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Label-Free Sensing of Adenosine Based on Force Variations Induced by Molecular Recognition

机译:基于分子识别引起的力变化的腺苷的无标签传感。

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摘要

We demonstrate a simple force-based label-free strategy for the highly sensitive sensing of adenosine. An adenosine ssDNA aptamer was bound onto an atomic force microscopy (AFM) probe by covalent modification, and the molecular-interface adsorption force between the aptamer and a flat graphite surface was measured by single-molecule force spectroscopy (SMFS). In the presence of adenosine, the molecular recognition between adenosine and the aptamer resulted in the formation of a folded, hairpin-like DNA structure and hence caused a variation of the adsorption force at the graphite/water interface. The sensitive force response to molecular recognition provided an adenosine detection limit in the range of 0.1 to 1 nM. The addition of guanosine, cytidine, and uridine had no significant interference with the sensing of adenosine, indicating a strong selectivity of this sensor architecture. In addition, operational parameters that may affect the sensor, such as loading rate and solution ionic strength, were investigated.
机译:我们展示了一个简单的基于力的无标记策略,用于腺苷的高灵敏度传感。通过共价修饰将腺苷ssDNA适体结合到原子力显微镜(AFM)探针上,并通过单分子力谱(SMFS)测量适体和平坦石墨表面之间的分子界面吸附力。在存在腺苷的情况下,腺苷和适体之间的分子识别导致折叠的,发夹状的DNA结构的形成,并因此导致在石墨/水界面的吸附力发生变化。对分子识别的敏感力响应提供了一个腺苷检测极限,范围为0.1到1 nM。鸟嘌呤,胞苷和尿苷的添加对腺苷的感测无明显干扰,表明该传感器架构具有很强的选择性。此外,还研究了可能影响传感器的操作参数,例如加载速率和溶液离子强度。

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