Mikola H, Hedlöf E
Department of Chemistry, University of Turku, Finland.
Steroids. 1994 Aug;59(8):472-8. doi: 10.1016/0039-128x(94)90060-4.
A simple and efficient method of derivatizing and labeling the terminal sugar ring of digoxin (and other steroid glycosides) is described. The terminal sugar ring was oxidized by periodate to dialdehyde, followed by a reaction with the aminooxy group of heterobifunctional spacer reagent. Usually, reductive amination is needed to stabilize the Schiff base-type compounds produced in reactions between amino and aldehyde groups. Here the oxime compounds produced are stable wherefore the reductive amination step can be avoided and the reaction gives high yields without significant side reactions. After characterization the digoxin dioxime derivatives formed were labeled with europium chelates. These labeled digoxin derivatives bearing one or two europium-containing chelates, coupled via different spacers, were purified and tested in a competitive time-resolved fluoroimmunoassay. Several digoxin-specific monoclonal antibodies were also tested to determine the most suitable antibody-tracer combination, which was then employed to develop a simple competitive time-resolved fluoroimmunoassay for digoxin.
本文描述了一种简单有效的地高辛(及其他甾体糖苷)末端糖环衍生化和标记方法。末端糖环经高碘酸盐氧化为二醛,然后与异双功能间隔试剂的氨氧基反应。通常,氨基与醛基反应生成的席夫碱型化合物需要还原胺化来稳定。在此,生成的肟化合物是稳定的,因此可以避免还原胺化步骤,且反应产率高,无明显副反应。经表征后,将形成的地高辛二肟衍生物用铕螯合物标记。这些带有一个或两个通过不同间隔基团偶联的含铕螯合物的标记地高辛衍生物,经过纯化后在竞争性时间分辨荧光免疫分析中进行测试。还测试了几种地高辛特异性单克隆抗体,以确定最合适的抗体 - 示踪剂组合,然后用于开发一种简单的地高辛竞争性时间分辨荧光免疫分析方法。