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基于新型 CRISPR-Cas 的东非锥虫病笔式即时检测方法

Novel CRISPR-Cas-powered pen-side test for East Coast fever.

机构信息

University of Nairobi, Faculty of Veterinary Medicine, Department of Veterinary Pathology and Parasitology P.O. Box 30197, Nairobi, Kenya; International Livestock Research Institute (ILRI), Animal and Human Health Program, P.O. Box 30709, Nairobi, Kenya.

University of Nairobi, Faculty of Veterinary Medicine, Department of Veterinary Pathology and Parasitology P.O. Box 30197, Nairobi, Kenya.

出版信息

Int J Parasitol. 2024 Aug;54(10):507-521. doi: 10.1016/j.ijpara.2024.04.009. Epub 2024 Apr 25.

Abstract

Theileria parvacauses East Coast fever (ECF), one of the most important and lethal tick-borne diseases of cattle in sub-Saharan Africa. ECF is a considerable burden to the livestock industry, causing annual losses exceeding US $300 million. Currently, diagnosis of T. parva infections relies mainly on clinical signs, serology, and microscopic identification of parasites in either blood or lymph fluid samples. However, some of these tests might not indicate ongoing infection and they all lack the sensitivity to detect low-level infections. Molecular tests such as nested and quantitative PCR assays offer high sensitivity for detection of T. parva. However, these tests remain highly complex technologies that are impractical to use in resource-limited settings where economic losses due to the disease have the most significant impact. A field-deployable, point-of-care test will be of significant value in the treatment and control of ECF in endemic areas. For this purpose, we have developed a CRISPR-Cas12a-based pen-side tool that can sensitively and specifically detect T. parva based on the p104 gene. We describe a streamlined, field-applicable diagnostic tool comprising a 20 min recombinase polymerase amplification (RPA) reaction followed by a 60 min CRISPR-Cas12a reaction using a FAM/Biotin lateral flow strip readout. We tested two different RPA primer pairs and four different CRISPR-RNAs (crRNAs). The p104-based assay displayed high sensitivity, detecting as low as one infected lymphocyte per three microliters of blood and universally detecting eight different T. parva strains without detecting DNA from other Theileria spp. such as Theileria mutans and Theileria lestoquardi. This work opens the way for a field-applicable diagnostic tool for the sensitive point-of-care early diagnosis of T. parva infections in cattle.

摘要

卵形泰勒虫引起东非热(ECF),这是撒哈拉以南非洲最重要和最致命的牛蜱传疾病之一。ECF 给畜牧业带来了相当大的负担,每年造成的损失超过 3 亿美元。目前,卵形泰勒虫感染的诊断主要依赖于临床症状、血清学和寄生虫在血液或淋巴液样本中的显微镜鉴定。然而,其中一些测试可能无法表明正在发生感染,而且它们都缺乏检测低水平感染的敏感性。巢式和定量 PCR 等分子测试提供了检测卵形泰勒虫的高灵敏度。然而,这些测试仍然是高度复杂的技术,在资源有限的环境中不切实际,因为疾病造成的经济损失影响最大。现场可部署的即时护理测试在疾病流行地区对 ECF 的治疗和控制将具有重要价值。为此,我们开发了一种基于 CRISPR-Cas12a 的床边工具,该工具可以基于 p104 基因灵敏和特异性地检测卵形泰勒虫。我们描述了一种简化的、适用于现场的诊断工具,包括 20 分钟的重组聚合酶扩增(RPA)反应,然后是 60 分钟的 CRISPR-Cas12a 反应,使用 FAM/生物素侧流条读取。我们测试了两种不同的 RPA 引物对和四种不同的 CRISPR-RNA(crRNA)。基于 p104 的检测方法具有很高的灵敏度,可检测到每三微升血液中低至一个受感染的淋巴细胞,并且普遍可检测到八种不同的卵形泰勒虫株,而不会检测到其他泰勒虫属的 DNA,如 Mutans 和 Lestoquardi。这项工作为在牛中进行现场应用的即时护理诊断工具的敏感早期诊断卵形泰勒虫感染开辟了道路。

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