Opt Lett. 2013 Nov 15;38(22):4690-3. doi: 10.1364/OL.38.004690.
The development of DNA analysis methods is rapidly expanding as interest in characterizing subtle variations increases in biomedicine. A promising approach is based on evanescent field sensors that monitor the hybridization process in real time. However, one challenge is discriminating between nonspecific and specific attachment. Here, we demonstrate a hybridization sensor based on an integrated toroidal optical microcavity. The surface is functionalized with ssDNA using an epoxide method, and the evanescent wave of the microresonator excites a fluorescent label on the complementary ssDNA during hybridization. Based on a temporal analysis, the different binding regimes can be identified.
随着人们对生物医学中细微变化特征的兴趣日益增加,DNA 分析方法的发展也在迅速扩展。一种很有前途的方法是基于倏逝场传感器,该传感器可以实时监测杂交过程。然而,一个挑战是区分非特异性和特异性附着。在这里,我们展示了一种基于集成环形光学微腔的杂交传感器。通过环氧化物方法将 ssDNA 功能化到表面上,并且微谐振器的倏逝波在杂交过程中激发互补 ssDNA 上的荧光标记。基于时间分析,可以识别不同的结合状态。