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Mitochondria-Anchored Molecular Thermometer Quantitatively Monitoring Cellular Inflammations

机译:线粒体锚定分子温度计定量监测细胞炎症

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摘要

Temperature in mitochondria can be a critical indicator of cell metabolism. Given the highly dynamic and inhomogeneous nature of mitochondria, it remains a big challenge to quantitatively monitor the local temperature changes during different cellular processes. To implement this task, we extend our strategy on mitochondria-anchored thermometers from “on–off” probe Mito-TEM to a ratiometric probe Mito-TEM 2.0 based on the F?rster resonance energy transfer mechanism. Mito-TEM 2.0 exhibits not only a sensitive response to temperature through the ratiometric changes of dual emissions but also the specific immobilization in mitochondria via covalent bonds. Both characters support accurate and reliable detection of local temperature for a long time, even in malfunctioning mitochondria. By applying Mito-TEM 2.0 in fluorescence ratiometric imaging of cells and zebrafishes, we make a breakthrough in the quantitative visualization of mitochondrial temperature rises in different inflammation states.
机译:线粒体中的温度可能是细胞代谢的关键指标。鉴于线粒体的高度动态性和不均匀性,定量监测不同细胞过程中的局部温度变化仍然是一个巨大的挑战。为了完成这项任务,我们将线粒体定位温度计的策略从“开-关”探针Mito TEM扩展到基于F?共振能量传递机制 Mito TEM 2.0不仅通过双发射的比率变化表现出对温度的敏感响应,而且还通过共价键在线粒体中特异性固定。这两个特征都支持在很长一段时间内准确可靠地检测局部温度,即使是在有故障的线粒体中。通过在细胞和斑马鱼的荧光比率成像中应用Mito TEM 2.0,我们在不同炎症状态下线粒体温升的定量可视化方面取得了突破。

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  • 来源
    《Analytical chemistry》 |2021年第12期|共8页
  • 作者单位

    State Key Laboratory of Fine Chemicals Dalian University of Technology;

    State Key Laboratory of Fine Chemicals Dalian University of Technology;

    State Key Laboratory of Fine Chemicals Dalian University of Technology;

    State Key Laboratory of Fine Chemicals Dalian University of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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