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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Improving sensitivity for the targeted LC-MS/MS analysis of the peptide bradykinin using a design of experiments approach
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Improving sensitivity for the targeted LC-MS/MS analysis of the peptide bradykinin using a design of experiments approach

机译:使用实验方法设计提高靶LC-MS / MS分析的敏感性

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摘要

The nonapeptide bradykinin is endogenously present only in low picomolar plasma concentrations, subsequently making reliable detection using liquid chromatography coupled to mass spectrometry (LC-MS/MS) challenging. Furthermore, non-specific adsorption during sample preparation and storage can lead to unpredictable peptide losses. To overcome these issues, a design of experiments (DoE) approach was applied, which consisted of a screening to identify impacting factors, optimisation and confirmation runs. On the one hand, different injection solvent compositions and sample collection materials were investigated in order to decrease non-specific adsorption. On the other hand, the addition of modifiers, which are known to enhance the signal intensity in LC-MS/MS, to the chromatographic mobile phase was examined. Polypropylene was the most suitable material among those investigated and resulted in a factor increase of 12.0 compared to LC-MS glass. The advantages of protein low-binding polypropylene versus standard polypropylene were fully compensated by the optimisation of the injection solvent. The latter substantially contributed to a decrease of non-specific adsorption of bradykinin. In this regard, bradykinin further benefitted from an organic fraction and a high amount of formic acid. Based on the DoE results, the final optimised injection solvent-consisting of 8.7% formic acid in 49.4/5.3/36.6 water/methanol/dimethyl sulfoxide (v/v/v)-was established. Furthermore, optimisation of the mobile phase composition yielded a signal intensity increase by a factor of 7.7. The transferability of the optimisation results conducted in neat solutions were successfully confirmed in human plasma. The applicability of this approach was further supported by the successful determination of low-abundance endogenous bradykinin levels in human plasma using LC-MS/MS.
机译:非肽Bradykinin仅在低皮质摩尔血浆浓度下内源地存在,随后使用液相色谱法进行可靠的检测,偶联至质谱(LC-MS / MS)具有挑战性。此外,样品制备和储存期间的非特异性吸附可以导致不可预测的肽损失。为了克服这些问题,应用了实验(DOE)方法的设计,该方法包括筛选,以确定影响因素,优化和确认运行。一方面,研究了不同的注射溶剂组合物和样品收集材料以降低非特异性的吸附。另一方面,检查了已知改性剂,其已知提高LC-MS / MS中的信号强度,以对色谱流动相移至色谱流动相。聚丙烯是研究中最合适的材料,并导致与LC-MS玻璃相比增加12.0的因子。通过注射溶剂的优化完全补偿蛋白质低结合聚丙烯与标准聚丙烯的优点。后者基本上有助于降低Bradykinin的非特异性吸附。在这方面,Bradykinin进一步受益于有机级分和大量的甲酸。基于DOE结果,在49.4 / 5.3 / 36.6水/甲醇/二甲基亚甲醚(v / v / v)-was中,由8.7%的甲酸组成的最终优化的注射溶剂组成。此外,流动相组合物的优化产生信号强度增加7.7。在纯溶液中进行的优化结果的可转移性在人血浆中成功证实。通过LC-MS / MS成功测定人血浆中的低丰度内源性Bradykinin水平进一步支持这种方法的适用性。

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