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基于纳米混悬剂的瑞格列奈速溶口腔膜,用于提高溶解度。

Nanosuspension-Based Repaglinide Fast-Dissolving Buccal Film for Dissolution Enhancement.

机构信息

Al-Karkh Health Department, MOH, Ibn Al-Bitar Center for Cardiac Surgery, Baghdad, Iraq.

Pharmaceutics Department, University of Baghdad College of Pharmacy, Baghdad, 10047, Iraq.

出版信息

AAPS PharmSciTech. 2024 Jul 12;25(6):161. doi: 10.1208/s12249-024-02868-w.

Abstract

Drug solubility and dissolution remain a significant challenge in pharmaceutical formulations. This study aimed to formulate and evaluate repanglinide (RPG) nanosuspension-based buccal fast-dissolving films (BDFs) for dissolution enhancement. RPG nanosuspension was prepared by the antisolvent-precipitation method using multiple hydrophilic polymers, including soluplus®, polyvinyl alcohol, polyvinyl pyrrolidine, poloxamers, and hydroxyl propyl methyl cellulose. The nanosuspension was then directly loaded into BDFs using the solvent casting technique. Twelve formulas were prepared with a particle size range of 81.6-1389 nm and PDI 0.002-1 for the different polymers. Nanosuspensions prepared with soluplus showed a favored mean particle size of 82.6 ± 3.2 nm. The particles were spherical and non-aggregating, as demonstrated by SEM imaging. FTIR showed no interaction between soluplus and RPG. Faster dissolution occurred for the nanosuspension in comparison with pure RPG (complete release vs 60% within 30 min). The nanosuspension was successfully incorporated into BDFs. The optimum film formula showed 28 s disintegration time, and 97.3% RPG released within 10 min. Ex-vivo permeation profiles revealed improved RPG nanosuspension permeation with the cumulative amount of RPG permeated is103.4% ± 10.1 and a flux of 0.00275 mg/cm/min compared to 39.3% ± 9.57 and a flux of 0.001058 mg/cm/min for pure RPG. RPG was successfully formulated into nanosuspension that boosted drug dissolution and permeation. The selection of the ultimate NP formula was driven by optimal particle size, distribution, and drug content. Soluplus NPs were shown to be the successful formulations, which were further incorporated into a buccal film. The film was evaluated for ex-vivo permeation, confirming successful RPG formulation with improved performance compared to pure drugs.

摘要

药物溶解度和溶解度仍然是药物制剂的重大挑战。本研究旨在通过反溶剂沉淀法制备瑞格列奈(RPG)纳米混悬剂,并评估其基于口腔速溶膜(BDF)的配方,以提高药物的溶解度。RPG 纳米混悬剂是使用多种亲水性聚合物,包括 Soluplus®、聚乙烯醇、聚乙烯吡咯烷酮、泊洛沙姆和羟丙基甲基纤维素,通过反溶剂沉淀法制备的。纳米混悬剂随后通过溶剂浇铸技术直接载入 BDF 中。共制备了 12 种配方,粒径范围为 81.6-1389nm,PDI 为 0.002-1,用于不同的聚合物。使用 Soluplus®制备的纳米混悬剂表现出有利的平均粒径为 82.6±3.2nm。SEM 成像显示,这些粒子呈球形且无聚集。FTIR 显示 Soluplus®和 RPG 之间没有相互作用。与纯 RPG 相比,纳米混悬剂的溶解速度更快(30 分钟内完全释放 vs 60%)。纳米混悬剂成功地载入 BDF 中。最佳薄膜配方显示崩解时间为 28s,10 分钟内释放 97.3%的 RPG。离体渗透曲线显示,与纯 RPG 相比,RPG 纳米混悬剂的渗透得到了改善,渗透的 RPG 累积量为 103.4%±10.1,通量为 0.00275mg/cm/min,而纯 RPG 的累积量为 39.3%±9.57,通量为 0.001058mg/cm/min。成功地将 RPG 制成纳米混悬剂,提高了药物的溶解度和渗透性。最终 NP 配方的选择取决于最佳的粒径、分布和药物含量。Soluplus NPs 被证明是成功的配方,进一步被载入口腔膜。该膜的离体渗透性能得到了评估,证实了与纯药物相比,RPG 制剂的性能得到了改善。

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