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基于血晶尺寸的疟原虫生长的磁光评估。

Magneto-optical assessment of Plasmodium parasite growth via hemozoin crystal size.

机构信息

Department of Physics, BME Budapest University of Technology and Economics, Budapest, 1111, Hungary.

Experimental Physics 5, Center for Electronic Correlations and Magnetism, Institute of Physics, University of Augsburg, 86159, Augsburg, Germany.

出版信息

Sci Rep. 2024 Jun 21;14(1):14318. doi: 10.1038/s41598-024-60988-6.

Abstract

Hemozoin is a natural biomarker formed during the hemoglobin metabolism of Plasmodium parasites, the causative agents of malaria. The rotating-crystal magneto-optical detection (RMOD) has been developed for its rapid and sensitive detection both in cell cultures and patient samples. In the current article we demonstrate that, besides quantifying the overall concentration of hemozoin produced by the parasites, RMOD can also track the size distribution of the hemozoin crystals. We establish the relations between the magneto-optical signal, the mean parasite age and the median crystal size throughout one erythrocytic cycle of Plasmodium falciparum parasites, where the latter two are determined by optical and scanning electron microscopy, respectively. The significant correlation between the magneto-optical signal and the stage distribution of the parasites indicates that the RMOD method can be utilized for species-specific malaria diagnosis and for the quick assessment of drug efficacy.

摘要

血晶是疟原虫(导致疟疾的病原体)血红蛋白代谢过程中形成的天然生物标志物。旋转晶体磁光检测(RMOD)已被开发用于快速、灵敏地检测细胞培养物和患者样本中的血晶。在本文中,我们证明 RMOD 除了可以定量检测寄生虫产生的总体血晶浓度外,还可以跟踪血晶晶体的大小分布。我们建立了 RMOD 磁光信号与平均寄生虫年龄以及光学和扫描电子显微镜分别确定的疟原虫裂殖周期内的血晶晶体中位大小之间的关系。磁光信号与寄生虫阶段分布之间的显著相关性表明,RMOD 方法可用于特定物种的疟疾诊断和药物疗效的快速评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c20/11192761/46ff66feec1e/41598_2024_60988_Fig1_HTML.jpg

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