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Advancing Target Identification of Nitrated Phospholipids in Biological Systems by HCD Specific Fragmentation Fingerprinting in Orbitrap Platforms

机译:通过Orbitrap平台中的HCD特异性片段指纹技术推进生物系统中硝化磷脂的目标识别

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摘要

Nitrated phospholipids have recently been detected and and associated with beneficial health effects. They were identified and quantified in biological samples by lipidomics methodologies using liquid chromatography-collision-induced dissociation (CID) tandem mass spectrometry (MS/MS) acquired with the linear ion trap mass spectrometer. Only a few studies have used higher-energy collision dissociation (HCD)-MS/MS in high-resolution Orbitraps to characterize nitrated phosphatidylserines and nitrated cardiolipins, highlighting the marked differences in the fragmentation patterns when using CID or HCD fragmentation methods. In this study, we aimed to evaluate the fragmentation of nitrated phosphatidylcholine and nitrated phosphatidylethanolamine species under HCD-MS/MS. We studied the effect of normalized collision energy (NCE) in the fragmentation pattern to identify the best acquisition conditions and reporter ions to detect nitrated phospholipids. The results showed that the intensity of the typical neutral loss of nitrous acid (HNO ) diminishes with increasing NCE, becoming non-detectable for a higher NCE. Thus, the loss of HNO could not be the most suitable ion/fragment for the characterization of nitrated phospholipids under HCD. In HCD-MS/MS new fragment ions were identified, corresponding to the nitrated fatty acyl chains, NO -RCOO , (NO -RCOOH-H O + H) , and (NO -RCOOH + H) , suggested as potential reporter ions to detect nitrated phospholipids when using the HCD-MS/MS lipidomics analysis.
机译:硝化磷脂最近已被发现,并与有益健康的影响有关。通过脂质组学方法,使用线性离子阱质谱仪获得的液相色谱-碰撞诱导解离(CID)串联质谱(MS / MS),通过生物组学方法对它们进行了鉴定和定量。只有少数研究在高分辨率Orbitraps中使用了高能碰撞解离(HCD)-MS / MS来表征硝化的磷脂酰丝氨酸和硝化的心磷脂,突出了使用CID或HCD裂解方法时裂解模式的显着差异。在这项研究中,我们旨在评估在HCD-MS / MS下硝化磷脂酰胆碱和硝化磷脂酰乙醇胺的裂解情况。我们研究了在碎片模式中归一化碰撞能量(NCE)的影响,以确定最佳的采集条件和报告离子来检测硝酸化的磷脂。结果表明,随着NCE的增加,典型的中性亚硝酸损失(HNO)的强度​​减小,对于更高的NCE变得不可检测。因此,HNO的损失可能不是最适合表征HCD下硝化磷脂的离子/片段。在HCD-MS / MS中,发现了新的碎片离子,分别对应于硝化的脂肪酰基链NO -RCOO,(NO -RCOOH-HO + H)和(NO -RCOOH + H),被认为是潜在的报告离子使用HCD-MS / MS脂质组学分析法检测硝酸盐化的磷脂

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