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氢氯噻嗪与β-环糊精的包合物:物理化学特性、体外和体内研究

Inclusion complexes of hydrochlorothiazide and β-cyclodextrin: Physicochemical characteristics, in vitro and in vivo studies.

作者信息

Mendes Cassiana, Buttchevitz Aline, Kruger Jéssica H, Kratz Jadel Müller, Simões Cláudia Maria Oliveira, de Oliveira Benedet Patricia, Oliveira Paulo Renato, Silva Marcos Antônio Segatto

机构信息

Post graduation Program in Pharmaceutical Sciences, Quality Control Laboratory, Universidade Federal de Santa Catarina, J/K 207, 88040-900 Florianópolis, SC, Brazil.

Post graduation Program in Pharmaceutical Sciences, Quality Control Laboratory, Universidade Federal de Santa Catarina, J/K 207, 88040-900 Florianópolis, SC, Brazil.

出版信息

Eur J Pharm Sci. 2016 Feb 15;83:71-8. doi: 10.1016/j.ejps.2015.12.015. Epub 2015 Dec 11.

Abstract

Hydrochlorothiazide is a thiazide diuretic widely used in clinics to treat arterial hypertension. It is a class IV drug according to the Biopharmaceutical Classification System, that is, it presents low solubility and low permeability and, consequently, low absorption in the gastrointestinal tract. As a strategy to improve stability and biopharmaceutical properties of hydrochlorothiazide, the use of cyclodextrins to produce inclusion complexes, applying different methods, was investigated. In the phase solubility studies, β-cyclodextrin was identified as the cyclodextrin which provided the most promising results in terms of the solubilization of the drug. The thermal analysis verified the interaction between hydrochlorothiazide and β-cyclodextrin, indicating the formation of inclusion complexes, and the thermal stability varied according to the preparation technique. The physicochemical characterization showed that in the inclusion complexes obtained by co-evaporation, kneading followed by freeze-drying and kneading followed by spray-drying the hydrochlorothiazide complexation mostly occurred with different degrees of amorphization and the drug solubility was improved. These three inclusion complexes presented better in vitro characteristics and the inclusion complex obtained by kneading followed by freeze-drying increased the in vivo diuretic activity of the drug accompanied by significant effects on natriuresis, kaliuresis and chloriuresis. The inclusion complex formation was effective in improving the biopharmaceutical properties of hydrochlorothiazide and protecting the drug from hydrolysis. This paper describes an important alternative approach to the development of liquid pharmaceutical formulations to pediatric administration, a real need of the current pharmaceutical market.

摘要

氢氯噻嗪是一种噻嗪类利尿剂,在临床上广泛用于治疗动脉高血压。根据生物药剂学分类系统,它属于IV类药物,即具有低溶解度和低渗透性,因此在胃肠道中的吸收较低。作为提高氢氯噻嗪稳定性和生物药剂学性质的一种策略,研究了采用不同方法使用环糊精来制备包合物。在相溶解度研究中,β-环糊精被确定为在药物增溶方面能提供最有前景结果的环糊精。热分析证实了氢氯噻嗪与β-环糊精之间的相互作用,表明形成了包合物,并且热稳定性根据制备技术而有所不同。物理化学表征表明,在通过共蒸发、捏合后冷冻干燥以及捏合后喷雾干燥获得的包合物中,氢氯噻嗪的络合大多伴随着不同程度的非晶化发生,并且药物溶解度得到了提高。这三种包合物呈现出更好的体外特性,通过捏合后冷冻干燥获得的包合物增加了药物的体内利尿活性,并对尿钠排泄、尿钾排泄和尿氯排泄产生了显著影响。包合物的形成有效地改善了氢氯噻嗪的生物药剂学性质,并保护药物不被水解。本文描述了一种开发用于儿科给药的液体制剂的重要替代方法,这是当前制药市场的实际需求。

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