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Aptamer-field-effect transistors overcome Debye length limitations for small-molecule sensing

机译:适体场效应晶体管克服了德拜长度限制适用于小分子传感

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摘要

Detection of analytes with field-effect transistors bearing ligand-specific receptors is fundamentally limited by the shielding created by the electrical double layer (the “Debye length” limitation). We detected small molecules under physiological high ionic-strength conditions by modifying printed ultrathin metal-oxide field-effect transistor arrays with deoxyribonucleotide aptamers selected to bind their targets adaptively. Target-induced conformational changes of negatively charged aptamer phosphodiester backbones in close proximity to semiconductor channels gated conductance in physiological buffers, resulting in highly sensitive detection. Sensing of charged and electroneutral targets (serotonin, dopamine, glucose, and sphinghosine-1-phosphate) was enabled by specifically isolated aptameric stem-loop receptors.
机译:带有配体特异性受体的场效应晶体管对分析物的检测基本上受到双电层产生的屏蔽的限制(“德拜长度”限制)。我们通过选择带有脱氧核糖核酸适体的印刷超薄金属氧化物场效应晶体管阵列来选择适应性结合它们的靶标,从而在生理高离子强度条件下检测到了小分子。目标诱导的带负电荷的适体磷酸二酯主链的构象变化非常接近生理缓冲液中的半导体通道门控电导,导致高度灵敏的检测。通过特异性分离的适体茎环受体,可以检测带电和电子中性靶标(血清素,多巴胺,葡萄糖和鞘氨醇-1-磷酸)。

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