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Dielectric Response of Cytoplasmic Water and Its Connection to the Vitality of Human Red Blood Cells: I. Glucose Concentration Influence

机译:细胞质水的介电响应及其与人类红细胞活力的关系:I。葡萄糖浓度的影响

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The vitality of red blood cells depends on the process control of glucose homeostasis, including the membrane's ability to "switch off" D-glucose uptake at the physiologically specific concentration of 10-12 mM. We present a comprehensive study of human erythrocytes suspended in buffer solutions with varying concentrations of D-glucose at room temperature, using microwave dielectric spectroscopy (0.5 GHz-50 GHz) and cell deformability characterization (the Elongation ratio). By use of mixture formulas the contribution of the cytoplasm to the dielectric spectra was isolated. It reveals a strong dependence on the concentration of buffer D-glucose. Tellingly, the concentration 10-12 mM is revealed as a critical point in the behavior. The dielectric response of cytoplasm depends on dipole-matrix interactions between water structures and moieties, like ATP, produced during glycolysis. Subsequently, it is a marker of cellular health. One would hope that this mechanism could provide a new vista on noninvasive glucose monitoring.
机译:红细胞的生命力取决于葡萄糖稳态的过程控制,包括膜在10-12 mM的生理特异性浓度下“关闭” D-葡萄糖摄取的能力。我们使用微波介电谱(0.5 GHz-50 GHz)和细胞可变形性表征(伸长率),对室温下具有不同浓度D-葡萄糖的缓冲液中悬浮的人类红细胞进行了全面研究。通过使用混合公式,分离了细胞质对介电谱的贡献。它显示出对缓冲液D-葡萄糖浓度的强烈依赖性。可以看出,浓度为10-12 mM是行为的关键点。细胞质的介电反应取决于糖酵解过程中水结构和部分(如ATP)之间的偶极子-基质相互作用。随后,它是细胞健康的标志。希望这一机制可以为无创血糖监测提供新的前景。

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