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通过与凝胶形成聚合物分散来改变肽和渗透促进剂的体外释放速率

Modification of Peptide and Permeation Enhancer In Vitro Release Rates by Dispersion with a Gel-Forming Polymer.

作者信息

Bapat Pradnya, Luy Sheena Lee, Panchabhai Neha, Taylor Lynne S

机构信息

Department of Industrial and Molecular Pharmaceutics, College of Pharmacy, Purdue University, West Lafayette, IN, 47907, USA.

出版信息

Pharm Res. 2025 Jun 6. doi: 10.1007/s11095-025-03870-y.

Abstract

PURPOSE

Herein, we evaluated the release properties of peptides when combined with a permeation enhancer (PE) as well as a gel-forming polymer.

METHODS

Octreotide was selected as a model hydrophilic peptide, while cyclosporine was chosen as a lipophilic peptide. The PEs studied were sodium decanoate (SD) and salcaprozate sodium (SNAC). To achieve synchronous release of the peptide and the PE, copovidone, a gel-forming polymer, was also included. Solid dispersions containing peptide, PE and polymer were prepared by dissolving all components in methanol followed by solvent removal. Dispersions were evaluated using powder X-ray diffraction. Surface normalized release rates of peptide, SNAC and copovidone alone and in combination were measured using Wood's intrinsic dissolution rate apparatus.

RESULTS

Octreotide dissolved rapidly while amorphous cyclosporine release rate was essentially undetectable. The PEs and neat polymer also dissolved rapidly. However, the intrinsic dissolution rates of octreotide and SNAC differed by a factor of two. Addition of copovidone to the formulation led to synchronous release of octreotide and SNAC, controlling their release. Furthermore, both SNAC and SD enhanced the dissolution rate of the polymer, leading to very rapid release of the components from the ternary dispersion. Cyclosporine released well from dispersions when present at a very low concentration, with a deterioration in release performance being observed at higher drug loadings.

CONCLUSIONS

Based on the findings of this study, inclusion of a gel-forming polymer may help synchronize the release of a hydrophilic peptide and a PE, which in turn may improve co-localization at the epithelial membrane.

摘要

目的

在此,我们评估了肽与渗透促进剂(PE)以及凝胶形成聚合物结合时的释放特性。

方法

选择奥曲肽作为亲水性肽模型,而环孢素作为亲脂性肽。所研究的渗透促进剂为癸酸钠(SD)和水杨酸钠(SNAC)。为实现肽和渗透促进剂的同步释放,还加入了凝胶形成聚合物共聚维酮。通过将所有组分溶解在甲醇中,然后去除溶剂,制备包含肽、渗透促进剂和聚合物的固体分散体。使用粉末X射线衍射对分散体进行评估。使用伍德固有溶解速率仪测量单独及组合的肽、SNAC和共聚维酮的表面归一化释放速率。

结果

奥曲肽迅速溶解,而非晶态环孢素的释放速率基本无法检测到。渗透促进剂和纯聚合物也迅速溶解。然而,奥曲肽和SNAC的固有溶解速率相差两倍。在制剂中加入共聚维酮导致奥曲肽和SNAC同步释放,控制了它们的释放。此外,SNAC和SD均提高了聚合物的溶解速率,导致三元分散体中各组分非常快速地释放。当环孢素以非常低的浓度存在时,其从分散体中释放良好,但在较高载药量下观察到释放性能变差。

结论

基于本研究结果,加入凝胶形成聚合物可能有助于使亲水性肽和渗透促进剂的释放同步,这反过来可能改善在上皮膜处的共定位。

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