School of Chemistry, University of Birmingham, Birmingham B15 2TT, UK.
Process Instruments (UK) Ltd., Burnley BB12 0BT, UK.
Biosensors (Basel). 2020 Sep 24;10(10):134. doi: 10.3390/bios10100134.
We report a novel self-referenced diffraction-based leaky waveguide (LW) comprising a thin (~2 µm) film of a photofunctionalisable hydrogel created by covalent attachment of a biotinylated photocleavable linker to chitosan. Streptavidin attached to the chitosan via the photocleavable linker was selectively removed by shining 365 nm light through a photomask to create an array of strips with high and low loading of the protein, which served as sensor and reference regions respectively. The differential measurements between sensor and reference regions were used for measuring analytes (i.e., biotin protein A and IgG) while reducing environmental and non-specific effects. These include changes in temperature and sample composition caused by non-adsorbing and adsorbing species, leading to reduction in effects by ~98%, ~99%, and ~97% respectively compared to the absolute measurements. The novelty of this work lies in combining photofunctionalisable hydrogels with diffraction-based LWs for referencing. This is needed to realise the full potential of label-free optical biosensors to measure analyte concentrations in real samples that are complex mixtures, and to allow for sample analysis outside of laboratories where drifts and fluctuations in temperature are observed.
我们报告了一种新型的自参考基于衍射的泄漏波导 (LW),它由一层约 2 µm 厚的可光功能化的水凝胶组成,该水凝胶通过将生物素化的光可裂解连接物共价连接到壳聚糖上而形成。通过光掩模照射 365nm 光选择性地去除附着在壳聚糖上的链霉亲和素,从而在光掩模上创建了具有高和低蛋白负载的条带阵列,分别作为传感器和参考区域。传感器和参考区域之间的差分测量用于测量分析物(即生物素化蛋白 A 和 IgG),同时减少环境和非特异性影响。这些影响包括由非吸附和吸附物质引起的温度和样品组成的变化,与绝对测量相比,分别减少了约 98%、99%和 97%。这项工作的新颖之处在于将光功能化水凝胶与基于衍射的 LW 结合起来进行参考。这对于实现无标记光学生物传感器在实际样品中测量分析物浓度的全部潜力是必要的,这些实际样品是复杂的混合物,并允许在实验室之外进行样品分析,在实验室之外会观察到温度的漂移和波动。