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首页> 外文期刊>Nanoscale >Exploring and exploiting the synergy of non-covalent interactions on the surface of gold nanoparticles for fluorescent turn-on sensing of bacterial lipopolysaccharide
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Exploring and exploiting the synergy of non-covalent interactions on the surface of gold nanoparticles for fluorescent turn-on sensing of bacterial lipopolysaccharide

机译:探索和利用的协同作用非共价相互作用表面的黄金纳米粒子的荧光刺激感应细菌脂多糖

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The sensing of lipopolysaccharide (LPS) relies on the synergy of multiple electrostatic and hydrophobic interactions between LPS and the sensor. However, how non-covalent interactions are coordinated to impel the recognition process still remains elusive, and the exploration of which would promote the development of LPS sensors with higher specificity and sensitivity. In this work, we hypothesize that Au NPs would provide a straightforward and flexible platform for studying the synergy of non-covalent interactions. The detailed mechanism of interactions between the designed fluorescent probes and Au NPs with two distinct surface properties was systematically explored. We demonstrated that only when the electrostatic attraction and hydrophobic stacking are both present, the binding of fluorescent probes onto Au NPs can be not only highly efficient, but also positively cooperative. After that, hybrid systems that consist of Au NPs and surface-assembled fluorescent probes were exploited for fluorescent turn-on sensing of LPS. The results show that the sensitivity and selectivity to LPS relies strongly on the binding affinity between fluorescent probes and Au NPs. Fluorescent probes assembled Au NPs thus provide an attractive platform for further optimization of the sensitivity/selectivity of LPS sensing.
机译:传感的脂多糖(LPS)依赖多个静电和协同作用有限合伙人和疏水相互作用传感器。协调推动识别过程吗仍然是难以捉摸的,探索这将促进有限合伙人的发展传感器与更高的特异性和敏感性。在这项工作中,我们假设非盟NPs将提供一个简单的和灵活的平台为研究非共价的协同作用交互。设计荧光之间的相互作用探测器和非盟NPs与两个不同的表面属性是系统地探讨。表明,只有当静电吸引力和疏水堆积目前,荧光探针上的绑定盟NPs不仅可以高效,但也积极合作。系统,包括非盟NPs和surface-assembled荧光探针是利用荧光刺激感应的有限合伙人。结果表明,敏感性和选择性LPS强烈依赖的绑定荧光探针和非盟NPs之间的亲和力。荧光探针组装盟NPs从而提供一个有吸引力的平台,进一步优化有限合伙人感应的灵敏度和选择性。

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