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雅加达东部虱子对氯菊酯和6-对甲酚的抗性实验:解毒酶活性及电子显微镜下虱子的变化

experiments of (: ) resistance to permethrin and 6-paradol in East Jakarta: Detoxification enzyme activity and electron microscopic changes in lice.

作者信息

Subahar Rizal, Susanto Lisawati, Aidilla Rachmanin, Aulia Annisa Putri, Yulhasri Yulhasri, Winita Rawina, Lubis Nadar S, Sari Ika Puspa

机构信息

Department of Parasitology, Faculty of Medicine, University of Indonesia, Jl. Salemba 6, Jakarta 10430, Indonesia.

Medical Doctor Program, Faculty of Medicine, University of Indonesia, Jl. Salemba 4, Jakarta 10430, Indonesia.

出版信息

Vet World. 2021 Nov;14(11):3065-3075. doi: 10.14202/vetworld.2021.3065-3075. Epub 2021 Nov 30.

Abstract

BACKGROUND AND AIM

, the human head louse, remains a global health problem. This study evaluated the resistance of head lice to permethrin and 6-paradol mediated by detoxification enzyme activity experiments and to describe physical changes in the lice using scanning electron microscopy (SEM).

MATERIALS AND METHODS

The adult stages of were collected from patients exposed to 1% permethrin and three different concentrations of 6-paradol (0.00005%, 0.0001%, and 0.00015%) using a filter paper diffusion bioassay. Healthy adults served as the control. The bioassays were conducted after 10, 20, 30, and 60 min of exposure. The activities of acetylcholinesterase (AChE), glutathione S-transferase (GST), and oxidase were analyzed. Physical changes in the lice were analyzed using SEM.

RESULTS

Permethrin and 6-paradol exhibited low toxicity against the lice. At 60 min, 1% permethrin had killed 36.7% of the lice present, while 6-paradol had killed 66.7-86.7%. Permethrin induced significantly elevated AChE, GST, and oxidase activity; 6-paradol also caused significantly elevated AChE, GST, and oxidase activity. Permethrin did not cause any ultrastructural morphological changes on the lice, while 6-paradol severely damaged the head, thorax, respiratory spiracles, and abdomen of the dead lice.

CONCLUSION

This experimental of is the first study to report in East Jakarta shows complete resistance to permethrin and 6-paradol, and to describe the associated increase in AChE, GST, and oxidase activity. It was observed that 6-paradol severely damaged the head, thorax, respiratory spiracles, and abdomen of the dead lice.

摘要

背景与目的

人头虱仍是一个全球性的健康问题。本研究通过解毒酶活性实验评估了头虱对氯菊酯和6-对伞花烃醇的抗性,并使用扫描电子显微镜(SEM)描述了虱子的物理变化。

材料与方法

使用滤纸扩散生物测定法,从接触1%氯菊酯和三种不同浓度6-对伞花烃醇(0.00005%、0.0001%和0.00015%)的患者身上收集成年头虱。健康成年头虱作为对照。在暴露10、20、30和60分钟后进行生物测定。分析了乙酰胆碱酯酶(AChE)、谷胱甘肽S-转移酶(GST)和氧化酶的活性。使用扫描电子显微镜分析虱子的物理变化。

结果

氯菊酯和6-对伞花烃醇对虱子的毒性较低。在60分钟时,1%氯菊酯杀死了36.7%的现存虱子,而6-对伞花烃醇杀死了66.7%-86.7%。氯菊酯显著诱导AChE、GST和氧化酶活性升高;6-对伞花烃醇也导致AChE、GST和氧化酶活性显著升高。氯菊酯未引起虱子超微结构形态变化,而6-对伞花烃醇严重损害了死虱的头部、胸部、呼吸气门和腹部。

结论

这项在东雅加达进行的人头虱实验是首次报告对头虱对氯菊酯和6-对伞花烃醇完全抗性,并描述相关AChE、GST和氧化酶活性增加的研究。观察到6-对伞花烃醇严重损害了死虱的头部、胸部、呼吸气门和腹部。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/365b/8743776/68d99f115419/Vetworld-14-3065-g001.jpg

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