Lapko Veniamin N, Miller Patrick S, Sheldon Curtis E, Nachi Ridha, Kafonek Chris J
Celerion, 621 Rose Street, Lincoln, NE USA 68502.
Bioanalysis. 2014;6(21):2931-50. doi: 10.4155/bio.14.223.
Bisphosphonate drugs pose significant challenges for bioanalysis due to various complicating factors. In 2006, a novel approach, utilizing 'on-column' derivatization with diazomethane, was reported that revolutionized the application of liquid-chromatography-tandem mass spectrometry to bisphosphonates bioanalysis. The methodology enables superior biological sample clean-up while transforming bisphosphonates into species amenable to liquid-chromatography-tandem mass spectrometry detection. Since then, the approach has been successfully applied to numerous bisphosphonates. The use of an alternative methylation reagent - trimethylsilyl diazomethane - for on-column derivatization has been reported recently. This review focuses on published methods utilizing on-column derivatization for bioanalysis of major bisphosphonate drugs in biological matrices. Critical points required for successful application of on-column derivatization to the bioanalysis of bisphosphonates will be discussed.
由于各种复杂因素,双膦酸盐类药物的生物分析面临重大挑战。2006年,一种利用重氮甲烷进行“柱上”衍生化的新方法被报道,该方法彻底改变了液相色谱-串联质谱在双膦酸盐生物分析中的应用。该方法能够实现出色的生物样品净化,同时将双膦酸盐转化为适合液相色谱-串联质谱检测的物质。从那时起,该方法已成功应用于多种双膦酸盐。最近有报道使用另一种甲基化试剂——三甲基硅基重氮甲烷进行柱上衍生化。本综述重点关注已发表的利用柱上衍生化对生物基质中主要双膦酸盐类药物进行生物分析的方法。将讨论柱上衍生化成功应用于双膦酸盐生物分析所需的关键点。