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基于壳聚糖的黏膜疫苗传递系统。

Chitosan-based delivery systems for mucosal vaccines.

机构信息

Archimedes Development Ltd, Albert Einstein Centre, Nottingham Science & Technology Park, University Boulevard, Nottingham, UK.

出版信息

Expert Opin Drug Deliv. 2012 Sep;9(9):1051-67. doi: 10.1517/17425247.2012.697455. Epub 2012 Jun 19.

Abstract

INTRODUCTION

Mucosal vaccine development faces several challenges and opportunities. Critical issues for effective mucosal vaccination include the antigen-retention period that enables interaction with the lymphatic system, choice of adjuvant that is nontoxic and induces the required immune response and possibly an ability to mimic mucosal pathogens. Chitosan-based delivery systems are reviewed here as they address these issues and hence represent the most promising candidates for the delivery of mucosal vaccines.

AREAS COVERED

A comprehensive literature search was conducted, to locate relevant studies published within the last 5 years. Mucosal delivery via nasal and oral routes is evaluated with respect to chitosan type, dosage forms, co-adjuvanting with novel adjuvants and modulation of the immune system.

EXPERT OPINION

It is concluded that chitosan derivatives offer advantageous opportunities such as nanoparticle and surface charge manipulation that facilitate vaccine targeting. Nevertheless, these technologies represent a longer-term goal. By contrast, chitosan (unmodified form) with or without a co-adjuvant has significant toxicology and human data to support safe mucosal administration, and thus has the potential for earlier product introduction into the market.

摘要

简介

黏膜疫苗的开发面临着一些挑战和机遇。有效的黏膜疫苗接种的关键问题包括使抗原与淋巴系统相互作用的抗原保留期、选择非毒性且能诱导所需免疫反应的佐剂、以及模拟黏膜病原体的能力。本文综述了壳聚糖基递药系统,因为它们解决了这些问题,因此是黏膜疫苗递药最有前途的候选物。

涵盖领域

进行了全面的文献检索,以查找过去 5 年内发表的相关研究。鼻内和口服途径的黏膜递药方式根据壳聚糖类型、剂型、与新型佐剂的共同佐剂作用以及免疫系统的调节进行了评估。

专家意见

结论是,壳聚糖衍生物提供了有利的机会,如纳米颗粒和表面电荷的操纵,有助于疫苗靶向。然而,这些技术代表了一个更长期的目标。相比之下,壳聚糖(未经修饰的形式)或与佐剂一起使用,具有显著的毒理学和人体数据,支持安全的黏膜给药,因此有可能更早地将产品推向市场。

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