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中国精品科技期刊2020
冯学珍, 田玉红, 刘赛赛, 伍善广. 琼脂糖磁性亲和介质对降血压肽的吸附性能研究[J]. 食品工业科技, 2017, (01): 69-74. DOI: 10.13386/j.issn1002-0306.2017.01.005
引用本文: 冯学珍, 田玉红, 刘赛赛, 伍善广. 琼脂糖磁性亲和介质对降血压肽的吸附性能研究[J]. 食品工业科技, 2017, (01): 69-74. DOI: 10.13386/j.issn1002-0306.2017.01.005
FENG Xue-zhen, TIAN Yu-hong, LIU Sai-sai, WU Shan-guang. Adsorption properties of antihypertensive peptides on magnetic agarose affinity medium[J]. Science and Technology of Food Industry, 2017, (01): 69-74. DOI: 10.13386/j.issn1002-0306.2017.01.005
Citation: FENG Xue-zhen, TIAN Yu-hong, LIU Sai-sai, WU Shan-guang. Adsorption properties of antihypertensive peptides on magnetic agarose affinity medium[J]. Science and Technology of Food Industry, 2017, (01): 69-74. DOI: 10.13386/j.issn1002-0306.2017.01.005

琼脂糖磁性亲和介质对降血压肽的吸附性能研究

Adsorption properties of antihypertensive peptides on magnetic agarose affinity medium

  • 摘要: 采用纳米沉淀法制备琼脂糖磁性纳米粒,经活化、偶联、螯合获得琼脂糖磁性亲和介质。通过吸附动力学实验和平衡吸附实验研究琼脂糖磁性亲和介质对IPP的吸附特点,分别应用粒内扩散、准一级动力学和准二级动力学3种动力学模型及Langmuir和Freundlich吸附等温方程对实验数据进行拟合,并最终采用高效液相色谱分析琼脂糖磁性亲和介质在蛋白混合液中对IPP的吸附效果。结果表明:琼脂糖磁性亲和介质可以实现对IPP的吸附,吸附量随着吸附时间的增加、pH的升高或者IPP平衡浓度的增加而增大,在吸附时间60 min、pH为8.0、IPP平衡浓度为20mg·mL-1的条件下琼脂糖磁性亲和介质对IPP的吸附量可达最大值。准二级动力学模型能够很好地描述磁性亲和介质对IPP的吸附动力学行为,吸附等温曲线符合Langmuir等温吸附模型,吸附状态为单分子层吸附,饱和吸附量为52.63 mg·g-1。磁性亲和介质在IPP:BSA的浓度比分别为5∶1、10∶1、20∶1、40∶1时,与同浓度的IPP纯溶液相比减少了2.78%、29.80%、41.30%、81.20%。说明磁性亲和介质在蛋白混合液中对IPP有吸附作用,吸附量随混合液中IPP浓度的减小而减少,BSA的存在对磁性亲和介质吸附IPP有干扰作用。 

     

    Abstract: To study on the adsorption properties of antihypertensive peptides Ile-Pro-Pro( IPP) on magnetic agarose affinity medium.The magnetic agarose microspheres were prepared with nanoprecipitation method,which were used immobilized metal affinity magnetic nanoparticles by being activated,coupled linkers and chelated nickel ions.Adsorption kinetics and isotherm of antihypertensive peptides IPP on magnetic agarose affinity medium were determined by adsorption kinetics and equilibrium adsorption experiments.The data were fitted to intraparticle diffusion model,pseudo-first-order model,pseudo-second-order model,Langmuir models and Freundlich models,respectively. Finally,the separation efficiency was analyzed by RP-HPLC on IPP that was adsorpted by magnetic agarose affinity medium from protein mixture. Results: The IPP adsorption kinetics on magnetic agarose affinity medium fitted the pseudo second-order model.The isothermal adsorption curve followed the Langmuir model well. Adsorption quantity can reach the maximum value when adsorption time was 60 min,the p H was 8.0,IPP equilibrium concentration was 20mg·mL~(-1).The antihypertensive peptides can be separated from protein mixture by magnetic agarose affinity medium. Compared with the pure solution,adsorption quantity was decreased by 2.78%,29.80%,41.30%,81.20% when the concentration rate of IPP: BSA was 5∶1,10∶1,20∶1,40∶1.Conclusion: The antihypertensive peptides can be separated quickly by magnetic agarose affinity medium from protein mixture while there was interference effects on the adsorption quantity of IPP on magnetic agarose affinity medium in the presence of BSA.

     

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