Svenson S B, Lindberg A A
J Immunol Methods. 1979;25(4):323-35. doi: 10.1016/0022-1759(79)90025-5.
A coupling method for covalent attachment of acid labile oligosaccharides isolated from S. typhimurium O-polysaccharide to macromolecular carriers is described. Arylamine groups were introduced into the terminal reducing end of oligosaccharides by reacting them with 2-(4-aminophenyl)-ethylamine. After subsequent conversion to the corresponding saccharide-phenylisothiocyanato derivatives saccharides were covalently linked to free epsilon-lysylamine groups of different carrier proteins. The resulting conjugates were highly immunogenic and elicited in rabbits both anti-harptenic and anti-carrier protein specific antibodies. Some of the advantages of this coupling procedure are: (i) it can be used with oligosaccharides containing highly acid or alkali labile structures and/or glycosidic linkages, (ii) it produces conjugates with high degrees of substitution at low saccharide/protein molar input ratios, (iii) it does not grossly affect the immunogenic specificities of the carrier protein, and (iv) it is suitable for preparation of highly substituted affinity columns, e.g., coupling to a polyacrylamide matrix.
本文描述了一种将从鼠伤寒沙门氏菌O-多糖中分离出的酸不稳定寡糖共价连接到大分子载体上的偶联方法。通过使寡糖与2-(4-氨基苯基)-乙胺反应,将芳胺基团引入寡糖的末端还原端。在随后转化为相应的糖-苯基异硫氰酸酯衍生物后,糖类与不同载体蛋白的游离ε-赖氨胺基团共价连接。所得缀合物具有高度免疫原性,并在兔体内引发抗半抗原和抗载体蛋白特异性抗体。这种偶联方法的一些优点包括:(i) 它可用于含有高度酸或碱不稳定结构和/或糖苷键的寡糖;(ii) 在低糖/蛋白摩尔输入比下产生具有高取代度的缀合物;(iii) 它不会严重影响载体蛋白的免疫原特异性;(iv) 它适用于制备高度取代的亲和柱,例如与聚丙烯酰胺基质偶联。