Silveira Silvana Terra, Quines Luci Kelin de Menezes, Burkert Carlos André Veiga, Kalil Susana Juliano
Department of Chemistry, Fundação Universidade Federal do Rio Grande, Rio Grande, RS, Brazil.
Bioprocess Biosyst Eng. 2008 Aug;31(5):477-82. doi: 10.1007/s00449-007-0185-1. Epub 2008 Jan 25.
This paper presents the evaluation of some important parameters for the purification of phycocyanin using ion exchange chromatography. The influences of pH and temperature on the equilibrium partition coefficient were investigated to establish the best conditions for phycocyanin adsorption. The equilibrium isotherm for the phycocyanin-resin system was also determined. The separation of phycocyanin using the Q-Sepharose ion exchange resin was evaluated in terms of the pH and elution volume that improved the increase in purity and recovery. The highest partition coefficients were obtained in the pH range from 7.5 to 8.0 at 25 degrees C. Under these conditions the equilibrium isotherm for phycocyanin adsorption was well described by the Langmuir model, attaining a Q (m) of 22.7 mg/mL and K (d) of 3.1 x 10(-2) mg/mL. The best conditions for phycocyanin purification using the ion exchange column were at pH 7.5 with an elution volume of 36 mL, obtaining 77.3% recovery and a 3.4-fold increase in purity.
本文介绍了使用离子交换色谱法纯化藻蓝蛋白时一些重要参数的评估。研究了pH值和温度对平衡分配系数的影响,以确定藻蓝蛋白吸附的最佳条件。还测定了藻蓝蛋白-树脂体系的平衡等温线。从提高纯度和回收率的pH值和洗脱体积方面评估了使用Q-琼脂糖离子交换树脂分离藻蓝蛋白的效果。在25℃下,pH值为7.5至8.0的范围内获得了最高分配系数。在这些条件下,藻蓝蛋白吸附的平衡等温线可以很好地用朗缪尔模型描述,Q(m)达到22.7 mg/mL,K(d)为3.1×10(-2) mg/mL。使用离子交换柱纯化藻蓝蛋白的最佳条件是pH值为7.5,洗脱体积为36 mL,回收率为77.3%,纯度提高了3.4倍。