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首页> 外文期刊>Saudi Pharmaceutical Journal >Employing a PLGA-TPGS based nanoparticle to improve the ocular delivery of Acyclovir
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Employing a PLGA-TPGS based nanoparticle to improve the ocular delivery of Acyclovir

机译:使用基于PLGA-TPGS的纳米颗粒改善阿昔洛韦的眼部递送

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Delivering drugs via the ocular route has always been a challenge for poorly soluble drugs. The various anatomical and physiological barriers in the eye cavity hinder the residence of drugs within the corneal and precorneal regions. In this study, the nanosystem that could sufficiently deliver the poorly soluble Acyclovir topically via ocular route. Our nanosystem is composed of the biocompatible PLGA polymer stabilized with TPGS which possess a high emulsifying capacity and is also known as P-gp inhibitor. The optimized nanoparticles were prepared with 0.3% TPGS and had particle-size of 262.3?nm, zeta-potential of +15.14?mV. The physicochemical-characterization, ex vivo transcorneal permeation, ocular-irritation and Acyclovir ocular-availability, following topical ocular application of PLGA-NPs in rabbit eyes, were performed. The tested parameters and irritation by Draize’s test suggested the suitability and safety of PLGA-NPs for ocular use. An ultrahigh performance liquid chromatographic method was developed, validated, and applied to quantify Acyclovir in aqueous humor which was shown to be significantly higher ( p ??0.05) using the developed nanoparticles as compared to Acyclovir-aqueous suspension following their single topical ocular administration. Noticeable 2.78-, 1.71- and 2.2-times increased values of AUCsub0–24h/sub, tsub1/2/sub (h) and MRTsub0–24h/sub were found, respectively, with the PLGA-TPGS-NPs as compared to ACY-AqS. These results demonstrate the superiority of delivering Acyclovir using a nanosystem compared to conventional methods.
机译:对于难溶性药物而言,通过眼部途径递送药物一直是一个挑战。眼腔中的各种解剖学和生理学障碍阻碍了药物在角膜和角膜前区域内的滞留。在这项研究中,可以通过眼部途径局部递送难溶性阿昔洛韦的纳米系统。我们的纳米系统由具有TPGS稳定的生物相容性PLGA聚合物组成,TPGS具有高乳化能力,也被称为P-gp抑制剂。用0.3%TPGS制备了优化的纳米粒子,其粒径为262.3?nm,ζ电位为+15.14?mV。在兔眼中局部施用PLGA-NP后,进行了理化表征,离体透角膜渗透,眼刺激和阿昔洛韦眼利用率。测试的参数和Draize测试的刺激性表明PLGA-NP用于眼科的适用性和安全性。超高效液相色谱方法得到了开发,验证并应用于定量房水中的阿昔洛韦,与单用眼部给药后的阿昔洛韦水悬液相比,使用已开发的纳米颗粒与阿昔洛韦水悬浮液相比,显着更高(p 0.05) 。 AUC 0-24h ,t 1/2 (h)和MRT 0-24h 的值分别显着增加了2.78、1.71和2.2倍与ACY-AqS相比,分别用PLGA-TPGS-NPs发现>。这些结果证明了与常规方法相比,使用纳米系统递送阿昔洛韦的优越性。

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