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载纳他霉素的聚乙二醇化纳米脂质载体的制剂开发、优化及眼用的体外-体内特征研究。

Formulation Development, Optimization, and In Vitro-In Vivo Characterization of Natamycin-Loaded PEGylated Nano-Lipid Carriers for Ocular Applications.

机构信息

Department of Pharmaceutics and Drug Delivery, School of Pharmacy, University of Mississippi, Oxford, Mississippi 38677.

National Center for Natural Products Research, Research Institute of Pharmaceutical Sciences, University of Mississippi, Oxford, Mississippi 38677.

出版信息

J Pharm Sci. 2018 Aug;107(8):2160-2171. doi: 10.1016/j.xphs.2018.04.014. Epub 2018 Apr 24.

Abstract

The present study aimed at formulating and optimizing natamycin (NT)-loaded polyethylene glycosylated nano-lipid carriers (NT-PEG-NLCs) using Box-Behnken design and investigating their potential in ocular applications. Response surface methodology computations and plots for optimization were performed using Design-Expert software to obtain optimum values for response variables based on the criteria of desirability. Optimized NT-PEG-NLCs had predicted values for the dependent variables which are not significantly different from the experimental values. NT-PEG-NLCs were characterized for their physicochemical parameters; NT's rate of permeation and flux across rabbit cornea was evaluated, in vitro, and ocular tissue distribution was assessed in rabbits, in vivo. NT-PEG-NLCs were found to have optimum particle size (<300 nm), narrow polydispersity index, and high NT entrapment and NT content. In vitro transcorneal permeability and flux of NT from NT-PEG-NLCs was significantly higher than that of Natacyn. NT-PEG-NLC (0.3%) showed improved delivery of NT across the intact cornea and provided concentrations statistically similar to the marketed suspension (5%) in inner ocular tissues, in vivo, indicating that it could be a potential alternative to the conventional suspension during the course of fungal keratitis therapy.

摘要

本研究旨在采用 Box-Behnken 设计制备并优化纳他霉素(NT)负载的聚乙二醇化纳米脂质载体(NT-PEG-NLC),并考察其在眼部应用中的潜力。采用 Design-Expert 软件进行响应面法计算和绘图,以根据适宜性标准,从响应变量中获得最佳值。优化后的 NT-PEG-NLC 的预测值与实验值无显著差异。对 NT-PEG-NLC 的理化参数进行了表征;评价了 NT 在兔角膜中的渗透速率和通量,进行了体外研究,并在体内评估了 NT-PEG-NLC 在兔眼组织中的分布。NT-PEG-NLC 的粒径(<300nm)、多分散指数窄、NT 包封率和载药量高。NT-PEG-NLC 的体外透角膜率和 NT 通量明显高于 Natacyn。NT-PEG-NLC(0.3%)在完整角膜中改善了 NT 的传递,提供的浓度在体内与市售混悬剂(5%)在眼内组织中的浓度统计学相似,这表明它可能成为真菌性角膜炎治疗过程中常规混悬剂的潜在替代品。

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