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肿瘤相关糖蛋白及其合成碳水化合物表位的T细胞识别:体内抗癌T细胞免疫的刺激

T cell recognition of a tumor-associated glycoprotein and its synthetic carbohydrate epitopes: stimulation of anticancer T cell immunity in vivo.

作者信息

Henningsson C M, Selvaraj S, MacLean G D, Suresh M R, Noujaim A A, Longenecker B M

机构信息

Department of Immunology, University of Alberta, Edmonton, Canada.

出版信息

Cancer Immunol Immunother. 1987;25(3):231-41. doi: 10.1007/BF00199152.

Abstract

The Thomsen, Friedenreich (TF) and Tn carbohydrate antigens are expressed on the vast majority of human adenocarcinomas and are associated with aggressive behavior of certain tumors. TF and Tn antigens are also expressed on certain murine cancer cell lines including TA3-Ha, a highly lethal, transplantable mammary adenocarcinoma. TF and Tn cancer-associated carbohydrate haptens were synthesized, conjugated to protein carriers and used to demonstrate that delayed-type hypersensitivity (DTH) effector T cells can specifically recognize and respond to carbohydrate determinants on the TA3-Ha tumor-associated glycoprotein, epiglycanin. The effector cells were shown to have the helper DTH phenotype (Lyt1+, Lyt2-, Thy1+) and it was demonstrated that they respond to specific carbohydrate determinants in an MHC-restricted fashion. These experiments provide the rationale for the use of synthetic tumor-associated glycoconjugates (S-TAGs) to stimulate anticancer T cell immunity. In support of this hypothesis, it was shown that preimmunization with the appropriate S-TAGs could provide a degree of protection against a subsequent tumor transplant and that antitumor effector Lyt1+, Lyt2- T cells could be generated in vitro using the appropriate S-TAGs as antigens.

摘要

汤姆森(Thomsen)、弗里德赖希(Friedenreich)(TF)和Tn碳水化合物抗原在绝大多数人类腺癌中表达,并与某些肿瘤的侵袭性行为相关。TF和Tn抗原也在某些小鼠癌细胞系上表达,包括TA3-Ha,一种高度致命的、可移植的乳腺腺癌。合成了TF和Tn癌症相关碳水化合物半抗原,将其与蛋白质载体偶联,并用于证明迟发型超敏反应(DTH)效应T细胞可以特异性识别并对TA3-Ha肿瘤相关糖蛋白表皮糖蛋白上的碳水化合物决定簇作出反应。效应细胞显示具有辅助性DTH表型(Lyt1+、Lyt2-、Thy1+),并且证明它们以MHC限制的方式对特定碳水化合物决定簇作出反应。这些实验为使用合成肿瘤相关糖缀合物(S-TAGs)刺激抗癌T细胞免疫提供了理论依据。为支持这一假设,研究表明用适当的S-TAGs进行预免疫可以提供一定程度的针对后续肿瘤移植的保护,并且使用适当的S-TAGs作为抗原可以在体外产生抗肿瘤效应Lyt1+、Lyt2-T细胞。

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