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Derringer desirability and kinetic plot LC-column comparison approach for MS-compatible lipopeptide analysis

机译:Derringer的可取性和动力​​学图LC列比较方法用于MS兼容的脂肽分析

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摘要

Lipopeptides are currently re-emerging as an interesting subgroup in the peptide research field, having historical applications as antibacterial and antifungal agents and new potential applications as antiviral, antitumor, immune-modulating and cell-penetrating compounds. However, due to their specific structure, chromatographic analysis often requires special buffer systems or the use of trifluoroacetic acid, limiting mass spectrometry detection. Therefore, we used a traditional aqueous/acetonitrile based gradient system, containing 0.1% (m/v) formic acid, to separate four pharmaceutically relevant lipopeptides (polymyxin B1, caspofungin, daptomycin and gramicidin A1), which were selected based upon hierarchical cluster analysis (HCA) and principal component analysis (PCA).In total, the performance of four different C18 columns, including one UPLC column, were evaluated using two parallel approaches. First, a Derringer desirability function was used, whereby six single and multiple chromatographic response values were rescaled into one overall D-value per column. Using this approach, the YMC Pack Pro C18 column was ranked as the best column for general MS-compatible lipopeptide separation. Secondly, the kinetic plot approach was used to compare the different columns at different flow rate ranges. As the optimal kinetic column performance is obtained at its maximal pressure, the length elongation factor λ (Pmax/Pexp) was used to transform the obtained experimental data (retention times and peak capacities) and construct kinetic performance limit (KPL) curves, allowing a direct visual and unbiased comparison of the selected columns, whereby the YMC Triart C18 UPLC and ACE C18 columns performed as best. Finally, differences in column performance and the (dis)advantages of both approaches are discussed.
机译:脂肽目前正在作为肽研究领域中一个有趣的亚组重新出现,具有抗菌和抗真菌剂的历史应用,以及抗病毒,抗肿瘤,免疫调节和细胞穿透性化合物的新潜在应用。但是,由于其特殊的结构,色谱分析通常需要特殊的缓冲液系统或使用三氟乙酸,这限制了质谱检测。因此,我们使用了传统的基于水/乙腈的梯度系统,其中含有0.1%(m / v)的甲酸,以分离出四种药物相关的脂肽(多粘菌素B1,卡泊芬净,达托霉素和短杆菌肽A1),它们是根据层次聚类分析选择的(HCA)和主成分分析(PCA)。总体而言,使用两种并行方法评估了四种不同的C18色谱柱(包括一根UPLC色谱柱)的性能。首先,使用Derringer合意函数,从而将六个单色谱和多个色谱响应值重新缩放为每列一个总D值。使用这种方法,YMC Pack Pro C18色谱柱被评为常规MS兼容脂肽分离的最佳色谱柱。其次,使用动力学图方法比较了不同流速范围内的不同色谱柱。由于在最大压力下获得了最佳的动力学色谱柱性能,因此使用长度延伸因子λ(Pmax / Pexp)转换获得的实验数据(保留时间和峰容量)并构建动力学性能极限(KPL)曲线,从而获得直接可视化和无偏比较所选色谱柱,其中YMC Triart C18 UPLC和ACE C18色谱柱表现最佳。最后,讨论了色谱柱性能的差异以及两种方法的(缺点)优势。

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