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High-performance liquid chromatography analysis of fatty acids and mathematical modeling of liquid chromatography.

机译:脂肪酸的高效液相色谱分析和液相色谱的数学模型。

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The purposes of this study are to develop a process to analyze fatty acids in recombinant animal cells using reversed-phase chromatography and simulate liquid chromatography processes using the general rate model.; A method was developed for the separation and analysis of various fatty acids in recombinant animal cells. The cell sample was saponified with 0.5M NaOH in 96% ethanol and then extracted with acidified ethyl acetate. After extraction, the sample was dried and dissolved in HPLC-grade methanol. After centrifugation to remove insoluble impurities, the sample was applied to a C18 RP-HPLC column to separate and identify fatty acids using a gradient ACN-H 2O mobile phase. The fatty acids were monitored by measuring ultraviolet light absorption at 195 nm and identified by retention time and adsorption spectrum comparison. This method successfully resolves these fatty acids and can be used either analytically or preparatively. The fatty acids separation and analysis process developed in this work can be adapted to quantitatively analyze fatty acids from other sources.; The general rate model was used to simulate liquid chromatography processes. Two kinds of liquid chromatography processes were studied: size exclusion chromatography and reverse-phase chromatography. The effects of various parameters were analyzed using the mathematical model. Methods to estimate the model parameters and the procedures using the general rate model to simulate and predict the results of these two types of chromatography process were developed. For SEC, the particle tortuosity was used as an adjustable parameter while, for RP-HPLC, the eluite-modulator relationship parameter α was used as an adjustable parameter. The values of these two parameters were obtained by matching the model-predicted results and experimental results using trial and error method. The validity of these two simulation procedures was verified by the comparison between the model predictions and the experimental results for larger SEC and RP-HPLC columns. The simulation and scale-up strategies developed in this work can be used to facilitate the development and optimization of liquid chromatographic processes.
机译:本研究的目的是开发一种使用反相色谱法分析重组动物细胞中脂肪酸的方法,并使用通用速率模型模拟液相色谱法的方法。开发了一种用于分离和分析重组动物细胞中各种脂肪酸的方法。细胞样品用在96%乙醇中的0.5M NaOH皂化,然后用酸化的乙酸乙酯萃取。萃取后,将样品干燥并溶于HPLC级甲醇。离心去除不溶性杂质后,将样品上样至C18 RP-HPLC柱,使用ACN-H 2 O梯度流动相分离和鉴定脂肪酸。通过测量在195 nm处的紫外线吸收来监测脂肪酸,并通过保留时间和吸收光谱比较来鉴定。该方法可成功解析这些脂肪酸,可用于分析或制备。这项工作中开发的脂肪酸分离和分析过程可适用于定量分析其他来源的脂肪酸。一般速率模型用于模拟液相色谱过程。研究了两种液相色谱法:尺寸排阻色谱法和反相色谱法。使用数学模型分析了各种参数的影响。开发了使用通用速率模型来模拟和预测这两种色谱过程的结果的模型参数估计方法和程序。对于SEC,将颗粒曲折度用作可调参数,而对于RP-HPLC,将洗脱液-调节剂关系参数α用作可调参数。这两个参数的值是通过使用反复试验法将模型预测结果与实验结果相匹配而获得的。通过较大的SEC和RP-HPLC色谱柱的模型预测与实验结果之间的比较,验证了这两种模拟程序的有效性。在这项工作中开发的模拟和放大策略可用于促进液相色谱过程的开发和优化。

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