首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Implementation of dipolar direct current (DDC) collisioninduced dissociation in storage and transmission modes on a quadrupole/time-of-flight tandem mass spectrometer
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Implementation of dipolar direct current (DDC) collisioninduced dissociation in storage and transmission modes on a quadrupole/time-of-flight tandem mass spectrometer

机译:在四极杆/飞行时间串联质谱仪上以存储和传输模式实现偶极直流(DDC)碰撞诱导的解离

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Means for effecting dipolar direct current collision-induced dissociation (DDC CID) on a quadrupole/time-of-flight in a mass spectrometer have been implemented for the broadband dissociation of a wide range of analyte ions. The DDC fragmentation method in electrodynamic storage and transmission devices provides a means for inducing fragmentation of ions over a large mass-to-charge range simultaneously. It can be effected within an ion storage step in a quadrupole collision cell that is operated as a linear ion trap or as ions are continuously transmitted through the collision cell. A DDC potential is applied across one pair of rods in the quadrupole collision cell of a QqTOF hybrid mass spectrometer to effect fragmentation. In this study, ions derived from a small drug molecule, a model peptide, a small protein, and an oligonucleotide were subjected to the DDC CID method in either an ion trapping or an ion transmissionmode (or both). Several key experimental parameters that affect DDC CID results, such as time, voltage, low mass cutoff, and bath gas pressure, are illustrated with protonated leucine enkephalin. The DDC CID dissociation method gives a readily tunable, broadband tool for probing the primary structures of a wide range of analyte ions. The method provides an alternative to the narrow resonance conditions of conventional ion trap CID and it can access more extensive sequential fragmentation, depending upon conditions. The DDC CID approach constitutes a collision analog to infrared multiphoton dissociation (IRMPD).
机译:已经实现了在质谱仪中在四极杆/飞行时间上实现偶极直流碰撞诱导解离(DDC CID)的手段,用于宽范围的分析物离子的宽带解离。电动存储和传输设备中的DDC碎裂方法提供了一种在较大的质荷范围内同时诱导离子碎裂的方法。它可以在四极碰撞池中的离子存储步骤中实现,该碰撞池作为线性离子阱运行,或者当离子连续传输通过碰撞池时。在QqTOF混合质谱仪的四极碰撞池中的一对杆之间施加DDC电势,以实现碎片化。在这项研究中,对源自药物小分子,模型肽,蛋白质小分子和寡核苷酸的离子,采用离子捕获或离子传输模式(或两者)进行DDC CID方法。质子化亮氨酸脑啡肽说明了影响DDC CID结果的几个关键实验参数,例如时间,电压,低质量截止值和浴气压力。 DDC CID解离方法提供了一种易于调试的宽带工具,可用于探测各种分析物离子的主要结构。该方法为常规离子阱CID的窄共振条件提供了一种替代方法,根据条件,它可以进行更广泛的顺序裂解。 DDC CID方法构成了类似于红外多光子离解(IRMPD)的碰撞模拟。

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