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Label-free quantitation of glycated hemoglobin in single red blood cells by transient absorption microscopy and phasor analysis

机译:瞬时吸收显微镜和相量分析在单红细胞中糖化血红蛋白的无标记定量

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摘要

As a stable and accurate biomarker, glycated hemoglobin (HbA1c) is clinically used to diagnose diabetes with a threshold of 6.5% among total hemoglobin (Hb). Current methods such as boronate affinity chromatography involve complex processing of large-volume blood samples. Moreover, these methods cannot measure HbA1c fraction at single–red blood cell (RBC) level, thus unable to separate the contribution from other factors such as RBC lifetime. Here, we demonstrate a spectroscopic transient absorption imaging approach that is able to differentiate HbA1c from Hb on the basis of their distinct excited-state dynamics. HbA1c fraction inside a single RBC is derived quantitatively through phasor analysis. HbA1c fraction distribution of diabetic blood is apparently different from that of healthy blood. A mathematical model is developed to derive the long-term blood glucose concentration. Our technology provides a unique way to study heme modification and to derive clinically important information void of bloodstream glucose fluctuation.
机译:作为一种稳定,准确的生物标志物,临床上使用糖化血红蛋白(HbA1c)诊断总血红蛋白(Hb)中的阈值为6.5%。诸如硼酸酯亲和色谱之类的当前方法涉及大体积血液样品的复杂处理。而且,这些方法无法在单红细胞(RBC)水平上测量HbA1c分数,因此无法将其贡献与其他因素(例如RBC寿命)分开。在这里,我们演示了一种光谱瞬态吸收成像方法,该方法能够基于HbA1c与Hb的不同激发态动力学对其进行区分。通过相量分析定量得出单个RBC中的HbA1c分数。糖尿病血液中HbA1c分数的分布明显不同于健康血液。建立了数学模型以得出长期血糖浓度。我们的技术提供了一种独特的方法来研究血红素修饰,并获得无血糖波动的临床重要信息。

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