Froehlich Clarice E, He Jiayi, Haynes Christy L
Anal Chem. 2023 Feb 7;95(5):2639-2644. doi: 10.1021/acs.analchem.2c04192. Epub 2023 Jan 26.
Investigating the interactions between small, charged molecules and aptamers using surface plasmon resonance (SPR) is limited by the inherent low response of small molecules and difficulties with nonspecific electrostatic interactions between the aptamer, analyte, and sensor surface. However, aptamers are increasingly being used in sensors for small molecule detection in critical areas like healthcare and environmental safety. The ability to probe these interactions through simple, direct SPR assays would be greatly beneficial and allow for the development of improved sensors without the need for complicated signal enhancement. However, these assays are nearly nonexistent in the current literature and are instead surpassed by sandwich or competitive binding techniques, which require additional sample preparation and reagents. In this work, we develop a method to characterize the interaction between the charged small molecule serotonin (176 Da) and an aptamer with SPR using streptavidin-biotin capture and a high-ionic-strength buffer. Additionally, other methods, such as serotonin immobilization and thiol-coupling of the aptamer, were investigated for comparison. These techniques give insight into working with small molecules and allow for quickly adapting a binding affinity assay into a direct SPR sensor.
利用表面等离子体共振(SPR)研究带电荷的小分子与适配体之间的相互作用,受到小分子固有低响应以及适配体、分析物和传感器表面之间非特异性静电相互作用难题的限制。然而,适配体越来越多地被用于医疗保健和环境安全等关键领域的小分子检测传感器中。通过简单、直接的SPR检测来探究这些相互作用的能力将非常有益,并有助于开发改进型传感器,而无需复杂的信号增强。然而,目前的文献中几乎不存在这些检测方法,取而代之的是夹心或竞争性结合技术,这些技术需要额外的样品制备和试剂。在这项工作中,我们开发了一种方法,利用链霉亲和素-生物素捕获和高离子强度缓冲液,通过SPR表征带电荷的小分子血清素(176道尔顿)与适配体之间的相互作用。此外,还研究了其他方法,如血清素固定和适配体的硫醇偶联,以作比较。这些技术有助于深入了解小分子的处理方法,并能快速将结合亲和力检测转化为直接的SPR传感器。