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用含有重组脑膜炎球菌OpaB和OpaJ蛋白的脂质体对小鼠进行鼻内免疫。

Intranasal immunisation of mice with liposomes containing recombinant meningococcal OpaB and OpaJ proteins.

作者信息

de Jonge Marien I, Hamstra Hendrik Jan, Jiskoot Wim, Roholl Paul, Williams Neil A, Dankert Jacob, van Alphen Loek, van der Ley Peter

机构信息

Netherlands Vaccine Institute (NVI), 3720 AL Bilthoven, The Netherlands.

出版信息

Vaccine. 2004 Sep 28;22(29-30):4021-8. doi: 10.1016/j.vaccine.2004.03.047.

Abstract

The opacity (Opa) proteins of Neisseria meningitidis are outer membrane proteins involved in adhesion and invasion of host epithelial cells and are therefore expected to play an important role in colonisation of the nasopharynx. The majority of meningococcal Opa proteins bind to members of the CEACAM receptor family, such as CEA. Blocking of the Opa-CEACAM interaction by mucosal anti-Opa antibodies could thus constitute an important protective mechanism for novel meningococcal vaccines. In this study we analysed the specific anti-Opa antibody responses after intranasal immunisation of mice with liposomes containing purified and native OpaB (recognising the CEA receptor) and OpaJ (no affinity for CEA) proteins. These antigens were combined with or without one of three different adjuvants, i.e. purified meningococcal LPS, monophosphoryl lipid A (MPL) or the B-subunit of Escherichia coli heat-labile enterotoxin (EtxB). After intranasal immunisation with any of these formulations, anti-Opa IgA antibodies were found in nasal lavages and in some cases anti-Opa IgA and IgG antibodies were also found in lung lavages. With OpaJ but not OpaB, significant bactericidal serum titres were obtained. Of the different adjuvants used, meningococcal LPS gave the strongest overall immune response. Non-adjuvated liposomal Opa formulations were poorly immunogenic. No differences were found between the immune response in transgenic mice expressing the CEA-receptor and non-transgenic mice, showing that the CEA-Opa interaction does not influence the antibody response.

摘要

脑膜炎奈瑟菌的不透明蛋白(Opa)是外膜蛋白,参与宿主上皮细胞的黏附和侵袭,因此有望在鼻咽部定植中发挥重要作用。大多数脑膜炎球菌Opa蛋白与CEACAM受体家族成员结合,如癌胚抗原(CEA)。黏膜抗Opa抗体阻断Opa-CEACAM相互作用可能构成新型脑膜炎球菌疫苗的重要保护机制。在本研究中,我们分析了用含有纯化天然OpaB(识别CEA受体)和OpaJ(对CEA无亲和力)蛋白的脂质体经鼻免疫小鼠后的特异性抗Opa抗体反应。这些抗原与三种不同佐剂之一联合使用或不联合使用,这三种佐剂分别是纯化的脑膜炎球菌脂多糖(LPS)、单磷酰脂质A(MPL)或大肠杆菌不耐热肠毒素的B亚单位(EtxB)。用这些制剂中的任何一种经鼻免疫后,在鼻腔灌洗液中发现了抗Opa IgA抗体,在某些情况下,在肺灌洗液中也发现了抗Opa IgA和IgG抗体。使用OpaJ而非OpaB时,获得了显著的杀菌血清滴度。在所使用的不同佐剂中,脑膜炎球菌LPS产生了最强的总体免疫反应。未添加佐剂的脂质体Opa制剂免疫原性较差。在表达CEA受体的转基因小鼠和非转基因小鼠中,免疫反应没有差异,表明CEA-Opa相互作用不影响抗体反应。

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