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首页> 外文期刊>Journal of Materials Science >Computational and experimental designing of imprinted sorbent for the determination of nitroxidative stress products: an analysis of 4-hydroxyphenylacetic acid conversion
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Computational and experimental designing of imprinted sorbent for the determination of nitroxidative stress products: an analysis of 4-hydroxyphenylacetic acid conversion

机译:硝基氧化胁迫产物测定印迹吸附剂的计算和实验设计:4-羟基苯基乙酸转化分析

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It this paper, the comprehensive design process was carried out to fabricate selective, molecularly imprinted polymer (MIP). The material was used as a sorbent in the optimized analytical method, aimed at verifying the hypothesis that the conditions of an analytical process could convert 4-hydroxyphenylacetic acid to 4-hydro-3-nitrophenylacetic acid, comprising a series of novel studies. The design stage consisted of the analysis of specificity of the MIP, synthesized from the cross-linker and used five various functional monomers independently, in the presence of four different templates. The MIP from 1-vinylimidazole, imprinted by 4-hydroxyphenylacetic acid, revealed the highest specificity in relation to 4-hydro-3-nitrophenylacetic acid, with an affinity factor equal to 3, and the highest selectivity from a group of structurally similar and biologically important biomolecules. The theoretical analysis revealed that electrostatic interaction between the analyte and the polymer matrix enhanced selectivity. The physicochemical characterization showed the specific surface area of the MIP as being equal to 368.6 m(2) g(-1), and the presence of nitrogen atoms at the level of 6.80% wt., confirming the monomer residue in the material structure. The MIP was applied in the solid phase extraction protocol, allowing for the analysis of 4-hydroxy-3-nitrophenylacetic acid in a human urine sample. Finally, the conversion of 4-hydroxyphenylacetic acid in human urine in nitrate and nitrite salts at low pH conditions revealed an almost twofold increase in 4-hydro-3-nitrophenylacetic acid to 775 +/- 81 ng L-1. The results also confirmed the applicability of the new MIP sorbent for the purpose of analysis of low levels of analyte, present in the complex sample.
机译:本文对选择性分子印迹聚合物(MIP)的制备进行了综合设计。该材料被用作优化分析方法中的吸附剂,旨在验证分析过程的条件可以将4-羟基苯乙酸转化为4-氢-3-硝基苯乙酸的假设,包括一系列新的研究。设计阶段包括分析MIP的特异性,该MIP由交联剂合成,并在四种不同模板的存在下独立使用五种不同的功能单体。由4-羟基苯乙酸印迹的1-乙烯基咪唑的MIP显示出与4-氢-3-硝基苯乙酸相关的最高特异性,亲和力因子等于3,并且对一组结构相似且具有生物重要性的生物分子具有最高的选择性。理论分析表明,分析物与聚合物基体之间的静电相互作用提高了选择性。物理化学表征表明,MIP的比表面积等于368.6 m(2)g(-1),氮原子的含量为6.80%wt%,证实了材料结构中的单体残留物。MIP应用于固相萃取方案,允许分析人体尿液样本中的4-羟基-3-硝基苯乙酸。最后,在低pH条件下,人体尿液中的4-羟基苯乙酸在硝酸盐和亚硝酸盐中的转化显示,4-羟基-3-硝基苯乙酸几乎增加了两倍,达到775+/-81纳克L-1。结果还证实了新型MIP吸附剂适用于分析复杂样品中的低水平分析物。

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