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Optoplasmonic characterisation of reversible disulfide interactions at single thiol sites in the attomolar regime

机译:抗逆性硫醇条件下逆转二硫键的晶片正交表征

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Probing individual chemical reactions is key to mapping reaction pathways. Trace analysis of sub-kDa reactants and products is obfuscated by labels, however, as reaction kinetics are inevitably perturbed. The thiol-disulfide exchange reaction is of specific interest as it has many applications in nanotechnology and in nature. Redox cycling of single thiols and disulfides has been unresolvable due to a number of technological limitations, such as an inability to discriminate the leaving group. Here, we demonstrate detection of single-molecule thiol-disulfide exchange using a label-free optoplasmonic sensor. We quantify repeated reactions between sub-kDa thiolated species in real time and at concentrations down to 100's of attomolar. A unique sensing modality is featured in our measurements, enabling the observation of single disulfide reaction kinetics and pathways on a plasmonic nanoparticle surface. Our technique paves the way towards characterising molecules in terms of their charge, oxidation state, and chirality via optoplasmonics.
机译:探测单个化学反应是映射反应途径的关键。然而,由于反应动力学不可避免地扰乱,亚克达反应物和产物的痕量分析由标记物困扰。硫醇二硫化物交换反应具有特异性兴趣,因为它具有许多在纳米技术和自然中的应用。由于许多技术限制,单一硫醇和二硫化物的氧化还原循环一直未通过,例如无法区分离开组。在此,我们证明了使用无标记的亮片传感器检测单分子硫醇二硫化物交换。我们实时量化亚kDa硫醇物种之间的反复反应,并以浓度降至100岁的AttoMolar。我们的测量中有一种独特的感应模态,可以观察单一二硫化物反应动力学和在等离子体纳米颗粒表面上的途径。我们的技术通过阳阳溶解,在其电荷,氧化状态和手性方面铺平了分子。

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