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The development of a meningococcal disease vaccine based on Neisseria lactamica outer membrane vesicles

机译:基于乳酸奈瑟氏菌外膜囊泡的脑膜炎球菌疫苗的研制

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Serogroup B meningococcal disease remains a serious problem in many countries and no effective vaccine is currently available. Immunological and epidemiological evidence suggests that carriage of commensal Neisseria species is involved in the development of natural immunity against meningococcal disease. Neisseria lactamica has many surface structures in common with Neisseria meningitidis and may be the most important of these species. We have produced extensive pre-clinical data, which indicate that N. lactamica outer membrane vesicles (OMVs) may provide a vaccine effective against diverse disease-causing meningococcal strains. Immunisation with N. lactamica OMVs protected against lethal challenge with diverse meningococcal isolates in a mouse intraperitoneal challenge model of meningococcal disease and we are developing this vaccine for use in a phase I safety and immunogenicity study in adult volunteers. We have shown that OMVs produced from bacteria grown under iron-limited or iron-rich conditions provide equivalent protection in the mouse infection model and thus OMVs produced from iron-rich will be used. Sterile filtration of N. lactamica OMVs has proved difficult but this has been improved by resuspending the vesicles in a buffer, which increases their surface zeta potential. The vaccine is currently being manufactured and validated ELISA protocols have been developed for the analysis of serological responses.
机译:血清B群脑膜炎球菌疾病在许多国家仍然是一个严重的问题,目前尚无有效的疫苗。免疫学和流行病学证据表明,共生奈瑟菌属物种的携带参与了针对脑膜炎球菌疾病的自然免疫力的发展。乳酸奈瑟菌与脑膜炎奈瑟菌有许多共同的表面结构,可能是这些物种中最重要的。我们已经获得了广泛的临床前数据,这些数据表明乳酸奈瑟菌外膜囊泡(OMV)可能会提供一种针对各种致病性脑膜炎球菌菌株的有效疫苗。在小鼠脑膜炎球菌疾病的腹膜内激发模型中,用乳酸链霉菌OMV进行的免疫可防止致死性脑膜炎球菌分离株的攻击,我们正在开发这种疫苗,用于成人志愿者的I期安全性和免疫原性研究。我们已经表明,由在铁受限或富铁条件下生长的细菌产生的OMV在小鼠感染模型中提供了相同的保护,因此将使用从富铁产生的OMV。事实证明,对乳酸奈瑟氏菌OMV进行无菌过滤是很困难的,但是通过将囊泡重新悬浮在缓冲液中可以改善这种情况,这会增加其表面ζ电位。该疫苗目前正在生产中,并且已开发出用于分析血清反应的经过验证的ELISA方案。

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