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Development of Peptide Aptamers – 3d Complementary Ligands for Selective Binding of Target Biomarkers of Diseases in Multiparametric Sensor Systems

机译:肽适体的发展 - 三维互补配体,用于多次传感器系统疾病靶生物标志物的选择性结合

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Biosensor system based on 3D peptide-protein molecular recognition mechanism for rapid medical diagnostics of diseases by determination their protein biomarkers in biological fluids has been considered. The diagnostic system was implemented as micro-arrays with topologically structured sites of bonded peptide aptamers (PMA). The perspective 3D structures of peptide aptamers were analyzed using the Conjugated Ion-Hydrogen Bonds System (CIHBS) developed earlier. A number of peptide aptamers with spartial complemetarity to myoglobin and troponin were designed, synthesized and tested as ligands for myocardial infarction diagnostics biochip. The testing of aptamers affinity to target biomarkers were investigated using capillary electrophoresis-on-a-chip with an Experion Bio-Rad Pro260 system. This method enables a complex formation of peptide and target protein to be analyzed. As a result three aptamers were proved to be complementary to target proteins: Troponin I and Myoglobin. A topology and design of microfluidic diagnostic biochip has been discussed.
机译:基于3D肽 - 蛋白质分子识别机制的生物传感器系统通过测定生物流体中的蛋白质生物标志物进行疾病快速医疗诊断。诊断系统被实施为微阵,具有拓扑结构化位点的键合肽适体(PMA)。使用前面开发的共轭离子氢键系统(CIHB)分析肽适体的透视3D结构。设计了许多具有Spartial授权对肌球蛋白和肌肉蛋白的肽适体,被设计,合成和测试为心肌梗塞诊断生物芯片的配体。使用毛细管电泳,用实验生物-RAD Pro260系统研究对靶标生物标志物的适体亲和力的测试。该方法能够分析肽和靶蛋白的复杂形成。结果,证明了三种适体与靶蛋白质互补:肌钙蛋白I和肌球蛋白。讨论了微流体诊断生物芯片的拓扑和设计。

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