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Nanoparticles laden in situ gelling system for ocular drug targeting

机译:载有原位胶凝系统的纳米颗粒用于眼药靶向

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Designing an ophthalmic drug delivery system is one of the most difficult challenges for the researchers. The anatomy and physiology of eye create barriers like blinking which leads to the poor retention time and penetration of drug moiety. Some conventional ocular drug delivery systems show shortcomings such as enhanced pre-corneal elimination, high variability in efficiency, and blurred vision. To overcome these problems, several novel drug delivery systems such as liposomes, nanoparticles, hydrogels, and in situ gels have been developed. In situ-forming hydrogels are liquid upon instillation and undergo phase transition in the ocular cul-de-sac to form viscoelastic gel and this provides a response to environmental changes. In the past few years, an impressive number of novel temperature, pH, and ion-induced in situ-forming systems have been reported for sustain ophthalmic drug delivery. Each system has its own advantages and drawbacks. Thus, a combination of two drug delivery systems, i.e., nanoparticles and in situ gel, has been developed which is known as nanoparticle laden in situ gel. This review describes every aspects of this novel formulation, which present the readers an exhaustive detail and might contribute to research and development.Keywords: Ion-activated in situ gel, in situ gel, ocular irritancy test, pH-based hydrogel, temperature sensitive in situ gel
机译:设计眼科给药系统是研究人员最困难的挑战之一。眼睛的解剖学和生理学会产生诸如眨眼的障碍,从而导致滞留时间和药物部分的渗透性差。一些常规的眼用药物递送系统显示出诸如增强的角膜前消除,效率的高可变性以及视力模糊的缺点。为了克服这些问题,已经开发了几种新颖的药物递送系统,例如脂质体,纳米颗粒,水凝胶和原位凝胶。原位形成的水凝胶在滴注时为液体,并在眼底囊中经历相变以形成粘弹性凝胶,这提供了对环境变化的响应。在过去的几年中,已经报道了令人印象深刻的新颖温度,pH和离子诱导原位形成系统,用于维持眼科药物的输送。每个系统都有其自身的优点和缺点。因此,已经开发了两种药物递送系统的组合,即纳米颗粒和原位凝胶,其被称为负载纳米颗粒的原位凝胶。这篇综述描述了这种新型制剂的各个方面,为读者提供了详尽的细节,并可能为研究和开发做出贡献。关键词:离子活化原位凝胶,原位凝胶,眼刺激性试验,基于pH的水凝胶,对温度敏感原位凝胶

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