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Selective Recognition of Myoglobin in Biological Samples Using Molecularly Imprinted Polymer-Based Affinity Traps

机译:使用分子印迹的基于聚合物的亲和陷阱对生物样品中的肌红蛋白的选择性识别

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摘要

The current work demonstrates the design, characterization, and preparation of molecularly imprinted microspheres for the selective detection of myoglobin in serum samples. The suspension polymerization approach was applied for the preparation of myoglobin imprinted microspheres. For this purpose, N-methacryloylamino folic acid-Nd3+ (MAFol- Nd3+) was chosen as the complex functional monomer. The optimization studies were performed changing the medium pH, temperature, and myoglobin concentration. pH 7.0 was determined as the optimum value where the prepared imprinted microspheres displayed maximum binding for myoglobin. The maximum binding capacity was achieved as 623 mgg−1. In addition, the selectivity studies were conducted. The results confirmed that the imprinted microspheres showed great selectivity towards myoglobin in the existence of hemoglobin, cytochrome c, and lysozyme which were chosen as potentially competing proteins.
机译:当前的工作演示了分子印迹微球的设计,表征和制备,以选择性检测血清样品中的肌红蛋白。悬浮聚合法用于制备肌红蛋白印迹微球。为此,选择N-甲基丙烯酰氨基叶酸-Nd 3 + (MAFol-Nd 3 + )作为复合功能单体。通过改变培养基的pH,温度和肌红蛋白浓度进行了优化研究。确定pH 7.0为最佳值,其中所制备的印迹微球显示出对肌红蛋白的最大结合。达到最大结合能力为623 mgg -1 。另外,进行了选择性研究。结果证实,印迹的微球在存在被选为潜在竞争蛋白的血红蛋白,细胞色素c和溶菌酶的情况下显示出对肌红蛋白的极大选择性。

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