巯基壳聚糖作为眼部给药纳米载体的测定

D. Shastri
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摘要

由于其复杂的解剖结构,通过眼路给药变得更加有趣和具有挑战性。尽管世界各地的配方科学家做出了许多努力,但在使药物通过角膜途径给药方面仍有许多挑战需要克服。传统剂型的主要问题是由于眼内解剖和病理生理障碍造成的眼内停留时间短,导致眼内生物利用度差。因此,大量的工作已经投入到创造基于纳米技术的药物递送方法,增加角膜前停留时间,以提高药物的眼部生物利用度。含有巯基的聚合物比通常被认为是粘接的聚合物具有更高的粘接性能。壳聚糖及其衍生物是一种优异的高分子生物材料,在给药方面具有多种用途,特别是通过眼途径给药。将巯基固定在壳聚糖主链的一级氨基上制备巯基化壳聚糖衍生物,通过与粘蛋白建立静电相互作用,提高了壳聚糖的粘接性能,增强了壳聚糖的渗透性和抗蛋白酶活性。此外,它还具有生物相容性,可生物降解性和无毒性。许多药物和治疗方法也可以通过纳米颗粒形式或作为原位凝胶形成系统通过眼途径使用硫代壳聚糖给药。本章的主要目的是通过综述巯基壳聚糖纳米载体在眼部给药领域的最新研究成果及其应用,对其用于眼部给药的各种途径进行综述。
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Determination of Thiolated Chitosan as Nanocarriers for Ocular Drug Delivery
Drug delivery through the ocular route now-a-days became more interesting and challenging due to its complex anatomical structure. Despite of numerous efforts by the formulating scientists all over the world there are many challenges need to be overcome in making the drug delivery through the corneal route. The main issue with conventional dosage forms is poor ocular bioavailability due to short ocular residence times caused by anatomical and pathophysiological barriers in the eye. As a result, substantial work has gone into creating nanotechnology-based drug delivery methods that increase precorneal residence time to improve ocular bioavailability of medicines. Polymers containing thiol groups have much higher adhesive properties than polymers that are generally thought to be mucoadhesive. Chitosan and its derivatives are excellent polymeric biomaterials that have a variety of uses in drug delivery, particularly through the ocular route. Thiolated derivatives (thiomers) of chitosan produced via immobilization of thiol groups on the primary amino groups of chitosan backbone has improved its mucoadhesive properties by establishment of electrostatic interactions with mucin and enhanced permeability and anti-protease activity. Moreover, it is also biocompatible, biodegradable, and non-toxic. Many drugs and therapeutics can be administered via nanoparticulate form also or as an in-situ gel forming systems through the ocular route using Thiolated chitosan. The main objective of this chapter is to provide an insight into the various approaches using Thiolated chitosan as nanocarrier for ocular drug delivery by summarizing recent findings and its applications in the field of ocular drug delivery.
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