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首页> 外文期刊>Glycoconjugate journal >Investigating the candidacy of LPS-based glycoconjugates to prevent invasive meningococcal disease: conjugates based on core oligosaccharides
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Investigating the candidacy of LPS-based glycoconjugates to prevent invasive meningococcal disease: conjugates based on core oligosaccharides

机译:研究基于LPS的糖结合物预防侵袭性脑膜炎球菌疾病的候选资格:基于核心寡糖的结合物

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In this study we have prepared glycoconjugates with core oligosaccharides (OS) from the lipopolysaccharide (LPS) of Neisseria meningitidis, thus avoiding the neoepitopes of the deacylated lipid A region of the derived LPS molecule identified in our previous studies. A comprehensive investigation was performed with glycoconjugates prepared from the most extended to the most truncated core OS still maintaining the conserved inner core epitope. As previously, we have established reproducible bactericidal killing of the homologous antigen elaborating strain, but a failure to kill wild-type strains. In these studies it was evident that the linker molecules used in the conjugation methodologies were dominating the immune response. However, when galE core OS based conjugates were prepared without utilizing linkers, via direct reductive amination, we failed to generate an immune response to even the homologous antigen. We also identified that immunisation with the galE antigen via linker methodologies provoked an immune response that was dependent upon key residues of the conserved inner core OS structure, whereas the immune responses to lgtB and lgtA antigens did not involve the inner core OS. This comprehensive study has, despite our best efforts, cast significant doubt as to the utility of the conserved inner core region of the meningococcal LPS as a potential vaccine antigen.
机译:在这项研究中,我们从脑膜炎奈瑟氏球菌的脂多糖(LPS)中制备了与核心寡糖(OS)形成的糖缀合物,从而避免了我们先前研究中发现的衍生LPS分子脱酰脂质A区的新表位。进行了从最广泛到最截断的核心OS制备的糖缀合物的全面研究,该糖缀合物仍保持保守的内核心表位。如前所述,我们已经确定了同源抗原加工菌株的可再现杀菌作用,但未能杀死野生型菌株。在这些研究中,很明显在偶联方法中使用的接头分子主导着免疫反应。但是,当不使用连接子通过直接还原胺化制备基于galE核心OS的结合物时,我们甚至无法产生对同源抗原的免疫反应。我们还确定了通过连接子方法用galE抗原进行的免疫激发了依赖于保守内在核心OS结构关键残基的免疫应答,而对lgtB和lgtA抗原的免疫应答并不涉及内在核心OS。尽管我们尽了最大努力,但这项综合研究对脑膜炎球菌LPS保守内核区作为潜在疫苗抗原的实用性产生了重大怀疑。

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