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[口服疫苗与疫苗包裹微粒递送系统]

[Oral vaccination and vaccine-entrapped microparticle delivery system].

作者信息

Li Feng-Qian, Fei Yi-Bo, Su Hua, Hu Jin-Hong

机构信息

Department of Pharmaceutical Sciences, Changhai Hospital, Second Military Medical University, Shanghai 200433, China.

出版信息

Yao Xue Xue Bao. 2007 Mar;42(3):245-51.

Abstract

In order to elucidate the physiological basis for mucosal immunity of oral vaccination and to present the essential carrier of microparticles or nanoparticles used to investigate the orally delivered vaccine, the features of antigen presentation and mucosal immunereaction in gut-associated lymphoid tissues were analyzed. Considered the morphological and physiological barriers of the gastrointestinal tract, absorption and transport of particulates were further discussed. And the studies about particulate dosage forms for oral vaccine delivery were also summarized in this review. Peyer s patches and M-cells, involved in immunoregulation, are significant areas performing the critical role in oral vaccine. The applied vesicle of microparticles could overcome the barriers of gastrointestinal tract. Oral vaccination was endued with new connotation, especially the enhanced transport and immunization efficiencies promoted by the lectin anchored particles. In conclusion, oral vaccination mediated by particulate carrier via mucosal immune system, would contribute to the site-specific triggering and signal magnification. For vaccines, the prospects for the application of these promising carrier systems might have potential attraction for scientific research and commercial development.

摘要

为阐明口服疫苗黏膜免疫的生理基础,并介绍用于研究口服递送疫苗的微粒或纳米颗粒的关键载体,分析了肠道相关淋巴组织中抗原呈递和黏膜免疫反应的特征。考虑到胃肠道的形态和生理屏障,进一步讨论了颗粒的吸收和转运。本综述还总结了口服疫苗递送颗粒剂型的研究。参与免疫调节的派尔集合淋巴结和M细胞是口服疫苗发挥关键作用的重要区域。微粒的应用囊泡可以克服胃肠道屏障。口服疫苗被赋予了新的内涵,特别是凝集素锚定颗粒促进了转运和免疫效率的提高。总之,由颗粒载体介导的口服疫苗通过黏膜免疫系统,将有助于实现位点特异性触发和信号放大。对于疫苗而言,这些有前景的载体系统的应用前景可能对科研和商业开发具有潜在吸引力。

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