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Tailoring of the desired selectivity and the turn-on detection range in a self-assembly-based fluorescence sensory system

机译:在基于自组装的荧光传感系统中定制所需的选择性和开启检测范围

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摘要

This study demonstrates how to control the selectivity and the turn-on detection range toward the tailoring of an assembly-based fluorescence (FL) sensory system. Assembly-based FL chemosensors composed of oligophenylenevinylene with a varied number of guanidinium receptors (G2, G4 and G6) were newly developed, and their FL response to nucleotides (AMP, ADP and ATP) was investigated. Indeed, G6 exhibited FL emission via self-assembly with ATP. More importantly, the FL response of G6 showed markedly improved selectivity for ATP over ADP and a broadly extended detection range of ATP concentration under adjusted salt conditions. The salt effect on the FL response revealed the competitive binding interactions affecting the subsequent self-assembly process. These studies have unveiled the pivotal binding mechanisms operating in the self-assembly process, which tailor the performance level of the assembly-based sensory system. We believe that this study offers a new design principle of an assembly-based FL chemosensor with high selectivity and the appropriate detection range, being different from the conventional key-and-lock system.
机译:这项研究演示了如何针对基于装配的荧光(FL)传感系统的定制来控制选择性和开启检测范围。新开发了基于组装的FL化学传感器,该传感器由具有不同数量胍盐受体(G2,G4和G6)的低聚亚苯基亚乙烯基组成,并研究了其对核苷酸(AMP,ADP和ATP)的FL响应。实际上,G6通过与ATP的自组装表现出FL发射。更重要的是,在调节盐条件下,G6的FL响应显示出对ADP的ATP选择性显着提高,并且对ATP浓度的检测范围大大扩展。盐对FL反应的影响表明竞争性结合相互作用会影响随后的自组装过程。这些研究揭示了在自组装过程中运行的关键绑定机制,这些机制可以调整基于组装的传感系统的性能水平。我们认为,这项研究提供了一种基于组件的FL化学传感器的新设计原理,该传感器具有高选择性和适当的检测范围,与常规的钥匙和锁系统不同。

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