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Temperature imaging using a cationic linear fluorescent polymeric thermometer and fluorescence lifetime imaging microscopy

机译:温度成像使用阳离子线性荧光聚合物温度计和荧光寿命成像显微镜

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Temperature is one of the most important of the physiological parameters that determine the biological status of living organisms. However, intracellular temperature was not imaged at the single-cell level until recently because of the lack of a molecular thermometer that can be applied to living cells. We have recently developed a method for imaging intracellular temperature using a cationic linear fluorescent polymeric thermometer (FPT) and fluorescence lifetime imaging microscopy (FLIM). The cationic linear FPT exhibits cell permeability in various mammalian cell lines and yeast cells, entering live cells within 10 min of incubation. Intracellular thermometry using the cationic linear FPT and FLIM can be used to image temperature with high temperature resolution (0.3-1.29 degrees C within a temperature range of 25-35 degrees C). The diffuse intracellular localization of the cationic linear FPT allows a high spatial resolution (i.e., the light microscope's diffraction limit, 200 nm), enabling the detection of temperature distributions at the subcellular level. This protocol, including the construction of a calibration curve and intracellular temperature imaging, requires similar to 14 h. Experience in handling cultured mammalian cells and use of a confocal laser-scanning microscope (CLSM) is required.
机译:温度是确定生物体生物学状态的生理参数中最重要的一种。然而,由于缺乏可应用于活细胞的分子温度计,细胞内温度未在单细胞水平上成像。我们最近使用阳离子线性荧光聚合物温度计(FPT)和荧光寿命显微镜(FLIM)进行了一种用于成像细胞内温度的方法。阳离子线性FPT在各种哺乳动物细胞系和酵母细胞中表现出细胞渗透性,在孵育10分钟内进入活细胞。使用阳离子线性FPT和FLIM的细胞内的温度可用于使用高温分辨率(0.3-1.29℃的温度范围为25-35℃)的图像温度。阳离子线性FPT的弥漫性细胞内定位允许高空间分辨率(即,光学显微镜的衍射极限,200nm),从而能够在亚细胞水平处检测温度分布。该方案包括构建校准曲线和细胞内温度成像,需要类似于14小时。需要在处理培养的哺乳动物细胞和使用共聚焦激光扫描显微镜(CLSM)方面的经验。

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