Institute of Photonics and Electronics of the CAS, Chaberská 1014/57, 182 51, Prague, Czech Republic.
Institute of Photonics and Electronics of the CAS, Chaberská 1014/57, 182 51, Prague, Czech Republic.
Biosens Bioelectron. 2022 Sep 15;212:114426. doi: 10.1016/j.bios.2022.114426. Epub 2022 May 27.
Here we study the analytical performance of label-free optical biosensors with respect to analyte-induced refractive index changes that can be measured by a biosensor (refractive index resolution). We present an analytical model that interrelates the refractive index resolution and the parameters of the optical platform of a biosensor. We demonstrate that the figure of merit (FOM), which has been widely used to design optical platforms of label-free optical biosensors, is not an appropriate metric to guide the design or predict the performance of label-free optical biosensors. Therefore, we propose an extended definition of FOM that addresses its limitations. We confirm the validity of the proposed approach by both numerical simulations and experiments. Finally, we show that the analytical model of the refractive index resolution not only makes it possible to predict the performance of a biosensor but also provides strategies for achieving optimal performance.
我们研究了无标记光学生物传感器在分析物引起的折射率变化方面的分析性能,这些变化可以通过生物传感器(折射率分辨率)进行测量。我们提出了一个分析模型,该模型将生物传感器的折射率分辨率和光学平台的参数联系起来。我们证明了已经广泛用于设计无标记光学生物传感器的光学平台的品质因数(FOM)并不是一个合适的指标来指导无标记光学生物传感器的设计或预测其性能。因此,我们提出了一个扩展的 FOM 定义,以解决其局限性。我们通过数值模拟和实验验证了所提出方法的有效性。最后,我们表明,折射率分辨率的分析模型不仅可以预测生物传感器的性能,还可以提供实现最佳性能的策略。