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基于衣藻的疫苗的未来发展方向。

Future directions for the development of Chlamydomonas-based vaccines.

机构信息

Laboratorio de Biofarmacéuticos Recombinantes, Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, Av. Dr. Manuel Nava 6, SLP, 78210, México +52 444 826 2440 +52 444 826 2440

出版信息

Expert Rev Vaccines. 2013 Sep;12(9):1011-9. doi: 10.1586/14760584.2013.825455.

Abstract

Besides serving as a valuable model in biological sciences, Chamydomonas reinhardtii has been used during the last decade in the biotechnology arena to establish models for the low cost production of vaccines. Antigens from various pathogens including Plasmodium falciparum, foot and mouth disease virus, Staphylococcus aureus, classical swine fever virus (CSFV) as well as some auto-antigens, have been produced in C. reinhardtii. Although some of them have been functionally characterized with promising results, this review identifies future directions for the advancement in the exploitation of this robust and safe vaccine production platform. The present analysis reflects that important immunological implications exist for this system and remain unexplored, including the possible adjuvant effects of algae biomolecules, the effect of bioencapsulation on immunogenicity and the possible development of whole-cell vaccines as an approach to trigger cytotoxic immune responses. Recently described molecular strategies that aim to optimize the expression of nuclear-encoded target antigens are also discussed.

摘要

除了作为生物科学领域的宝贵模型外,莱茵衣藻在过去十年中也被用于生物技术领域,以建立低成本生产疫苗的模型。来自各种病原体的抗原,包括疟原虫、口蹄疫病毒、金黄色葡萄球菌、猪瘟病毒(CSFV)以及一些自身抗原,已经在莱茵衣藻中生产出来。尽管其中一些已经具有有前途的功能特征,但本综述确定了利用这种强大且安全的疫苗生产平台的未来发展方向。目前的分析表明,该系统存在重要的免疫学意义,仍有待探索,包括藻类生物分子的可能佐剂作用、生物囊封对免疫原性的影响以及作为引发细胞毒性免疫反应的方法开发全细胞疫苗的可能性。还讨论了最近描述的旨在优化核编码靶抗原表达的分子策略。

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