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基于海藻酸盐的药物口服靶向生物微/纳米包封技术。

Alginate-based drug oral targeting using bio-micro/nano encapsulation technologies.

机构信息

Biotechnology and Drug Development Research Laboratory, School of Pharmacy and Biomedical Sciences, Curtin Health Innovation Research Institute, Curtin University , Perth, Western Australia, Australia.

School of Molecular and Life Sciences, Faculty of Science and Engineering, Curtin University , Perth, WA, Australia.

出版信息

Expert Opin Drug Deliv. 2020 Oct;17(10):1361-1376. doi: 10.1080/17425247.2020.1789587. Epub 2020 Sep 23.

Abstract

INTRODUCTION

Oral delivery is the most common administrated drug delivery path. However, oral administration of lipophilic drugs has some limitations: they have poor dose-response due to low and varied dissolution kinetics and oral bioavailability with sub-optimal dissolution within the aqueous gastrointestinal microenvironment. Therefore, there is a need for robust formulating methods that protect the drug until it reaches to its optimum absorption site, allowing its optimum pharmacological effects via increasing its intestinal permeation and bioavailability.

AREA COVERED

Herein, we provide insights on orally administered lipophilic drug delivery systems. The detailed description of the obstacles associated with the oral bioavailability of lipophilic drugs are also discussed. Following this, techniques to overcome these obstacles with much emphasis on optimal safety and efficacy are addressed. Newly designed ionic vibrational jet flow encapsulation technology has enormous growth in lipophilic drug delivery systems, which is discussed thereafter.

EXPERT OPINION

Researchers have shown interest in drug's encapsulation. A combination of drug-bile acid and microencapsulation methods can be one promising strategy to improve the oral delivery of lipophilic drugs. However, the most critical aspect of this approach is the selection of bile acids, polymer, and encapsulation technology.

摘要

简介

口服是最常见的给药途径。然而,脂溶性药物的口服给药有一些局限性:由于溶解动力学差且变化大,以及在水性胃肠道微环境中溶解不完全,导致其生物利用度低,因此剂量反应不佳。因此,需要有强大的制剂方法来保护药物,直到它到达最佳吸收部位,通过增加其肠道渗透和生物利用度来发挥最佳的药理作用。

涵盖领域

本文提供了关于口服脂溶性药物传递系统的见解。还详细讨论了与脂溶性药物口服生物利用度相关的障碍。在此之后,讨论了克服这些障碍的技术,重点是最佳的安全性和疗效。此后,还讨论了新型设计的离子振动射流包封技术在脂溶性药物传递系统中的巨大发展。

专家意见

研究人员对药物包封表现出了兴趣。药物-胆汁酸结合和微囊化方法的结合可能是改善脂溶性药物口服递送的一种有前途的策略。然而,这种方法最关键的方面是胆汁酸、聚合物和包封技术的选择。

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