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Effect of myrrh and thyme on Trichinella spiralis enteraland parenteral phases with inducible nitric oxide expression in mice

机译:没药和百里香对旋毛虫肠内的影响诱导的一氧化氮在小鼠的肠胃外和肠胃外相

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摘要

Trichinellosis is a serious disease with no satisfactory treatment. We aimed to assess the effect of myrrh (Commiphora molmol) and, for the first time, thyme (Thymus vulgaris L.) against enteral and encysted (parenteral) phases of Trichinella spiralis in mice compared with albendazole, and detect their effect on inducible nitric oxide synthase (iNOS) expression. Oral administration of 500 mg/kg of myrrh and thyme led to adult reduction (90.9%, 79.4%), while 1,000 mg/kg led to larvae reduction (79.6%, 71.3%), respectively. Administration of 50 mg/kg of albendazole resulted in adult and larvae reduction (94.2%, 90.9%). Positive immunostaining of inflammatory cells infiltrating intestinal mucosa and submucosa of all treated groups was detected. Myrrh-treated mice showed the highest iNOS expression followed by albendazole, then thyme. On the other hand, both myrrh and thyme-treated groups showed stronger iNOS expression of inflammatory cells infiltrating and surrounding encapsulated T. spiralis larvae than albendazole treated group. In conclusion, myrrh and thyme extracts are highly effective against both phases of T. spiralis and showed strong iNOS expressions, especially myrrh which could be a promising alternative drug. This experiment provides a basis for furtherexploration of this plant by isolation and retesting the active principles of bothextracts against different stages of T. spiralis.
机译:旋毛虫病是一种严重的疾病,没有令人满意的治疗方法。我们旨在评估没药(Commiphora molmol)和百里香(百里香(Thymus vulgaris L.))相对于阿苯达唑对小鼠旋毛虫的肠内和卷入(肠胃外)期的影响,并首次检测其对诱导型硝酸的影响。氧化物合酶(iNOS)的表达。口服500 mg / kg的没药和百里香导致成年减少(90.9%,79.4%),而1,000 mg / kg导致幼虫减少(79.6%,71.3%)。服用50 mg / kg的阿苯达唑可减少成虫和幼虫(94.2%,90.9%)。在所有治疗组中均检测到浸润肠粘膜和粘膜下层的炎性细胞阳性免疫染色。经没药治疗的小鼠显示最高的iNOS表达,其次是阿苯达唑,然后是百里香。另一方面,没药和百里香治疗组均比阿苯达唑治疗组表现出更强的浸润和包围包囊螺旋体幼虫的炎性细胞iNOS表达。总之,没药和百里香提取物对螺旋藻的两个阶段都非常有效,并显示出强大的iNOS表达,特别是没药可能是一种有前途的替代药物。该实验为进一步的研究奠定了基础。通过隔离和重新测试两者的有效原理来探索这种植物提取物对螺旋藻的不同阶段。

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