首页> 美国卫生研究院文献>The Journal of Infectious Diseases >DNA Vaccine Initiates Replication of Live Attenuated Chikungunya Virus In Vitro and Elicits Protective Immune Response in Mice
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DNA Vaccine Initiates Replication of Live Attenuated Chikungunya Virus In Vitro and Elicits Protective Immune Response in Mice

机译:DNA疫苗启动活的减毒的Chikungunya病毒的体外复制并引起小鼠保护性免疫反应。

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摘要

>Background. Chikungunya virus (CHIKV) causes outbreaks of chikungunya fever worldwide and represents an emerging pandemic threat. Vaccine development against CHIKV has proved challenging. Currently there is no approved vaccine or specific therapy for the disease.>Methods. To develop novel experimental CHIKV vaccine, we used novel immunization DNA (iDNA) infectious clone technology, which combines the advantages of DNA and live attenuated vaccines. Here we describe an iDNA vaccine composed of plasmid DNA that encode the full-length infectious genome of live attenuated CHIKV clone 181/25 downstream from a eukaryotic promoter. The iDNA approach was designed to initiate replication of live vaccine virus from the plasmid in vitro and in vivo.>Results. Experimental CHIKV iDNA vaccines were prepared and evaluated in cultured cells and in mice. Transfection with 10 ng of iDNA was sufficient to initiate replication of vaccine virus in vitro. Vaccination of BALB/c mice with a single 10 μg of CHIKV iDNA plasmid resulted in seroconversion, elicitation of neutralizing antibodies, and protection from experimental challenge with a neurovirulent CHIKV.>Conclusions. Live attenuated CHIKV 181/25 vaccine can be delivered in vitro and in vivo by using DNA vaccination. The iDNA approach appears to represent a promising vaccination strategy for CHIK and other alphaviral diseases.
机译:>背景。基孔肯雅病毒(CHIKV)在世界范围内引起基孔肯雅热的爆发,并表示正在出现的大流行性威胁。证明针对CHIKV的疫苗开发具有挑战性。 >方法。为了开发新型的实验性CHIKV疫苗,我们使用了新颖的免疫DNA(iDNA)感染性克隆技术,该技术结合了DNA和减毒活疫苗的优势疫苗。在这里,我们描述了一种由质粒DNA组成的iDNA疫苗,该质粒DNA编码真核启动子下游的减毒CHIKV活克隆181/25的全长感染基因组。设计了iDNA方法以启动活疫苗病毒在质粒体内和体外的复制。>结果。制备了实验性CHIKV iDNA疫苗,并在培养细胞和小鼠中进行了评估。用10 ng iDNA转染足以在体外启动疫苗病毒的复制。用单个10μgCHIKV iDNA质粒对BALB / c小鼠进行疫苗接种可导致血清转化,诱发中和抗体并保护其免受神经毒性CHIKV的实验攻击。>结论。减毒的CHIKV 181/25减毒活疫苗通过使用DNA疫苗接种可以在体内和体外递送。 iDNA方法似乎代表了针对CHIK和其他α病毒性疾病的有希望的疫苗接种策略。

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