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印楝(Azadirachta indica)油活性成分对兔疥螨的杀螨机制研究。

Studies on the acaricidal mechanism of the active components from neem (Azadirachta indica) oil against Sarcoptes scabiei var. cuniculi.

作者信息

Chen Zhen-zhen, Deng Yun-xia, Yin Zhong-qiong, Wei Qin, Li Mei, Jia Ren-yong, Xu Jiao, Li Li, Song Xu, Liang Xiao-xia, Shu Gang, He Chang-liang, Gu Xiao-bin, Lv Cheng, Yin Lizi

机构信息

College of Veterinary Medicine, Sichuan Agricultural University, Ya'an 625014, China.

College of Veterinary Medicine, Sichuan Agricultural University, Ya'an 625014, China.

出版信息

Vet Parasitol. 2014 Aug 29;204(3-4):323-9. doi: 10.1016/j.vetpar.2014.05.040. Epub 2014 Jun 6.

Abstract

Octadecanoic acid-3,4-tetrahydrofuran diester, isolated from neem (Azadirachta indica) oil, exhibited potent acaricidal activity against Sarcoptes scabiei var. cuniculi. In this paper, the acaricidal mechanism of octadecanoic acid-3,4-tetrahydrofuran diester against Sarcoptes scabiei var. cuniculi was evaluated based on pathologic histology and enzyme activities. The results showed that after compound treatment for 24h at a concentration of 20mg/mL, the lesions of mites were prominent under transmission electron microscopy. The lesions consisted of the lysis of dermis cell membranes and cell nuclear membranes, mitochondrial morphological abnormalities, the drop of spinal disorders, and mitochondrial vacuolization. The activity of superoxide dismutase (SOD), peroxidase (POD), glutathione-s-transferases (GSTs), and Ca(2+)-ATPase of mites significantly changed after treatment with octadecanoic acid-3,4-tetrahydrofuran diester compared with the control group. The activities of SOD, POD, and Ca(2+)-ATPase were significantly suppressed, whereas that of GSTs was activated. These results indicated that the mechanism of the acaricidal activity of octadecanoic acid-3,4-tetrahydrofuran diester was mainly achieved through interference with the energy metabolism of mites, thus resulting in insect death.

摘要

从印楝(Azadirachta indica)油中分离得到的十八烷酸 - 3,4 - 四氢呋喃二酯,对兔疥螨表现出强大的杀螨活性。本文基于病理组织学和酶活性评估了十八烷酸 - 3,4 - 四氢呋喃二酯对兔疥螨的杀螨机制。结果表明,在浓度为20mg/mL的化合物处理24小时后,透射电子显微镜下螨虫的损伤明显。损伤包括真皮细胞膜和细胞核膜的溶解、线粒体形态异常、脊柱紊乱以及线粒体空泡化。与对照组相比,用十八烷酸 - 3,4 - 四氢呋喃二酯处理后,螨虫的超氧化物歧化酶(SOD)、过氧化物酶(POD)、谷胱甘肽 - s - 转移酶(GSTs)和Ca(2 +)-ATP酶的活性发生了显著变化。SOD、POD和Ca(2 +)-ATP酶的活性受到显著抑制,而GSTs的活性被激活。这些结果表明,十八烷酸 - 3,4 - 四氢呋喃二酯的杀螨活性机制主要是通过干扰螨虫的能量代谢,从而导致螨虫死亡。

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