首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Protection conferred by recombinant Yersinia pestis antigens produced by a rapid and highly scalable plant expression system
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Protection conferred by recombinant Yersinia pestis antigens produced by a rapid and highly scalable plant expression system

机译:快速和高度可扩展的植物表达系统产生的重组鼠疫耶尔森氏菌抗原赋予的保护作用

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摘要

Plague is still an endemic disease in different regions of the world. Increasing reports of incidence, the discovery of antibiotic resistance strains, and concern about a potential use of the causative bacteria Yersinia pestis as an agent of biological warfare have highlighted the need for a safe, efficacious, and rapidly producible vaccine. The use of F1 and V antigens and the derived protein fusion F1-V has shown great potential as a protective vaccine in animal studies. Plants have been extensively studied for the production of pharmaceutical proteins as an inexpensive and scalable alternative to common expression systems. In the current study the recombinant plague antigens F1, V, and fusion protein F1-V were produced by transient expression in Nicotiana benthamiana by using a deconstructed tobacco mosaic virus-based system that allowed very rapid and extremely high levels of expression. All of the plant-derived purified antigens, administered s.c. to guinea pigs, generated systemic immune responses and provided protection against an aerosol challenge of virulent Y. pestis.
机译:在世界不同地区,鼠疫仍然是一种地方病。越来越多的发病率报告,抗生素抗性菌株的发现以及对致病性鼠疫耶尔森菌作为生物战剂的潜在用途的关注,凸显了对安全,有效和可快速生产的疫苗的需求。 F1和V抗原以及衍生的蛋白融合体F1-V的使用已显示出在动物研究中作为保护性疫苗的巨大潜力。已经对植物进行了广泛的研究以生产药用蛋白质,以作为普通表达系统的廉价且可扩展的替代方案。在当前的研究中,重组鼠疫抗原F1,V和融合蛋白F1-V通过使用基于解构的烟草花叶病毒的系统在本氏烟草中瞬时表达而产生,该系统允许非常快速和极高的表达水平。皮下注射所有植物来源的纯化抗原。对豚鼠产生的系统性免疫反应,并提供了针对强毒鼠疫杆菌的气溶胶攻击的保护作用。

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