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Influence of pressure and temperature on molar volume and retention properties of peptides in ultra-high pressure liquid chromatography

机译:压力和温度对超高压液相色谱中肽的摩尔体积和保留特性的影响

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摘要

In this study, pressure induced changes in retention were measured for model peptides possessing molecular weights between ∼1 and ∼4 kDa. The goal of the present work was to evaluate if such changes were only attributed to the variation of molar volume and if they could be estimated prior to the experiments, using theoretical models. Restrictor tubing was employed to generate pressures up to 1000 bar and experiments were conducted for mobile phase temperatures comprised between 30 and 80 °C. As expected, the retention increases significantly with pressure, up to 200% for glucagon at around 1000 bar compared to ∼100 bar. The obtained data were fitted with a theoretical model and the determination coefficients were excellent (r2 > 0.9992) for the peptides at various temperatures. On the other hand, the pressure induced change in retention was found to be temperature dependent and was more pronounced at 30 °C vs. 60 or 80 °C. Finally, using the proposed model, it was possible to easily estimate the pressure induced increase in retention for any peptide and mobile phase temperature. This allows to easily estimating the expected change in retention, when increasing the column length under UHPLC conditions.
机译:在这项研究中,测量了分子量在约1-4 kDa之间的模型肽的压力诱导的保留变化。本工作的目的是使用理论模型评估这种变化是否仅归因于摩尔体积的变化以及是否可以在实验之前进行估算。使用限流器管产生高达1000 bar的压力,并对流动相温度在30至80°C之间进行了实验。正如预期的那样,保留压力随压力显着增加,胰高血糖素在约1000 bar时可达到200%,而约100 bar。所获得的数据符合理论模型,并且在不同温度下该肽的测定系数均极佳(r2> 0.9992)。另一方面,发现压力引起的保持力变化与温度有关,并且在30°C与60或80°C时更为明显。最后,使用提出的模型,可以容易地估计压力诱导的任何肽段和流动相温度的保留增加量。当在UHPLC条件下增加色谱柱长度时,这可以轻松估计保留的预期变化。

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