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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Molecularly imprinted polymer for glutathione by modified precipitation polymerization and its application to determination of glutathione in supplements
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Molecularly imprinted polymer for glutathione by modified precipitation polymerization and its application to determination of glutathione in supplements

机译:通过改性沉淀聚合的分子印迹聚合物,用于谷胱甘肽的谷胱甘肽及其在补充剂中测定谷胱甘肽的应用

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Graphical abstract Display Omitted Highlights ? MIP particles for glutathione by modified precipitation polymerization. ? Molecular-recognition of glutathione by hydrophilic interactions on the MIP. ? Selective recognition of glutathione among its related compounds. ? Determination of glutathione in the supplements using the MIP. Abstract Molecularly imprinted polymers (MIP) particles for glutathione (GSH) with a narrow particle size distribution were prepared by modified precipitation polymerization using methacrylic acid as a functional monomer, divinylbenzene as a crosslinker and water as a co-solvent. The particle diameters of the MIP and non-imprinted polymer (NIP) prepared under the optimum conditions were 3.81±0.95 (average±standard deviation) and 3.39±1.22μm, respectively. The retention and molecular-recognition properties of the prepared MIP were evaluated using a mixture of acetonitrile and water as a mobile phase in hydrophilic interaction chromatography. With an increase of acetonitrile content, the retention factor of GSH was increased on the MIP. In addition to shape recognition, hydrophilic interactions seem to work for the recognition of GSH on the MIP. The MIP had a specific molecular-recognition ability for GSH, while glutathione disulfide, l -Glu, l -Cys, Gly-Gly and l -Cys-Gly could not be retained or recognized on the MIP. The effect of column temperature revealed that the separation of GSH on the MIP was entropically driven. Binding experiments and Scatchard analyses revealed that one binding sites were formed on both the MIP and NIP, while the MIP gave higher affinity and capacity for GSH than the NIP. Furthermore, the MIP was successfully applied for determination of GSH in the supplements.
机译:图形抽象显示省略了亮点?通过改性沉淀聚合,谷胱甘肽的MIP颗粒。还是通过壁龛中亲水相互作用的分子识别谷胱甘肽。还是其相关化合物中谷胱甘肽的选择性识别。还是用MIP测定补充剂中的谷胱甘肽。摘要通过使用甲基丙烯酸作为官能单体,二乙烯基苯作为交联剂和水作为共溶剂,通过改性沉淀聚合制备具有窄粒度分布的谷胱甘肽(GSH)的分子印迹聚合物(MIP)颗粒。在最佳条件下制备的MIP和非印记聚合物(NIP)的粒径分别为3.81±0.95(平均±标准偏差)和3.39±1.22μm。使用乙腈和水作为亲水相互作用色谱中的流动相的混合物评价制备的MIP的保留和分子识别性能。随着乙腈含量的增加,MIP上的GSH的保留因子增加。除了形状识别之外,亲水性相互作用似乎在MIP上识别GSH。 MIP对GSH具有特定的分子识别能力,而谷胱甘肽二硫化物,L-Glu,L -Cys,Gly-Gly和L -Cys-Gly不能在MIP上保留或识别。柱温的效果显示,GSH在壁上的分离是熵驱动的。结合实验和Scatchard分析表明,在壁夹和辊隙上形成一个结合位点,而MIP对GSH的亲和力较高而不是辊隙。此外,MIP已成功应用于补充剂中的GSH。

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