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Nanomechanical detection of cholera toxin using microcantilevers functionalized with ganglioside nanodiscs

机译:使用神经节苷脂纳米光盘功能化的微悬臂梁纳米机械检测霍乱毒素

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摘要

The label-free detection of cholera toxin is demonstrated using microcantilevers functionalized with ganglioside nanodiscs. The cholera toxin molecules bind specifically to the active membrane protein encased in nanodiscs, nanoscale lipid bilayers surrounded by an amphipathic protein belt, immobilized on the cantilever surface. The specific molecular binding results in cantilever deflection via the formation of a surface stress-induced bending moment. The nanomechanical cantilever response is quantitatively monitored by optical interference. The consistent and reproducible nanomechanical detection of cholera toxin in nanomolar range concentrations is demonstrated. The results validated with such a model system suggest that the combination of a microcantilever platform with receptor nanodiscs is a promising approach for monitoring invasive pathogens and other types of biomolecular detection relevant to drug discovery.
机译:使用神经节苷脂纳米光盘功能化的微悬臂展示了霍乱毒素的无标记检测。霍乱毒素分子与固定在悬臂表面上的被两亲性蛋白带包围的纳米圆盘,纳米级脂质双层中的活性膜蛋白特异性结合。特定的分子结合通过形成表面应力引起的弯矩而导致悬臂挠曲。纳米机械悬臂响应通过光学干涉定量监测。证明了一致和可重现的纳米机械检测纳摩尔浓度范围内的霍乱毒素。用这样的模型系统验证的结果表明,微悬臂平台与受体纳米盘的组合是用于监测侵入性病原体和与药物发现相关的其他类型的生物分子检测的有前途的方法。

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