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Insight into the retention processes of phthalate metabolites on different liquid chromatography stationary phases for the development of improved separation methods

机译:洞察邻苯二甲酸酯代谢物在不同液相色谱固定相上的保留过程,以开发改进的分离方法

摘要

The retention behavior of nine MPAEs has been studied, using commercial LC columns with octadecylsilane (ODS), phenyl, and amide-type SPs. First, it was found that the use of methanol in the mobile phase is not advisable, because induce a transesterification reaction of MPAEs in the electrospray ion source, regardless of the SP used. On the other hand, different responses were observed when representing the logarithm of retention factors (k) vs. the volume fraction of ACN (φ) in the mobile phase, for the three SPs tested. A quite linear trend was obtained for ODS (at φ values below 0.80) and Phenyl columns. On the contrary, the Amide column shows a striking U-shape trend, typical of both hydrophobic and hydrophilic retention mechanisms. Therefore, the separation process was mainly hydrophobic in the ODS and phenyl SPs, but in the amide-type a dual retention mechanism was found, showing zones with predominant hydrophobic or hydrophilic interactions, depending on both the compound and the experimental conditions. A high content of acetonitrile (>75%) and low concentration of formic acid in the mobile phase promote the hydrophilic separation mechanism for MPAEs on the amide SP. So, this dual separation mechanism can be modulated modifying the pH and content of organic modifier in the mobile phase, allowing greater flexibility to develop improved methods. Taking advantage of this, a separation method was optimized in this amide column using a Box–Wilson Central Composite experimental design, which allows separating the studied MPAEs with a time-saving of around 40% comparing to the conventional phenyl SP.
机译:已使用带有十八烷基硅烷(ODS),苯基和酰胺型SP的商业LC色谱柱研究了九种MPAE的保留行为。首先,发现不建议在流动相中使用甲醇,因为无论使用何种SP,在电喷雾离子源中都会引起MPAE的酯交换反应。另一方面,对于三种测试的SP,当代表保留因子(k)相对于ACN体积分数(φ)的对数时,观察到不同的响应。 ODS(φ值低于0.80)和苯基色谱柱获得了线性趋势。相反,酰胺柱显示出明显的U形趋势,这是疏水和亲水保留机制的典型特征。因此,在ODS和苯基SP中,分离过程主要是疏水的,但是在酰胺型中,发现了双重保留机制,显示出具有主要疏水或亲水相互作用的区域,这取决于化合物和实验条件。乙腈中高含量的乙腈(> 75%)和低浓度的甲酸促进了MPAE在酰胺SP上的亲水分离机理。因此,可以调节这种双重分离机制,从而改变流动相中的pH值和有机改性剂的含量,从而为开发改进的方法提供了更大的灵活性。利用这一优势,使用Box-Wilson Central Composite实验设计在该酰胺柱中优化了分离方法,与传统的苯基SP相比,该方法可分离研究的MPAE,节省时间约40%。

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