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Mapping intracellular temperature using green fluorescent protein

机译:使用绿色荧光蛋白定位细胞内温度

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Heat is of fundamental importance in many cellular processes such as cell metabolism, cell division and gene expression.(1-3) Accurate and noninvasive monitoring of temperature changes in individual cells could thus help clarify intricate cellular processes and develop new applications in biology and medicine. Here we report the use of green fluorescent proteins (GFP) as thermal nanoprobes suited for intracellular temperature mapping. Temperature probing is achieved by monitoring the fluorescence polarization anisotropy of GFP. The method is tested on GFP-transfected HeLa and U-87 MG cancer cell lines where we monitored the heat delivery by photothermal heating of gold nanorods surrounding the cells. A spatial resolution of 300 nm and a temperature accuracy of about 0.4 °C are achieved. Benefiting from its full compatibility with widely used GFP-transfected cells, this approach provides a noninvasive tool for fundamental and applied research in areas ranging from molecular biology to therapeutic and diagnostic studies.
机译:热量在许多细胞过程中至关重要,例如细胞代谢,细胞分裂和基因表达。(1-3)准确,无创地监测单个细胞中的温度变化可以帮助阐明复杂的细胞过程,并在生物学和医学领域开发新的应用。在这里,我们报告绿色荧光蛋白(GFP)作为适合细胞内温度作图的热纳米探针的使用。通过监测GFP的荧光偏振各向异性来实现温度探测。该方法在转染了GFP的HeLa和U-87 MG癌细胞系上进行了测试,在这里我们通过光热加热围绕细胞的金纳米棒来监测热传递。实现了300 nm的空间分辨率和约0.4°C的温度精度。得益于与广泛使用的GFP转染细胞的完全相容性,该方法为从分子生物学到治疗和诊断研究等领域的基础和应用研究提供了一种非侵入性工具。

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