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Protection against dengue disease by synthetic nucleic acid antibody prophylaxis/immunotherapy

机译:通过合成核酸抗体预防/免疫疗法预防登革热疾病

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摘要

Dengue virus (DENV) is the most important mosquito-borne viral infection in humans. In recent years, the number of cases and outbreaks has dramatically increased worldwide. While vaccines are being developed, none are currently available that provide balanced protection against all DENV serotypes. Advances in human antibody isolation have uncovered DENV neutralizing antibodies (nAbs) that are capable of preventing infection from multiple serotypes. Yet delivering monoclonal antibodies using conventional methods is impractical due to high costs. Engineering novel methods of delivering monoclonal antibodies could tip the scale in the fight against DENV. Here we demonstrate that simple intramuscular delivery by electroporation of synthetic DNA plasmids engineered to express modified human nAbs against multiple DENV serotypes confers protection against DENV disease and prevents antibody-dependent enhancement (ADE) of disease in mice. This synthetic nucleic acid antibody prophylaxis/immunotherapy approach may have important applications in the fight against infectious disease.
机译:登革热病毒(DENV)是人类最重要的蚊媒病毒感染。近年来,全世界的病例和暴发数量急剧增加。在开发疫苗时,目前尚无针对所有DENV血清型提供平衡保护的疫苗。人抗体分离的进步发现了能够预防多种血清型感染的DENV中和抗体(nAb)。然而,由于高成本,使用常规方法递送单克隆抗体是不切实际的。工程学上提供单克隆抗体的新颖方法可能会在对抗DENV的斗争中扩大规模。在这里,我们证明了通过电穿孔合成的DNA质粒进行简单的肌内递送,该合成的DNA质粒经工程改造以表达针对多种DENV血清型的修饰的人nAb,从而赋予了针对DENV疾病的保护并防止了小鼠疾病的抗体依赖性增强(ADE)。这种合成的核酸抗体预防/免疫疗法方法可能在抵抗传染病方面具有重要的应用。

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