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Influence of Solvent Composition and Surface Tension on the Signal Intensity of Amino Acids in Electrospray Ionization Mass Spectrometry

机译:电喷雾电离质谱中溶剂组成和表面张力对氨基酸信号强度的影响

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摘要

The influence of solvent composition and surface tension on the signal intensity of deprotonated molecules [M−H] in electrospray ionization mass spectrometry (ESI MS) was evaluated using alanine (Ala), threonine (Thr) and phenylalanine (Phe), which have differing levels of hydrophobicity. The surface tension of the ESI solution was varied by changing the ratio of the organic solvents methanol (MeOH) and acetonitrile (MeCN) in water (H O). In ESI MS, the signal intensity of all the amino acids was increased with decreasing surface tension for the two solutions, H O/MeOH and H O/MeCN. The use of H O/MeCN was more favorable for achieving a strong signal for the analytes compared to H O/MeOH. The smaller vaporization enthalpy of MeCN compared to MeOH was proposed as one of the most plausible explanation for this. The order of the signal intensity of amino acids was Phe>Thr>Ala, the same order as their hydrophobicity. It can be practically concluded that the use of solutions with lower surface tensions and lower vaporization enthalpies would result in higher signal intensities in ESI MS.
机译:使用丙氨酸(Ala),苏氨酸(Thr)和苯丙氨酸(Phe)评估了电喷雾电离质谱(ESI MS)中溶剂组成和表面张力对去质子化分子[MH]信号强度的影响疏水性水平。通过改变有机溶剂甲醇(MeOH)和乙腈(MeCN)在水(H O)中的比例来改变ESI溶液的表面张力。在ESI MS中,两种溶液H O / MeOH和H O / MeCN的所有氨基酸的信号强度均随着表面张力的降低而增加。与H O / MeOH相比,使用H O / MeCN更有利于获得强分析物信号。有人提出,与MeOH相比,MeCN的蒸发焓更小,这可能是最合理的解释之一。氨基酸信号强度的顺序为Phe> Thr> Ala,与疏水性顺序相同。实际上可以得出结论,使用具有较低表面张力和较低蒸发焓的溶液将导致ESI MS中较高的信号强度。

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