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萜烯包封囊泡(Terpesomes)的开发和优化,用于硝酸戊脒的有效眼部递药:体外特性评估和体内评价。

Development and Optimization of Terpene-Enriched Vesicles (Terpesomes) for Effective Ocular Delivery of Fenticonazole Nitrate: In vitro Characterization and in vivo Assessment.

机构信息

Department of Pharmaceutics, College of Pharmaceutical Sciences and Drug Manufacturing, Misr University for Science and Technology, Giza, Egypt.

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Cairo, Egypt.

出版信息

Int J Nanomedicine. 2021 Jan 26;16:609-621. doi: 10.2147/IJN.S274290. eCollection 2021.

Abstract

OBJECTIVE

The aim of the current study was to load fenticonazole nitrate, a slightly water-soluble antifungal agent, into terpene-enriched phospholipid vesicles (terpesomes) as a potential delivery system for the management of ocular fungal infection.

METHODS

Thin film hydration method was used to prepare terpesomes according to a 3 full factorial design to inspect the effect of several variables on vesicles' features. The investigated factors were terpenes type (X) and terpenes amount (X) while the dependent responses were encapsulation efficiency percent (Y), particle size (Y) and polydispersity index (Y). Design Expert program was used to chose the best achieved formula. The selected terpesomes were further optimized via incorporation of a positive charge inducer (stearylamine) to enhance adhesion to the negatively charged mucus covering the eye surface. The in vivo performance of the optimized fenticonazole nitrate-loaded terpesomes relative to drug suspension was evaluated by measuring the antifungal activity (against ) retained in the tear's fluid at different time intervals after ocular application in albino rabbits.

RESULTS

The optimized terpesomes showed spherical vesicles with entrapment efficiency of 79.02±2.35%, particle size of 287.25±9.55 nm, polydispersity index of 0.46±0.01 and zeta potential of 36.15±1.06 mV. The in vivo study demonstrated significantly higher ocular retention of the optimized fenticonazole nitrate-loaded terpesomes relative to the drug suspension. Moreover, the histopathological studies proved the safety and biocompatibility of the prepared terpesomes.

CONCLUSION

The obtained results verified the potential of the terpesomes for safe and effective ocular delivery of fenticonazole nitrate.

摘要

目的

本研究旨在将略溶于水的抗真菌剂硝酸芬替康唑载入富含萜烯的磷脂囊泡(萜烯囊泡)中,作为管理眼部真菌感染的潜在给药系统。

方法

采用薄膜水化法根据 3 全因子设计制备萜烯囊泡,以考察几个变量对囊泡特性的影响。考察的因素为萜烯种类(X)和萜烯用量(X),而依赖响应为包封效率百分比(Y)、粒径(Y)和多分散指数(Y)。使用 Design Expert 程序选择最佳的达成公式。通过加入正电荷诱导剂(硬脂胺)进一步优化所选的萜烯囊泡,以增强与覆盖眼睛表面的负电荷黏液的粘附性。通过测量眼部给药后不同时间间隔在兔眼泪液中保留的抗真菌活性(对),评估优化后的载有硝酸芬替康唑的萜烯囊泡相对于药物混悬液的体内性能。

结果

优化后的萜烯囊泡显示出具有 79.02±2.35%包封效率、287.25±9.55nm 粒径、0.46±0.01 多分散指数和 36.15±1.06mV 表面电位的球形囊泡。体内研究表明,优化后的载有硝酸芬替康唑的萜烯囊泡在兔眼泪液中的眼部保留率明显高于药物混悬液。此外,组织病理学研究证明了所制备的萜烯囊泡的安全性和生物相容性。

结论

研究结果证实了萜烯囊泡在安全有效地眼部递送达芬替康唑方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b24e/7847387/e3276c7b3166/IJN-16-609-g0001.jpg

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