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Toward optimized carbohydrate-based anticancer vaccines: Epitope clustering, carrier structure, and adjuvant all influence antibody responses to Lewisy conjugates in mice

机译:面向优化的基于碳水化合物的抗癌疫苗:抗原决定簇 簇,载体结构和佐剂均会影响抗体 对小鼠刘易斯共轭物的反应

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摘要

The feasibility of using carbohydrate-based vaccines for the immunotherapy of cancer is being actively explored at the present time. Although a number of clinical trials have already been conducted with glycoconjugate vaccines, the optimal design and composition of the vaccines has yet to be determined. Among the candidate antigens being examined is Lewisy (Ley), a blood group-related antigen that is overexpressed on the majority of human carcinomas. Using Ley as a model for specificity, we have examined the role of epitope clustering, carrier structure, and adjuvant on the immunogenicity of Ley conjugates in mice. A glycolipopeptide containing a cluster of three contiguous Ley-serine epitopes and the Pam3Cys immunostimulating moiety was found to be superior to a similar construct containing only one Ley-serine epitope in eliciting antitumor cell antibodies. Because only IgM antibodies were produced by this vaccine, the effect on immunogenicity of coupling the glycopeptide to keyhole limpet hemocyanin was examined; although both IgM and IgG antibodies were formed, the antibodies reacted only with the immunizing structure. Reexamination of the clustered Ley-serine Pam3Cys conjugate with the adjuvant QS-21 resulted in the identification of both IgG and IgM antibodies reacting with tumor cells, thus demonstrating the feasibility of an entirely synthetic carbohydrate-based anticancer vaccine in an animal model.
机译:目前正在积极探索使用基于碳水化合物的疫苗进行癌症免疫治疗的可行性。尽管已经用糖缀合物疫苗进行了许多临床试验,但是尚未确定疫苗的最佳设计和组成。在待检查的候选抗原中有Lewisy(Ley),这是一种与血型相关的抗原,在大多数人类癌症中都过表达。使用Ley作为特异性模型,我们检查了抗原决定簇,载体结构和佐剂对小鼠Ley缀合物免疫原性的作用。发现在引发抗肿瘤细胞抗体方面,包含三个连续的Ley-丝氨酸表位和Pam3Cys免疫刺激部分的糖脂肽优于仅包含一个Ley-丝氨酸表位的相似构建体。由于该疫苗仅产生IgM抗体,因此研究了糖肽与匙孔血蓝蛋白偶联对免疫原性的影响。尽管形成了IgM和IgG抗体,但这些抗体仅与免疫结构反应。用佐剂QS-21对簇状Ley-丝氨酸Pam3Cys共轭物进行的重新检查导致鉴定了与肿瘤细胞反应的IgG和IgM抗体,从而证明了在动物模型中完全合成的基于碳水化合物的抗癌疫苗的可行性。

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