以结冷胶为基础的原位水凝胶用于含利培酮聚合物胶束的鼻腔递送。

IF 5.3 3区 化学 Q1 POLYMER SCIENCE
Gels Pub Date : 2025-05-28 DOI:10.3390/gels11060404
Bence Sipos, Mária Budai-Szűcs, Gábor Katona, Ildikó Csóka
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引用次数: 0

摘要

鼻腔给药面临着许多挑战,这些挑战涉及大多数没有黏附性的鼻腔配方的无效,延长了在鼻黏膜上的停留时间。另一个挑战是低给药剂量强度,这可以通过纳米封装技术解决,包括利用聚合物胶束。本研究配制了结冷胶-纤维素衍生物原位胶凝基质,以测试其对聚合物胶束胶体特性的影响、各自的流变行为和鼻适用性。已经证明,这些复杂的基质可以在不破坏胶束结构的情况下与鼻液接触形成凝胶。药物释放和渗透曲线的变化以浓度依赖的方式显示,以阻碍聚合物胶束的爆发样药物释放曲线。在鼻腔条件下,制剂显示出浓度和成分依赖的黏附特征。大多数水凝胶具有软凝胶特性,使其适合鼻腔给药。总之,这项描述性研究为有意识的鼻剂型设计提供了有用的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gellan Gum-Based In Situ Hydrogels for Nasal Delivery of Polymeric Micelles Loaded with Risperidone.

Nasal drug delivery faces numerous challenges related to the ineffectiveness of most nasal formulations without a mucoadhesive nature, prolonging residence time on the nasal mucosa. Another challenge is the low administrable dosage strength, which can be solved via nano-encapsulation techniques, including the utilization of polymeric micelles. In this study, gellan gum-cellulose derivative complex in situ gelling matrices were formulated to test their effect on the colloidal characteristics of polymeric micelles, their respective rheological behavior, and nasal applicability. It has been proven that these complex matrices can form gels upon contact with nasal fluid without disrupting the micellar structure. Changes in the drug release and permeation profile have been shown in a concentration-dependent manner to hinder the burst-like drug release profile of polymeric micelles. Formulations show concentration- and composition-dependent mucoadhesive features under nasal conditions. Most of the hydrogels possess a soft gel characteristic, making them suitable for nasal administration. In conclusion, this descriptive study provides useful insights for conscious, nasal dosage form design.

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来源期刊
Gels
Gels POLYMER SCIENCE-
CiteScore
4.70
自引率
19.60%
发文量
707
审稿时长
11 weeks
期刊介绍: The journal Gels (ISSN 2310-2861) is an international, open access journal on physical (supramolecular) and chemical gel-based materials. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the maximum length of the papers, and full experimental details must be provided so that the results can be reproduced. Short communications, full research papers and review papers are accepted formats for the preparation of the manuscripts. Gels aims to serve as a reference journal with a focus on gel materials for researchers working in both academia and industry. Therefore, papers demonstrating practical applications of these materials are particularly welcome. Occasionally, invited contributions (i.e., original research and review articles) on emerging issues and high-tech applications of gels are published as special issues.
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