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Development of functional nanofibrous membrane assemblies towards biological sensing

机译:面向生物传感的功能性纳米纤维膜组件的开发

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A novel research approach was investigated that has the potential to improve sample preparation for complex matrices. Generation of high surface area nanofibrous membranes with covalently attached molecular recognition elements for selective capture of target biological agents were developed using the electrospinning fabrication technique. Two types of electrospun capture membranes were fabricated containing either carboxyl (COOH) or amine (NH_2) functional groups for covalent attachment of antibodies. The carboxyl functional membrane was produced by electrospinning polyvinyl chloride (PVC) formulated to be 1.8% carboxylated. The amine functional membrane was made by co-electrospinning two polymers, water-soluble polyamine and water insoluble polyurethane. Linking of molecular recognition groups, antibodies, to the carboxylated PVC was performed using established crosslinking chemistries. Antigen/antibody experiments were tested on the electrospun membranes. Results showed that electrospun membranes, treated with a secondary antibody used as the analyte, reacted only with its complement as indicated with a chemiluminescent signal. Toxin studies with Staphylococcal enterotoxin B (SEB) were conducted using avidin/biotin chemistries on the electrospun membranes. Experiments were performed using a modified ELISA sandwich assay on the fibrous membranes in the following configuration: avidin-biotinylated SEB antibody-SEB toxin-SEB antibody-HRP. Results have shown that 1-100ng/ml concentrations of toxin were detected using a chemiluminescent signal detection scheme.
机译:研究了一种新颖的研究方法,该方法具有改善复杂基质样品制备的潜力。使用静电纺丝制造技术开发了具有共价连接的分子识别元件的高表面积纳米纤维膜,用于选择性捕获目标生物制剂。制备了两种类型的静电纺丝捕获膜,其中包含羧基(COOH)或胺(NH_2)官能团,用于抗体的共价连接。羧基功能膜是通过电纺成1.8%羧基化的聚氯乙烯(PVC)制成的。胺功能膜是通过将两种聚合物(水溶性多胺和水不溶性聚氨酯)共电纺丝制成的。使用已建立的交联化学方法将分子识别基团,抗体与羧基化PVC连接起来。在电纺膜上测试了抗原/抗体实验。结果表明,用二抗作为分析物处理的静电纺丝膜仅与其互补物反应,如化学发光信号所示。使用抗生物素蛋白/生物素化学方法在静电纺丝膜上进行葡萄球菌肠毒素B(SEB)毒素研究。使用改良的ELISA夹心法对纤维膜进行以下配置的实验:抗生物素蛋白生物素化SEB抗体-SEB毒素-SEB抗体-HRP。结果表明,使用化学发光信号检测方案可检测到1-100ng / ml的毒素浓度。

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