Purdue University Department of Chemistry, West Lafayette, Indiana 47907, United States.
Anal Chem. 2017 Aug 1;89(15):8148-8155. doi: 10.1021/acs.analchem.7b01963. Epub 2017 Jul 12.
In this follow-up paper to our previous work on single analyzer precursor ion scans in a linear quadrupole ion trap (Snyder, D. T.; Cooks, R. G. Single analyzer precursor ion scans in a linear quadrupole ion trap using orthogonal double resonance excitation. J. Am. Soc. Mass Spectrom. 2017, DOI: 10.1007/s13361-017-1707-y), we now report the development of single analyzer neutral loss scans in a linear quadrupole ion trap using orthogonal double resonance excitation. Methodologically, there are three key differences between single analyzer precursor ion scans and neutral loss scans under constant radiofrequency (rf) conditions: (1) in the latter experiment, both excitation and ejection frequencies must be scanned, whereas in the former the ejection frequency is fixed, (2) the need to maintain a constant neutral loss while incrementing both precursor and product ion masses, complicated by the complex relationship between secular frequency and mass, requires use of two simultaneous frequency scans, both linear in mass, and (3) because the ejection frequency is scanned, a third ac signal occurring between the ac excitation and ac ejection frequency scans must also be applied and scanned in order to reject artifact peaks caused by ejection of unfragmented precursor ions. Using this methodology, we demonstrate neutral loss scans on a commercial linear ion trap using mixtures of illicit drugs and acylcarnitines. We also demonstrate neutral loss scanning on a Populus deltoides leaf and on a lignin sample, both significantly more complex mixtures.
在我们之前关于线性四极离子阱中单分析器前体离子扫描的工作的后续论文中,我们现在报告了使用正交双共振激发在线性四极离子阱中进行单分析器中性丢失扫描的发展。在方法上,在恒定射频 (rf) 条件下,单分析器前体离子扫描和中性丢失扫描有三个关键区别:(1)在后一个实验中,必须同时扫描激发和引出频率,而在前一个实验中,引出频率是固定的,(2) 必须在同时增加前体离子和产物离子质量的同时保持恒定的中性丢失,这由于 secular 频率和质量之间的复杂关系而变得复杂,需要使用两个同时的频率扫描,这两个频率扫描在质量上都是线性的,(3) 由于引出频率被扫描,为了消除由于未碎片化的前体离子引出而产生的伪峰,还必须施加和扫描第三个在 ac 激发和 ac 引出频率扫描之间发生的 ac 信号。使用这种方法,我们在商业线性离子阱上使用非法药物和酰基辅酶混合物演示了中性丢失扫描。我们还在白杨树叶片和木质素样品上演示了中性丢失扫描,这两种混合物都更加复杂。