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首页> 外文期刊>Electrochimica Acta >Novel Prostate Specific Antigen plastic antibody designed with charged binding sites for an improved protein binding and its application in a biosensor of potentiometric transduction
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Novel Prostate Specific Antigen plastic antibody designed with charged binding sites for an improved protein binding and its application in a biosensor of potentiometric transduction

机译:新型前列腺特异性抗原塑料抗体,带有带电荷的结合位点,可改善蛋白质结合,并在电位转导生物传感器中应用

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摘要

This work shows that the synthesis of protein plastic antibodies tailored with selected charged monomers around the binding site enhances protein binding. These charged receptor sites are placed over a neutral polymeric matrix, thus inducing a suitable orientation the protein reception to its site. This is confirmed by preparing control materials with neutral monomers and also with non-imprinted template. This concept has been applied here to Prostate Specific Antigen (PSA), the protein of choice for screening prostate cancer throughout the population, with serum levels >10 ng/mL pointing out a high probability of associated cancer. Protein Imprinted Materials with charged binding sites (C/PIM) have been produced by surface imprinting over graphene layers to which the protein was first covalently attached. Vinylbenzyl (trimethylammonium chloride) and vinyl benzoate were introduced as charged monomers labelling the binding site and were allowed to self-organize around the protein. The subsequent polymerization was made by radical polymerization of vinylbenzene. Neutral PIM (N/PIM) prepared without oriented charges and non imprinted materials (NIM) obtained without template were used as controls. These materials were used to develop simple and inexpensive potentiometric sensor for PSA. They were included as ionophores in plasticized PVC membranes, and tested over electrodes of solid or liquid conductive contacts, made of conductive carbon over a syringe or of inner reference solution over micropipette tips. The electrodes with charged monomers showed a more stable and sensitive response, with an average slope of -44.2 mV/decade and a detection limit of 5.8 × 10~(-11) mol/L (2 ng/mL). The corresponding non-imprinted sensors showed lower sensitivity, with average slopes of -24.8 mV/decade. The best sensors were successfully applied to the analysis of serum, with recoveries ranging from 96.9 to 106.1% and relative errors of 6.8%.
机译:这项工作表明,在结合位点周围用选定的带电单体定制的蛋白质塑料抗体的合成可增强蛋白质结合。这些带电的受体位点被放置在中性聚合物基质上,从而诱导蛋白质接受到其位点的合适取向。通过使用中性单体和非印迹模板制备对照材料,可以证实这一点。此概念已在此处应用于前列腺特异性抗原(PSA),它是在整个人群中筛查前列腺癌的首选蛋白,血清水平> 10 ng / mL则表明相关癌症的可能性很高。具有电荷结合位点(C / PIM)的蛋白质印迹材料是通过表面印迹在首先共价附着蛋白质的石墨烯层上生产的。引入乙烯基苄基(三甲基氯化铵)和苯甲酸乙烯酯作为带电单体,标记结合位点,并使其在蛋白质周围自组织。随后的聚合通过乙烯基苯的自由基聚合来进行。使用没有定向电荷制备的中性PIM(N / PIM)和没有模板获得的非印迹材料(NIM)作为对照。这些材料用于开发用于PSA的简单且便宜的电位传感器。它们被作为离子载体包含在增塑的PVC膜中,并在固体或液体导电触点的电极上进行测试,该电极由注射器上的导电碳制成,或由微量移液器尖端制成的内部参比溶液制成。带有带电单体的电极显示出更稳定和灵敏的响应,平均斜率为-44.2 mV /十倍,检测极限为5.8×10〜(-11)mol / L(2 ng / mL)。相应的非压印传感器显示出较低的灵敏度,平均斜率为-24.8 mV /十倍。最好的传感器已成功应用于血清分析,回收率在96.9%至106.1%之间,相对误差为6.8%。

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