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即时检测环介导等温扩增技术快速诊断疟疾。

Rapid diagnosis of malaria using a point-of-care loop-mediated isothermal amplification device.

机构信息

School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.

Department of Instrumentation and Applied Physics, Indian Institute of Science, Bengaluru, India.

出版信息

Front Cell Infect Microbiol. 2022 Aug 19;12:961832. doi: 10.3389/fcimb.2022.961832. eCollection 2022.

Abstract

LAMP diagnosis of malaria is simple and cost-effective with acceptable sensitivity and specificity as compared to standard diagnostic modules such as microscopy, RDTs and nested PCR, and thus its deployment for onsite screening of malaria in resource-limited regions is under consideration. However, the requirement of an electricity-operated dry bath and bulky read-out unit is still a major concern. In an effort to simplify this limitation, we have developed a portable LAMP device and fluorescence readout unit which can be used in the rapid point-of-care diagnosis of malaria. We have developed a point-of-care diagnostic LAMP device that is easy to operate by a mobile application, and the results can be quantified with a fluorescent readout unit. The diagnostic performance of the device was evaluated in 90 P-infected clinical isolates stored at 4°C for 6-7 years and 10 freshly collected isolates from healthy volunteers. The LOD and quantitative ability of LAMP in estimating parasitemia levels were revealed with laboratory-grown strain (3D7). The LAMP assay performed in our device was exclusive for detection with sensitivity and specificity determined to be 98.89% and 100%, respectively, in clinical isolates. The LOD was documented to be 1 parasite/µl at the cut-off ADC value of 20. Parasite density estimated from ADC values showed concordance with microscopically determined parasite density of the cultured 3D7 strain. The LAMP assay performed in our device provides a possible portable platform for its deployment in the point-of-care diagnosis of malaria. Further validation of the quantitative ability of the assay with freshly collected or properly stored clinical samples of known parasitemia is necessary for field applicability.

摘要

LAMP 诊断疟疾的方法简单,成本效益高,与显微镜、RDT 和巢式 PCR 等标准诊断模块相比,具有可接受的灵敏度和特异性,因此正在考虑将其用于资源有限地区的现场疟疾筛查。然而,需要电操作的干式浴和庞大的读出装置仍然是一个主要关注点。为了简化这一限制,我们开发了一种便携式 LAMP 设备和荧光读出装置,可用于快速现场即时诊断疟疾。我们开发了一种易于通过移动应用操作的即时诊断 LAMP 设备,并且可以使用荧光读出装置对结果进行定量。该设备的诊断性能在 90 份储存于 4°C 长达 6-7 年的感染临床分离株和 10 份来自健康志愿者的新鲜采集分离株中进行了评估。使用实验室培养的 株(3D7)揭示了 LAMP 在估计寄生虫血症水平方面的检测限和定量能力。在我们的设备中进行的 LAMP 检测仅针对 检测,在临床分离株中的灵敏度和特异性分别确定为 98.89%和 100%。LOD 记录为 1 个寄生虫/µl,在 20 的截断 ADC 值处。从 ADC 值估计的寄生虫密度与培养的 3D7 株的显微镜确定的寄生虫密度一致。在我们的设备中进行的 LAMP 检测为其在即时诊断疟疾中的现场应用提供了一种可能的便携式平台。需要进一步验证该检测的定量能力,方法是使用已知寄生虫血症的新鲜采集或妥善储存的临床样本进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b93f/9437306/e02dbf38ff73/fcimb-12-961832-g001.jpg

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