Five tryptophan analogues with a hydrophobic indole ring and an amino group on each molecule were used as functional ligands of mixed-mode resins for human serum albumin(HSA) purification. Their adsorption performance...Five tryptophan analogues with a hydrophobic indole ring and an amino group on each molecule were used as functional ligands of mixed-mode resins for human serum albumin(HSA) purification. Their adsorption performance was evaluated and the effects of p H and salt addition on HSA adsorption were studied. The resins prepared showed typical p H-dependent adsorption and the highest adsorption capacity and affinity were found at pH 5.0for all the resins tested. The saturated adsorption capacity was 138.02 mg·g^(-1)with the tryptaminefunctionalized resin, which significantly decreased at p H below 4.0 due to electrostatic repulsion between ligands and HSA. Moreover, the addition of Na Cl or(NH_4)_2SO_4in media reduced HSA adsorption capacity, although the two salts showed different affecting profiles. The tryptamine-functionalized resin showed the best salt-tolerant performance, and its high adsorption capacity was maintained under high salt concentrations. In addition, the five resins prepared showed good adsorption selectivity for recombinant HSA from Pichia pastoris broth. Molecular docking results between tryptamine and HSA indicated that tryptamine was favorable to bind on Site II(indole-binding site) of HSA.展开更多
Frontal analysis is frequently applied to measuring single or multi-component adsorption isotherms. In this work, the competitive adsorption isotherm data of two enantiomers of tryptophan were obtained by competitive ...Frontal analysis is frequently applied to measuring single or multi-component adsorption isotherms. In this work, the competitive adsorption isotherm data of two enantiomers of tryptophan were obtained by competitive frontal analysis. The stationary phase in the column was silica-immobilized bovine serum albumin (BSA) by the derivative method, and the mobile phase was a phosphate buffer. These isotherm data were fitted by the competitive Bilangmuir model. This model can account for the behavior of both tryptophan enantiomers and these profiles were found to fit the experimental band profiles (square error is 0.999 6). The parameters obtained were used in numerical calculations to predict the band profiles of the racemic mixtures of tryptophan. The equilibrium-dispersive model provides satisfactory prediction, with minor differences between the calculated and the experimental profiles.展开更多
基金Supported by the National Natural Science Foundation of China(21476198,21576233)the International Science&Technology Cooperation Program of China(2015DFG42070)
文摘Five tryptophan analogues with a hydrophobic indole ring and an amino group on each molecule were used as functional ligands of mixed-mode resins for human serum albumin(HSA) purification. Their adsorption performance was evaluated and the effects of p H and salt addition on HSA adsorption were studied. The resins prepared showed typical p H-dependent adsorption and the highest adsorption capacity and affinity were found at pH 5.0for all the resins tested. The saturated adsorption capacity was 138.02 mg·g^(-1)with the tryptaminefunctionalized resin, which significantly decreased at p H below 4.0 due to electrostatic repulsion between ligands and HSA. Moreover, the addition of Na Cl or(NH_4)_2SO_4in media reduced HSA adsorption capacity, although the two salts showed different affecting profiles. The tryptamine-functionalized resin showed the best salt-tolerant performance, and its high adsorption capacity was maintained under high salt concentrations. In addition, the five resins prepared showed good adsorption selectivity for recombinant HSA from Pichia pastoris broth. Molecular docking results between tryptamine and HSA indicated that tryptamine was favorable to bind on Site II(indole-binding site) of HSA.
文摘Frontal analysis is frequently applied to measuring single or multi-component adsorption isotherms. In this work, the competitive adsorption isotherm data of two enantiomers of tryptophan were obtained by competitive frontal analysis. The stationary phase in the column was silica-immobilized bovine serum albumin (BSA) by the derivative method, and the mobile phase was a phosphate buffer. These isotherm data were fitted by the competitive Bilangmuir model. This model can account for the behavior of both tryptophan enantiomers and these profiles were found to fit the experimental band profiles (square error is 0.999 6). The parameters obtained were used in numerical calculations to predict the band profiles of the racemic mixtures of tryptophan. The equilibrium-dispersive model provides satisfactory prediction, with minor differences between the calculated and the experimental profiles.