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Hemoglobin consumption by P. falciparum in individual erythrocytes imaged via quantitative phase spectroscopy

机译:定量相谱成像法检测恶性疟原虫在单个红细胞中的血红蛋白消耗

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摘要

Plasmodium falciparum infection causes structural and biochemical changes in red blood cells (RBCs). To quantify these changes, we apply a novel optical technique, quantitative phase spectroscopy (QPS) to characterize individual red blood cells (RBCs) during the intraerythrocytic life cycle of P. falciparum. QPS captures hyperspectral holograms of individual RBCs to measure spectroscopic changes across the visible wavelength range (475–700 nm), providing complex information, i.e. amplitude and phase, about the light field which has interacted with the cell. The complex field provides complimentary information on hemoglobin content and cell mass, which are both found to dramatically change upon infection by P. falciparum. Hb content progressively decreases with parasite life cycle, with an average 72.2% reduction observed for RBCs infected by schizont-stage P. falciparum compared to uninfected cells. Infection also resulted in a 33.1% reduction in RBC’s optical volume, a measure of the cells’ non-aqueous components. Notably, optical volume is only partially correlated with hemoglobin content, suggesting that changes in other dry mass components such as parasite mass may also be assessed using this technique. The unique ability of QPS to discriminate individual healthy and infected cells using spectroscopic changes indicates that the approach can be used to detect disease.
机译:恶性疟原虫感染会导致红细胞(RBC)的结构和生化变化。为了量化这些变化,我们应用了一种新型的光学技术,定量相位光谱法(QPS)来表征恶性疟原虫红细胞生命周期中的单个红细胞(RBC)。 QPS捕获单个RBC的高光谱全息图,以测量可见光波长范围(475-700 nm)内的光谱变化,从而提供与细胞相互作用的光场的复杂信息,即振幅和相位。复杂的字段提供了有关血红蛋白含量和细胞质量的补充信息,这些信息在恶性疟原虫感染后均会发生显着变化。 Hb含量随着寄生虫的生命周期而逐渐降低,与未感染的细胞相比,受裂殖体阶段恶性疟原虫感染的RBC平均降低了72.2%。感染还导致RBC的光学体积减少了33.1%,这是细胞非水成分的量度。值得注意的是,光学体积仅与血红蛋白含量部分相关,表明使用该技术还可评估其他干物质成分(如寄生虫物质)的变化。 QPS利用光谱学变化来区分单个健康细胞和感染细胞的独特能力表明该方法可用于检测疾病。

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