首页> 外文期刊>International Journal of Pharmaceutics >Development and characterisation of electrospun timolol maleate-loaded polymeric contact lens coatings containing various permeation enhancers
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Development and characterisation of electrospun timolol maleate-loaded polymeric contact lens coatings containing various permeation enhancers

机译:含有各种渗透增强剂的ElectRipum托管氏般负载的聚合物隐形眼镜涂层的开发和表征

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Graphical abstract Display Omitted Abstract Despite exponential growth in research relating to sustained and controlled ocular drug delivery, anatomical and chemical barriers of the eye still pose formulation challenges. Nanotechnology integration into the pharmaceutical industry has aided efforts in potential ocular drug device development. Here, the integration and in vitro effect of four different permeation enhancers (PEs) on the release of anti-glaucoma drug timolol maleate (TM) from polymeric nanofiber formulations is explored. Electrohydrodynamic (EHD) engineering, more specifically electrospinning, was used to engineer nanofibers (NFs) which coated the exterior of contact lenses. Parameters used for engineering included flow rates ranging from 8 to 15μL/min and a novel EHD deposition system was used; capable of hosting four lenses, masked template and a ground electrode to direct charged atomised structures. SEM analysis of the electrospun structures confirmed the presence of smooth nano-fibers; whilst thermal analysis confirmed the stability of all formulations . In vitro release studies demonstrated a triphasic release; initial burst release with two subsequent sustained release phases with most of the drug being released after 24h (86.7%) Biological evaluation studies confirmed the tolerability of all formulations tested with release kinetics modelling results showing drug release was via quasi-Fickian or Fickian diffusion. There were evident differences (p ]]>
机译:图解摘要显示摘要摘要虽然具有持续和受控眼药递送的研究呈指数增长,但眼睛的解剖和化学障碍仍然占据了姿势的制剂挑战。纳米技术融入制药业在潜在的眼部药物设备开发中进行了援助的努力。这里,探讨了四种不同渗透增强剂(PE)对聚合物纳米纤维制剂释放抗青光眼药物氏酸盐(TM)的释放的整合和体外效果。电液动力学(EHD)工程更具体地说是静电纺丝,用于工程纳米纤维(NFS),该纳米纤维(NFS)涂覆隐形眼镜的外部。用于工程的参数包括从8至15μl/ min的流速和新的EHD沉积系统;能够托管四个透镜,遮罩模板和接地电极以直接带电的雾化结构。 SEM分析电纺器结构证实了光滑纳米纤维的存在;虽然热分析证实了所有配方的稳定性。体外释放研究表明了三足释放;初始爆发释放与24小时后大部分药物的两种随后的持续释放阶段(86.7%)生物学评估研究证实了用释放动力学建模结果测试的所有配方的可耐受性,显示药物释放是通过准fickian或Fickian扩散的。有明显的差异(p]]>

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