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拉曼光纤光度法用于研究自由活动动物大脑急性缺氧时线粒体超氧自由基爆发和细胞外钙离子内流

Raman Fiber Photometry for Understanding Mitochondrial Superoxide Burst and Extracellular Calcium Ion Influx upon Acute Hypoxia in the Brain of Freely Moving Animals.

机构信息

Shanghai Key Laboratory of Green Chemistry and Chemical Processes, School of Chemistry and Molecular Engineering, East China Normal University, Dongchuan Road 500, Shanghai, 200241, China.

State Key Laboratory of Precision Spectroscopy, East China Normal University, Dongchuan Road 500, Shanghai, 200241, China.

出版信息

Angew Chem Int Ed Engl. 2022 Mar 7;61(11):e202111630. doi: 10.1002/anie.202111630. Epub 2022 Jan 24.

Abstract

Developing a novel tool capable of real-time monitoring and simultaneous quantitation of multiple molecules in mitochondria across the whole brain of freely moving animals is the key bottleneck for understanding the physiological and pathological roles that mitochondria play in the brain events. Here we built a Raman fiber photometry, and created a highly selective non-metallic Raman probe based on the triple-recognition strategies of chemical reaction, charge transfer, and characteristic fingerprint peaks, for tracking and simultaneous quantitation of mitochondrial O , Ca and pH at the same location in six brain regions of free-moving animal upon hypoxia. It was found that mitochondrial O , Ca and pH changed from superficial to deep brain regions upon hypoxia. It was discovered that hypoxia-induced mitochondrial O burst was regulated by ASIC1a, leading to mitochondrial Ca overload and acidification. Furthermore, we found the overload of mitochondrial Ca was mostly attributed to the influx of extracellular Ca .

摘要

开发一种新型工具,能够实时监测和同时定量检测自由活动动物整个大脑中线粒体中的多种分子,这是理解线粒体在大脑事件中发挥的生理和病理作用的关键瓶颈。在这里,我们构建了一种 Raman 光纤光度法,并基于化学反应、电荷转移和特征指纹峰的三重识别策略,创建了一种高度选择性的非金属 Raman 探针,用于在缺氧状态下跟踪和同时定量检测自由活动动物六个脑区同一位置的线粒体 O 、 Ca 和 pH。结果发现,线粒体 O 、 Ca 和 pH 在缺氧时从大脑浅层到深层区域发生变化。研究发现,缺氧诱导的线粒体 O 爆发是由 ASIC1a 调节的,导致线粒体 Ca 超载和酸化。此外,我们发现线粒体 Ca 的超载主要归因于细胞外 Ca 的内流。

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