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通过量子相干调制显微镜进行温度映射对癌细胞代谢异常的精确可视化。

Accurate Visualization of Metabolic Aberrations in Cancer Cells by Temperature Mapping with Quantum Coherence Modulation Microscopy.

作者信息

Zhou Haitao, Yao Wei, Zhou Xiaotong, Dong Shuai, Wang Ruonan, Guo Zhongyuan, Li Weihua, Qin Chengbing, Xiao Liantuan, Jia Suotang, Wu Zhifang, Li Sijin

机构信息

Department of Nuclear Medicine, The First Hospital of Shanxi Medical University, Collaborative Innovation Center of Molecular Imaging Precision Medical, Taiyuan, Shanxi 030001, China.

State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Laser Spectroscopy, Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan, Shanxi 030006, China.

出版信息

ACS Nano. 2023 May 9;17(9):8433-8441. doi: 10.1021/acsnano.3c00392. Epub 2023 Apr 27.

Abstract

Specific metabolic aberrations of cancer cells rapidly generate energy with a minuscule but detectable temperature variation, which is a typical characteristic providing insight into cancer pathogenesis. However, to date, intracellular temperature mapping of cancer cell metabolism with high temporal and spatial resolution has not been realized. In this study, we mapped and monitored in real-time the intracellular temperature variations of mitochondria and cytoplasm at a subcellular scale via a single-molecule coherent modulation microscopy coupling targeted molecule labeling technique. According to the variation of the decoherence processes of targeted molecules as a function of intracellular temperature, we achieved a high temperature resolution (<0.1 K) and proved that this technique could eliminate interference from fluorescence intensity disturbance and external pH change. Furthermore, we showed a positive correlation between the determined temperature and the adenosine triphosphate production rate of mitochondrial metabolism in combination with a cell energy metabolic analyzer. This technology enables accurate real-time temporal and spatial visualization of cancer metabolism and establishes diagnoses and therapies for cancer.

摘要

癌细胞的特定代谢异常会以微小但可检测到的温度变化快速产生能量,这是洞察癌症发病机制的一个典型特征。然而,迄今为止,尚未实现具有高时空分辨率的癌细胞代谢细胞内温度图谱绘制。在本研究中,我们通过单分子相干调制显微镜耦合靶向分子标记技术,在亚细胞尺度实时绘制并监测线粒体和细胞质的细胞内温度变化。根据靶向分子退相干过程随细胞内温度的变化,我们实现了高温度分辨率(<0.1 K),并证明该技术可消除荧光强度干扰和外部pH变化的干扰。此外,结合细胞能量代谢分析仪,我们发现所测定的温度与线粒体代谢的三磷酸腺苷产生速率之间存在正相关。这项技术能够对癌症代谢进行准确的实时时空可视化,并为癌症建立诊断和治疗方法。

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