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壳聚糖/β-甘油磷酸原位形成温敏水凝胶提高盐酸莫西沙星眼部给药

Chitosan/β-glycerophosphate in situ forming thermo-sensitive hydrogel for improved ocular delivery of moxifloxacin hydrochloride.

机构信息

Pharmaceutical Technology Department, National Research Centre, El-Buhouth St., Dokki, Cairo 12622, Egypt.

Pharmaceutical Technology Department, National Research Centre, El-Buhouth St., Dokki, Cairo 12622, Egypt.

出版信息

Eur J Pharm Sci. 2021 Dec 1;167:106041. doi: 10.1016/j.ejps.2021.106041. Epub 2021 Oct 14.

Abstract

The aim of the current work is to develop a thermo-sensitive hydrogel system of moxifloxacin hydrochloride (MOX) for improved ocular delivery. Fifteen formulations were prepared at different concentrations of β-glycerophosphate disodium salt (β-GP) 12-20% (w/v) and chitosan (CS) 1.7-1.9% (w/v). The optimized MOX loaded thermo-sensitive hydrogel system (F8), consisting of CS (1.8%, w/v) and β-GP (16%, w/v), showed optimum gelation temperature (35 °C) and gelation time (2 min), thus was selected for further investigations. It showed a significant decrease (p < 0.05) in the zeta potential value compared to CS solution with a favorable pH value (7.1) and confirmed thermoreversible behavior. MOX loaded F8 displayed a porous structure under scanning electron microscopy. Rheological investigation of MOX loaded F8 revealed the presence of a strong hydrogel network with high elasticity along with a small loss factor of 0.08 indicating a great ease of gel formation. The release of MOX from F8 was found to be governed by a combined mechanism of diffusion and relaxation. Biological assessment of two concentrations of MOX loaded F8 (0.25 and 0.5%) was conducted using healthy and infected male albino New Zealand rabbits, where an improved and prolonged antibacterial activity against Staphylococcus aureus compared to plain MOX (0.5%), marketed MOX eye drops (0.5%), was shown. Moreover, histopathological examination of ocular tissues confirmed the antibacterial efficacy of the optimized formulation eight days post topical therapy. Consequently, the developed CS/β-GP thermo-sensitive hydrogel system (F8) reveals a promising potential for enhancing the ocular delivery of MOX for treatment of bacterial infections.

摘要

本研究旨在开发盐酸莫西沙星(MOX)的温敏水凝胶系统,以改善眼部递药。制备了 15 种不同浓度的β-甘油磷酸二钠盐(β-GP)12-20%(w/v)和壳聚糖(CS)1.7-1.9%(w/v)的制剂。优化的载 MOX 温敏水凝胶系统(F8)由 CS(1.8%,w/v)和β-GP(16%,w/v)组成,具有最佳的胶凝温度(35°C)和胶凝时间(2 分钟),因此被选作进一步研究。与 CS 溶液相比,F8 的 ζ 电位值显著降低(p < 0.05),具有良好的 pH 值(7.1),并证实具有热可逆性。扫描电子显微镜下观察到载 MOX 的 F8 具有多孔结构。载 MOX 的 F8 的流变学研究表明,存在具有高弹性的强水凝胶网络,损耗因子小(0.08),表明易于凝胶形成。F8 中 MOX 的释放被发现是扩散和松弛共同作用的结果。使用健康和感染的雄性新西兰白兔对两种浓度的载 MOX 的 F8(0.25%和 0.5%)进行了生物评估,与普通 MOX(0.5%)、市售 MOX 眼药水(0.5%)相比,F8 对金黄色葡萄球菌表现出改善和延长的抗菌活性。此外,眼部组织的组织病理学检查证实了优化配方在局部治疗后 8 天的抗菌效果。因此,开发的 CS/β-GP 温敏水凝胶系统(F8)为增强 MOX 的眼部递药用于治疗细菌感染提供了有前景的潜力。

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