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Mechanistic investigation of phosphoprotein enrichment by fly ash-based chromatography

机译:粉煤灰基色谱法的机械调查磷蛋白富集

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In this work, the mechanistic details contributing to the binding of phosphoproteins on fly ash (FA) has been investigated. The effects of factors influencing adsorption of phosphoprotein, i.e., contact time, pH, ionic strength, initial concentration of proteins, and contribution of ligand exchange, were thoroughly examined. Results showed that the adsorption efficiency of phosphoproteins to FA was enhanced with increasing contact time. Intriguingly, the adsorption of phosphoproteins to FA was not profoundly affected by high ionic strength, suggesting that electrostatic interaction does not play a pivotal role in phosphoprotein binding on the surface of FA particles. The interaction between phosphoproteins and FA could be instead disturbed when NaF and phosphate ion were used as competing electrolytes/ions. Also, it was found that at a high pH condition has a substantial effect on the adsorption of phosphoproteins through ligand exchange mechanism. To this end, our results clearly indicated that ligand exchange mechanism exerted by F-, phosphate ion and hydroxide ion with the metal oxide surface of FA is the mechanism that majorly contributed to the phosphoprotein binding on the surface of FA particles.
机译:在这项工作中,研究了对粉煤灰(FA)在粉煤灰(FA)上有助于磷蛋白的结合的机械细胞。彻底检查了影响磷蛋白吸附吸附的因素的影响。结果表明,随着接触时间的增加,增强了磷蛋白对Fa的吸附效率。有趣的是,磷蛋白对Fa的吸附并未受到高离子强度的深刻影响,表明静电相互作用在FA颗粒表面上的磷蛋白结合中不起枢转作用。当NAF和磷酸根离子用作竞争电解质/离子时,磷蛋白和Fa之间的相互作用可以被干扰。此外,发现在高pH条件下对通过配体交换机制吸附磷蛋白的吸附作用。为此,我们的结果清楚地表明,具有Fa的金属氧化物表面的F-,磷酸离子和氢氧化物离子施加的配体交换机制是主要导致对FA颗粒表面上的磷蛋白结合的机制。

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