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Chiral Differentiation of Amino Acids by In-Source Collision-Induced Dissociation Mass Spectrometry

机译:源碰撞诱导的解离质谱法氨基酸的手性分化

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Chiral recognition of D- and L-amino acids is achieved by a method combining electrospray ionization (ESI) and in-source collision-induced dissociation (CID) mass spectrometry (MS). Trimeric cluster ions [Cu~(II)(A)(ref)_(2)-H]~(+) are formed by ESI of mixtures of D- or L-analyte amino acid (A), chiral reference (ref) and CuSO_(4). By increasing the applied voltage in the ESI source region, the trimeric ions become unstable and dissociate progressively. Thus chiral differentiation of the analyte can be achieved by comparing the dependence of their relative intensities to a reference ion on applied voltages. The method does not need MS/MS technique, thus can be readily performed on single-stage MS instruments by turning the voltage of sampling cone.
机译:通过组合电喷雾电离(ESI)和源极碰撞诱导的解离(CID)质谱(MS)的方法实现了D-和L-氨基酸的手性识别。三聚簇离子[Cu〜(II)(A)(Ref)_(2)-H]〜(+)由D-或L-分析物氨基酸(A)的混合物ESI,手性参考(REF)形成和cuso_(4)。通过增加ESI源区中的施加电压,三聚体离子变得不稳定并逐渐解散。因此,通过将它们的相对强度与施加电压上的参考离子的依赖性进行比较,可以实现分析物的手性分化。该方法不需要MS / MS技术,因此可以通过转动采样锥的电压在单级MS仪器上容易地执行。

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