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减毒活疫苗黄热病17D可感染人树突状细胞,并能提呈内源性和重组T细胞表位。

Live attenuated yellow fever 17D infects human DCs and allows for presentation of endogenous and recombinant T cell epitopes.

作者信息

Barba-Spaeth Giovanna, Longman Randy S, Albert Matthew L, Rice Charles M

机构信息

Laboratory of Virology and Infectious Disease, Center for the Study of Hepatitis C, The Rockefeller University, New York, NY 10021, USA.

出版信息

J Exp Med. 2005 Nov 7;202(9):1179-84. doi: 10.1084/jem.20051352. Epub 2005 Oct 31.

Abstract

The yellow fever (YF) 17D vaccine is one of the most successful live attenuated vaccines available. A single immunization induces both long-lasting neutralizing antibody and YF-specific T cell responses. Surprisingly, the mechanism for this robust immunity has not been addressed. In light of several recent reports suggesting flavivirus interaction with dendritic cells (DCs), we investigated the mechanism of YF17D interaction with DCs and the importance of this interaction in generating T cell immunity. Our results show that YF17D can infect immature and mature human DCs. Viral entry is Ca(2+) dependent, but it is independent of DC-SIGN as well as multiple integrins expressed on the DC surface. Similar to infection of cell lines, YF infection of immature DCs is cytopathic. Although infection itself does not induce DC maturation in vitro, TNF-alpha-induced maturation protects DCs from YF-induced cytopathogenicity. Furthermore, we show that DCs infected with YF17D or YF17D carrying a recombinant epitope can process and present antigens for CD8(+) T cell stimulation. These findings offer insight into the immunologic mechanisms associated with the highly capable YF17D vaccine that may guide effective vaccine design.

摘要

黄热病(YF)17D疫苗是目前最成功的减毒活疫苗之一。单次免疫可诱导产生持久的中和抗体以及黄热病特异性T细胞应答。令人惊讶的是,这种强大免疫力的机制尚未得到阐明。鉴于最近有几份报告提示黄病毒与树突状细胞(DC)相互作用,我们研究了YF17D与DC相互作用的机制以及这种相互作用在产生T细胞免疫中的重要性。我们的结果表明,YF17D可感染未成熟和成熟的人DC。病毒进入依赖Ca(2+),但不依赖DC-SIGN以及DC表面表达的多种整合素。与细胞系感染相似,YF感染未成熟DC具有细胞病变效应。虽然感染本身在体外不会诱导DC成熟,但TNF-α诱导的成熟可保护DC免受YF诱导的细胞病变效应。此外,我们表明,感染YF17D或携带重组表位的YF17D的DC能够处理并呈递抗原以刺激CD8(+) T细胞。这些发现为与高效的YF17D疫苗相关的免疫机制提供了见解,可能会指导有效的疫苗设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f649/2213233/fe37e5c2369c/20051352f1.jpg

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