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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Specific screening method for dextran and hydroxyethyl starch in human urine by size exclusion chromatography–in-source collision-induced dissociation–time-of-flight mass spectrometry
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Specific screening method for dextran and hydroxyethyl starch in human urine by size exclusion chromatography–in-source collision-induced dissociation–time-of-flight mass spectrometry

机译:尺寸排阻色谱-源碰撞碰撞解离-飞行时间质谱法专门检测人尿中右旋糖酐和羟乙基淀粉的方法

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摘要

The use of plasma volume expanders (PVE), such as dextran (DEX) and hydroxyethyl starch (HES), is prohibited in sports. DEX is a naturally occurring glucose polymer, whereas HES is synthetically produced from amylopectin starch by substitution with hydroxyethyl groups. In doping control, the commonly applied enzymatic and colorimetric screening methods are lacking adequate specificity for DEX and HES. Also, gas chromatographic–mass spectrometic (GC-MS) screening methods have specificity issues with DEX. In addition, due to the nature of the target compounds, time-consuming derivatisation steps are required in GC-MS. Based on the high molecular weight of carbohydrate polymers excreted in urine after administration of DEX and HES, a screening method was developed involving size exclusion chromatography (SEC) combined with time-of-flight mass spectrometry (TOFMS). By using solely a SEC guard column as an analytical column allowed sufficient chromatographic resolution in a minimal amount of time and with reasonable repeatability (average RSD of 10%). Detector response was linear throughout the measurement range with R 2 > 0.99 for both analytes. Limits of detection were 100 and 250 μg mL−1 for DEX and HES, respectively. Ion suppression was found to be 52% at maximum. In-source collision-induced dissociation (ISCID) was used to produce characteristic fragments at a mass accuracy better than 2 mDa. The specificity of the SEC–ISCID–TOFMS method was demonstrated with 120 PVE negative doping control samples analyzed in parallel with a routine GC-MS screening method. In addition, seven urine samples from diabetic athletes, causing interpretation problems in routine GC-MS, showed here a definitely negative profile.
机译:禁止在体育运动中使用血浆容量增加剂(PVE),例如葡聚糖(DEX)和羟乙基淀粉(HES)。 DEX是天然存在的葡萄糖聚合物,而HES是通过支链淀粉由羟乙基取代而合成生产的。在掺杂控制中,常用的酶法和比色法对DEX和HES缺乏足够的特异性。同样,气相色谱-质谱(GC-MS)筛选方法对DEX具有特异性问题。另外,由于目标化合物的性质,GC-MS中需要耗时的衍生步骤。基于给予DEX和HES后尿液中排泄的碳水化合物聚合物的高分子量,开发了一种筛查方法,其中包括体积排阻色谱(SEC)和飞行时间质谱(TOFMS)。通过仅使用SEC保护柱作为分析柱,可以在最短的时间内获得足够的色谱分离度,并具有合理的重复性(平均RSD为10%)。在两种测量范围内,检测器的响应在整个测量范围内均为线性,R 2 。发现离子抑制最大为52%。源内碰撞诱导解离(ISCID)用于产生特征片段,质量精度优于2 mDa。通过与常规GC-MS筛选方法并行分析的120个PVE负掺杂对照样品,证明了SEC-ISCID-TOFMS方法的特异性。此外,从糖尿病运动员身上采集的七个尿液样本在常规GC-MS中引起解释问题,在这里肯定显示出阴性的特征。

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