

Abstract

Different roles of mitochondria in brain function according to brain area are now clearly emerging. Unfortunately, no technique is yet described to investigate mitochondria function in specific brain area. In this article, we provide a complete description of a procedure to analyze the mitochondrial function in rat brain biopsies. Our two-step method consists in a saponin permeabilization of fresh brain tissues in combination with high-resolution respirometry to acquire the integrated respiratory rate of the biopsy. In the first part, we carefully checked the mitochondria integrity after permeabilization, defined experimental conditions to determine the respiratory control ratio (RCR), and tested the reproducibility of this technique. In the second part, we applied our method to test its sensitivity. As a result, this method was sensitive enough to reveal region specificity of mitochondrial respiration within the brain. Moreover, we detected physiopathological modulation of the mitochondrial function in the hypothalamus. Thus this new technique that takes all cell types into account, and does not discard or select any mitochondria sub-population is very suitable to analyze the integrated mitochondrial respiration of brain biopsies.

摘要

根据脑区不同,线粒体在脑功能中的不同作用现已清晰显现。遗憾的是,目前尚无用于研究特定脑区线粒体功能的技术。在本文中,我们完整描述了一种分析大鼠脑活检中线粒体功能的方法。我们的两步法包括用皂角苷通透新鲜脑组织,并结合高分辨率呼吸测定法来获取活检组织的综合呼吸速率。在第一部分,我们仔细检查了通透后线粒体的完整性,确定了用于测定呼吸控制率(RCR)的实验条件,并测试了该技术的可重复性。在第二部分,我们应用该方法测试其敏感性。结果,该方法足够灵敏,能够揭示脑内线粒体呼吸的区域特异性。此外,我们检测到下丘脑线粒体功能的生理病理调节。因此,这种考虑了所有细胞类型且不丢弃或选择任何线粒体亚群的新技术,非常适合分析脑活检组织的综合线粒体呼吸。

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