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β-环糊精水凝胶用于眼部释放抗菌噻唑烷酮。

β-Cyclodextrin hydrogels for the ocular release of antibacterial thiosemicarbazones.

机构信息

The Group of Biomaterials and Nanotechnology for Improved Medicines (BIONIMED), Department of Pharmaceutical Technology, Faculty of Pharmacy and Biochemistry, University of Buenos Aires, Argentina.

出版信息

Carbohydr Polym. 2013 Apr 2;93(2):449-57. doi: 10.1016/j.carbpol.2012.12.033. Epub 2012 Dec 24.

Abstract

Two types of hydrophilic networks with conjugated beta-cyclodextrin (β-CD) were developed with the aim of engineering useful platforms for the localized release of an antimicrobial 5,6-dimethoxy-1-indanone N4-allyl thiosemicarbazone (TSC) in the eye and its potential application in ophthalmic diseases. Poly(2-hydroxyethyl methacrylate) soft contact lenses (SCLs) displaying β-CD, namely pHEMA-co-β-CD, and super-hydrophilic hydrogels (SHHs) of directly cross-linked hydroxypropyl-β-CD were synthesized and characterized regarding their structure (ATR/FT-IR), drug loading capacity, swelling and in vitro release in artificial lacrimal fluid. Incorporation of TSC to the networks was carried out both during polymerization (DP method) and after synthesis (PP method). The first method led to similar drug loads in all the hydrogels, with minor drug loss during the washing steps to remove unreacted monomers, while the second method evidenced the influence of structural parameters on the loading efficiency (proportion of CD units, mesh size, swelling degree). Both systems provided a controlled TSC release for at least two weeks, TSC concentrations (up to 4000μg/g dry hydrogel) being within an optimal therapeutic window for the antimicrobial ocular treatment. Microbiological tests against P. aeruginosa and S. aureus confirmed the ability of TSC-loaded pHEMA-co-β-CD network to inhibit bacterial growth.

摘要

两种具有共轭β-环糊精(β-CD)的亲水网络被开发出来,旨在为局部释放具有抗菌作用的 5,6-二甲氧基-1-茚酮 N4-烯丙基硫代卡巴腙(TSC)在眼睛中,并将其潜在应用于眼科疾病,构建有用的平台。展示β-CD 的聚(2-羟乙基甲基丙烯酸酯)软隐形眼镜(SCL),即 pHEMA-co-β-CD,以及直接交联羟丙基-β-CD 的超亲水水凝胶(SHH),在人工泪液中就其结构(ATR/FT-IR)、载药量、溶胀和体外释放进行了合成和表征。在聚合过程中(DP 法)和合成后(PP 法)将 TSC 掺入到网络中。第一种方法导致所有水凝胶中的药物负载相似,在去除未反应单体的洗涤步骤中,药物损失较小,而第二种方法则证明了结构参数对负载效率的影响(CD 单元的比例、网格尺寸、溶胀度)。这两种系统都提供了至少两周的 TSC 控制释放,TSC 浓度(高达 4000μg/g 干水凝胶)在抗菌眼部治疗的最佳治疗窗口内。针对铜绿假单胞菌和金黄色葡萄球菌的微生物测试证实了负载 TSC 的 pHEMA-co-β-CD 网络抑制细菌生长的能力。

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