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适体构象变化实现了用纳米吸管进行血清素生物传感。

Aptamer Conformational Change Enables Serotonin Biosensing with Nanopipettes.

作者信息

Nakatsuka Nako, Faillétaz Alix, Eggemann Dominic, Forró Csaba, Vörös János, Momotenko Dmitry

机构信息

Laboratory of Biosensors and Bioelectronics, Institute for Biomedical Engineering, ETH Zürich CH-8092, Switzerland.

出版信息

Anal Chem. 2021 Mar 2;93(8):4033-4041. doi: 10.1021/acs.analchem.0c05038. Epub 2021 Feb 17.

Abstract

We report artificial nanopores in the form of quartz nanopipettes with ca. 10 nm orifices functionalized with molecular recognition elements termed aptamers that reversibly recognize serotonin with high specificity and selectivity. Nanoscale confinement of ion fluxes, analyte-specific aptamer conformational changes, and related surface charge variations enable serotonin sensing. We demonstrate detection of physiologically relevant serotonin amounts in complex environments such as neurobasal media, in which neurons are cultured in vitro. In addition to sensing in physiologically relevant matrices with high sensitivity (picomolar detection limits), we interrogate the detection mechanism via complementary techniques such as quartz crystal microbalance with dissipation monitoring and electrochemical impedance spectroscopy. Moreover, we provide a novel theoretical model for structure-switching aptamer-modified nanopipette systems that supports experimental findings. Validation of specific and selective small-molecule detection, in parallel with mechanistic investigations, demonstrates the potential of conformationally changing aptamer-modified nanopipettes as rapid, label-free, and translatable nanotools for diverse biological systems.

摘要

我们报道了呈石英纳米移液管形式的人工纳米孔,其具有约10纳米的孔口,并用被称为适配体的分子识别元件进行功能化,这些适配体能够以高特异性和选择性可逆地识别血清素。离子通量的纳米级限制、分析物特异性适配体的构象变化以及相关的表面电荷变化实现了血清素传感。我们展示了在复杂环境(如用于体外培养神经元的神经基础培养基)中检测生理相关血清素量的方法。除了在生理相关基质中进行高灵敏度(皮摩尔检测限)传感外,我们还通过诸如带有耗散监测的石英晶体微天平以及电化学阻抗谱等互补技术来探究检测机制。此外,我们为结构转换适配体修饰的纳米移液管系统提供了一个新的理论模型,该模型支持实验结果。特异性和选择性小分子检测的验证以及机理研究表明,构象变化的适配体修饰纳米移液管作为用于各种生物系统的快速、无标记且可转化的纳米工具具有潜力。

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