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Interlaboratory and Interplatform Study of Steroids Collision Cross Section by Traveling Wave Ion Mobility Spectrometry

机译:类固醇碰撞截面通过行波离子迁移光谱法研究

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Collision cross section (CCS) databases based on single-laboratory measurements must be cross-validated to extend their use in peak annotation. This work addresses the validation of the first comprehensive (CCSN2)-C-TW database for steroids. First, its long-term robustness was evaluated (i.e., a year and a half after database generation; Synapt G2-S instrument; bias within +/- 1.0% for 157 ions, 95.7% of the total ions). It was further cross-validated by three external laboratories, including two different (IMS)-I-TW platforms (i.e., Synapt G2-Si and two Vion IMS QToF; bias within the threshold of +/- 2.0% for 98.8, 79.9, and 94.0% of the total ions detected by each instrument, respectively). Finally, a cross-laboratory (CCSN2)-C-TW database was built for 87 steroids (142 ions). The cross-laboratory database consists of average (CCSN2)-C-TW values obtained by the four TWIMS instruments in triplicate measurements. In general, lower deviations were observed between (CCSN2)-C-TW measurements and reference values when the cross-laboratory database was applied as a reference instead of the single-laboratory database. Relative standard deviations below 1.5% were observed for interlaboratory measurements (<1.0% for 85.2% of ions) and bias between average values and (CCSN2)-C-TW measurements was within the range of +/- 1.5% for 96.8% of all cases. In the context of this interlaboratory study, this threshold was also suitable for CCS m measurements of steroid metabolites in calf urine. Greater deviations were observed for steroid sulfates in complex urine samples of adult bovines, showing a slight matrix effect. The implementation of a scoring system for the application of the CCS descriptor in peak annotation is also discussed.
机译:必须交叉验证基于单实验室测量的碰撞横截面(CCS)数据库以扩展其在峰值注释中的使用。这项工作解决了类固醇的第一个全面(CCSN2)-C-TW数据库的验证。首先,评估其长期稳健性(即,数据库生成后的一半和一半; Synapt G2-S仪器; +/- 1.0%的偏差157离子,总离子的95.7%)。它进一步通过三个外部实验室交叉验证,包括两个不同的(IMS)-i-TW平台(即Synapt G2-Si和两个ViON IMS QTOF;阈值在+/- 2.0%的阈值内为98.8,79.9,每个仪器检测到的总离子的94.0%)。最后,为87类固醇(142离子)构建了跨实验室(CCSN2)-C-TW数据库。跨实验室数据库由四次测量中的四个TwiMS仪器获得的平均值(CCSN2)-C-TW值组成。通常,当跨实验室数据库应用于作为参考而不是单实验室数据库时,在(CCSN2)-C-TW测量和参考值之间观察到较低的偏差。观察到低于1.5%的相对标准偏差对于互上标准测量(85.2%的离子)和平均值之间的偏差和(CCSN2)-C-TW测量的偏差在+/- 1.5%的范围内为96.8%案例。在该互上研究的背景下,该阈值也适用于CCS M在小牛尿液中的类固醇代谢物测量。对于成人牛的复杂尿液样本中的类固醇硫酸盐观察到更大的偏差,显示出轻微的基质效应。还讨论了在峰值注释中应用CCS描述符的评分系统的实现。

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