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Production of recombinant subunit vaccines: protein immunogens, livedelivery systems and nucleic acid vaccines [Review]

机译:重组亚单位疫苗的生产:蛋白质免疫原,活体递送系统和核酸疫苗[综述]

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The first scientific attempts to control an infectious disease can be attributed to Edward Jenner, who, in 1796 inoculated an 8-year-old boy with cowpox (vaccinia), giving the boy protection against subsequent challenge with virulent smallpox. Thanks to the successful development of vaccines, many major diseases, such as diphtheria, poliomyelitis and measles, are :nowadays kept under control, and in the case of smallpox, the dream of eradication has been fulfilled. Yet, there is a growing need for improvements of existing vaccines in terms of increased efficacy and improved safety, besides the development of completely mew vaccines. Better technological possibilities, combined with increased knowledge in related fields, such as immunology and molecular biology, allow for new vaccination strategies. Besides the classical whole-cell vaccines, consisting of killed or attenuated pathogens, new vaccines based on the subunit principle, have been developed, e.g. the Hepatitis B surface protein vaccine and the Haemophilus influenzae type b vaccine. Recombinant techniques are now dominating in the strive for an ideal vaccine, being safe and cheap, heat-stable and easy to administer, preferably single-dose, and capable of inducing broad immune response with life-long memory both in adults and in infants. This review will describe different recombinant approaches used in the development of novel subunit vaccines, including design and production of protein immunogens, the development of live delivery systems and the state-of-the-art for nucleic acids vaccines.
机译:控制传染病的第一个科学尝试可以归因于爱德华·詹纳(Edward Jenner),他在1796年给一名8岁男孩接种了牛痘(牛痘),为男孩提供了保护,使其免于随后受到强毒天花的攻击。得益于疫苗的成功开发,白喉,脊髓灰质炎和麻疹等许多主要疾病如今已得到控制:对于天花,根除梦想已实现。然而,除了开发完全猫疫苗之外,就提高功效和提高安全性而言,对改进现有疫苗的需求日益增长。更好的技术可能性,再加上在免疫学和分子生物学等相关领域的知识增长,可以采用新的疫苗接种策略。除了由死亡或减毒病原体组成的经典全细胞疫苗外,还开发了基于亚单位原理的新疫苗,例如乙型肝炎表面蛋白疫苗和乙型流感嗜血杆菌疫苗。如今,重组技术在争取理想的疫苗中占主导地位,它既安全又便宜,热稳定并且易于给药,最好是单剂量,并且能够在成年人和婴儿中诱导广泛的免疫反应,并具有终生记忆。这篇综述将描述用于开发新型亚基疫苗的不同重组方法,包括蛋白质免疫原的设计和生产,实时递送系统的开发以及核酸疫苗的最新技术。

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