首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Detection of 1 zmol injection of angiotensin using capillary zone electrophoresis coupled to a Q-Exactive HF mass spectrometer with an electrokinetically pumped sheath-flow electrospray interface
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Detection of 1 zmol injection of angiotensin using capillary zone electrophoresis coupled to a Q-Exactive HF mass spectrometer with an electrokinetically pumped sheath-flow electrospray interface

机译:使用电动泵浦鞘流电流界面的毛细管区电泳检测1 Zmorensin的血管紧张素注射血管紧张素注入血管紧张素

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An electrokinetically pumped sheath-flow nanoelectrospray interface provides an efficient means of transferring ions from a capillary electrophoresis system into a mass spectrometer. To characterize its performance, we analyzed angiotensin solutions prepared in a background of 0.25 mg/mL of a BSA tryptic digest. Calibration curves were prepared from 10 zmol (10(-2)1 mol) to 10 fmol (10(-1)4 mol) of angiotensin injected into the capillary. A parallel reaction monitoring approach was used; MS1 was set to m/z = 523.8 +/- 2, and fragment ion signals at 263.1389 (y(2+)) and 784.4095 (b(6+)) were used to generate selected ion electropherograms. Calibration curves based on peak areas were linear (log-log slope of 0.94 for the y(2+) fragment and 0.98 for the b(6+) fragment). We then injected 1-zmol (600 copies) of angiotensin in the BSA background using a 10- mu m ID separation capillary. Triplicate analyses consistently produced co-migrating peaks for the two fragment ions. The b(6+) electropherogram showed no background signal, whereas the y(2+) electropherogram showed a few noise spikes that were smaller than the peak maximum. Bienayme-Tchebycheff inequality was used to estimate detection limits of 230 ymol (140 ions) injected into the separation capillary. To the best of our knowledge, these electropherograms present the smallest number of molecules detected using mass spectrometry coupled with a separation.
机译:电动泵浦的护套流动纳米电泵接口提供从毛细管电泳系统转移离子的有效手段到质谱仪中。为了表征其性能,我们分析了在0.25mg / ml的BSA胰蛋白酶消化的背景下制备的血管紧张素溶液。将校准曲线从10个Zmol(10(-2)1mol)至10个Fmol(10(-1)4mol)注射到毛细管中的血管紧张素中制备。使用平行反应监测方法; MS1被设定为M / Z = 523.8 +/- 2,并且在263.1389(Y(2+))和784.4095(B(6+))的片段离子信号用于产生所选的离子电泳图。基于峰面积的校准曲线是线性的(对于Y(2+)片段为0.94的对数斜率,B(6+)片段为0.98)。然后,我们使用10-MU M ID分离毛细管在BSA背景中注入1-Zmol(600份)的血管紧张素。一式三份分析始终生产两个片段离子的共迁移峰。 B(6+)电泳图显示无背景信号,而Y(2+)电泳图显示出小于最大峰值的几个噪声尖峰。 Bienayme-Tchebycheff不等式用于估计230 ymol(140离子)注入分离毛细管的检测限。据我们所知,这些电泳图呈现了使用与分离相结合的质谱法检测的最小数量的分子。

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