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pH触发的隐形眼镜控释给药:应对灭菌和储存过程中药物渗漏的挑战。

pH triggered controlled drug delivery from contact lenses: Addressing the challenges of drug leaching during sterilization and storage.

作者信息

Maulvi Furqan A, Choksi Harsh H, Desai Ankita R, Patel Akanksha S, Ranch Ketan M, Vyas Bhavin A, Shah Dinesh O

机构信息

Maliba Pharmacy College, Uka Tarsadia University, Surat 394350,India.

Maliba Pharmacy College, Uka Tarsadia University, Surat 394350,India.

出版信息

Colloids Surf B Biointerfaces. 2017 Sep 1;157:72-82. doi: 10.1016/j.colsurfb.2017.05.064. Epub 2017 May 27.

Abstract

In the present work a novel cyclosporine-loaded Eudragit S100 (pH-sensitive) nanoparticles-laden contact lenses were designed to provide sustained release of cyclosporine at therapeutic rates, without leaching of drug during sterilization and storage period (shelf life). The nanoparticles were prepared by Quasi-emulsion solvent diffusion technique using different weight ratios of cyclosporine to Eudragit S100. The contact lenses with direct drug entrapment were also fabricated (DL-50) for comparison. The percentage swelling and optical transparency of nanoparticles-laden contact lenses were improved in comparison to DL-50 lenses. The nanoparticles-laden contact lenses showed sustained drug release profiles, with inverse relationship to the amount of nanoparticles loaded in the contact lenses. It was interesting to note that nanoparticles form nanochannels/cavities after dissolution of Eudragit S 100 in tear fluid pH=7.4 (in vitro release study). This followed the precipitation of drug in hydrogel matrix of contact lenses. As the amount of nanoparticles loading increased, more number of cavities were formed, which caused the formation of large cavities in contact lens matrix. This in turn precipitated the drug. The nanoparticles-laden contact lenses with 1:1 (drug: Eudragit) weight ratio showed the most promising results of sustaining the drug release up to 156h, without affecting optical and physical properties of contact lenses. Packaging study confirmed that the drug was not leached in packaging solution (buffer, pH=6.5) from nanoparticles-laden lenses during shelf life period. In-vivo study in rabbit tear fluid showed sustained release up to 14days. The study revealed the application of pH-sensitive nanoparticles-laden contact lenses for controlled release of cyclosporine without altering the optical and physical properties of lens material.

摘要

在本研究中,设计了一种新型的载有环孢素的Eudragit S100(pH敏感型)纳米颗粒的隐形眼镜,以治疗速率持续释放环孢素,在灭菌和储存期(保质期)内无药物渗漏。纳米颗粒采用准乳液溶剂扩散技术制备,使用不同重量比的环孢素与Eudragit S100。还制备了直接包埋药物的隐形眼镜(DL-50)用于比较。与DL-50隐形眼镜相比,载有纳米颗粒的隐形眼镜的膨胀百分比和光学透明度有所提高。载有纳米颗粒的隐形眼镜呈现出持续的药物释放曲线,与隐形眼镜中负载的纳米颗粒数量呈反比关系。有趣的是,在pH=7.4的泪液中Eudragit S 100溶解后,纳米颗粒形成了纳米通道/腔(体外释放研究)。这随后导致药物在隐形眼镜的水凝胶基质中沉淀。随着纳米颗粒负载量的增加,形成了更多的腔,这导致在隐形眼镜基质中形成大的腔。这反过来又使药物沉淀。重量比为1:1(药物:Eudragit)的载有纳米颗粒的隐形眼镜在持续药物释放长达156小时方面显示出最有前景的结果,且不影响隐形眼镜的光学和物理性能。包装研究证实,在保质期内,载有纳米颗粒的镜片中的药物不会从包装溶液(缓冲液,pH=6.5)中渗漏。在兔泪液中的体内研究显示持续释放长达14天。该研究揭示了pH敏感型载有纳米颗粒的隐形眼镜在不改变镜片材料光学和物理性能的情况下用于环孢素控释的应用。

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