Institute of Medical Science, Tokyo Medical University, Shinjuku-ku, Tokyo, Japan.
Department of Future Medical Science, Tokyo Medical University, Shinjuku-ku, Tokyo, Japan.
Sci Rep. 2016 Nov 11;6:36943. doi: 10.1038/srep36943.
Vaccination is the most powerful way to prevent human beings from contracting infectious diseases including viruses. In the case of the human papillomavirus (HPV) vaccine, an unexpectedly novel disease entity, HPV vaccination associated neuro-immunopathetic syndrome (HANS), has been reported and remains to be carefully verified. To elucidate the mechanism of HANS, we applied a strategy similar to the active experimental autoimmune encephalitis (EAE) model - one of the most popular animal models used to induce maximum immunological change in the central nervous system. Surprisingly, mice vaccinated with pertussis toxin showed neurological phenotypes that include low responsiveness of the tail reflex and locomotive mobility. Pathological analyses revealed the damage to the hypothalamus and circumventricular regions around the third ventricle, and these regions contained apoptotic vascular endothelial cells. These data suggested that HPV-vaccinated donners that are susceptible to the HPV vaccine might develop HANS under certain environmental factors. These results will give us the new insight into the murine pathological model of HANS and help us to find a way to treat of patients suffering from HANS.
接种疫苗是预防人类感染包括病毒在内的传染病的最有效方法。在人乳头瘤病毒(HPV)疫苗的情况下,一种意想不到的新型疾病实体,HPV 疫苗相关的神经免疫病理综合征(HANS)已经被报道,并仍在仔细验证中。为了阐明 HANS 的机制,我们应用了一种类似于主动实验性自身免疫性脑脊髓炎(EAE)模型的策略 - 这是一种最常用于诱导中枢神经系统最大免疫变化的动物模型之一。令人惊讶的是,接种百日咳毒素的小鼠表现出神经表型,包括尾巴反射和运动活动性降低。病理分析显示下丘脑和第三脑室周围的室周区域受损,这些区域包含凋亡的血管内皮细胞。这些数据表明,易感染 HPV 疫苗的 HPV 疫苗接种供体在某些环境因素下可能会发展为 HANS。这些结果将为我们提供关于 HANS 的小鼠病理模型的新见解,并帮助我们找到治疗 HANS 患者的方法。