Austriaco Nicanor
Department of Biological Sciences, UST Laboratories for Vaccine Science, Molecular Biology, and Biotechnology, Research Center for the Natural and Applied Sciences, University of Santo Tomas, Manila, Philippines.
Front Microbiol. 2023 Apr 17;14:1150412. doi: 10.3389/fmicb.2023.1150412. eCollection 2023.
Vaccines that are delivered orally have several advantages over their counterparts that are administered injection. Despite the advantages of oral delivery, however, approved oral vaccines are currently limited either to diseases that affect the gastrointestinal tract or to pathogens that have a crucial life cycle stage in the gut. Moreover, all of the approved oral vaccines for these diseases involve live-attenuated or inactivated pathogens. This mini-review summarizes the potential and challenges of yeast oral vaccine delivery systems for animal and human infectious diseases. These delivery systems utilize whole yeast recombinant cells that are consumed orally to transport candidate antigens to the immune system of the gut. This review begins with a discussion of the challenges associated with oral administration of vaccines and the distinct benefits offered by whole yeast delivery systems over other delivery systems. It then surveys the emerging yeast oral vaccines that have been developed over the past decade to combat animal and human diseases. In recent years, several candidate vaccines have emerged that can elicit the necessary immune response to provide significant protection against challenge by pathogen. They serve as proof of principle to show that yeast oral vaccines hold much promise.
口服疫苗相较于注射用疫苗具有若干优势。然而,尽管口服给药有诸多优点,但目前获批的口服疫苗仅限于影响胃肠道的疾病或在肠道中有关键生命周期阶段的病原体。此外,所有获批用于这些疾病的口服疫苗均涉及减毒活病原体或灭活病原体。本综述总结了酵母口服疫苗递送系统在动物和人类传染病方面的潜力与挑战。这些递送系统利用口服摄入的全酵母重组细胞将候选抗原输送至肠道免疫系统。本综述首先讨论了疫苗口服给药所面临的挑战以及全酵母递送系统相较于其他递送系统所具有的独特优势。接着,综述了过去十年中为对抗动物和人类疾病而研发的新兴酵母口服疫苗。近年来,出现了几种候选疫苗,它们能够引发必要的免疫反应,为抵御病原体攻击提供显著保护。它们作为原理证明,表明酵母口服疫苗极具前景。