用于提高眼部药物递送系统中药物生物利用度的纤维素聚合物

Cellulosic Polymers for Enhancing Drug Bioavailability in Ocular Drug Delivery Systems.

作者信息

Gupta Bharti, Mishra Varsha, Gharat Sankalp, Momin Munira, Omri Abdelwahab

机构信息

Department of Pharmaceutics, SVKM's Dr. Bhanuben Nanavati College of Pharmacy, Vile Parle, Mumbai 400056, India.

Director(I/C), SVKM's Shri C. B. Patel Research Centre for Chemistry and Biological Science, Vile Parle (West), Mumbai 400056, India.

出版信息

Pharmaceuticals (Basel). 2021 Nov 22;14(11):1201. doi: 10.3390/ph14111201.

Abstract

One of the major impediments to drug development is low aqueous solubility and thus poor bioavailability, which leads to insufficient clinical utility. Around 70-80% of drugs in the discovery pipeline are suffering from poor aqueous solubility and poor bioavailability, which is a major challenge when one has to develop an ocular drug delivery system. The outer lipid layer, pre-corneal, dynamic, and static ocular barriers limit drug availability to the targeted ocular tissues. Biopharmaceutical Classification System (BCS) class II drugs with adequate permeability and limited or no aqueous solubility have been extensively studied for various polymer-based solubility enhancement approaches. The hydrophilic nature of cellulosic polymers and their tunable properties make them the polymers of choice in various solubility-enhancement techniques. This review focuses on various cellulose derivatives, specifically, their role, current status and novel modified cellulosic polymers for enhancing the bioavailability of BCS class II drugs in ocular drug delivery systems.

摘要

药物研发的主要障碍之一是低水溶性,进而导致生物利用度差,这使得临床效用不足。处于研发阶段的药物中,约70%-80%都存在水溶性差和生物利用度低的问题,这在开发眼部药物递送系统时是一项重大挑战。外层脂质层、角膜前、动态和静态眼部屏障限制了药物到达靶向眼部组织的可用性。生物药剂学分类系统(BCS)中的II类药物具有足够的渗透性,但水溶性有限或无水溶性,针对各种基于聚合物的溶解度增强方法已进行了广泛研究。纤维素聚合物的亲水性及其可调谐特性使其成为各种溶解度增强技术中的首选聚合物。本综述重点关注各种纤维素衍生物,特别是它们在眼部药物递送系统中增强BCS II类药物生物利用度方面的作用、现状和新型改性纤维素聚合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9345/8621906/8b1a2ace49e5/pharmaceuticals-14-01201-g001.jpg

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