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首页> 外文期刊>Journal of the Royal Society Interface >Dielectric characterization of Plasmodium falciparum-infected red blood cells using microfluidic impedance cytometry
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Dielectric characterization of Plasmodium falciparum-infected red blood cells using microfluidic impedance cytometry

机译:使用微流体阻抗细胞术的血浆感染红细胞介电表征

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摘要

Although malaria is the world's most life-threatening parasitic disease, there is no clear understanding of how certain biophysical properties of infected cells change during the malaria infection cycle. In this article, we use microfluidic impedance cytometry to measure the dielectric properties of Plasmodium falciparum-infected red blood cells (i-RBCs) at specific time points during the infection cycle. Individual parasites were identified within i-RBCs using green fluorescent protein (GFP) emission. The dielectric properties of cell sub-populations were determined using the multi-shell model. Analysis showed that the membrane capacitance and cytoplasmic conductivity of i-RBCs increased along the infection time course, due to membrane alterations caused by parasite infection. The volume ratio occupied by the parasite was estimated to vary from less than 10% at earlier stages, to approximately 90% at later stages. This knowledge could be used to develop new label-free cell sorting techniques for sample pre-enrichment, improving diagnosis.
机译:虽然疟疾是世界上最危及危及的寄生虫疾病,但对疟疾感染循环期间感染细胞的某些生物物理性质变化的某些生物物理特性如何。在本文中,我们使用微流体阻抗细胞术测量感染循环期间特定时间点的疟原虫感染红细胞(I-RBC)的介电性能。使用绿色荧光蛋白(GFP)排放在I-RBC中鉴定单个寄生虫。使用多壳模型确定细胞亚群的介电性质。分析表明,由于寄生虫感染引起的膜改变,I-RBC的膜电容和I-RBC的细胞质导电性增加。寄生虫占据的体积比估计在早期阶段的少于10%,在后面的阶段大约90%。这些知识可用于开发用于样品预富集的新标签的细胞分选技术,改善诊断。

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