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通过基于脂质的固体分散体和羟丙甲纤维素水凝胶基质片的组合实现他克莫司的延长释放。

Extended tacrolimus release via the combination of lipid-based solid dispersion and HPMC hydrogel matrix tablets.

作者信息

Xu Hui, Liu Li, Li Xuehui, Ma Junyuan, Liu Rui, Wang Shaoning

机构信息

School of Pharmacy, Shenyang Pharmaceutical University, Benxi 117004, China.

School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, Benxi 117004, China.

出版信息

Asian J Pharm Sci. 2019 Jul;14(4):445-454. doi: 10.1016/j.ajps.2018.08.001. Epub 2018 Sep 8.

Abstract

The objective of this study is to evaluate the feasibility of obtaining extended release of tacrolimus by a novel combination of lipid-based solid dispersion and matrix-type extended release tablet techniques. Tacrolimus solid dispersion was prepared using glycerylbehenate (Compritol ATO888) and Pluronic F127 as the carrier materials with hot-melt method, which was then blended with hydrogel matrix materials, such as HPMC and lactose, the powders were directly compressed into tablets. drug release tests were carried out to evaluate the performance of the solid dispersions and the tablets. The dissolution rate of tacrolimus was significantly improved by the lipid-based solid dispersion, and the incorporation of HPC into the solid dispersion obviously improved its stability after storage. Extended release tablets loaded with tacrolimus solid dispersion showed prolonged drug release patterns over 24 h, the release patterns of the tablets can be tailored by the compositions of the matrix materials, including the types and content of HPMCs. A modified processing method that directly mixed the melted solid dispersion with HPMC powders improved the uniformity of the solid dispersion inside the tablet matrix and release profile. The release data of the extended release tablet fitted well to the Korsmeyer-Peppas model with value of 0.85, which suggested diffusion- and erosion-controlled release mechanism. The combination of lipid-based solid dispersion and HPMC hydrogel matrix may find wide applications in the extended release dosage forms of high potent, water-insoluble drugs.

摘要

本研究的目的是评估通过基于脂质的固体分散体和基质型缓释片技术的新型组合来实现他克莫司缓释的可行性。使用山嵛酸甘油酯(Compritol ATO888)和泊洛沙姆F127作为载体材料,通过热熔法制备他克莫司固体分散体,然后将其与水凝胶基质材料(如羟丙甲纤维素和乳糖)混合,将粉末直接压制成片。进行药物释放试验以评估固体分散体和片剂的性能。基于脂质的固体分散体显著提高了他克莫司的溶出速率,并且在固体分散体中加入羟丙基纤维素明显提高了其储存后的稳定性。载有他克莫司固体分散体的缓释片在24小时内呈现出延长的药物释放模式,片剂的释放模式可通过基质材料的组成进行调整,包括羟丙甲纤维素的类型和含量。一种直接将熔融的固体分散体与羟丙甲纤维素粉末混合的改进加工方法提高了片剂基质内固体分散体的均匀性和释放曲线。缓释片的释放数据与Korsmeyer-Peppas模型拟合良好,n值为0.85,这表明其释放机制为扩散和溶蚀控制释放。基于脂质的固体分散体和羟丙甲纤维素水凝胶基质的组合可能在高效、水不溶性药物的缓释剂型中得到广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2154/7032121/8758fd8ccdd8/fx1.jpg

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