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首页> 外文期刊>Parasitology Research >Therapeutic efficacy of poly (lactic-co-glycolic acid) nanoparticles encapsulated ivermectin (nano-ivermectin) against brugian filariasis in experimental rodent model.
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Therapeutic efficacy of poly (lactic-co-glycolic acid) nanoparticles encapsulated ivermectin (nano-ivermectin) against brugian filariasis in experimental rodent model.

机译:聚(乳酸二乙醇酸)纳米颗粒对实验啮齿动物模型中对抗伊维菌蛋白(纳米伊岛素)的治疗疗效。

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摘要

The present study reports on the antifilarial activity of poly (lactic-co-glycolic acid) nanoparticles encapsulated ivermectin (nano-IVM) against human lymphatic filariid Brugia malayi in rodent host Mastomys coucha. Nano-IVM was prepared and optimized by nanoprecipitation method. The selected nano-IVM (F5) showed a uniform spherical shape with 96 nm diameter and 74.12 % entrapment efficiency, and when used at a suboptimal dose of 100 μg/kg body weight, completely eliminated filarial parasites from systemic circulation on 60 days post-infection in animals inflicted with B. malayi. In contrast, the coadministration of nano-IVM (F5) along with standard filaricide diethylcarbamazine (DEC) was found to be competent enough to suppress microfilarial stage of parasites and successfully eliminated microfilaria at 45 days posttreatment. However, the free form of both the drugs alone or in combination was unable to impart such suppression and followed by recurrence of the infection. Interestingly, nano-IVM (F5) was also found to be effective against adult stage parasites causing 36.67 % worm mortality and 75.89 % in combination with DEC; however, female sterilization remain almost similar. Thus, the combination of entrapped IVM with DEC exhibited enhanced microfilaricidal and marginally better macrofilaricidal efficacy than any of the single formulation or drugs combination.
机译:本研究报告了聚(乳酸二乙醇酸)纳米颗粒的防污活性包封了伊维菌素(纳米IVM)对啮齿动物乳腺乳腺乳房Coucha中的人淋巴丝虫虫兔Malayi。通过纳米沉淀方法制备和优化纳米IVM。所选的纳米IVM(F5)显示出均匀的球形,直径为96nm,夹带效率为74.12%,并且当以100μg/ kg体重的次优剂量使用时,在60天后完全消除了从系统循环的丝丝寄生虫。用B.Malayi造成的动物感染。相反,发现纳米IVM(F5)与标准丝硅酸二乙基氨基吡啶嗪(DEC)的共同分析是足以抑制寄生虫的微生物阶段,并在治疗45天成功消除MicroFilaria。然而,单独或组合的双重或组合的自由形式无法赋予这种抑制,然后再次发生感染。有趣的是,纳米IVM(F5)还发现对成人阶段寄生虫有效,导致36.67%的蠕虫死亡率和12月份的75.89%;然而,女性灭菌仍然相似。因此,陷阱IVM与DED的组合表现出比任何一种单一制剂或药物组合的增强的微自艺和略微更好的大型宏观疗效。

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