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用于鼻腔给药的纳米药物:了解鼻黏液-黏膜屏障的纳米-生物相互作用。

Nanomedicines for intranasal delivery: understanding the nano-bio interactions at the nasal mucus-mucosal barrier.

机构信息

School of Pharmacy, Changzhou Univesity, Changzhou, PR China.

College of Traditional Chinese Medicine, Changchun University of Chinese Medicine, Changchun, PR China.

出版信息

Expert Opin Drug Deliv. 2024 Apr;21(4):553-572. doi: 10.1080/17425247.2024.2339335. Epub 2024 May 8.

Abstract

INTRODUCTION

Intranasal administration is an effective drug delivery routes in modern pharmaceutics. However, unlike other in vivo biological barriers, the nasal mucosal barrier is characterized by high turnover and selective permeability, hindering the diffusion of both particulate drug delivery systems and drug molecules. The in vivo fate of administrated nanomedicines is often significantly affected by nano-biointeractions.

AREAS COVERED

The biological barriers that nanomedicines encounter when administered intranasally are introduced, with a discussion on the factors influencing the interaction between nanomedicines and the mucus layer/mucosal barriers. General design strategies for nanomedicines administered via the nasal route are further proposed. Furthermore, the most common methods to investigate the characteristics and the interactions of nanomedicines when in presence of the mucus layer/mucosal barrier are briefly summarized.

EXPERT OPINION

Detailed investigation of nanomedicine-mucus/mucosal interactions and exploration of their mechanisms provide solutions for designing better intranasal nanomedicines. Designing and applying nanomedicines with mucus interaction properties or non-mucosal interactions should be customized according to the therapeutic need, considering the target of the drug, i.e. brain, lung or nose. Then how to improve the precise targeting efficiency of nanomedicines becomes a difficult task for further research.

摘要

简介

鼻腔给药是现代药剂学中一种有效的药物传递途径。然而,与其他体内生物屏障不同,鼻黏膜屏障的特点是高周转率和选择性通透性,这阻碍了颗粒药物传递系统和药物分子的扩散。给药后纳米药物的体内命运常常受到纳米-生物相互作用的显著影响。

涵盖领域

本文介绍了纳米药物经鼻腔给药时遇到的生物屏障,并讨论了影响纳米药物与黏液层/黏膜屏障相互作用的因素。进一步提出了通过鼻腔给药的纳米药物的一般设计策略。此外,还简要总结了研究纳米药物在存在黏液层/黏膜屏障时的特性和相互作用的最常见方法。

专家意见

详细研究纳米药物-黏液/黏膜相互作用并探索其机制为设计更好的鼻腔内纳米药物提供了解决方案。应根据治疗需求(即药物的靶标,如脑、肺或鼻),针对具有黏液相互作用特性或非黏膜相互作用的纳米药物进行设计和应用。然后,如何提高纳米药物的精确靶向效率成为进一步研究的难题。

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