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首页> 外文期刊>Journal of separation science. >Applicability of alkyl-bonded ultra-pure silica stationary phases for gradient reversed-phase HPLC of folates with conventional and volatile buffers under highly aqueous conditions
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Applicability of alkyl-bonded ultra-pure silica stationary phases for gradient reversed-phase HPLC of folates with conventional and volatile buffers under highly aqueous conditions

机译:烷基键合的超纯二氧化硅固定相在高水性条件下用于常规和挥发性缓冲液的叶酸梯度反相HPLC的适用性

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Applicability of several alkyl-bonded silica stationary phases was tested for gradient RP-HPLC of folates tinder highly aqueous conditions. High retention of folates was achieved on alternative phases with enhanced polarity and classical phases with higher carbon content. Phases exhibiting polar secondary interactions were found to provide better selectivity for late-eluting folates, whereas selectivity for early-eluting folates was mostly dependent on hydrophobic interactions. Best selectivity in phosphate buffered mobile phase was achieved on polar-endcapped silica phases (Aquasil C18 and HyPurity Aquastar) followed by alternative Atlantis dC18. Classical phases exhibited poorer separation of 10-formyl-folic acid and 5-formyl-tetrahydro-folate, but it could be considerably improved by increasing the buffer pH. Strong secondary interactions of ion-exchange character on polar-embedded phases resulted in marked peak deterioration, loss of recovery and dramatic changes in retention behaviour for early- and late-eluting folates when changing the mobile phase composition and pH. Therefore, polar-embedded phases such as HyPurity Advance were found to be unsuitable for separating folates. Stationary phases exhibited peak deterioration when using volatile buffer of low ionic strength. Better results were obtained with classical phases, whereas alternative phases showed not only peak deterioration but also a decrease in recovery and poorer selectivity due to increased secondary interactions in volatile buffer.
机译:测试了几种烷基键合的硅胶固定相在叶酸温和高水性条件下的梯度RP-HPLC的适用性。在极性增强的替代相和碳含量更高的经典相中,叶酸的保留率很高。发现表现出极性二次相互作用的相为晚期洗脱的叶酸提供了更好的选择性,而早期洗脱的叶酸的选择性主要取决于疏水相互作用。在极性封端的硅胶相(Aquasil C18和HyPurity Aquastar)上,然后是替代的Atlantis dC18,在磷酸盐缓冲流动相中实现了最佳选择性。经典相显示10-甲酰基-叶酸和5-甲酰基-四氢-叶酸的分离较差,但可以通过提高缓冲液pH值明显改善。当改变流动相的组成和pH值时,极性包埋相上离子交换特性的强次生相互作用导致明显的峰变差,恢复损失以及早期和晚期洗脱叶酸的保留行为发生显着变化。因此,发现极性嵌入相(例如HyPurity Advance)不适合分离叶酸。当使用低离子强度的挥发性缓冲剂时,固定相表现出峰衰减。经典相获得了更好的结果,而替代相不仅显示出峰变差,而且由于挥发性缓冲液中二级相互作用的增加,回收率下降,选择性降低。

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