Bovin N V, Zemlyanukhina T V, Byramova N E, Galanina O E, Zemlyakov A E, Ivanov A E, Zubov V P, Mochalova L V
Shemyakin Institute of Bioorganic Chemistry, Academy of Sciences, Moscow, Russian Federation.
Glycoconj J. 1993 Apr;10(2):142-51. doi: 10.1007/BF00737711.
Several types of polymeric glycoconjugates, N-substituted polyacrylamides, have been synthesized by the reaction of activated polymers with omega-aminoalkylglycosides: (i) (carbohydrate-spacer)n-polyacrylamide, 'pseudopolysaccharides'; (ii) (carbohydrate-spacer)n-phosphatidylethanolaminem-polyacrylamide, neoglycolipids, derivatives of phosphatidylethanolamine; (iii) (carbohydrate-spacer)n-biotin-polyacrylamide, biotinylated probes; (iv) (carbohydrate-spacer)n-polyacrylamide-(macroporous glass), affinity sorbents based on macroporous glass, covalently coated with polyacrylamide. An almost quantitative yield in the conjunction reaction makes it possible to insert in the conjugate a predetermined quantity of the ligand(s). Pseudopolysaccharides proved to be a suitable form of antigen for activation of polystyrene and poly(vinyl chloride) plates (ELISA) and nitrocellulose membranes (dot blot), being advantageous over traditional neoglycoproteins. Polyvalent glycolipids insert well in biological membranes: their physical properties, particularly solubility, can be changed in a desired direction. Biotinylated derivatives were used as probes for detection and analysis of lectins.
通过活性聚合物与ω-氨基烷基糖苷的反应,合成了几种类型的聚合糖缀合物,即N-取代聚丙烯酰胺:(i)(碳水化合物间隔基)n-聚丙烯酰胺,“假多糖”;(ii)(碳水化合物间隔基)n-磷脂酰乙醇胺m-聚丙烯酰胺,新糖脂,磷脂酰乙醇胺的衍生物;(iii)(碳水化合物间隔基)n-生物素-聚丙烯酰胺,生物素化探针;(iv)(碳水化合物间隔基)n-聚丙烯酰胺-(大孔玻璃),基于大孔玻璃的亲和吸附剂,共价涂覆有聚丙烯酰胺。连接反应中几乎定量的产率使得在缀合物中插入预定数量的配体成为可能。假多糖被证明是用于激活聚苯乙烯和聚氯乙烯板(酶联免疫吸附测定)以及硝酸纤维素膜(斑点印迹)的合适抗原形式,比传统的新糖蛋白更具优势。多价糖脂能很好地插入生物膜中:它们的物理性质,特别是溶解性,可以朝着期望的方向改变。生物素化衍生物用作凝集素检测和分析的探针。