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Characterization of a tethering system for biosensor applications

机译:用于生物传感器应用的网络共享系统的表征

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The immobilization of brain dopamine receptors (primary targets in the treatment of schizophrenia, Parkinson's disease, and Huntington's chorea) on a solid support can represent an appealing strategy for the realization of biosensors for dopamine and dopaminergic drags. Our final goal is the realization of an optical biosensor that allows parallel quantitative analysis, with different receptors, of neurotransmitters and related drugs. In our scheme, the active layer is constituted by dopaminergic receptors immobilized in biomimetic membranes tethered to a sensor surface. In order to preserve the biological activity of the neuroreceptors, the fabrication is carried out by soft lithography methods. In this report, we have characterised the active layer by scanning probe techniques, in order to test its quality and integrity, and by optical experiments involving the signal emitted by specific fluorescent ligands.
机译:将脑多巴胺受体(治疗精神分裂症,帕金森氏病和亨廷顿舞蹈病的主要靶点)固定在固体支持物上可以代表实现多巴胺和多巴胺能药物生物传感器的诱人策略。我们的最终目标是实现一种光学生物传感器,该传感器可以对神经递质和相关药物进行不同受体的平行定量分析。在我们的方案中,活性层由固定在仿生膜中的多巴胺能受体束缚在传感器表面。为了保持神经受体的生物学活性,通过软光刻法进行制造。在本报告中,我们通过扫描探针技术,以测试其质量和完整性,并通过涉及特定荧光配体发出的信号的光学实验对活性层进行了表征。

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