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首页> 外文期刊>Chromatographia >Influence of Solvent Additive Composition on Chromatographic Separation and Sodium Adduct Formation of Peptides in HPLC–ESI MS
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Influence of Solvent Additive Composition on Chromatographic Separation and Sodium Adduct Formation of Peptides in HPLC–ESI MS

机译:溶剂添加剂组成对HPLC-ESI MS中肽段的色谱分离和钠加合物形成的影响

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Mobile phase additives have a strong influence on sensitivity and spectral quality when HPLC is coupled to mass spectrometry. They may cause ion suppression, as frequently observed with trifluoroacetic acid, or may lead to increased adduct formation, complicating data analysis and interfering with automated LC–MS–MS analysis. When reversed-phase HPLC is performed under neutral conditions, ammonium acetate is the additive of choice because of its volatility. Because of the limited solubility of ammonium acetate in commonly employed organic solvents like acetonitrile usually a small amount of water is added for dissolution, and in addition, acetic acid can be added to obtain a buffered system. We compared six different acetonitrile/ammonium acetate blends, differing in their water and acetic acid content and evaluated their performance for HPLC–MS analysis of model peptides (bradykinins) under neutral conditions. The results demonstrate that mobile phase preparation strongly influences chromatographic separation and adduct formation in electrospray ionization MS, as shown for a series of bradykinin peptides. By varying the solvent composition only slightly to influence the pH curves during gradient elution, three nearly coeluting peptides could be baseline separated. At the same time, the formation of sodiated instead of protonated peptides was found to vary by up to a factor of four, depending on the preparation of the solvent blends.
机译:当HPLC与质谱联用时,流动相添加剂对灵敏度和光谱质量有很大影响。它们可能会导致离子抑制(通常在三氟乙酸中观察到),或者可能导致加合物形成增加,从而使数据分析复杂化并干扰自动LC-MS-MS分析。当在中性条件下进行反相HPLC时,乙酸铵是挥发性的,因此是首选的添加剂。由于乙酸铵在常用的有机溶剂(如乙腈)中的溶解度有限,通常会添加少量水进行溶解,此外,还可添加乙酸以获得缓冲系统。我们比较了六种不同的乙腈/乙酸铵混合物,它们的水和乙酸含量不同,并评估了它们在中性条件下对模型肽(缓激肽)进行HPLC-MS分析的性能。结果表明,流动相的制备强烈影响电喷雾电离质谱仪中的色谱分离和加合物形成,如一系列缓激肽所显示的那样。通过仅稍微改变溶剂组成以影响梯度洗脱过程中的pH曲线,可以将三种几乎共洗脱的肽进行基线分离。同时,根据溶剂混合物的制备,发现磺化而不是质子化的肽的形成最多相差四倍。

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