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Chiral recognition of proteins having L-histidine residues on the surface with lanthanide ion complex incorporated-molecularly imprinted fluorescent nanoparticles

机译:掺入了分子印迹荧光纳米粒子的镧系元素离子络合物对在表面具有L-组氨酸残基的蛋白质的手性识别

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In this study, lanthanide ion complex incorporated molecularly imprinted fluorescent nanoparticles were synthesized. A combination of three novel approaches was applied for the purpose. First, lanthanide ions [Terbium(III)] were complexed with N-methacryloyl-L-histidine (MAH), polymerizable derivative of L-histidine amino acid, in order to incorporate the complex directly into the polymeric backbone. At the second stage, L-histidine molecules imprinted nanoparticles were utilized instead of whole protein imprinting in order to avoid whole drawbacks such as fragility, complexity, denaturation tendency, and conformation dependency. At the third stage following the first two steps mentioned above, imprinted L-histidine was coordinated with cupric ions [Cu(II)] to conduct the study under mild conditions. Then, molecularly imprinted fluorescent nanoparticles synthesized were used for L-histidine adsorption from aqueous solution to optimize conditions for adsorption and fluorimetric detection. Finally, usability of nanoparticles was investigated for chiral biorecognition using stereoisomer, D-histidine, racemic mixture, D,L-histidine, proteins with surface L-histidine residue, lysozyme, cytochrome C, or without ribonuclease A. The results revealed that the proposed polymerization strategy could make significant contribution to the solution of chronic problems of fluorescent component introduction into polymers. Additionally, the fluorescent nanoparticles reported here could be used for selective separation and fluorescent monitoring purposes.
机译:在这项研究中,合成了掺入分子印迹荧光纳米粒子的镧系元素离子络合物。为此,应用了三种新颖方法的组合。首先,将镧系离子[T(III)]与L-组氨酸氨基酸的可聚合衍生物N-甲基丙烯酰基-L-组氨酸(MAH)络合,以将络合物直接掺入聚合物主链中。在第二阶段,使用L-组氨酸分子印迹纳米颗粒代替完整蛋白质印迹,以避免诸如缺点,脆弱性,变性趋势和构象依赖性的整个缺点。在上述前两个步骤之后的第三阶段,将印迹的L-组氨酸与铜离子[Cu(II)]配位,以在温和条件下进行研究。然后,使用合成的分子印迹荧光纳米颗粒从水溶液中进行L-组氨酸的吸附,以优化吸附和荧光检测的条件。最后,使用立体异构体,D-组氨酸,外消旋混合物,D,L-组氨酸,具有表面L-组氨酸残基的蛋白质,溶菌酶,细胞色素C或不包含核糖核酸酶A,研究了纳米颗粒用于手性生物识别的可用性。结果表明,所提出的聚合策略可以为解决将荧光成分引入聚合物中的长期问题做出重大贡献。另外,此处报道的荧光纳米颗粒可用于选择性分离和荧光监测目的。

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