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研究制剂和工艺变量对载万古霉素聚合物纳米粒作为增强眼部给药潜在载体的影响。

Studying the influence of formulation and process variables on Vancomycin-loaded polymeric nanoparticles as potential carrier for enhanced ophthalmic delivery.

作者信息

Yousry Carol, Elkheshen Seham A, El-Laithy Hanan M, Essam Tamer, Fahmy Rania H

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Kasr El-Aini St., Cairo, Egypt.

Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmaceutical Sciences and Pharmaceutical Industries, Future University in Egypt, Cairo, Egypt.

出版信息

Eur J Pharm Sci. 2017 Mar 30;100:142-154. doi: 10.1016/j.ejps.2017.01.013. Epub 2017 Jan 13.

Abstract

Ocular topically applied Vancomycin (VCM) suffers poor bioavailability due to its high molecular weight and hydrophilicity. In the present investigation, VCM-loaded polymeric nanoparticles (PNPs) were developed aiming to enhance its ocular bioavailability through prolonging its release pattern and ophthalmic residence. PNPs were prepared utilizing double emulsion (W/O/O), solvent evaporation technique. 2×4 full factorial design was applied to evaluate individual and combined influences of polymer type, Eudragit® RS100, sonication time, and Span®80 concentration on PNPs particle size, encapsulation efficiency, and zeta potential. Further, the optimized formulae were incorporated in 1% Carbopol®-based gel. In-vivo evaluation of the optimized formulae was performed via Draize test followed by microbiological susceptibility testing on albino rabbits. Results revealed successful formulation of VCM-loaded PNPs was achieved with particle sizes reaching 155nm and up to 88% encapsulation. Draize test confirmed the optimized formulae as non-irritating and safe for ophthalmic administration. Microbiological susceptibility testing confirmed prolonged residence, higher C with more than two folds increment in the AUC of VCM-PNPs over control groups. Thus, VCM-loaded PNPs represent promising carriers with superior achievements for enhanced Vancomycin ophthalmic delivery over the traditional use of commercially available VCM parenteral powder after constitution into a solution by the ophthalmologists.

摘要

眼部局部应用的万古霉素(VCM)由于其高分子量和亲水性,生物利用度较差。在本研究中,开发了负载VCM的聚合物纳米颗粒(PNP),旨在通过延长其释放模式和眼部滞留时间来提高其眼部生物利用度。采用双乳液(W/O/O)溶剂蒸发技术制备PNP。应用2×4全因子设计来评估聚合物类型(Eudragit® RS100)、超声处理时间和Span®80浓度对PNP粒径、包封率和zeta电位的单独及综合影响。此外,将优化后的配方加入到1%卡波姆®凝胶中。通过Draize试验对优化后的配方进行体内评估,随后对白化兔进行微生物敏感性测试。结果显示成功制备了负载VCM的PNP,粒径达到155nm,包封率高达88%。Draize试验证实优化后的配方对眼部给药无刺激性且安全。微生物敏感性测试证实VCM-PNP在眼部的滞留时间延长,C值更高,与对照组相比,VCM的AUC增加了两倍多。因此,与眼科医生将市售VCM注射用粉剂配制成溶液后传统使用相比,负载VCM的PNP是一种有前景的载体,在增强万古霉素眼部给药方面取得了优异成果。

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