Qiao Hong, Guan Bin, Gooding J Justin, Reece Peter J
School of Physics, The University of New South Wales, Sydney, New South Wales 2052, Australia.
Opt Express. 2010 Jul 5;18(14):15174-82. doi: 10.1364/OE.18.015174.
In this article we present an optical biosensor for label-free detection of trace levels of protease activity. The scheme is based on surface functionalized porous silicon optical structures which supports optical Bloch surface modes. The optical structure provides a resonant optical mode for high sensitivity detection and open access of the sensing layer to the target enzyme. Protease detection is based on the digestion of gelatin, covalently attached inside the pore space, resulting in a spectral blue-shift of the optical mode. Monitoring of spatially separated resonant optical modes is used to eliminate optical response from nonspecific adsorption.
在本文中,我们展示了一种用于无标记检测痕量蛋白酶活性的光学生物传感器。该方案基于表面功能化的多孔硅光学结构,其支持光学布洛赫表面模式。该光学结构提供了一种用于高灵敏度检测的共振光学模式,并且传感层可直接接触目标酶。蛋白酶检测基于对共价连接在孔隙空间内的明胶的消化,这会导致光学模式的光谱蓝移。监测空间分离的共振光学模式用于消除非特异性吸附产生的光学响应。