Research Center of Henan Provincial Agricultural Biomass Resource Engineering and Technology, College of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang, 473061, China.
Research Center of Henan Provincial Agricultural Biomass Resource Engineering and Technology, College of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang, 473061, China.
J Chromatogr A. 2022 Aug 16;1678:463359. doi: 10.1016/j.chroma.2022.463359. Epub 2022 Jul 23.
The preparative separation of guanosine 5'-monophosphate (GMP) and cytidine 5'-monophosphate (CMP) on mixed-mode resin HD-1 was experimentally and theoretically investigated. The adsorption mechanisms of the two nucleotides were elucidated by analyzing adsorption equilibria and kinetics at different pH values. The adsorption dynamics of GMP and CMP in a fixed bed packed with resin HD-1 were studied. All nucleotide monovalent cations, zwitterions, and monovalent anions were adsorbed by the resin. Further, a general adsorption isotherm model was developed by considering the adsorption of different nucleotide species and the dissociation equilibrium behaviors of resin ligands. The model fit the adsorption isotherm data of GMP and CMP well. A modified liquid-film linear driving force model with the combined physical adsorption of nucleotides in different dissociation states and ion exchange of Na was established. The dissociation equilibria of resin ligands and nucleotides were considered. The model satisfactorily predicted the adsorption kinetic data at different pH values. The values of the efficient diffusion coefficients for GMP and CMP were not significantly influenced by the solution pH. A modified transport-diffusion model with pH gradient elution was proposed. The model accurately predicted the elution chromatographic peaks of GMP and CMP, as well as the pH at the outlet of the fixed bed packed with resin HD-1.
混合模式树脂 HD-1 上鸟苷 5'-单磷酸 (GMP) 和胞苷 5'-单磷酸 (CMP) 的制备性分离进行了实验和理论研究。通过分析不同 pH 值下的吸附平衡和动力学,阐明了两种核苷酸的吸附机制。研究了填充树脂 HD-1 的固定床中 GMP 和 CMP 的吸附动力学。所有核苷酸单价阳离子、两性离子和单价阴离子都被树脂吸附。此外,通过考虑不同核苷酸物种的吸附和树脂配体的离解平衡行为,开发了一个通用的吸附等温线模型。该模型很好地拟合了 GMP 和 CMP 的吸附等温线数据。建立了一个改进的液膜线性驱动力模型,其中考虑了不同离解状态的核苷酸的物理吸附和 Na 的离子交换。考虑了树脂配体和核苷酸的离解平衡。该模型很好地预测了不同 pH 值下的吸附动力学数据。GMP 和 CMP 的有效扩散系数值受溶液 pH 值的影响不大。提出了一种带有 pH 梯度洗脱的改进传输扩散模型。该模型准确地预测了 GMP 和 CMP 的洗脱色谱峰以及填充树脂 HD-1 的固定床出口处的 pH 值。