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Optical sensors with molecularly imprinted nanospheres: a promising approach for robust and label-free detection of small molecules

机译:具有分子印迹纳米球的光学传感器:可靠且无标签的小分子检测的有前途的方法

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Molecularly imprinted nanospheres obtained by miniemulsion polymerization have been applied as the sensitive layer for label-free direct optical sensing of small molecules. Using these particles as the sensitive layer allowed for improving response times in comparison to sensors using MIP layers. As a model compound, well-characterized nanospheres imprinted against l-Boc-phenylalanine anilide (l-BFA) were chosen. For immobilization, a simple concept based on electrostatic adsorption was used, showing its applicability to different types of surfaces, leading to a good surface coverage. The sensor showed short response times, good selectivity, and high reversibility with a limit of detection down to 60 μM and a limit of quantitation of 94 μM. Furthermore, reproducibility, selectivity, and long-term stability of the sensitive layers were tested. The best results were achieved with an adsorption on aminopropylsilane layers, showing a chip-to-chip reproducibility of 22%. Furthermore, the sensors showed no loss in signal after a storage time of 1 year.
机译:通过微乳液聚合获得的分子印迹纳米球已被用作敏感层,用于小分子的无标记直接光学传感。与使用MIP层的传感器相比,将这些颗粒用作敏感层可以缩短响应时间。作为模型化合物,选择了印有1-Boc-苯丙氨酸苯胺(1-BFA)的特征明确的纳米球。对于固定化,使用了基于静电吸附的简单概念,表明其适用于不同类型的表面,从而导致良好的表面覆盖率。该传感器响应时间短,选择性好,可逆性高,检测限低至60μM,定量限为94μM。此外,测试了敏感层的重现性,选择性和长期稳定性。吸附在氨基丙基硅烷层上可获得最佳结果,显示出芯片间的可重复性为22%。此外,传感器在存储一年后没有显示信号损失。

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