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首页> 外文期刊>Veterinary Parasitology >Carvacrol acts as a potent selective antagonist of different types of nicotinic acetylcholine receptors and enhances the effect of monepantel in the parasitic nematode Ascaris suum
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Carvacrol acts as a potent selective antagonist of different types of nicotinic acetylcholine receptors and enhances the effect of monepantel in the parasitic nematode Ascaris suum

机译:Carvacrol作为不同类型的烟碱乙酰胆碱受体的有效的选择性拮抗剂,并增强Monepantel在寄生线虫蛔虫中的作用

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The neuromuscular system of parasitic nematodes has proven to be an efficient pharmacological target for antihelmintics. Some of the most frequently used antiparasitic drugs are agonists or antagonists of nicotinic acetylcholine receptors (nAChRs). The antinematodal mechanism of action of carvacrol involves the inhibition of parasite muscle contraction. We have examined the interaction of carvacrol with antinematodal drugs that are agonists of different subtypes of nAChRs and monepantel, which is a non-competitive antagonist of this receptor in A. suum. Additionally, we investigated the effect of carvacrol on the muscle type of nAChRs in the mammalian host. As orthosteric agonists of nAChR, pyrantel, morantel and befinijum lead to dose-dependent contractions of the neuromuscular preparation of Ascaris suum. Carvacrol 100 mu M decreased the E-max of pyrantel, morantel and bephenium by 29%, 39% and 12 %, 39 % and 12 % respectively. The EC50 ratio was 3.43, 2.95 and 2.47 for pyrantel, morantel and bephinium, respectively. Carvacrol 300 u mu M reduces the E-max of pyrantel, morantel and bephenium by 71%, 80% and 75 %, 80 % and 75 % respectively. The EC50 ratio for pyrantel, morantel and bephenium was 3.88, 3.19 and 4.83 respectively. Furthermore, carvacrol enhances the inhibitory effect of monepantel on A. mum contractions, which may have an effective clinical application. On the other hand, tested concentrations of carvacrol did not significantly affect the EFS-induced contractions of the rat diaphragm, indicating a lack of interaction with the postsynaptic nAChR at the muscle end plate in mammals, but the highest concentration (300 mu M) caused a clear tetanic fade. Carvacrol exhibited a time and dose-dependent effect on the Rota-rod performances of rats with a high value of the ED50 (421.6 mg/kg). In our research, carvacrol dominantly exhibited characteristics of a non-competitive antagonist of nAChR in A. suum, and enhances the inhibitory effect of monepantel. The combination of monepantel and carvacrol may be clinically very effective, and the carvacrol molecule itself can be used as a promising platform for the development of new anthelmintic drugs.
机译:寄生线虫的神经肌肉系统已被证明是抗骨症的有效药理学靶标。一些最常用的抗哌啶药物是烟碱乙酰胆碱受体(NACHRS)的激动剂或拮抗剂。碳酸的抗炎作用机制涉及抑制寄生虫肌肉收缩。我们已经研究了碳酸与抗炎药的相互作用,这是Nachrs和Monepantel的不同亚型的激动剂,这是A. Suum中该受体的不竞争性拮抗剂。此外,我们研究了爬行动物对哺乳动物宿主肌肉类型的影响。作为Nachr,Pyrantel,Morantel和Befinijum的矫形激动剂导致蛔虫苏姆的神经肌肉制剂的剂量依赖性收缩。 Carvacrol 100 mu m分别将Pyrantel,Morantel和Behenium的E-Max降低29%,39%和12%,39%和12%。 EC50比率分别为3.43,2.95和2.47,用于Pyrantel,Morantel和Bephinium。 Carvacrol 300 u Mu m将蛋白质,莫兰特尔和低苯的E-Max减少71%,80%和75%,80%和75%。 Pyrantel,Morantel和Bephenium的EC50比例分别为3.88,3.19和4.83。此外,Carvacrol增强了Monepantel对A.妈妈收缩的抑制作用,这可能具有有效的临床应用。另一方面,Carvacrol的测试浓度没有显着影响大鼠膜片的EFS诱导的收缩,表明患有哺乳动物肌肉端板的突触突触NACHR缺乏相互作用,但引起的最高浓度(300μm)清澈的滴答物褪色。 Carvacrol对ED50的高值(421.6mg / kg)的大鼠旋转棒性能表现出了时间和剂量依赖性影响。在我们的研究中,Carvacrol在A. Suum中占据了NACHR的非竞争性拮抗剂的特征,增强了Monepantel的抑制作用。 Monepantel和Carvacrol的组合可能是临床上非常有效的,并且碳酸分子本身可以用作开发新的触发药物的有希望的平台。

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