首页> 美国卫生研究院文献>International Journal of Biological Sciences >Cellular glucose metabolism is essential for the reduction of cell-impermeable water-soluble tetrazolium (WST) dyes
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Cellular glucose metabolism is essential for the reduction of cell-impermeable water-soluble tetrazolium (WST) dyes

机译:细胞葡萄糖代谢对于减少细胞不可渗透的水溶性四唑(WST)染料至关重要

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摘要

Water-soluble tetrazolium (WST) dyes, such as WST-1 and WST-8, are widely used in cell proliferation and anti-cell-growth drug screen assays. However, the underlying determinants for WST reduction are still largely unknown. In addition, application of tetrazolium-based assays to cellular glucose metabolism studies has not been fully explored. In the present study, we show here that WST-8 reduction is dependent on cellular glucose metabolism. In order to minimize the variance of live cell number during stimulation, we treated cells with different stimuli and performed tetrazolium-based assays within 6 hours. Withdrawal of medium glucose supply greatly attenuated WST-8 reduction but not intracellular ATP levels, while re-adding glucose reconstituted WST-8 reduction, indicating the effect was not due to cell death. The role of glucose on WST-8 reduction is specific since glutamine, fructose or galactose did not substitute for the effect of glucose on WST-8 reduction. Furthermore, inhibition of glucose transporters, intracellular glucose metabolic enzymes or EGFR-PI3K-Akt signaling also attenuated WST-8 reduction. In an attempt to screen inhibitors targeting cellular glucose metabolism from hyperglycemia-associated drugs, it turned out that HIV protease inhibitor, ritonavir, could largely block WST-8 reduction, but not cellular ATP level. Interestingly, ritonavir has been shown to acutely block glucose transport in vitro and in vivo. Taken together, our studies not only demonstrate an essential role of cellular glucose metabolism on WST-8 reduction, but also propose a novel application of tetrazolium-based assays in screening for inhibitors of cellular glucose metabolism when used in combination with ATP assay.
机译:水溶性四唑鎓(WST)染料,例如WST-1和WST-8,广泛用于细胞增殖和抗细胞生长药物筛选测定。然而,减少WST的根本决定因素仍然未知。另外,尚未充分探索基于四唑鎓的测定法在细胞葡萄糖代谢研究中的应用。在本研究中,我们在这里显示WST-8的减少取决于细胞葡萄糖的代谢。为了最小化刺激过程中活细胞数量的变化,我们用不同的刺激物处理细胞,并在6小时内进行了基于四唑鎓的测定。中度葡萄糖供应的撤除大大减弱了WST-8的降低,但并未减弱细胞内ATP的水平,而重新添加葡萄糖则重新构成了WST-8的降低,表明该作用并非由于细胞死亡。葡萄糖对WST-8还原的作用是特异性的,因为谷氨酰胺,果糖或半乳糖不能替代葡萄糖对WST-8还原的作用。此外,抑制葡萄糖转运蛋白,细胞内葡萄糖代谢酶或EGFR-PI3K-Akt信号传导也减弱了WST-8的降低。为了从高血糖相关药物中筛选针对细胞葡萄糖代谢的抑制剂,事实证明,HIV蛋白酶抑制剂利托那韦可在很大程度上阻止WST-8的降低,但不能阻止细胞ATP的水平。有趣的是,已显示利托那韦可在体外和体内急性阻断葡萄糖的转运。综上所述,我们的研究不仅证明了细胞葡萄糖代谢对WST-8还原的重要作用,而且还提出了基于四唑鎓的检测方法在与ATP检测方法结合使用时筛选细胞葡萄糖代谢抑制剂的新应用。

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