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全自动即时急性发热症鉴别诊断。

Fully automated point-of-care differential diagnosis of acute febrile illness.

机构信息

Laboratory for MEMS Applications, IMTEK - Department of Microsystems Engineering, University of Freiburg, Freiburg, Germany.

Institute of Aquaculture, University of Stirling, Scotland, United Kingdom.

出版信息

PLoS Negl Trop Dis. 2021 Feb 25;15(2):e0009177. doi: 10.1371/journal.pntd.0009177. eCollection 2021 Feb.

Abstract

BACKGROUND

In this work, a platform was developed and tested to allow to detect a variety of candidate viral, bacterial and parasitic pathogens, for acute fever of unknown origin. The platform is based on a centrifugal microfluidic cartridge, the LabDisk ("FeverDisk" for the specific application), which integrates all necessary reagents for sample-to-answer analysis and is processed by a compact, point-of-care compatible device.

METHODOLOGY/PRINCIPAL FINDINGS: A sample volume of 200 μL per FeverDisk was used. In situ extraction with pre-stored reagents was achieved by bind-wash-elute chemistry and magnetic particles. Enzymes for the loop-mediated isothermal amplification (LAMP) were pre-stored in lyopellet form providing stability and independence from the cold chain. The total time to result from sample inlet to read out was 2 h. The proof-of-principle was demonstrated in three small-scale feasibility studies: in Dakar, Senegal and Khartoum, Sudan we tested biobanked samples using 29 and 9 disks, respectively; in Reinfeld, Germany we tested spiked samples and analyzed the limit of detection using three bacteria simultaneously spiked in whole blood using 15 disks. Overall during the three studies, the FeverDisk detected dengue virus (different serotypes), chikungunya virus, Plasmodium falciparum, Salmonella enterica Typhi, Salmonella enterica Paratyphi A and Streptococcus pneumoniae.

CONCLUSIONS/SIGNIFICANCE: The FeverDisk proved to be universally applicable as it successfully detected all different types of pathogens as single or co-infections, while it also managed to define the serotype of un-serotyped dengue samples. Thirty-eight FeverDisks at the two African sites provided 59 assay results, out of which 51 (86.4%) were confirmed with reference assay results. The results provide a promising outlook for future implementation of the platform in larger prospective clinical studies for defining its clinical sensitivity and specificity. The technology aims to provide multi-target diagnosis of the origins of fever, which will help fight lethal diseases and the incessant rise of antimicrobial resistance.

摘要

背景

本研究开发并测试了一种平台,用于检测各种候选病毒、细菌和寄生虫病原体,以诊断不明原因的急性发热。该平台基于离心微流控芯片,即 LabDisk(特定应用的“发热盘”),它集成了用于样本到答案分析的所有必要试剂,并由紧凑的、适合于现场使用的设备进行处理。

方法/主要发现:每个发热盘使用 200 μL 的样本量。通过结合预存试剂的绑定-洗涤-洗脱化学和磁性颗粒实现原位提取。酶用于环介导等温扩增(LAMP)以冻干粉的形式预先储存,提供稳定性并独立于冷链。从样本入口到读出结果的总时间为 2 小时。通过在塞内加尔达喀尔和苏丹喀土穆的三项小规模可行性研究以及在德国雷因费尔德的一项加标样本研究中进行的初步验证证明了该原理。在三项研究中,总共使用了 29 个和 9 个发热盘检测生物样本库样本,用 38 个发热盘检测了全血中同时添加的三种细菌的最低检测限。总体而言,发热盘成功检测到了登革热病毒(不同血清型)、基孔肯雅热病毒、恶性疟原虫、伤寒沙门氏菌、副伤寒沙门氏菌 A 型和肺炎链球菌。

结论/意义:发热盘被证明是普遍适用的,因为它成功地检测到了所有不同类型的病原体,无论是单一感染还是混合感染,同时还能够确定未分型登革热样本的血清型。在两个非洲地点的 38 个发热盘提供了 59 次检测结果,其中 51 次(86.4%)与参考检测结果相吻合。这些结果为该平台在更大规模的前瞻性临床研究中定义其临床灵敏度和特异性提供了有希望的前景。该技术旨在提供发热源的多目标诊断,这将有助于对抗致命疾病和不断上升的抗生素耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f4e/7906357/88d9a35343a3/pntd.0009177.g001.jpg

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