Development and Assessment of a Multiple-Analysis System for Diagnosing Malaria and Other Blood Parasite Infections in Humans and Non-Human Primates.

IF 3.3 3区 医学 Q1 MEDICINE, GENERAL & INTERNAL Diagnostics Pub Date : 2025-03-04 DOI:10.3390/diagnostics15050620
Ángela Ceballos-Caro, Víctor Antón-Berenguer, Marta Lanza, Justinn Renelies-Hamilton, Amanda Barciela, Pamela C Köster, David Carmena, María Flores-Chávez, Emeline Chanove, José Miguel Rubio
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Abstract

Background/Objectives: Many tropical diseases such as malaria, Chagas, human African Trypanosomiasis, and Lymphatic filariasis coexist in endemic countries, affecting more than 1 billion people worldwide, and are recognised as major global vector-borne diseases. Tackling this disease requires an accurate diagnosis that is sensitive, specific, and rapid. This study aimed to describe and validate a new highly sensitive and specific multiple-analysis system that can effectively detect numerous etiological agents in a single test. Methods: A total of 230 human blood samples were assessed retrospectively for parasite characterisation, as well as 58 stool samples from non-human primates. Primers and probes were designed in the small subunit ribosomal RNA gene, except for Plasmodium spp., for which the novel target was Cytochrome Oxidase Subunit 1. Results: The analytical specificity of the presented method was 100%, with no unspecific amplifications or cross-reactions with other blood parasitic diseases. The detection limit obtained was between 0.6 and 3.01 parasites/µL for Plasmodium species, 1.8 parasites/mL for Trypanosomatidae, and 2 microfilariae/mL in the case of Filariae. The sensitivity, specificity, predictive values, and kappa coefficient reached almost 100%, except for Filariae, whose sensitivity dropped to 93.9% and whose negative predicted value dropped to 89.5%. The operational features described a turnaround and a hands-on time shorter than the compared methods with a lower cost per essay. Conclusions: This work presents a cost-effective and highly sensitive multiplexed tool (RT-PCR-bp) capable of performing simultaneous detection for blood parasitic diseases using specific fluorescence probes, enabling the diagnosis of low parasite loads and coinfections.

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用于诊断人类和非人类灵长类动物疟疾和其他血液寄生虫感染的多重分析系统的开发和评估。
背景/目的:疟疾、南美锥虫病、非洲人类锥虫病和淋巴丝虫病等许多热带疾病在流行国家共存,影响全世界10亿多人,被认为是全球主要的病媒传播疾病。应对这种疾病需要准确、敏感、特异和快速的诊断。本研究旨在描述和验证一种新的高灵敏度和特异性的多重分析系统,该系统可以在一次测试中有效地检测多种病原。方法:对230份人类血液样本和58份非人类灵长类动物粪便样本进行回顾性评估,以确定寄生虫的特征。引物和探针设计在小亚基核糖体RNA基因,除了疟原虫,其新目标是细胞色素氧化酶亚基1。结果:本方法分析特异性为100%,无非特异性扩增,与其他血寄生虫病无交叉反应。疟原虫的检出限为0.6 ~ 3.01只/µL,锥虫科的检出限为1.8只/mL,丝虫科的检出限为2只/mL。敏感性、特异度、预测值和kappa系数均接近100%,但丝虫病的敏感性降至93.9%,阴性预测值降至89.5%。操作特点描述了一个周转和动手时间比较低的成本每篇文章比较的方法短。结论:本研究提出了一种具有成本效益和高灵敏度的多路复用工具(RT-PCR-bp),能够使用特定的荧光探针同时检测血液寄生虫病,从而能够诊断低寄生虫载量和合并感染。
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来源期刊
Diagnostics
Diagnostics Biochemistry, Genetics and Molecular Biology-Clinical Biochemistry
CiteScore
4.70
自引率
8.30%
发文量
2699
审稿时长
19.64 days
期刊介绍: Diagnostics (ISSN 2075-4418) is an international scholarly open access journal on medical diagnostics. It publishes original research articles, reviews, communications and short notes on the research and development of medical diagnostics. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodological details must be provided for research articles.
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