癌症疫苗与碳水化合物表位。
Cancer vaccines and carbohydrate epitopes.
机构信息
Department of Biochemistry, Emory University, Atlanta, GA 30322, United States.
出版信息
Vaccine. 2011 Nov 8;29(48):8802-26. doi: 10.1016/j.vaccine.2011.09.009. Epub 2011 Oct 1.
Tumor-associated carbohydrate antigens (TACA) result from the aberrant glycosylation that is seen with transformation to a tumor cell. The carbohydrate antigens that have been found to be tumor-associated include the mucin related Tn, Sialyl Tn, and Thomsen-Friedenreich antigens, the blood group Lewis related Lewis(Y), Sialyl Lewis(X) and Sialyl Lewis(A), and Lewis(X) (also known as stage-specific embryonic antigen-1, SSEA-1), the glycosphingolipids Globo H and stage-specific embryonic antigen-3 (SSEA-3), the sialic acid containing glycosphingolipids, the gangliosides GD2, GD3, GM2, fucosyl GM1, and Neu5GcGM3, and polysialic acid. Recent developments have furthered our understanding of the T-independent type II response that is seen in response to carbohydrate antigens. The selection of a vaccine target antigen is based on not only the presence of the antigen in a variety of tumor tissues but also on the role this antigen plays in tumor growth and metastasis. These roles for TACAs are being elucidated. Newly acquired knowledge in understanding the T-independent immune response and in understanding the key roles that carbohydrates play in metastasis are being applied in attempts to develop an effective vaccine response to TACAs. The role of each of the above mentioned carbohydrate antigens in cancer growth and metastasis and vaccine attempts using these antigens will be described.
肿瘤相关碳水化合物抗原(TACA)是肿瘤细胞转化时异常糖基化的结果。已发现与肿瘤相关的碳水化合物抗原包括粘蛋白相关的Tn、唾液酸化 Tn 和 Thomsen-Friedenreich 抗原、血型 Lewis 相关的 Lewis(Y)、唾液酸化 Lewis(X)和唾液酸化 Lewis(A)以及 Lewis(X)(也称为阶段特异性胚胎抗原-1,SSEA-1)、糖脂Globo H 和阶段特异性胚胎抗原-3(SSEA-3)、含有唾液酸的糖脂、神经节苷脂 GD2、GD3、GM2、岩藻糖 GM1 和 Neu5GcGM3 以及多涎酸。最近的发展进一步加深了我们对 T 细胞非依赖性 II 型反应的理解,这种反应是对碳水化合物抗原的反应。疫苗靶抗原的选择不仅基于抗原在各种肿瘤组织中的存在,还基于该抗原在肿瘤生长和转移中的作用。这些 TACA 的作用正在被阐明。在理解 T 细胞非依赖性免疫反应和理解碳水化合物在转移中关键作用方面的新知识正在被应用于试图开发针对 TACA 的有效疫苗反应。将描述上述每种碳水化合物抗原在癌症生长和转移中的作用以及使用这些抗原的疫苗尝试。
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