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基于重组 Przhevalskiana silenus Hypodermin C 的斑点酶联免疫吸附试验用于野外诊断羊狂蝇幼虫感染

Dot-ELISA based on recombinant Hypodermin C of Przhevalskiana silenus for field diagnosis of goat warble fly infestation.

机构信息

Division of Veterinary Parasitology, Faculty of Veterinary Sciences and Animal Husbandry, Sher-e-Kashmir University of Agricultural Sciences and Technology of Jammu, R. S. Pura, UT of Jammu and Kashmir, India.

INVESAGA Group, Department of Animal Pathology, Universidade de Santiago de Compostela, Lugo, Spain.

出版信息

Parasite Immunol. 2023 Oct;45(10):e13007. doi: 10.1111/pim.13007. Epub 2023 Jul 31.

Abstract

Goat warble fly infestation (GWFI) is an economically important myiasis caused by larvae of Przhevalskiana silenus (Diptera, Oestridae), prevalent in countries of the Mediterranean Basin and Indian subcontinent. GWFI is characterized by the presence of subcutaneous warbles at the lumbar and sacral region of dorsum in the infested animal. The early larval instars (L1 and L2) remain inaccessible to physical detection due to their small size and subcutaneous presence thus causing hindrance in the diagnosis. The objective of present study was to develop a field applicable early diagnostic intervention for GWFI monitoring and prophylactic management for effective control of the disease. Recombinant Hypodermin C (rHyC) antigen of P. silenus was expressed in Escherichia coli. The purified protein was used for optimizing dot-ELISA in a checkerboard titration using goat warble fly infested serum as known positive. The optimized assay was further tested for lower temperature (18°C) and incubation time (30 min). The optimized assay was assessed for inter-rater reliability and field samples. The optimized conditions require 188 ng of protein/dot, 1:800 dilution of serum sample, 1:4000 dilution of anti-goat IgG conjugate and 5% skim milk powder in phosphate buffer saline as blocking buffer. The assay was found to have a diagnostic sensitivity and specificity of 97.3% and 95.8%, respectively. The inter-rater reliability of dot ELISA with rHyC indirect ELISA was found to be almost perfect with a Cohen's kappa index of 0.973. Further testing at ambient temperature (18°C) and shorter incubation steps (30 min) supported suitability of the assay for field diagnosis of GWFI. The present study provides the first report of a sensitive and specific dot-ELISA for early diagnosis of GWFI which is rapid and cost effective. The test may provide an effective field applicable tool for sustainable control of GWFI.

摘要

山羊狂蝇蛆病(GWFI)是一种由狂蝇幼虫(双翅目,狂蝇科)引起的具有经济重要性的蝇蛆病,流行于地中海盆地和印度次大陆国家。GWFI 的特征是在受感染动物的背部腰部和荐部区域存在皮下狂蝇蛆。由于早期幼虫(L1 和 L2)体积小且位于皮下,因此无法通过物理检测发现,这给诊断带来了困难。本研究的目的是开发一种适用于现场的早期诊断干预措施,用于 GWFI 监测和预防性管理,以有效控制疾病。表达了 Przhevalskiana silenus 的重组 Hypodermin C(rHyC)抗原在大肠杆菌中。使用纯化的蛋白,通过使用已知为阳性的狂蝇蛆感染血清进行棋盘滴定优化斑点酶联免疫吸附试验(dot-ELISA)。进一步在较低温度(18°C)和孵育时间(30 分钟)下测试优化的检测方法。评估了优化的检测方法的组内可靠性和现场样本。优化的条件需要 188ng 蛋白/dot、血清样品稀释度 1:800、抗山羊 IgG 缀合物稀释度 1:4000 和磷酸盐缓冲盐水作为封闭缓冲液中的 5%脱脂乳。该检测方法的诊断灵敏度和特异性分别为 97.3%和 95.8%。rHyC 间接 ELISA 的斑点 ELISA 的组内可靠性被发现几乎是完美的,Cohen's kappa 指数为 0.973。在环境温度(18°C)和更短的孵育步骤(30 分钟)下进一步测试支持该检测方法适合 GWFI 的现场诊断。本研究首次报道了一种用于 GWFI 早期诊断的快速、经济有效的敏感且特异性的斑点 ELISA。该测试可能为 GWFI 的可持续控制提供有效的现场应用工具。

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