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Current therapeutic applications and pharmacokinetic modulations of ivermectin

机译:伊维菌素的当前治疗应用和药代动力学调节

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Ivermectin is considered to be a wonder drug due to its broad-spectrum antiparasitic activity against both ectoparasites and endoparasites (under class of endectocide) and has multiple applications in both veterinary and human medicine. In particular, ivermectin is commonly used in the treatment of different kinds of infections and infestations. By altering the vehicles used in the formulations, the pharmacokinetic properties of different ivermectin preparations can be altered. Since its development, various vehicles have been evaluated to assess the efficacy, safety, and therapeutic systemic concentrations of ivermectin in different species. A subcutaneous route of administration is preferred over a topical or an oral route for ivermectin due to superior bioavailability. Different formulations of ivermectin have been developed over the years, such as stabilized aqueous formulations, osmotic pumps, controlled release capsules, silicone carriers, zein microspheres, biodegradable microparticulate drug delivery systems, lipid nanocapsules, solid lipid nanoparticles, sustained-release ivermectin varnish, sustained-release ivermectin-loaded solid dispersion suspension, and biodegradable subcutaneous implants. However, several reports of ivermectin resistance have been identified in different parts of the world over the past few years. Continuous use of suboptimal formulations or sub-therapeutic plasma concentrations may predispose an individual to resistance toward ivermectin. The current research trend is focused toward the need for developing ivermectin formulations that are stable, effective, and safe and that reduce the number of doses required for complete clinical cure in different parasitic diseases. Therefore, single-dose long-acting preparations of ivermectin that provide effective therapeutic drug concentrations need to be developed and commercialized, which may revolutionize drug therapy and prophylaxis against various parasitic diseases in the near future. The present review highlights the current advances in pharmacokinetic modulation of ivermectin formulations and their potent therapeutic applications, issues related to emergence of ivermectin resistance, and future trends of ivermectin usage.
机译:伊维菌素因其对外寄生虫和内寄生虫(属于内杀肽类)的广谱抗寄生虫活性而被认为是一种神奇药物,在兽医和人类医学中都有多种应用。特别是,伊维菌素通常用于治疗不同种类的感染和侵扰。通过改变制剂中使用的载体,可以改变不同的伊维菌素制剂的药代动力学特性。自其发展以来,已对各种媒介物进行了评估,以评估伊维菌素在不同物种中的功效,安全性和治疗性全身性浓度。伊维菌素的皮下给药途径优于伊维菌素的局部或口服途径,因为其生物利用度高。多年来已开发出伊维菌素的不同制剂,例如稳定的水性制剂,渗透泵,控释胶囊,硅酮载体,玉米蛋白微球,可生物降解的微粒药物递送系统,脂质纳米胶囊,固体脂质纳米颗粒,伊维菌素清漆的持续释放,持续性-释放载有伊维菌素的固体分散体悬浮液和可生物降解的皮下植入物。然而,在过去的几年中,在世界的不同地方已经发现了一些关于伊维菌素耐药性的报道。持续使用次优制剂或次治疗血浆浓度可能会使个体对伊维菌素产生抗药性。当前的研究趋势集中于开发稳定,有效和安全的伊维菌素制剂的需求,该制剂可减少在各种寄生虫疾病中完成临床治愈所需的剂量数量。因此,需要开发提供有效治疗药物浓度的伊维菌素单剂量长效制剂并将其商业化,这可能会在不久的将来革新药物治疗并预防各种寄生虫病。本综述着重介绍了伊维菌素制剂的药代动力学调节方面的最新进展及其有效的治疗应用,与伊维菌素耐药性出现有关的问题以及伊维菌素使用的未来趋势。

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