Australian Research Council Special Research Centre for Green Chemistry, Monash University, Clayton, Victoria 3800, Australia.
J Chromatogr A. 2011 Nov 4;1218(44):8021-6. doi: 10.1016/j.chroma.2011.09.009. Epub 2011 Sep 9.
The application of a silica hydride modified stationary phase with low organic loading has been investigated as a new type of chromatographic material suitable for the separation and analysis of peptides with electrospray ionization mass spectrometric detection. Retention maps were established to delineate the chromatographic characteristics of a series of peptides with physical properties ranging from strongly hydrophobic to very hydrophilic and encompassing a broad range of pI values (pI 5.5-9.4). The effects of low concentrations of two additives (formic acid and acetic acid) in the mobile phase were also investigated with respect to their contribution to separation selectivity and retention under comparable conditions. Significantly, strong retention of both the hydrophobic and the hydrophilic peptides was observed when high-organic low-aqueous mobile phases were employed, thus providing a new avenue to achieve high resolution peptide separations. For example, simultaneous separation of hydrophobic and hydrophilic peptides was achieved under aqueous normal phase (ANP) chromatographic conditions with linear gradient elution procedures in a single run, whilst further gradient optimization enabled improved peak efficiencies of the more strongly retained hydrophobic and hydrophilic peptides.
已研究了低有机负荷的硅氢化物改性固定相在适用于具有电喷雾电离质谱检测的肽的分离和分析的新型色谱材料中的应用。建立保留图以描绘一系列具有从强疏水性到非常亲水性和包含广泛等电点(pI 5.5-9.4)的物理性质的肽的色谱特征。还研究了在流动相中添加低浓度的两种添加剂(甲酸和乙酸)对在可比条件下的分离选择性和保留的影响。值得注意的是,当使用高有机低水流动相时,观察到疏水性和亲水性肽的强保留,从而提供了实现高分辨率肽分离的新途径。例如,在单次运行中,通过线性梯度洗脱程序,在水相正相(ANP)色谱条件下同时实现疏水性和亲水性肽的分离,而进一步的梯度优化则使疏水性和亲水性肽的保留更强烈的峰效率得到提高。