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Graphene-based biomimetic materials targeting urine metabolite as potential cancer biomarker: Application over different conductive materials for potentiometric transduction

机译:以尿液代谢物为基础的石墨烯仿生材料作为潜在的癌症生物标志物:在不同的导电材料上的电位转换应用

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摘要

This work presents a novel surface Smart Polymer Antibody Material (SPAM) for Carnitine (CRT, a potential biomarker of ovarian cancer), tested for the first time as ionophore in potentiometric electrodes of unconventional configuration. The SPAM material consisted of a 3D polymeric network created by surface imprinting on graphene layers. The polymer was obtained by radical polymerization of (vinylbenzyl) trimethylammonium chloride and 4-styrenesulfonic acid (signaling the binding sites), and vinyl pivalate and ethylene glycol dimethacrylate (surroundings). Non-imprinted material (NIM) was prepared as control, by excluding the template from the procedure. These materials were then used to produce several plasticized PVC membranes, testing the relevance of including the SPAM as ionophore, and the need for a charged lipophilic additive. The membranes were casted over solid conductive supports of graphite or ITO/FTO. The effect of pH upon the potentiometric response was evaluated for different pHs (2-9) with different buffer compositions.Overall, the best performance was achieved for membranes with SPAM ionophore, having a cationic lipophilic additive and tested in HEPES (4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid) buffer, pH 5.1. Better slopes were achieved when the membrane was casted on conductive glass (-57.4 mV/decade), while the best detection limits were obtained for graphite-based conductive supports (3.6 × 10−5mol/L). Good selectivity was observed against BSA, ascorbic acid, glucose, creatinine and urea, tested for concentrations up to their normal physiologic levels in urine. The application of the devices to the analysis of spiked samples showed recoveries ranging from 91% (± 6.8%) to 118% (± 11.2%). Overall, the combination of the SPAM sensory material with a suitable selective membrane composition and electrode design has lead to a promising tool for point-of-care applications.
机译:这项工作提出了一种新型的用于肉碱的表面智能聚合物抗体材料(SPAM)(CRT,是卵巢癌的潜在生物标记),首次在非常规结构的电位电极中作为离子载体进行了测试。 SPAM材料由3D聚合物网络组成,该网络是通过在石墨烯层上进行表面压印而创建的。该聚合物通过(乙烯基苄基)三甲基氯化铵和4-苯乙烯磺酸(表示结合位点),新戊酸乙烯酯和乙二醇二甲基丙烯酸酯(周围)的自由基聚合而获得。通过从程序中排除模板,准备非压印材料(NIM)作为对照。然后将这些材料用于生产几种增塑的PVC膜,测试将SPAM用作离子载体的相关性,以及对带电亲脂性添加剂的需求。将膜浇铸在石墨或ITO / FTO的固体导电载体上。用不同的缓冲液组成评估了pH对电位响应的影响(2-9)。总体而言,具有SPAM离子载体,具有阳离子亲脂性添加剂并在HEPES中进行测试的膜(4-(2 -羟乙基)-1-哌嗪乙烷磺酸缓冲液,pH 5.1。当将膜浇铸在导电玻璃上时,倾斜度更好(-57.4 mV /十倍),而石墨基导电载体的最佳检测限(3.6×10-5mol / L)。观察到对BSA,抗坏血酸,葡萄糖,肌酐和尿素具有良好的选择性,并测试了尿中高达其正常生理水平的浓度。该设备在加标样品分析中的应用回收率从91%(±6.8%)到118%(±11.2%)不等。总体而言,SPAM感官材料与合适的选择性膜成分和电极设计的结合已成为用于即时医疗应用的有前途的工具。

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