Laboratorio de Biofarmacéuticos Recombinantes, Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, Av. Dr. Manuel Nava 6, 78210, San Luis Potosí, SLP, Mexico.
Plant Mol Biol. 2015 Feb;87(3):203-17. doi: 10.1007/s11103-014-0279-5. Epub 2015 Jan 6.
During the last 25 years, the technology to produce recombinant vaccines in plant cells has evolved from modest proofs of the concept to viable technologies adopted by some companies due to significant improvements in the field. Viral-based expression strategies have importantly contributed to this success owing to high yields, short production time (which is in most cases free of tissue culture steps), and the implementation of confined processes for production under GMPs. Herein the distinct expression systems based on viral elements are analyzed. This review also presents the outlook on how these technologies have been successfully applied to the development of plant-based vaccines, some of them being in advanced stages of development. Perspectives on how viral expression systems could allow for the development of innovative oral vaccines constituted by minimally-processed plant biomass are discussed.
在过去的 25 年中,植物细胞中生产重组疫苗的技术已经从概念验证发展到了可行的技术,这主要得益于该领域的重大改进。基于病毒的表达策略对这一成功做出了重要贡献,因为它们具有高产量、短生产时间(在大多数情况下,没有组织培养步骤),并且可以在 GMP 下实施受限的生产过程。本文分析了基于病毒元件的不同表达系统。本综述还介绍了这些技术如何成功应用于植物疫苗的开发,其中一些已经处于开发的后期阶段。本文还讨论了病毒表达系统如何能够开发由最小加工的植物生物质组成的创新口服疫苗。