基于芯片探针的便携式核磁共振检测人类血液中低寄生虫血症恶性疟原虫

Manish Gupta, Kundan Singh, Daya Krishan Lobiyal, Cholakka Parambath Safvan, Bhuban Kumar Sahu, Preeti Yadav, Shailja Singh
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引用次数: 6

摘要

消除疟疾规划依赖于一种快速、具有成本效益的便携式诊断工具来检测和定量人类血液中的疟疾寄生虫。在此,我们报告了一种具有成本效益的便携式核磁共振(pNMR)用于疟疾诊断。在本研究中,我们开发并表征了一种灵敏、低成本的新型片上核磁共振探针。该核磁共振探头改善了射频线圈与传输线之间的不匹配问题,从而提高了核磁共振灵敏度。与其他可用的疟疾诊断技术相比,所开发的pNMR代表了一种快速、经济、高灵敏度的方法,可检测受感染人血液中的极低寄生虫血症恶性疟原虫(0.0001%)。实验结果表明,通过核磁共振横向弛豫率(T2)的变化,可以快速检测到极低的寄生负载,具有良好的灵敏度。横向弛豫率(ΔT2)变化与疟原虫寄生率(%)呈良好的线性关系,相关系数为0.94,表明pNMR是一种实时、可重复使用、高灵敏度的人血疟原虫分析工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A sensitive on-chip probe–based portable nuclear magnetic resonance for detecting low parasitaemia plasmodium falciparum in human blood

A sensitive on-chip probe–based portable nuclear magnetic resonance for detecting low parasitaemia plasmodium falciparum in human blood

Malaria elimination programmes are dependent on a rapid, cost-effective and portable diagnostic tool to detect and quantify malaria parasites in human blood. Herein, we report a cost-effective and portable nuclear magnetic resonance (pNMR) for malaria diagnosis. In this present study, we have developed and characterized a sensitive and low-cost novel on-chip NMR probe. This NMR probe has improved mismatching problem between radiofrequency (RF) coil and transmission line that results in enhancement in NMR sensitivity. Developed pNMR represents a rapid, cost-effective and highly sensitive method to detect very low parasitaemia plasmodium falciparum (0.0001%) in infected human blood in comparison with other available malaria diagnosis techniques. The experimental results show that very low parasitic load can be detected rapidly by the change in the transverse relaxation rate (T2) of NMR, suggesting a good sensitivity. A good linear relationship with a correlation coefficient of 0.94 between the change in transverse relaxation rate (ΔT2) and the different parasitaemia (%) has been observed, indicating that pNMR is a potential tool for real-time, reusable and high-sensitivity analysis of malaria parasite in human blood.

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