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用于增强鼻内大分子化合物递送的壳聚糖微粒制剂:离子凝胶化过程中影响粒径的因素。

Formulation of Chitosan Microparticles for Enhanced Intranasal Macromolecular Compound Delivery: Factors That Influence Particle Size during Ionic Gelation.

作者信息

Weyers Morné, Peterson Bianca, Hamman Josias H, Steenekamp Jan H

机构信息

Centre of Excellence for Pharmaceutical Sciences (Pharmacen™), North-West University, Potchefstroom 2520, South Africa.

出版信息

Gels. 2022 Oct 23;8(11):686. doi: 10.3390/gels8110686.

Abstract

Therapeutic macromolecules (e.g., protein and peptide drugs) present bioavailability challenges via extravascular administration. The nasal route presents an alternative non-invasive route for these drugs, although low bioavailability remains challenging. Co-administration of permeation enhancers is a promising formulation approach to improve the delivery of poorly bioavailable drugs. The aim of this study was to prepare and characterize chitosan microparticulate formulations containing a macromolecular model compound (fluorescein isothiocyanate dextran 4400, FD-4) and a bioenhancer (piperine). Ionic gelation was used to produce chitosan microparticle delivery systems with two distinct microparticle sizes, differing one order of magnitude in size (±20 µm and ±200 µm). These two microparticle delivery systems were formulated into thermosensitive gels and their drug delivery performance was evaluated across ovine nasal epithelial tissues. Dissolution studies revealed a biphasic release pattern. Rheometry results demonstrated a sol-to-gel transition of the thermosensitive gel formulation at a temperature of 34 °C. The microparticles incorporating piperine showed a 1.2-fold increase in FD-4 delivery across the excised ovine nasal epithelial tissues as compared to microparticles without piperine. This study therefore contributed to advancements in ionic gelation methods for the formulation of particulate systems to enhance macromolecular nasal drug delivery.

摘要

治疗性大分子(如蛋白质和肽类药物)经血管外给药存在生物利用度方面的挑战。鼻腔给药途径为这些药物提供了一种非侵入性的替代途径,尽管低生物利用度仍然是一个难题。联合使用渗透促进剂是一种有前景的制剂方法,可改善生物利用度差的药物的递送。本研究的目的是制备并表征含有大分子模型化合物(异硫氰酸荧光素葡聚糖4400,FD - 4)和生物增强剂(胡椒碱)的壳聚糖微粒制剂。采用离子凝胶法制备了两种粒径不同的壳聚糖微粒递送系统,粒径相差一个数量级(±20 µm和±200 µm)。将这两种微粒递送系统制成热敏凝胶,并通过羊鼻上皮组织评估其药物递送性能。溶出度研究揭示了双相释放模式。流变学结果表明,热敏凝胶制剂在34℃时发生溶胶-凝胶转变。与不含胡椒碱的微粒相比,含胡椒碱的微粒在切除的羊鼻上皮组织上的FD - 4递送量增加了1.2倍。因此,本研究有助于推进离子凝胶法在微粒系统制剂中的应用,以增强大分子药物的鼻腔递送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6283/9689727/838e8204fbf9/gels-08-00686-g001.jpg

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