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评估生物分析中溶血样本的基质效应。

Assessing the matrix effects of hemolyzed samples in bioanalysis.

作者信息

Hughes Nicola C, Bajaj Navgeet, Fan Juan, Wong Ernest Y K

机构信息

Bioanalytical Laboratory, Biovail Contract Research, Toronto, ON, M1L 4S4, Canada.

出版信息

Bioanalysis. 2009 Sep;1(6):1057-66. doi: 10.4155/bio.09.91.

Abstract

Validation of LC-MS/MS assays includes an assessment of matrix effects. Hemolysis effect, a special type of matrix effect, can also have an impact on analyte quantitation. In situations where the hemolysis effect is marginal, this can be resolved simply by dilution of hemolyzed samples with plasma prior to analysis. However, in some cases, the impact can be so dramatic that analytes are completely immeasurable. In such situations, modification to the bioanalytical method will be required, including, but not limited to, adjusting the chromatographic conditions to separate interferences present in hemolyzed samples; additional sample clean-up techniques such as protein precipitation in combination with SPE or a change in extraction technique such as from SPE to a liquid-liquid extraction method. Here, we report examples from four bioanalytical methods, where the presence of hemolyzed blood in plasma was found to have an impact on analyte quantitation and a description of the solutions adopted to resolve this are provided.

摘要

液相色谱-串联质谱(LC-MS/MS)分析方法的验证包括对基质效应的评估。溶血效应作为一种特殊类型的基质效应,也会对分析物定量产生影响。在溶血效应较小的情况下,可通过在分析前用血浆稀释溶血样品来解决。然而,在某些情况下,这种影响可能非常显著,以至于分析物完全无法测量。在这种情况下,需要对生物分析方法进行改进,包括但不限于调整色谱条件以分离溶血样品中存在的干扰物;采用额外的样品净化技术,如结合固相萃取(SPE)的蛋白质沉淀法,或改变提取技术,如从SPE法改为液液萃取法。在此,我们报告了四种生物分析方法的实例,其中发现血浆中溶血血液的存在对分析物定量有影响,并提供了为解决此问题而采用的解决方案的描述。

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