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用红豆草(红豆草)提取物处理的反刍动物线虫第三期感染性幼虫的超微结构变化。

Ultrastructural changes in the third-stage, infective larvae of ruminant nematodes treated with sainfoin (Onobrychis viciifolia) extract.

作者信息

Brunet S, Fourquaux I, Hoste H

机构信息

INRA, UMR 1225, Toulouse, France.

出版信息

Parasitol Int. 2011 Dec;60(4):419-24. doi: 10.1016/j.parint.2010.09.011. Epub 2011 Jul 20.

Abstract

Plants rich in condensed tannins are an alternative to chemical anthelmintics to control gastrointestinal nematodes (GINs) in ruminants. Previous functional studies have shown that sainfoin extracts affect the two forms of infective larvae (L3), ensheathed and exsheathed. However, the mechanisms of action remain unknown. The aim of this study was thus to compare ultrastructural changes in ensheathed and exsheathed L3 of two GIN species after in vitro contact with sainfoin extracts using transmission electron microscopy. The main changes identified were an alteration of the hypodermis, the presence of numerous vesicles in the cytoplasm and degeneration and/or death of muscular and intestinal cells. The changes suggested similar and nonspecies-specific lesions in the two nematode species. Comparison of the modifications found in the ensheathed vs. exsheathed L3s revealed different locations of the main cellular changes depending on the larval form. It is hypothesized that these spatial differences in lesions are mainly influenced by the presence of the sheath which favors contact between the active compounds and either the cuticle or the digestive tract. Overall, our observations suggest that the functional changes observed in the biology of GIN L3s after contact with sainfoin extracts are mediated through a direct mode of action, i.e. different interactions between the bioactive plant metabolites and the nematode structure depending on the route of contact.

摘要

富含缩合单宁的植物可替代化学驱虫剂,用于控制反刍动物胃肠道线虫(GIN)。先前的功能研究表明,红豆草提取物会影响两种感染性幼虫(L3)形态,即带鞘和脱鞘的幼虫。然而,其作用机制尚不清楚。因此,本研究的目的是使用透射电子显微镜比较两种GIN物种的带鞘和脱鞘L3在体外与红豆草提取物接触后的超微结构变化。确定的主要变化包括皮下组织改变、细胞质中出现大量囊泡以及肌肉和肠道细胞变性和/或死亡。这些变化表明两种线虫物种存在相似且非物种特异性的损伤。比较带鞘和脱鞘L3中发现的变化,发现主要细胞变化的位置因幼虫形态而异。据推测,这些损伤的空间差异主要受鞘的存在影响,鞘有利于活性化合物与角质层或消化道之间的接触。总体而言,我们的观察结果表明,GIN L3与红豆草提取物接触后在生物学上观察到的功能变化是通过直接作用模式介导的,即生物活性植物代谢物与线虫结构之间的不同相互作用取决于接触途径。

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