首页> 外文期刊>Molecular genetics and metabolism >Rapid determination of C4-acylcarnitine and C5-acylcarnitine isomers in plasma and dried blood spots by UPLC-MS/MS as a second tier test following flow-injection MS/MS acylcarnitine profile analysis.
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Rapid determination of C4-acylcarnitine and C5-acylcarnitine isomers in plasma and dried blood spots by UPLC-MS/MS as a second tier test following flow-injection MS/MS acylcarnitine profile analysis.

机译:流动注射MS / MS酰基肉碱分析后,通过UPLC-MS / MS作为第二级测试,快速测定血浆和干血斑中的C4-酰基肉碱和C5-酰基肉碱异构体。

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BACKGROUND: Flow-injection MS/MS methods for elevated acylcarnitines are routinely performed in most newborn screening and biochemical genetics laboratories; however this technique cannot distinguish between isobaric compounds; therefore, chromatographic separation is required to quantitate isomers for differential diagnosis of some inborn errors of metabolism. METHODS: A UPLC-MS/MS method has been developed for the simultaneous quantitation of isobutyrylcarnitine and butyrylcarnitine, and a second UPLC-MS/MS method for the quantitation of isovalerylcarnitine, (S) and (R) 2-methylbutyrylcarnitine, pivaloylcarnitine and valerylcarnitine. Plasma and dried blood spots samples are extracted with methanol and derivatized with butanolic HCl. Deuterium labeled internal standards are used for quantitation. Separation is obtained using a methanol/water gradient with a C18 BEH, 1x100mm, 1.7microm UPLC column, at 60 degrees C; run time is less than 10min. The isomers are detected with a Quattro Premier triple quadrupole, with electrospray ionization in positive ion mode. RESULTS: Intra-day precision in plasma and dried blood spots ranged from 1.4% to 14% and accuracy from 88% to 114% respectively for butyrylcarnitine and isobutyrylcarnitine. Precision for the isomers of C5-acylcarnitine ranged from 1.3% to 15% and accuracy 87% to 119%, respectively in plasma or dried blood spots. Inter-day precision was within 20% at each concentration of isobutyrylcarnitine and butyrylcarnitine. Precision for 2-methylbutyrylcarnitine and isovalerylcarnitine at concentrations above the normal range was within 24%. CONCLUSIONS: Two diagnostic tests based on the separation of C4-acylcarnitine and C5-acylcarnitine isomers by UPLC-MS/MS provide fast differential diagnosis of SCAD deficiency versus IBCD deficiency and IVA versus 2-MBCD deficiency. The separation of C5-acylcarnitines can reveal false elevation due to pivalic acid-containing antibiotics. Abnormal newborn screen results due to pivalate-generating prodrug antibiotics of maternal origin were confirmed. This separation of isomers can resolve multiple diagnostic challenges in both newborn screening and in cases with ambiguous metabolic test results.
机译:背景:在大多数新生儿筛查和生化遗传实验室中,通常采用流动注射MS / MS方法检测酰基肉碱含量升高。但是,该技术无法区分同量异位化合物;因此,需要色谱分离来定量异构体,以鉴别诊断某些先天性代谢错误。方法:已开发出一种UPLC-MS / MS方法,用于同时定量异丁酰基肉碱和丁酰基肉碱,另一种UPLC-MS / MS方法用于定量异戊酰基肉碱,(S)和(R)2-甲基丁酰基肉碱,新戊酰基肉碱和戊基肉碱。用甲醇提取血浆和干血斑样品,然后用丁醇HCl衍生化。氘标记的内标用于定量。使用甲醇/水梯度和60℃的C18 BEH,1x100mm,1.7microm UPLC色谱柱进行分离。运行时间少于10分钟。使用Quattro Premier三重四极杆检测该异构体,并在正离子模式下进行电喷雾电离。结果:丁酰肉碱和异丁酰肉碱的日内血浆和干血斑精确度分别为1.4%至14%和88%至114%。在血浆或干血斑中,C5-酰基肉碱异构体的精密度分别为1.3%至15%和87%至119%。在异丁酰肉碱和丁酰肉碱的每个浓度下,日间精度都在20%以内。浓度高于正常范围的2-甲基丁酰基肉碱和异戊酰基肉碱的精密度在24%以内。结论:基于通过UPLC-MS / MS分离C4-酰基肉碱和C5-酰基肉碱异构体的两种诊断测试,可以快速鉴别出SCAD缺陷与IBCD缺陷以及IVA与2-MBCD缺陷。由于含新戊酸的抗生素,C5-酰基肉碱的分离可显示出错误的升高。确认了由于母亲产生新戊酸酯的前药抗生素导致的异常新生儿筛查结果。异构体的这种分离可以解决新生儿筛查和代谢测试结果不明确的情况下的多种诊断难题。

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