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使用 2μmID 开管柱在高温下进行液相色谱分离。

Liquid Chromatographic Separation Using a 2 μm i.d. Open Tubular Column at Elevated Temperature.

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, 101 Stephenson Parkway, Norman, Oklahoma 73019, United States.

出版信息

Anal Chem. 2021 Mar 16;93(10):4361-4364. doi: 10.1021/acs.analchem.1c00296. Epub 2021 Mar 1.

Abstract

We have experimentally demonstrated the extraordinarily high resolving power of liquid chromatography (LC) using a narrow open tubular (OT) column. In this work, we show that we can further increase its efficiency, peak capacity, and separation speed by elevating the operation (or column) temperature; all of these three numbers can be improved without mutual compromises. We use a mixture of five amino acids as a sample and show that we can increase the efficiency by 34%-260% and the separation speeds by 7%-10% by raising the operation temperature from 30 to 70 °C. When we use a 2 μm i.d. × 80 cm in length OT column coated with OTMS at a temperature of 70 °C, we can frequently obtain peak capacities of 700-800 within 20-30 min for separating cytochrome C digests. By increasing the column length to 160 cm, we can obtain a peak capacity of 2720 within 143 min for separating a complex peptide sample. This peak capacity is the highest peak capacity to date for one-dimensional LC separations. Importantly, heating the column is easy to implement and does not cost much, and many commercial LC systems already have compartments to control column temperatures. Running LC using a narrow OT column at an elevated temperature should broaden the applications of OT-LC in chemical and biochemical analyses.

摘要

我们通过使用窄内径开管柱(OT)实验证明了液相色谱(LC)极高的分辨率。在这项工作中,我们证明通过提高操作(或柱)温度可以进一步提高其效率、峰容量和分离速度;这三个数字都可以在不相互妥协的情况下提高。我们使用五种氨基酸混合物作为样品,结果表明,通过将操作温度从 30°C 提高到 70°C,可以将效率提高 34%-260%,分离速度提高 7%-10%。当我们在 70°C 下使用涂敷有 OTMS 的 2μm id.×80cm 长的 OT 柱时,我们可以经常在 20-30 分钟内获得分离细胞色素 C 消化物的峰容量为 700-800。通过将柱长增加到 160cm,我们可以在 143 分钟内获得 2720 的峰容量,用于分离复杂的肽样品。这一峰容量是目前一维 LC 分离的最高峰容量。重要的是,加热柱易于实现且成本不高,许多商业 LC 系统已经有控制柱温的隔室。在高温下使用窄内径 OT 柱运行 LC 应该会拓宽 OT-LC 在化学和生化分析中的应用。

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