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人乳头瘤病毒(HPV)及HPV疫苗的免疫生物学

Immunobiology of HPV and HPV vaccines.

作者信息

Stanley Margaret

机构信息

Department of Pathology, Tennis Court Road, University of Cambridge, CB2 1QP UK.

出版信息

Gynecol Oncol. 2008 May;109(2 Suppl):S15-21. doi: 10.1016/j.ygyno.2008.02.003.

Abstract

Genital human papillomavirus (HPV) infection with both low- and high-risk types is common, but most infections resolve as a result of a cell-mediated immune response. Failure to induce an effective immune response is related to inefficient activation of innate immunity and ineffective priming of the adaptive immune response; this defective immune response facilitates viral persistence, a key feature of high-risk HPV infection. This milieu becomes operationally HPV antigen tolerant, and the host's defenses become irrevocably compromised. HPV antigen-specific effector cells are poorly recruited to the infected focus and their activity is downregulated; neoplastic HPV containing cervical keratinocytes expressing high levels of E6 and E7 oncoproteins are not killed in this immunosuppressive, tolerant milieu, and progression to high-grade disease and cancer can result. Highly efficacious prophylactic HPV L1 virus-like particle (VLP) vaccines circumvent viral epithelial evasion strategies since they are delivered by intramuscular injection. The stromal dendritic cells of the muscle that encounter the highly immunogenic repeat structure of the VLP then migrate with their cargo to the lymph node, initiating an immune cascade that results in a robust T-cell dependent B-cell response, which generates high levels of L1-specific serum neutralizing antibodies and immune memory.

摘要

低风险和高风险型别的生殖器人乳头瘤病毒(HPV)感染很常见,但大多数感染会因细胞介导的免疫反应而消退。无法诱导有效的免疫反应与先天免疫激活效率低下以及适应性免疫反应启动无效有关;这种有缺陷的免疫反应会促进病毒持续存在,这是高危HPV感染的一个关键特征。这种环境在功能上对HPV抗原产生耐受,宿主的防御能力会受到不可逆转的损害。HPV抗原特异性效应细胞很难被募集到感染部位,其活性也会下调;在这种免疫抑制的耐受环境中,表达高水平E6和E7癌蛋白的含肿瘤性HPV的宫颈角质形成细胞不会被杀死,从而可能导致病情进展为高级别疾病和癌症。高效的预防性HPV L1病毒样颗粒(VLP)疫苗可规避病毒的上皮逃避策略,因为它们是通过肌肉注射给药的。肌肉中的基质树突状细胞遇到VLP具有高度免疫原性的重复结构后,会带着其负载迁移到淋巴结,启动免疫级联反应,从而产生强大的T细胞依赖性B细胞反应,产生高水平的L1特异性血清中和抗体和免疫记忆。

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