Evaluation of the efficicacy of myrcene in the treatment of Eimeria tenella and Toxoplasma gondii infection.

IF 1.1 4区 农林科学 Q3 VETERINARY SCIENCES Journal of Veterinary Medical Science Pub Date : 2024-11-20 DOI:10.1292/jvms.24-0397
Nianyuan Chen, Qingxiu Cai, Shujing Wang, Qingyang Song, Ying Xie, Huijuan Shi, Hongmei Li, Xiaomin Zhao, Ningning Zhao, Xiao Zhang
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Abstract

Protozoan parasites such as Eimeria tenella and Toxoplasma gondii pose significant health challenges in livestock and humans. The limited treatment options and rising drug resistance underscore the urgent need for new therapies. This study investigates myrcene, a monoterpene hydrocarbon classified for its antiprotozoal potential against E. tenella and T. gondii infections. Initially, we examined its effect on the sporulation process of E. tenella oocysts in vitro and its anti-E. tenella activity in vivo. Myrcene significantly reduced the sporulation rate of E. tenella oocysts at 3 and 4 mg/kg. In vivo experiments demonstrated that treatment with 4 mg/kg myrcene significantly reduced E. tenella load and oocyst output, as well as cecal lesion and weight loss caused by E. tenella infection, showing moderate anti-E. tenella activity, with an Anticoccidial Index (ACI) of 161.4. Furthermore, we investigated the anti-T. gondii activity of myrcene both in vitro and in vivo. In vitro studies showed that treatment with myrcene effectively inhibited the invasion rate and intracellular proliferation ability of T. gondii tachyzoite in DF-1 cells in a dose-dependent manner. In vivo administration prolonged the survival time in T. gondii-infected mice, suggesting notable protective effects. Additionally, it mitigated T. gondii-induced hepatosplenic toxicity by reducing parasite load in the liver and spleen, and ameliorating liver function as evidenced by decreased serum transaminase levels. In conclusion, the findings demonstrate promising anti-E. tenella and anti-T. gondii activity exhibited by myrcene warranting further exploration into its mechanisms and potential therapeutic applications.

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评估月桂烯治疗天牛埃默氏菌和弓形虫感染的疗效。
天牛埃默氏菌和弓形虫等原生动物寄生虫对牲畜和人类的健康构成重大挑战。有限的治疗方案和不断增加的抗药性凸显了对新疗法的迫切需求。本研究调查了一种单萜碳氢化合物--月桂烯,它被归类为一种具有抗原虫潜力的物质,可用于治疗天牛伊蚊和弓形虫感染。首先,我们研究了它在体外对天蚕蛾卵囊孢子化过程的影响以及在体内的抗天蚕蛾活性。在 3 毫克/千克和 4 毫克/千克的剂量下,月桂烯能明显降低天牛卵囊的孢子繁殖率。体内实验表明,使用4毫克/千克的月桂烯可明显降低天牛埃希氏菌载量和卵囊产量,以及天牛埃希氏菌感染引起的盲肠病变和体重下降,显示出中等程度的抗天牛埃希氏菌活性,抗球虫指数(ACI)为161.4。此外,我们还研究了月桂烯在体外和体内的抗淋球菌活性。体外研究表明,用月桂烯处理可有效抑制淋病双球菌在 DF-1 细胞中的侵袭率和细胞内增殖能力,其作用呈剂量依赖性。体内给药可延长淋球菌感染小鼠的存活时间,表明其具有显著的保护作用。此外,它还通过减少寄生虫在肝脏和脾脏中的载量,减轻了淋病引起的肝脾毒性,并通过降低血清转氨酶水平改善了肝功能。总之,研究结果表明,月桂烯具有良好的抗天牛肠虫和抗淋巴结核活性,值得进一步探索其作用机制和潜在的治疗应用。
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来源期刊
Journal of Veterinary Medical Science
Journal of Veterinary Medical Science 农林科学-兽医学
CiteScore
2.30
自引率
8.30%
发文量
230
审稿时长
9-18 weeks
期刊介绍: JVMS is a peer-reviewed journal and publishes a variety of papers on veterinary science from basic research to applied science and clinical research. JVMS is published monthly and consists of twelve issues per year. Papers are from the areas of anatomy, physiology, pharmacology, toxicology, pathology, immunology, microbiology, virology, parasitology, internal medicine, surgery, clinical pathology, theriogenology, avian disease, public health, ethology, and laboratory animal science. Although JVMS has played a role in publishing the scientific achievements of Japanese researchers and clinicians for many years, it now also accepts papers submitted from all over the world.
期刊最新文献
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