首页> 外文期刊>Journal of the American Chemical Society >Biologics Through Chemistry: Total Synthesis Of A Proposeddual-acting Vaccine Targeting Ovarian Cancer By Orchestration Of Oligosaccharide And Polypeptide Domains
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Biologics Through Chemistry: Total Synthesis Of A Proposeddual-acting Vaccine Targeting Ovarian Cancer By Orchestration Of Oligosaccharide And Polypeptide Domains

机译:通过化学生物制剂:通过寡糖和多肽结构域的配伍,针对卵巢癌的拟议双效疫苗的全合成

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Carbohydrate and peptide-based antitumor vaccine constructs featuring clusters of both tumor associated carbohydrate antigens and mucin-like peptide epitopes have been designed, synthesized, and studied. The mucin-based epitopes are included to act, potentially, as T-cell epitopes in order to provoke a strong immune response. Hopefully the vaccine will simulate cell surface architecture, thereby provoking levels of immunity against cancer cell types displaying such characteristics. With this central idea in mind, we designed a new vaccine type against ovarian cancer. Following advances in glycohistology, our design is based on clusters of Gb_3 antigen and also incorporates a MUC5AC peptide epitope. The vaccine is among the most complex targeted constructs to be assembled by chemical synthesis to date. The strategy for the synthesis employed a Gb_3-MUC5AC thioester cassette as a key building block. Syntheses of both nonconjugate and KLH-conjugated vaccines constructs have been accomplished.
机译:已经设计,合成和研究了以肿瘤相关碳水化合物抗原和粘蛋白样肽表位簇为特征的碳水化合物和基于肽的抗肿瘤疫苗构建体。包括基于粘蛋白的表位可能充当T细胞表位,以引起强烈的免疫反应。希望该疫苗能够模拟细胞表面结构,从而激发针对具有此类特征的癌细胞类型的免疫水平。考虑到这一中心思想,我们设计了一种针对卵巢癌的新型疫苗。随着糖组学的发展,我们的设计基于Gb_3抗原簇,并且还整合了MUC5AC肽表位。该疫苗是迄今为止最复杂的靶向化学构建物之一,可通过化学合成进行组装。合成策略采用Gb_3-MUC5AC硫酯盒作为关键构件。非缀合的和KLH缀合的疫苗构建体的合成已经完成。

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