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通过将一种新型杀血吸虫药物包封于纳米乳剂中来提高其体外疗效。

Improvement of in vitro efficacy of a novel schistosomicidal drug by incorporation into nanoemulsions.

作者信息

de Araújo Sávia Caldeira, de Mattos Ana Carolina Alves, Teixeira Helder Ferreira, Coelho Paulo Marcos Zech, Nelson David Lee, de Oliveira Mônica Cristina

机构信息

Departamento de Produtos Farmacêuticos, Faculdade de Farmácia, Universidade Federal de Minas Gerais, Av. Antônio Carlos 6627, 31270-901 Belo Horizonte, MG, Brazil.

出版信息

Int J Pharm. 2007 Jun 7;337(1-2):307-15. doi: 10.1016/j.ijpharm.2007.01.009. Epub 2007 Jan 14.

Abstract

The aim of this article included the development and evaluation of the capacity of nanoemulsions to improve the activity of the novel schistosomicidal drug-2-(butylamino)-1-phenyl-1-ethanethiosulfuric acid (BphEA). BphEA is a compound with a poor solubility in water, which makes its application as a drug difficult. Nanoemulsion formulations presenting anionic (NANOSTOA, NANOST and NANOLP) and cationic (NANOSTE) interfacial charges were prepared to encapsulate BphEA. These formulations were characterized by the encapsulation rate, diameter, and zeta potential. NANOSTOA, NANOST, and NANOLP presented an entrapment efficiency and zeta potential of 18.7+/-1.8% and -33.6+/-1.2 mV; 20.5+/-3.0% and -31.5+/-5.7 mV; as well as 33.8+/-7.2% and -62.6+/-1.3 mV, respectively. NANOSTE presented an entrapment efficiency of 51.8+/-5.0% and a zeta potential of 25.7+/-3.9 mV. The mean droplet size (between 200 and 252 nm) and polydispersity index (between 0.158 and 0.294) were similar for all formulations. The stability study showed no alteration in these formulations' zeta potential and size. The in vitro schistosomicidal activity of BphEA was higher with the use of NANOSTE than with free BphEA. In addition, release studies revealed a good stability of NANOSTE containing BphEA in a biological medium. These results indicate that cationic nanoemulsions can represent an interesting delivery system for the pharmaceutical formulation of BphEA.

摘要

本文的目的包括开发和评估纳米乳剂提高新型抗血吸虫药物2-(丁基氨基)-1-苯基-1-乙硫代硫酸(BphEA)活性的能力。BphEA是一种在水中溶解度较差的化合物,这使得其作为药物应用困难。制备了具有阴离子(NANOSTOA、NANOST和NANOLP)和阳离子(NANOSTE)界面电荷的纳米乳剂配方来包封BphEA。这些配方通过包封率、粒径和zeta电位进行表征。NANOSTOA、NANOST和NANOLP的包封效率和zeta电位分别为18.7±1.8%和-33.6±1.2 mV;20.5±3.0%和-31.5±5.7 mV;以及33.8±7.2%和-62.6±1.3 mV。NANOSTE的包封效率为51.8±5.0%,zeta电位为25.7±3.9 mV。所有配方的平均液滴尺寸(在200至252 nm之间)和多分散指数(在0.158至0.294之间)相似。稳定性研究表明这些配方的zeta电位和尺寸没有变化。使用NANOSTE时,BphEA的体外抗血吸虫活性高于游离BphEA。此外,释放研究表明含BphEA的NANOSTE在生物介质中具有良好的稳定性。这些结果表明阳离子纳米乳剂可以成为BphEA药物制剂的一种有趣的递送系统。

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