Kim Kyunghun, Lee Howon, Lee Jeong Joong, Cha Kyoungho, Hyun Park Nam, Shin Young Keun, Chae Hyojin, Oh Eun-Jee
Department of Laboratory Medicine, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea.
Bio-Medical Science Co., Ltd, Seoul, Republic of Korea.
J Mass Spectrom Adv Clin Lab. 2023 Jan 5;27:56-60. doi: 10.1016/j.jmsacl.2023.01.001. eCollection 2023 Jan.
The need for high-throughput analysis of multiple analytes for inborn errors of metabolism in newborn screening (NBS) has led to the introduction of tandem mass spectrometry (MS/MS) into the NBS laboratory. In a flow-injection analysis (FIA), the predominant MS/MS method utilized for NBS, samples are introduced directly into the mass spectrometer without chromatographic separation. When a high-throughput FIA-based MS/MS method is implemented on newer generations of mass spectrometers with increased sensitivity, the risk of carryover and contamination increases. In the present study, we report the carryover of ornithine identified during the implementation of the NeoBase™ 2 (PerkinElmer) non-derivatized kits on the Xevo-TQD platform (Waters Corporation) and describe the source of the carryover, which was traced to the stainless-steel frit-type inline filter. Furthermore, a possible compound-dependent interaction with the stainless-steel frit is suggested based on the structure of ornithine and its effect on separation techniques. Investigation and mitigation of carryover can be a time and resource consuming process, and to this end, our report on identification of a stainless-steel frit as the source of delayed elution and carryover of ornithine should be recognized as a rare, albeit possible source of carryover in FIA-MS/MS methods adopted for NST.
新生儿筛查(NBS)中对多种代谢物进行高通量分析以诊断先天性代谢缺陷的需求,促使串联质谱(MS/MS)被引入NBS实验室。在流动注射分析(FIA)中,这是NBS中使用的主要MS/MS方法,样品无需色谱分离即可直接引入质谱仪。当基于FIA的高通量MS/MS方法在灵敏度更高的新一代质谱仪上实施时,残留和污染的风险会增加。在本研究中,我们报告了在Xevo-TQD平台(沃特世公司)上使用NeoBase™ 2(珀金埃尔默)非衍生化试剂盒时检测到的鸟氨酸残留,并描述了残留的来源,该来源可追溯到不锈钢筛网型在线过滤器。此外,基于鸟氨酸的结构及其对分离技术的影响,提出了与不锈钢筛网可能存在的化合物依赖性相互作用。残留的调查和缓解可能是一个耗时且耗费资源的过程,为此,我们关于确定不锈钢筛网是鸟氨酸延迟洗脱和残留来源的报告,应被视为NST采用的FIA-MS/MS方法中一种罕见但可能的残留来源。