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Dopamine Receptor D1 Agonism and Antagonism Using a Field-Effect Transistor Assay

机译:多巴胺受体D1使用场效应晶体管测定的激动性和拮抗作用

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The field-effect transistor (FET) has been used in the development of diagnostic tools for several decades, leading to high-performance biosensors. Therefore, the FET platform can provide the foundation for the next generation of analytical methods. A major role of G-protein-coupled receptors (GPCRs) is in the transfer of external signals into the cell and promoting human body functions; thus, their principle application is in the screening of new drugs. The research community uses efficient systems to screen potential GPCR drugs; nevertheless, the need to develop GPCR-conjugated analytical devices remains for next-generation new drug screening. In this study, we proposed an approach for studying receptor agonism and antagonism by combining the roles of FETs and GPCRs in a dopamine receptor D1 (DRD1)-conjugated FET system, which is a suitable substitute for conventional cell-based receptor assays. DRD1 was reconstituted and purified to mimic native binding pockets that have highly discriminative interactions with DRD1 agonists/antagonists. The real-time responses from the DRD1-nanohybrid FET were highly sensitive and selective for dopamine agonists/antagonists, and their maximal response levels were clearly different depending on their DRD1 affinities. Moreover, the equilibrium constants (K) were estimated by fitting the response levels. Each K value indicates the variation in the affinity between DRD1 and the agonists/antagonists; a greater K value corresponds to a stronger DRD1 affinity in agonism, whereas a lower K value in antagonism indicates a stronger dopamine-blocking effect.
机译:现场效应晶体管(FET)已用于开发诊断工具几十年,导致高性能生物传感器。因此,FET平台可以为下一代分析方法提供基础。 G蛋白偶联受体(GPCR)的主要作用是将外部信号转移到细胞中并促进人体功能;因此,它们的原理应用是在筛查新药。研究界使用有效的系统来筛选潜在的GPCR药物;尽管如此,需要开发GPCR共轭的分析装置的需要仍为下一代新药筛选。在该研究中,我们提出了一种通过将FET和GPCR的作用组合在多巴胺受体D1(DRD1) - 缀合的FET系统中来研究受体激动和拮抗作用,这是常规细胞基受体测定的合适替代。将DRD1重构并纯化以模拟与DRD1激动剂/拮抗剂具有高度辨别性相互作用的天然结合袋。来自DRD1-纳米冬小麦FET的实时反应对多巴胺激动剂/拮抗剂具有高敏感和选择性,并且其最大反应水平根据其DRD1亲和力明显不同。此外,通过拟合响应水平估计平衡常数(k)。每个k值表明DRD1和激动剂/拮抗剂之间的亲和力的变化;更大的k值对应于激动主义的较强的DRD1亲和力,而拮抗作用的较低的K值表明了更强的多巴胺阻断效果。

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