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Assessment of the anthelmintic activity of medicinal plant extracts and purified condensed tannins against free-living and parasitic stages of Oesophagostomum dentatum

机译:药用植物提取物和纯化的单宁酸对食管食牙菌的自生和寄生虫阶段的驱虫活性的评估

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Background Plant-derived condensed tannins (CT) show promise as a complementary option to treat gastrointestinal helminth infections, thus reducing reliance on synthetic anthelmintic drugs. Most studies on the anthelmintic effects of CT have been conducted on parasites of ruminant livestock. Oesophagostomum dentatum is an economically important parasite of pigs, as well as serving as a useful laboratory model of helminth parasites due to the ability to culture it in vitro for long periods through several life-cycle stages. Here, we investigated the anthelmintic effects of CT on multiple life cycle stages of O. dentatum. Methods Extracts and purified fractions were prepared from five plants containing CT and analysed by HPLC-MS. Anthelmintic activity was assessed at five different stages of the O. dentatum life cycle; the development of eggs to infective third-stage larvae (L3), the parasitic L3 stage, the moult from L3 to fourth-stage larvae (L4), the L4 stage and the adult stage. Results Free-living larvae of O. dentatum were highly susceptible to all five plant extracts. In contrast, only two of the five extracts had activity against L3, as evidenced by migration inhibition assays, whilst three of the five extracts inhibited the moulting of L3 to L4. All five extracts reduced the motility of L4, and the motility of adult worms exposed to a CT-rich extract derived from hazelnut skins was strongly inhibited, with electron microscopy demonstrating direct damage to the worm cuticle and hypodermis. Purified CT fractions retained anthelmintic activity, and depletion of CT from extracts by pre-incubation in polyvinylpolypyrrolidone removed anthelmintic effects, strongly suggesting CT as the active molecules. Conclusions These results suggest that CT may have promise as an alternative parasite control option for O. dentatum in pigs, particularly against adult stages. Moreover, our results demonstrate a varied susceptibility of different life-cycle stages of the same parasite to CT, which may offer an insight into the anthelmintic mechanisms of these commonly found plant compounds.
机译:背景技术植物来源的浓缩单宁(CT)有望作为治疗胃肠蠕虫感染的补充选择,从而减少对合成驱虫药的依赖。关于CT的驱虫作用的大多数研究都是针对反刍家畜的寄生虫进行的。齿牙食管牙是猪的一种经济上重要的寄生虫,并且由于能够在几个生命周期阶段中在体外进行长期培养,因此可作为蠕虫寄生虫的有用实验室模型。在这里,我们调查了CT对牙菌的多个生命周期阶段的驱虫作用。方法从五株含CT的植物中提取提取物和纯化级分,并用HPLC-MS分析。在齿牙O生命周期的五个不同阶段评估了驱虫活性。卵发育成感染性第三阶段幼虫(L3),寄生L3阶段,从L3到第四阶段幼虫的蜕变(L4),L4阶段和成年阶段。结果牙形O的自由生存幼虫对所有五种植物提取物均高度敏感。相反,如通过迁移抑制测定所证明的,五种提取物中只有两种具有抗L3的活性,而五种提取物中的三种抑制了L3向L4的蜕皮。所有这五种提取物均降低了L4的活力,暴露于富含榛子皮的富含CT的提取物的成虫蠕虫的活力受到了强烈抑制,电子显微镜证实了其对蠕虫表皮和皮下组织的直接损害。纯化的CT馏分保留了驱虫活性,通过在聚乙烯基聚吡咯烷酮中预培养而从提取物中耗竭的CT消除了驱虫作用,强烈表明CT是活性分子。结论这些结果表明,CT有望作为猪齿牙。的一种替代性寄生虫控制选择,尤其是在成年阶段。此外,我们的研究结果表明,同一寄生虫的不同生命周期阶段对CT的敏感性不同,这可能为深入了解这些常见植物化合物的驱虫机理提供了依据。

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