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被遗忘的材料:高分散和溶胀的基于明胶的微球用于色甘酸钠和异丙托溴铵的肺部药物传递。

The forgotten material: Highly dispersible and swellable gelatin-based microspheres for pulmonary drug delivery of cromolyn sodium and ipratropium bromide.

机构信息

Escuela de Química y Farmacia, Universidad de Valparaíso, Gran Bretaña 1093, Playa Ancha, Valparaíso, Región de Valparaíso 2340000, Chile; Division of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, Austin, TX, United States.

Escuela de Química y Farmacia, Universidad de Valparaíso, Gran Bretaña 1093, Playa Ancha, Valparaíso, Región de Valparaíso 2340000, Chile.

出版信息

Int J Pharm. 2023 Sep 25;644:123331. doi: 10.1016/j.ijpharm.2023.123331. Epub 2023 Aug 18.

Abstract

Controlled-release formulations for pulmonary delivery are highly desirable for treating chronic diseases such as COPD. However, a limited number of polymers are currently approved for inhalation. The study presents a promising strategy using gelatin as a matrix for inhalable dry powders, allowing the controlled release of ionic drugs. Ionized cromoglicate sodium (CS) and ipratropium bromide (IBr) interacted in solution with charged gelatin before spray drying (SD). Calcium carbonate was used as a crosslinker. The microspheres showed remarkable aerosol performance after optimizing the SD parameters and did not cause cytotoxicity in A549 cells. The microspheres were highly dispersible with ∼ 50-60% of respirable fraction and fine particle fraction 55-70%. Uncrosslinked microspheres increased their size from four to ten times by swelling after 5 min showing potential as a strategy to avoid macrophage clearance and prolong the therapeutic effect of the drug. Crosslinkers prevented particle swelling. Ionic interaction generated a moderate reduction of the drug release. Overall, this study provides a novel approach for developing DPI formulations for treating chronic respiratory diseases using a biopolymer approved by the FDA, potentially enhancing drug activity through controlled release and avoiding macrophage clearance.

摘要

用于肺部递药的控释制剂对于治疗 COPD 等慢性疾病非常理想。然而,目前仅有有限数量的聚合物被批准用于吸入给药。本研究提出了一种有前途的策略,使用明胶作为可吸入干粉的基质,以实现离子药物的控释。在喷雾干燥(SD)之前,离子化克仑特罗酸钠(CS)和异丙托溴铵(IBr)在溶液中与带电明胶相互作用。碳酸钙被用作交联剂。在优化 SD 参数后,微球表现出显著的气溶胶性能,并且在 A549 细胞中没有引起细胞毒性。微球具有高度的分散性,可呼吸部分和细颗粒部分分别为 50-60%和 55-70%。交联前的微球在 5 分钟后通过溶胀将粒径从 4 倍增加到 10 倍,显示出作为一种避免巨噬细胞清除和延长药物治疗效果的策略的潜力。交联剂防止了颗粒溶胀。离子相互作用导致药物释放适度减少。总体而言,这项研究提供了一种使用 FDA 批准的生物聚合物开发治疗慢性呼吸道疾病的 DPI 制剂的新方法,通过控制释放和避免巨噬细胞清除来潜在提高药物活性。

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