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New Generation Live Vaccines against Human Respiratory Syncytial Virus Designed by Reverse Genetics

机译:由逆向遗传学设计的针对人类呼吸道合胞病毒的新一代活疫苗

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摘要

Development of a live pediatric vaccine against human respiratory syncytial virus (RSV) is complicated by the need to immunize young infants and the difficulty in balancing attenuation and immunogenicity. The ability to introduce desired mutations into infectious virus by reverse genetics provides a method for identifying and designing highly defined attenuating mutations. These can be introduced in combinations as desired to achieve gradations of attenuation. Attenuation is based on several strategies: multiple independent temperature-sensitive point mutations in the polymerase, a temperature-sensitive point mutation in a transcription signal, a set of non–temperature-sensitive mutations involving several genes, deletion of a viral RNA synthesis regulatory protein, and deletion of viral IFN α/β antagonists. The genetic stability of the live vaccine can be increased by judicious choice of mutations. The virus also can be engineered to increase the level of expression of the protective antigens. Protective antigens from antigenically distinct RSV strains can be added or swapped to increase the breadth of coverage. Alternatively, the major RSV protective antigens can be expressed from transcription units added to an attenuated parainfluenza vaccine virus, making a bivalent vaccine. This would obviate the difficulties inherent in the fragility and inefficient in vitro growth of RSV, simplifying vaccine design and use.
机译:由于需要对幼儿进行免疫接种以及平衡减毒和免疫原性的困难,针对人呼吸道合胞病毒(RSV)的儿童疫苗的开发变得十分复杂。通过反向遗传学将所需突变引入传染性病毒的能力提供了一种鉴定和设计高度定义的减毒突变的方法。这些可以根据需要以组合方式引入以实现衰减的等级。衰减基于几种策略:聚合酶中多个独立的温度敏感点突变,转录信号中的温度敏感点突变,一组涉及多个基因的非温度敏感突变,病毒RNA合成调节蛋白的缺失,以及删除病毒IFNα/β拮抗剂。通过明智地选择突变,可以提高活疫苗的遗传稳定性。还可以对该病毒进行改造,以增加保护性抗原的表达水平。可以添加或交换来自抗原不同的RSV株的保护性抗原,以增加覆盖范围。或者,可以从添加到减毒副流感疫苗病毒的转录单位表达主要的RSV保护性抗原,从而制得二价疫苗。这将消除RSV的脆弱性和体外生长效率低下固有的困难,从而简化疫苗的设计和使用。

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