Infectious Disease Cluster, Advanced Medical & Dental Institute (AMDI), Universiti Sains Malaysia, 13200 Kepala Batas, Penang, Malaysia.
Analyst. 2013 Jul 7;138(13):3576-92. doi: 10.1039/c3an36828a.
Reporting biomolecular interactions has become part and parcel of many applications of science towards an in-depth understanding of disease and gene regulation. Apart from that, in diagnostic applications where biomolecules (antibodies and aptamers) are vastly applied, meticulous monitoring of biomolecular interaction is vital for clear-cut diagnosis. Several currently available methods of analyzing the interaction of the ligands with the appropriate analytes are aided by labeling using fluorescence or luminescence techniques. However, labeling is cumbersome and can occupy important binding sites of interactive molecules to be labeled, which may interfere with the conformational changes of the molecules and increase non-specificity. Optical-based sensing can provide an alternative way as a label-free procedure for monitoring biomolecular interactions. Optical sensors affiliated with different operating principles, including surface plasmon changes, scattering and interferometry, can impart a huge impact for in-house and point-of-care applications. This optical-based biosensing permits real-time monitoring, obviating the use of hazardous labeling molecules such as radioactive tags. Herein, label-free ways of reporting biomolecular interactions by various optical biosensors were gleaned.
报告生物分子相互作用已经成为科学应用的重要组成部分,有助于深入了解疾病和基因调控。除此之外,在生物分子(抗体和适体)广泛应用的诊断应用中,对生物分子相互作用的细致监测对于明确诊断至关重要。目前有几种分析配体与相应分析物相互作用的方法,这些方法都借助荧光或发光技术进行标记。然而,标记过程繁琐,可能会占据待标记的相互作用分子的重要结合位点,从而干扰分子的构象变化并增加非特异性。基于光学的传感可以作为一种无标记的方法,提供监测生物分子相互作用的替代方法。基于不同工作原理的光学传感器,包括表面等离子体变化、散射和干涉测量,可以为内部和即时应用带来巨大影响。这种基于光学的生物传感允许实时监测,避免使用放射性标签等危险的标记分子。本文综述了各种光学生物传感器通过无标记的方式报告生物分子相互作用。