基于纳米技术的高效鼻腔给药系统的配方、设计和策略

Cecilia T. de Barros, Isabella Portugal, F. Batain, D. Portella, P. Severino, J. Cardoso, Plinio Arcuri, M. Chaud, T. Alves
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引用次数: 6

摘要

基于纳米技术的鼻腔给药系统作为一种克服低药物生物利用度、有限的脑暴露、快速代谢和消除、高剂量和不良副作用的方法而引起了人们的兴趣。鼻内给药的主要优点包括非侵入性方法,易于获取,多孔上皮屏障和高度血管化的组织。然而,必须确定所使用的材料与鼻腔生物环境之间的相互作用,以确保适当的释放。特定的因素已被认为符合严格的鼻腔给药标准。鉴于人们对鼻腔给药系统的广泛兴趣,本文综述了开发鼻腔给药制剂的方法和主要的生物制药挑战。我们已经检查了鼻腔给药的主要因素,如鼻子的生理方面,药物和生物制药特性,配方特性,以及用于给药的鼻腔装置。这篇综述强调了不同的基于纳米技术的鼻内用药方法的新见解,并重点介绍了局部鼻腔给药系统(DDS)的最新发展,概述了每种系统的优点和局限性。本文仅限于研究和新概念,以及为提高生物利用度、安全性和大脑递送途径而开发的不同策略。
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Formulation, design and strategies for efficient nanotechnology-based nasal delivery systems
Nanotechnology-based nasal delivery systems have gained interest as a way of overcoming low drug bioavailability, limited brain exposure, fast metabolism and elimination, high doses, and unwanted side effects. The main benefits of intranasal administration include the non-invasive method, easy accessibility, porous epithelial barrier and highly vascularized tissue. However, it is imperative to identify interactions between the materials used and the nasal biological environment to ensure proper release. Specific factors have been considered to comply with the strict nasal drug administration criteria. Given the broad interest in the nasal drug delivery system, this review summarizes ways to develop formulations for intranasal drug delivery and the main biopharmaceutical challenges. We have examined principal factors in nasal administration, such as physiological aspects of the nose, drug and biopharmaceutical properties, formulation properties, and nasal devices for drug delivery. This review highlights new insights into different nanotechnology-based approaches for intranasal use and focuses on recent developments in topical nasal drug delivery systems (DDS), outlining the advantages and limitations of each system. The present article confines itself to research and novel concepts and the different strategies developed to increase bioavailability, safety, and a route to brain delivery.
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