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首页> 外文期刊>American Journal of Physiology >Comprehensive assessment of mitochondrial respiratory function in freshly isolated nephron segments.
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Comprehensive assessment of mitochondrial respiratory function in freshly isolated nephron segments.

机译:新鲜隔离肾细分综合呼吸功能综合评价。

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摘要

Changes in mitochondrial function are central to many forms of kidney disease, including acute injury, diabetic nephropathy, hypertension, and chronic kidney diseases. As such, there is an increasing need for reliable and fast methods for assessing mitochondrial respiratory function in renal cells. Despite being indispensable for many mechanistic studies, cultured cells or isolated mitochondria, however, often do not recapitulate in vivo or close to in vivo situations. Cultured and/or immortalized cells often change their bioenergetic profile and phenotype compared with in vivo or ex vivo situations, and isolated mitochondria are simply removed from their cellular milieu. This is especially important for extremely complex organs such as the kidney. Here, we report the development and validation of a new approach for the rapid assessment of mitochondrial oxygen consumption on freshly isolated glomeruli or proximal tubular fragments using Agilent SeaHorse XFe24 and XF96 Extracellular Flux Analyzers. We validated the technique in several healthy and diseased rodent models: the C57BL/6J mouse, the diabetic db/db mouse and matching db/+ control mouse, and the Dahl salt-sensitive rat. We compared the data to respiration from isolated mitochondria The method can be adapted and used for the rapid assessment of mitochondrial oxygen consumption from any rodent model of the investigator's choice. The isolation methods presented here ensure viable and functional proximal tubular fragments and glomeruli, with a preserved cellular environment for studying mitochondrial function within the context of their surroundings and interactions.
机译:线粒体功能的变化是许多形式的肾病中的核心,包括急性损伤,糖尿病肾病,高血压和慢性肾病。因此,越来越需要评估肾细胞的线粒体呼吸功能的可靠和快速的方法。尽管对于许多机械研究是不可或缺的,但是,培养细胞或分离的线粒体通常不会在体内或近于体内情况下重新估算。与体内或离体情况相比,培养和/或永生化细胞通常将其生物植物概况和表型改变,并且孤立的线粒体被从其细胞内部除去。这对于肾脏等极其复杂的器官尤其重要。在这里,我们通过Agilent Seahorse XFE24和XF96细胞外通量分析仪对新鲜分离的肾小球或近端管状片段进行快速评估线粒体氧气消耗的新方法的开发和验证。我们验证了几种健康和患病啮齿动物模型中的技术:C57BL / 6J小鼠,糖尿病DB / DB小鼠和匹配的DB / +对照鼠标,以及DAHL盐敏大鼠。将数据与分离的线粒体进行比较到呼吸中,该方法可以调整并用于从研究者选择的任何啮齿动物模型的线粒体氧消耗的快速评估。这里介绍的隔离方法确保可行且功能性的近端管状片段和肾小球,其具有保存的细胞环境,用于研究其周围环境和相互作用的背景下的线粒体功能。

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