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L-Glucose: Another Path to Cancer Cells

机译:L-葡萄糖:癌细胞的另一条途径

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摘要

Cancerous tumors comprise cells showing metabolic heterogeneity. Among numerous efforts to understand this property, little attention has been paid to the possibility that cancer cells take up and utilize otherwise unusable substrates as fuel. Here we discuss this issue by focusing on -glucose, the mirror image isomer of naturally occurring -glucose; -glucose is an unmetabolizable sugar except in some bacteria. By combining relatively small fluorophores with -glucose, we generated fluorescence-emitting -glucose tracers (fLGs). To our surprise, 2-NBDLG, one of these fLGs, which we thought to be merely a control substrate for the fluorescent -glucose tracer 2-NBDG, was specifically taken up into tumor cell aggregates (spheroids) that exhibited nuclear heterogeneity, a major cytological feature of malignancy in cancer diagnosis. Changes in mitochondrial activity were also associated with the spheroids taking up fLG. To better understand these phenomena, we review here the Warburg effect as well as key studies regarding glucose uptake. We also discuss tumor heterogeneity involving aberrant uptake of glucose and mitochondrial changes based on the data obtained by fLG. We then consider the use of fLGs as novel markers for visualization and characterization of malignant tumor cells.
机译:癌性肿瘤包括表现出代谢异质性的细胞。在了解该特性的众多努力中,很少关注癌细胞吸收并利用原本无法使用的底物作为燃料的可能性。在这里,我们将重点讨论天然存在的葡萄糖的镜像异构体-葡萄糖; -葡萄糖在某些细菌中是不可代谢的糖。通过将相对较小的荧光团与-葡萄糖结合,我们生成了发射荧光的-葡萄糖示踪剂(fLGs)。令我们惊讶的是,我们认为其中的2-LGDLG是fLG中的一种,我们认为它们只是荧光-葡萄糖示踪剂2-NBDG的控制底物,被特异性地吸收到表现出核异质性的肿瘤细胞聚集体(球状体)中。恶性肿瘤的细胞学特征在癌症诊断中的作用。线粒体活性的变化也与摄取fLG的球体有关。为了更好地理解这些现象,我们在这里回顾了Warburg效应以及有关葡萄糖摄取的关键研究。我们还讨论了基于fLG获得的数据的异常异质性,涉及糖的异常摄取和线粒体变化。然后,我们考虑将fLGs作为新型标记物用于可视化和表征恶性肿瘤细胞。

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