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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Increasing the Antigenicity of Synthetic Tumor-Associated Carbohydrate Antigens by Targeting Toll-Like Receptors
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Increasing the Antigenicity of Synthetic Tumor-Associated Carbohydrate Antigens by Targeting Toll-Like Receptors

机译:通过靶向收费受体增加合成肿瘤相关糖原抗原的抗原性

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摘要

Epithelial cancer cells often overexpress mucins that are aberrantly glycosyloted. Although it has been realized that these compounds offer exciting opportunities for the development of immunotherapy for cancer, their use is hampered by the low antigenicity of classical immunogens composed of a glycopeptide derived from a mucin conjugated to a foreign carrier protein. We have designed, chemically synthesized, and immunologically evaluated a number of fully synthetic vaccine candidates to establish a strategy to overcome the poor immunogenicity of tumor-associated carbohydrates and glycopeptides. The compounds were also designed to allow study of the importance of Toll-like receptor (TLR) engagement for these antigenic responses in detail. We hove found that covalent attachment of a TLR2 agonist, a promiscuous peptide T-helper epitope, and a tumor-associated glycopeptide gives a compound (1) that elicits in mice exceptionally high titers of IgG antibodies that recognize MCF7 cancer cells expressing the tumor-associated carbohydrate. Immunizations with glycolipopeptide 2, which contains lipidated amino acids instead of a TLR2 ligand, gave significantly lower titers of IgG antibodies; this demonstrates that TLR engagement is critical for optimum ontigenic responses. Although mixtures of compound 2 with Pam(3)CysSK(4) (3) or monophosphoryl lipid A (4) elicited titers of IgG antibodies similar to those seen with 1, the resulting antisera had impaired ability to recognize cancer cells. It was also found that covalent linkage of the helper T-epitope to the B-epitope is essential, probably because internalization of the helper T-epitope by B-cells requires assistance of the B-epitope. The results presented here show that synthetic vaccine development is amenable to structure-activity relationship studies for successful optimization of carbohydrate-based cancer vaccines.
机译:上皮癌细胞通常过表达糖基化的粘蛋白。尽管已经认识到这些化合物为癌症免疫疗法的发展提供了令人兴奋的机会,但是它们的使用受到经典免疫原的低抗原性的阻碍,所述经典免疫原由与黏附于外源载体蛋白的粘蛋白衍生的糖肽组成。我们已经设计,化学合成和免疫学评估了许多完全合成的候选疫苗,以建立一种策略来克服与肿瘤相关的碳水化合物和糖肽的不良免疫原性。还设计了该化合物以详细研究Toll样受体(TLR)参与对于这些抗原反应的重要性。我们发现,TLR2激动剂,混杂的肽T-辅助抗原决定簇和肿瘤相关糖肽的共价结合产生的化合物(1)在小鼠中引起异常高滴度的IgG抗体,可识别表达肿瘤的MCF7癌细胞,相关碳水化合物。糖脂肽2的免疫作用包含脂化的氨基酸而不是TLR2配体,可显着降低IgG抗体的滴度。这表明TLR参与对于最佳的致癌反应至关重要。尽管化合物2与Pam(3)CysSK(4)(3)或单磷酰脂质A(4)的混合物引起的IgG抗体效价与1相似,但产生的抗血清损害了识别癌细胞的能力。还发现辅助T-表位与B-表位的共价连接是必不可少的,这可能是因为B细胞对辅助T-表位的内在化需要B-表位的协助。此处显示的结果表明,合成疫苗的开发适合结构-活性关系研究,以成功优化基于碳水化合物的癌症疫苗。

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