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Towards development of a fully synthetic conjugate vaccine: Investigation of structural analogs of Streptococcus pneumoniae serogroup 6.

机译:致力于开发完全合成的结合疫苗:研究肺炎链球菌血清群6的结构类似物。

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摘要

Involvement of complex glycostructures in a variety of damaging and healing processes has already been acknowledged by development of carbohydrate-based vaccines and therapeutics. The bacteria Streptococcus pneumoniae (SPn) have become one of the most frequent causes of pneumonia, bacteremia, and meningitis in the elderly, immunocompromised, and, especially, in young children. SPn has one of the largest public health and economic impacts amongst all bacterial infectious diseases. Over 2 million children die annually worldwide due to pneumonia, accounting for almost 20% of deaths under age five with more than half of these deaths attributed to SPn.;Amongst over ninety elucidated SPn serotypes, the SPn serogroup6 has been consistently ranked within the top three causes of invasive pneumococcal disease worldwide. The SPn bacterial cell is surrounded by a polysaccharide capsule and preventive vaccination is a viable tool against the bacterial invasion. Usually, serotype-specific antibodies are formed in response. Synthetic oligosaccharide components can be conjugated to a carrier protein with conventional coupling chemistry, to obtain semi-synthetic conjugate vaccines (glycoconjugates).;This doctoral dissertation describes the application of a new glycosylation method for the synthesis of glycostructures to study immunological properties of serogroup 6. The development of an expeditious strategy to obtain synthetic saccharides of SPn6 and glycoconjugates thereof will ensure reliable and reproducible immunological studies. Consequently, by identifying the immunogenic responses of these glycoconjugates, will help target toward the development of effective vaccine candidates against SPn.
机译:基于碳水化合物的疫苗和治疗剂的开发已经使复杂的糖结构参与各种破坏和治愈过程。肺炎链球菌(SPn)细菌已成为老年人,免疫力低下尤其是幼儿中肺炎,菌血症和脑膜炎的最常见原因之一。在所有细菌感染性疾病中,SPn对公共健康和经济的影响最大。全世界每年有超过200万儿童死于肺炎,占五岁以下儿童死亡的近20%,其中一半以上归因于SPn。在90多种阐明的SPn血清型中,SPn血清群6一直名列前茅世界范围内三种侵袭性肺炎球菌疾病的原因。 SPn细菌细胞被多糖胶囊包围,预防接种是抵抗细菌入侵的可行工具。通常,血清型特异性抗体是作为响应而形成的。合成的低聚糖成分可以通过常规偶联化学方法与载体蛋白结合,以获得半合成的结合疫苗(糖结合物)。该博士论文描述了一种新的糖基化方法在糖结构合成中的应用,以研究血清群6的免疫学特性。获得SPn6的合成糖及其糖缀合物的快速策略的发展将确保可靠和可重复的免疫学研究。因此,通过鉴定这些糖缀合物的免疫原性应答,将有助于针对针对SPn的有效候选疫苗的开发。

著录项

  • 作者

    Parameswar, Archana R.;

  • 作者单位

    University of Missouri - Saint Louis.;

  • 授予单位 University of Missouri - Saint Louis.;
  • 学科 Chemistry Biochemistry.;Chemistry Pharmaceutical.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

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