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载药纳米粒子隐形眼镜用于眼部给药的研究进展与挑战。

Advances and challenges in the nanoparticles-laden contact lenses for ocular drug delivery.

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

Int J Pharm. 2021 Oct 25;608:121090. doi: 10.1016/j.ijpharm.2021.121090. Epub 2021 Sep 14.

Abstract

The delivery of drugs that target ocular tissues is challenging due to the physiological barriers of the eye like tear dilution, nasolacrimal drainage, blinking, tear turnover rate and low residence time Drug-laden contact lenses can be a possible solution to overcome some of these challenges. Nanoparticles are being extensively studied as novel systems for loading drugs into therapeutic contact lenses. The versatile features of the organic and inorganic nanoparticles and their diverse physicochemical properties make it possible to load and sustain drug release from the contact lenses. Nevertheless, several issues remains to be solved before its clinical application and commercialization such as changes in contact lens swelling (water content), transmittance, protein adherence, surface roughness, tensile strength, ion and oxygen permeability and drug leaching during contact lens manufacture. However, clinical studies demonstrated the potential of therapeutic contact lenses to manage the scientific, commercial and regulatory challenges to make its place in the market. This review highlights the different methodologies used to fabricate nanoparticle-laden contact lenses and highlights the major advances and challenges to commercialization.

摘要

由于眼部的生理屏障,如泪液稀释、鼻泪管引流、眨眼、泪液周转率和停留时间短,靶向眼部组织的药物传递具有挑战性。载药隐形眼镜可能是克服其中一些挑战的一种可行方法。纳米颗粒作为将药物载入治疗性隐形眼镜的新型系统正在被广泛研究。有机和无机纳米颗粒的多功能特性及其多样化的物理化学特性使得从隐形眼镜中加载和维持药物释放成为可能。然而,在其临床应用和商业化之前,仍有几个问题需要解决,例如隐形眼镜的膨胀(含水量)、透光率、蛋白质附着、表面粗糙度、拉伸强度、离子和氧气通透性以及隐形眼镜制造过程中的药物浸出的变化。然而,临床研究表明,治疗性隐形眼镜具有管理科学、商业和监管挑战的潜力,使其在市场上占有一席之地。本综述重点介绍了用于制备载药纳米颗粒隐形眼镜的不同方法,并强调了实现商业化的主要进展和挑战。

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