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表面特性对含固体西罗莫司自微乳药物传递系统的释放和口服吸收的影响。

Effect of Surface Property on the Release and Oral Absorption of Solid Sirolimus-Containing Self-microemulsifying Drug Delivery System.

机构信息

Department of Pharmacy, Fuzong Clinical Medical College of Fujian Medical University (900 Hospital of the Joint Logistics Team), Fuzhou, 350025, People's Republic of China.

School of Pharmacy, Fujian Medical University, Fuzhou, 350108, People's Republic of China.

出版信息

AAPS PharmSciTech. 2021 Mar 14;22(3):108. doi: 10.1208/s12249-021-01978-z.

DOI:10.1208/s12249-021-01978-z
PMID:33718989
Abstract

The combination of self-microemulsifying drug delivery system (SMEDDS) and mesoporous silica materials favors the oral delivery of poorly water-soluble drugs (PWSD). However, the influence of the surface property of the mesopores towards the drug release and in vivo pharmacokinetics is still unknown. In this study, SBA-15 with hydroxyl groups (SBA-15-H), methyl groups (SBA-15-M), amino groups (SBA-15-A), or carboxyl groups (SBA-15-C) was combined with SMEDDS containing sirolimus (SRL). The diffusion and self-emulsifying of SMEDDS greatly improved the drug release over the raw SRL and SRL-SBA-15-R (R referred to as the functional groups). Results of drug absorption and X-ray photoelectron spectroscopy (XPS) showed strong hydrogen binding between SRL and the amino groups of SBA-15-A, which hindered the drug release and oral bioavailability of SRL-SMEDDS-SBA-15-A. The favorable release of SRL-SMEDDS-SBA-15-C (91.31 ± 0.57%) and SRL-SMEDDS-SBA-15-M (91.76 ± 3.72%) contributed to enhancing the maximum blood concentration (C) and the area under the concentration-time curve (AUC). In conclusion, the release of SRL-SMEDDS-SBA-15-R was determined by the surface affinity of the SBA-15-R and the interaction between the SRL molecules and the surface of SBA-15-R. This study suggested that the SMEDDS-SBA-15 was a favorable carrier for PWSD, and the surface property of the mesopores should be considered for the optimization of the SMEDDS-SBA-15.

摘要

自微乳药物传递系统 (SMEDDS) 和介孔硅材料的组合有利于难溶性药物 (PWSD) 的口服递送。然而,介孔的表面性质对药物释放和体内药代动力学的影响尚不清楚。在这项研究中,将具有羟基 (SBA-15-H)、甲基 (SBA-15-M)、氨基 (SBA-15-A) 或羧基 (SBA-15-C) 的 SBA-15 与含有西罗莫司 (SRL) 的 SMEDDS 结合。SMEDDS 的扩散和自乳化极大地提高了药物的释放,超过了原始 SRL 和 SRL-SBA-15-R (R 指的是功能基团)。药物吸收和 X 射线光电子能谱 (XPS) 的结果表明,SRL 与 SBA-15-A 的氨基之间存在强烈的氢键,这阻碍了 SRL-SMEDDS-SBA-15-A 的药物释放和口服生物利用度。SRL-SMEDDS-SBA-15-C(91.31±0.57%)和 SRL-SMEDDS-SBA-15-M(91.76±3.72%)的良好释放有助于提高最大血药浓度 (C) 和浓度-时间曲线下面积 (AUC)。总之,SRL-SMEDDS-SBA-15-R 的释放取决于 SBA-15-R 的表面亲和力以及 SRL 分子与 SBA-15-R 表面之间的相互作用。本研究表明,SMEDDS-SBA-15 是 PWSD 的一种有利载体,应考虑介孔的表面性质来优化 SMEDDS-SBA-15。

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