首页> 外文期刊>International Journal of Pharmaceutics >Formulation and characterization of a liquid crystalline hexagonal mesophase region of phosphatidylcholine, sorbitan monooleate, and tocopherol acetate for sustained delivery of leuprolide acetate
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Formulation and characterization of a liquid crystalline hexagonal mesophase region of phosphatidylcholine, sorbitan monooleate, and tocopherol acetate for sustained delivery of leuprolide acetate

机译:磷脂酰胆碱,脱水山梨糖醇单油酸酯和生育酚乙酸酯的液晶六角形中间相区域的配制和表征,用于乙酸亮丙瑞林的持续递送

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摘要

Although liquid crystal (LC) systems have been studied before, their utility in drug delivery applications has not been explored in depth. This study examined the development of a 1-month sustained release formulation of leuprolide acetate using an in situ-forming LC matrix. The phase progression upon water absorption was tested through construction of ternary phase diagrams of phosphatidylcholine, sorbitan monooleate, and tocopherol acetate (TA) at increasing water content. Small angle X-ray scattering revealed the presence of lamellar and hexagonal mesophases. The physicochemical characteristics and in vitro drug release were evaluated as a function of the ternary component ratio and its resultant phase behavior. Formulations with increased water uptake capacity displayed greater drug release and enhanced erodability. Removal of TA resulted in increased water uptake capacity and drug release, where 8% (w/w) TA was determined as the critical concentration threshold for divergence of release profiles. In conclusion, characterization of the resultant H-II mesophase region provided information of the impact the individual components have on the physicochemical properties and potential drug release mechanisms. This high mitigating impact of TA on drug release indicates the use of TA as a tailoring agent, broadening the therapeutic applications of this LC system. (C) 2016 Elsevier B.V. All rights reserved.
机译:尽管以前已经研究了液晶(LC)系统,但尚未深入研究其在药物输送应用中的效用。这项研究检查了使用原位形成的LC基质开发的醋酸亮丙瑞林1个月缓释制剂的开发。通过构建磷脂酰胆碱,脱水山梨糖醇单油酸酯和生育酚乙酸酯(TA)在水含量增加时的三元相图来测试吸水时的相进展。小角度X射线散射揭示了层状和六方中间相的存在。根据三元组分比及其所产生的相行为,对物化特性和体外药物释放进行了评估。吸水能力增强的制剂显示出更大的药物释放和增强的可蚀性。去除TA导致吸水能力增强和药物释放,其中8%(w / w)TA被确定为释放曲线差异的临界浓度阈值。总之,对所得的H-II中间相区域的表征提供了各个成分对物理化学性质和潜在药物释放机制的影响的信息。 TA对药物释放的高度缓解影响表明,将TA用作定制剂,拓宽了该LC系统的治疗应用。 (C)2016 Elsevier B.V.保留所有权利。

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