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免疫逃逸的时机与疫苗接种的成败有关。

Timing of immune escape linked to success or failure of vaccination.

机构信息

Department of Microbiology and Immunology, University of Melbourne, Melbourne, Australia.

出版信息

PLoS One. 2010 Sep 16;5(9):e12774. doi: 10.1371/journal.pone.0012774.

Abstract

Successful vaccination against HIV should limit viral replication sufficiently to prevent the emergence of viral immune escape mutations. Broadly directed immunity is likely to be required to limit opportunities for immune escape variants to flourish. We studied the emergence of an SIV Gag cytotoxic T cell immune escape variant in pigtail macaques expressing the Mane-A*10 MHC I allele using a quantitative RT-PCR to measure viral loads of escape and wild type variants. Animals receiving whole Gag expressing vaccines completely controlled an SIV(mac251) challenge, had broader CTL responses and exhibited minimal CTL escape. In contrast, animals vaccinated with only a single CTL epitope and challenged with the same SIV(mac251) stock had high levels of viral replication and rapid CTL escape. Unvaccinated naïve animals exhibited a slower emergence of immune escape variants. Thus narrowly directed vaccination against a single epitope resulted in rapid immune escape and viral levels equivalent to that of naïve unvaccinated animals. These results emphasize the importance of inducing broadly directed HIV-specific immunity that effectively quashes early viral replication and limits the generation of immune escape variants. This has important implications for the selection of HIV vaccines for expanded human trials.

摘要

成功的 HIV 疫苗接种应该足以限制病毒复制,以防止病毒免疫逃逸突变的出现。为了限制免疫逃逸变体蓬勃发展的机会,可能需要广泛的靶向免疫。我们使用定量 RT-PCR 来测量逃逸和野生型变异体的病毒载量,研究了在表达 Mane-A*10 MHC I 等位基因的猪尾猕猴中 SIV Gag 细胞毒性 T 细胞免疫逃逸变异体的出现。接受全 Gag 表达疫苗接种的动物完全控制了 SIV(mac251)的挑战,具有更广泛的 CTL 反应,并表现出最小的 CTL 逃逸。相比之下,仅接种单一 CTL 表位并接受相同 SIV(mac251)库存挑战的疫苗接种动物具有高水平的病毒复制和快速的 CTL 逃逸。未接种的幼稚动物表现出免疫逃逸变体的出现速度较慢。因此,针对单一表位的狭义疫苗接种导致快速免疫逃逸和病毒水平与未接种的未接种动物相当。这些结果强调了诱导广泛靶向 HIV 特异性免疫的重要性,这种免疫可以有效地抑制早期病毒复制并限制免疫逃逸变体的产生。这对于选择用于扩大人体试验的 HIV 疫苗具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/550b/2940906/fa58a07b13e6/pone.0012774.g001.jpg

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