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Measurement of local temperature increments induced by cultured HepG2 cells with micro-thermocouples in a thermally stabilized system

机译:在稳定的系统中通过微热电偶测量培养的HepG2细胞诱导的局部温度升高

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摘要

To monitor the temperature distribution of a cell and its changes under varied conditions is currently a technical challenge. A variety of non-contact methods used for measuring cellular temperature have been developed, where changes of local temperature at cell-level and sub-cell-level are indirectly calculated through the changes in intensity, band-shape, bandwidth, lifetime or polarization anisotropy of the fluorescence spectra recorded from the nano-sized fluorescent materials pre-injected into the target cell. Unfortunately, the optical properties of the fluorescent nano-materials may be affected by complicated intracellular environment, leading to unexpected measurement errors and controversial arguments. Here, we attempted to offer an alternative approach for measuring the absolute increments of local temperature in micro-Testing Zones induced by live cells. In this method, built-in high-performance micro-thermocouple arrays and double-stabilized system with a stability of 10 mK were applied. Increments of local temperature close to adherent human hepatoblastoma (HepG2) cells were continuously recorded for days without stimulus, showing frequent fluctuations within 60 mK and a maximum increment by 285 mK. This method may open a door for real-time recording of the absolute local temperature increments of individual cells, therefore offering valuable information for cell biology and clinical therapy in the field of cancer research.
机译:监视电池的温度分布及其在不同条件下的变化目前是一项技术挑战。已经开发了用于测量细胞温度的多种非接触方法,其中通过强度,带形,带宽,寿命或极化各向异性的变化间接计算细胞水平和亚细胞水平的局部温度变化。预注入靶细胞的纳米级荧光材料记录的荧光光谱的变化。不幸的是,荧光纳米材料的光学特性可能会受到复杂的细胞内环境的影响,从而导致意外的测量误差和有争议的论点。在这里,我们试图提供一种替代方法来测量活细胞诱导的微测试区中局部温度的绝对增量。在这种方法中,应用了内置的高性能微热电偶阵列和具有10 mK稳定性的双稳定系统。在没有刺激的情况下连续数天连续记录接近贴壁的人类肝母细胞瘤(HepG2)细胞的局部温度升高,显示60 mK内频繁波动,最大升高285 mK。这种方法可能为实时记录单个细胞的绝对局部温度升高打开一扇门,因此为癌症研究领域的细胞生物学和临床治疗提供了有价值的信息。

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