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聚乙二醇化维生素E琥珀酸酯(TPGS)与泊洛沙姆407原位凝胶包封的Soluplus聚合物胶束用于鼻腔给药的比较研究

Comparative Study of TPGS and Soluplus Polymeric Micelles Embedded in Poloxamer 407 In Situ Gels for Intranasal Administration.

作者信息

Sipos Bence, Földes Frézia, Budai-Szűcs Mária, Katona Gábor, Csóka Ildikó

机构信息

Institute of Pharmaceutical Technology and Regulatory Affairs, Faculty of Pharmacy, University of Szeged, Eötvös Street 6, H-6720 Szeged, Hungary.

出版信息

Gels. 2024 Aug 9;10(8):521. doi: 10.3390/gels10080521.

Abstract

This study aims to highlight the importance of choosing the appropriate co-polymer or co-polymer mixed combinations in order to design value-added nasal dosage forms. Local therapy of upper respiratory tract-related infections, such as nasal rhinosinusitis is of paramount importance, thus advanced local therapeutic options are required. Dexamethasone was encapsulated into three different polymeric micelle formulations: Soluplus or TPGS-only and their mixed combinations. Dynamic light scattering measurements proved that the particles have a micelle size less than 100 nm in monodisperse distribution, with high encapsulation efficiency above 80% and an at least 7-fold water solubility increase. Tobramycin, as an antimicrobial agent, was co-formulated into the in situ gelling systems which were optimized based on gelation time and gelation temperature. The sol-gel transition takes place between 32-35 °C, which is optimally below the temperature of the nasal cavity in a quick manner below 5 min, a suitable strategic criterion against the mucociliary clearance. In vitro drug release and permeability studies confirmed a rapid kinetics in the case of the encapsulated dexamethasone accompanied with a sustained release of tobramycin, as the hydrophilic drug.

摘要

本研究旨在强调选择合适的共聚物或共聚物混合组合对于设计增值鼻腔剂型的重要性。上呼吸道相关感染的局部治疗,如鼻-鼻窦炎,至关重要,因此需要先进的局部治疗方案。地塞米松被包封在三种不同的聚合物胶束制剂中:仅Soluplus或TPGS及其混合组合。动态光散射测量证明,这些颗粒具有小于100nm的胶束尺寸,呈单分散分布,包封效率高于80%,水溶性至少增加7倍。妥布霉素作为一种抗菌剂,被共同配制到基于胶凝时间和胶凝温度优化的原位凝胶系统中。溶胶-凝胶转变发生在32-35℃之间,该温度最佳地低于鼻腔温度,能在5分钟内迅速完成,这是对抗黏液纤毛清除的合适策略标准。体外药物释放和渗透性研究证实,对于包封的地塞米松,其具有快速动力学,同时妥布霉素作为亲水性药物能持续释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d67/11353279/b9574c68e1ab/gels-10-00521-g001.jpg

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