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副伤寒 A 相关寡糖抗原的合成及抗副伤寒疫苗的研制。

Syntheses of Salmonella Paratyphi A Associated Oligosaccharide Antigens and Development towards Anti-Paratyphoid Fever Vaccines.

机构信息

Division of Molecular Medicine, Bose Institute, P-1/12, C.I.T. Scheme VII M, Kolkata, 700054, India.

Current address: Unité de Chimie des Biomolécules, Institut Pasteur, 25/28 Rue du Docteur Roux, Paris Cedex 15, 75724, France.

出版信息

Chemistry. 2020 Dec 4;26(68):15953-15968. doi: 10.1002/chem.202002401. Epub 2020 Oct 22.

Abstract

With the emergence of multidrug resistant Salmonella strains, the development of anti-Salmonella vaccines is an important task. Currently there are no approved vaccines against Salmonella Paratyphi A, the leading cause of paratyphoid fever. To fill this gap, oligosaccharides corresponding to the O-polysaccharide repeating units from the surface of Salmonella Paratyphi A have been synthesized through convergent stereoselective glycosylations. The synthetic glycan antigen was conjugated with a powerful immunogenic carrier system, the bacteriophage Qβ. The resulting construct was able to elicit strong and long-lasting anti-glycan IgG antibody responses, which were highly selective toward Salmonella Paratyphi A associated glycans. The availability of well-defined glycan antigen enabled the determination that one repeating unit of the polysaccharide is sufficient to induce protective antibodies, and the paratose residue and/or the O-acetyl modifications on the backbone are important for recognition by antibodies elicited by a Qβ-tetrasaccharide conjugate. Immune sera provided excellent protection to mice from lethal challenge with Salmonella Paratyphi A, highlighting the potential of the synthetic glycan-based vaccine.

摘要

随着多药耐药性沙门氏菌菌株的出现,开发抗沙门氏菌疫苗是一项重要任务。目前尚无针对副伤寒 A 型沙门氏菌的批准疫苗,而副伤寒 A 型沙门氏菌是副伤寒的主要病因。为了填补这一空白,通过收敛性立体选择性糖基化合成了与沙门氏菌副伤寒 A 表面 O-多糖重复单元相对应的寡糖。合成的聚糖抗原与一种强大的免疫原性载体系统——噬菌体 Qβ偶联。由此构建的结构能够引发强烈而持久的抗聚糖 IgG 抗体反应,该反应对与副伤寒 A 相关的聚糖具有高度选择性。由于有了明确的聚糖抗原,因此可以确定一个多糖重复单元足以诱导保护性抗体,而核心的副乳糖残基和/或 O-乙酰化修饰对于由 Qβ-四糖缀合物引发的抗体的识别很重要。免疫血清为小鼠提供了针对致死性沙门氏菌副伤寒 A 攻击的出色保护,突出了基于合成聚糖的疫苗的潜力。

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