Edward A. Doisy Department of Biochemistry and Molecular Biology, St. Louis University Medical School, MO 63104, USA.
Biophys Chem. 2010 Oct;151(3):91-5. doi: 10.1016/j.bpc.2010.05.008. Epub 2010 May 23.
Detection and quantitation of biomolecules is one of the most commonly performed measurements in biomedical research and clinical diagnostics. There is high demand for convenient, rapid and sensitive biomolecule detection methodologies. In this review we discuss a family of sensors that have been developed in our laboratory that share a common simple biophysical mechanism of action and that are capable of rapid detection of a diverse range of biological targets. The sensors generate fluorescence signal in the presence of the target molecule through target-induced association of short fluorochrome-labeled complementary oligonucleotides that are attached to target recognition elements of the sensors (antibodies, aptamers, etc.) via nanometer scale flexible linkers. This sensor design can be used for detecting proteins, antibodies, nucleic acids and whole cells. The assays using these sensors require only adding a sample to the sensor mix followed by simple fluorescence intensity readout. The simplicity, the speed of detection and the potential for miniaturization are the main assets of these sensors.
生物分子的检测和定量是生物医学研究和临床诊断中最常进行的测量之一。人们对方便、快速和敏感的生物分子检测方法有很高的需求。在这篇综述中,我们讨论了我们实验室开发的一类传感器,它们具有共同的简单生物物理作用机制,能够快速检测多种不同的生物靶标。这些传感器在存在靶分子的情况下通过附着在传感器的靶识别元件(抗体、适体等)上的短荧光染料标记的互补寡核苷酸的靶诱导缔合产生荧光信号,通过纳米级的柔性接头。这种传感器设计可用于检测蛋白质、抗体、核酸和整个细胞。使用这些传感器的测定只需要将样品添加到传感器混合物中,然后进行简单的荧光强度读取。这种传感器的主要优点是简单、检测速度快且具有微型化的潜力。