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通过体外方法评估马圆线虫对苯并咪唑的抗性。

Assessing the benzimidazole resistance in equine strongyles by in vitro methods.

作者信息

Königová Alžbeta, Babják Michal, Kuzmina Tetiana A, Burcáková Ľudmila, Syrota Yaroslav, Várady Marián

机构信息

Institute of Parasitology, Slovak Academy of Sciences, Hlinkova 3, Kosice 040 01, Slovakia.

Institute of Parasitology, Slovak Academy of Sciences, Hlinkova 3, Kosice 040 01, Slovakia.

出版信息

Vet Parasitol. 2025 Feb;334:110387. doi: 10.1016/j.vetpar.2024.110387. Epub 2025 Jan 3.

Abstract

The study aimed to conduct a survey on the occurrence of benzimidazole (BZ) resistance in strongyles by in vitro egg hatch test (EHT) and larval development test (LDT) and to identify the effective indicators of early resistance detection on horse farms with associated risk factors analysis appraisal. In total, 203 horses from 8 farms underwent the fecal sampling of which 77 horses were selected for in vitro testing. Simultaneously, 18 horses were chosen to analyse the results of in vitro tests compared to the in vivo fecal egg count reduction test (FECRT). The EHT indicated the presence of resistant strongyles in all farms with an exceeded threshold of 0.1 μg/ml thiabendazole (TBZ) in 43 horses (55.84 %). The percent egg hatch at 0.1 μg/ml TBZ in "resistant parasites" varies from 39.0 ± 6.0 % to 91.0 ± 1.0 %. The hatching range between 8.5 ± 1.5 % and 50.0 ± 6.0 % at a concentration of 0.1 μg/ml TBZ was detected wherein the recommended threshold was not exceeded. The analysis of the EHT results demonstrated that egg hatching at the 0.1 µg/ml TBZ concentration was identified as the most important predictor of the early detection of BZ resistance. In the LDT, the mean TBZ concentration which interrupted the development of 50 % and 99 % larvae to the infective stage (L3) from all horses was 0.0753 ± 0.0454 and 0.6798 ± 1.9144 μg/ml TBZ, respectively. Only cyathostomin L3 were found at TBZ concentrations ≥ 0.08 μg/ml and only in samples from 81.8 % of horses (36/44). A comparison of LDT results did not show a statistically significant agreement with EHT and FECRT. In conclusion, the in vitro EHT could be implemented as an indicator for early BZ resistance detection and showed that monitoring of hatching at selected concentrations could detect presence and estimate the proportion of the resistant parasite population on the horse farms.

摘要

本研究旨在通过体外虫卵孵化试验(EHT)和幼虫发育试验(LDT)对圆线虫中苯并咪唑(BZ)耐药性的发生情况进行调查,并通过相关风险因素分析评估确定马场早期耐药性检测的有效指标。总共对来自8个马场的203匹马进行了粪便采样,其中77匹马被选作体外试验。同时,选择18匹马分析体外试验结果,并与体内粪便虫卵计数减少试验(FECRT)进行比较。EHT表明所有马场均存在耐药圆线虫,43匹马(55.84%)的噻苯达唑(TBZ)阈值超过0.1μg/ml。“耐药寄生虫”在0.1μg/ml TBZ浓度下的虫卵孵化率在39.0±6.0%至91.0±1.0%之间。在0.1μg/ml TBZ浓度下检测到孵化率在8.5±1.5%至50.0±6.0%之间,未超过推荐阈值。对EHT结果的分析表明,在0.1µg/ml TBZ浓度下的虫卵孵化被确定为BZ耐药性早期检测的最重要预测指标。在LDT中,使所有马匹中50%和99%的幼虫发育至感染期(L3)的平均TBZ浓度分别为0.0753±0.0454和0.6798±1.9144μg/ml TBZ。仅在TBZ浓度≥0.08μg/ml时发现了杯状线虫L3,且仅在81.8%(36/44)的马的样本中发现。LDT结果与EHT和FECRT的比较未显示出统计学上的显著一致性。总之,体外EHT可作为BZ耐药性早期检测的指标,表明监测选定浓度下的孵化情况可检测到马场中耐药寄生虫种群的存在并估计其比例。

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