Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven 5612 AZ, The Netherlands.
Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, Eindhoven 5612 AZ, The Netherlands.
ACS Sens. 2020 Apr 24;5(4):1168-1176. doi: 10.1021/acssensors.0c00220. Epub 2020 Apr 7.
The ability to continuously measure concentrations of small molecules is important for biomedical, environmental, and industrial monitoring. However, because of their low molecular mass, it is difficult to quantify concentrations of such molecules, particularly at low concentrations. Here, we describe a small-molecule sensor that is generalizable, sensitive, specific, reversible, and suited for continuous monitoring over long durations. The sensor consists of particles attached to a sensing surface via a double-stranded DNA tether. The particles transiently bind to the sensing surface via single-molecular affinity interactions, and the transient binding is optically detected as digital binding events via the Brownian motion of the particles. The rate of binding events decreases with increasing analyte concentration because analyte molecules inhibit binding of the tethered particle to the surface. The sensor enables continuous measurements of analyte concentrations because of the reversibility of the intermolecular bonds and digital read-out of particle motion. We show results for the monitoring of short single-stranded DNA sequences and creatinine, a small-molecule biomarker (113 Da) for kidney function, demonstrating a temporal resolution of a few minutes. The precision of the sensor is determined by the statistics of the digital switching events, which means that the precision is tunable by the number of particles and the measurement time.
连续测量小分子浓度对于生物医学、环境和工业监测非常重要。然而,由于它们的分子量低,很难定量此类分子的浓度,尤其是在浓度较低的情况下。在这里,我们描述了一种小分子传感器,它具有通用性、灵敏度、特异性、可逆性,并且适合长时间连续监测。该传感器由通过双链 DNA 系链连接到传感表面的颗粒组成。颗粒通过单分子亲和力相互作用瞬时结合到传感表面,并且通过颗粒的布朗运动将瞬时结合光学检测为数字结合事件。由于分析物分子抑制了连接到表面的系链颗粒的结合,因此结合事件的速率随着分析物浓度的增加而降低。由于分子间键的可逆性和颗粒运动的数字读出,该传感器能够进行连续的分析物浓度测量。我们展示了监测短单链 DNA 序列和肌酸酐(肾功能的小分子生物标志物,分子量为 113 Da)的结果,证明了几分钟的时间分辨率。传感器的精度取决于数字开关事件的统计数据,这意味着通过颗粒数量和测量时间可以调整精度。