Qi Zhi-Mei, Matsuda Naoki, Yoshida Takamitsu, Takatsu Akiko, Kato Kenji
National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8565, Japan.
Appl Opt. 2003 Aug 1;42(22):4522-8. doi: 10.1364/ao.42.004522.
A novel optical sensor based on spectroscopic measurement of the plasmon absorption of a colloidal gold submonolayer immobilized upon a planar waveguide has been developed for label-free detection of biomolecular interactions at the sensor's surface. We fabricated the sensor by locally modifying a 50-microm-thick glass plate with hemoglobin (Hb) and then self-assembling gold colloids from the aqueous solution onto the Hb-modified area of the glass plate. Polychromatic light from a xenon-arc lamp was launched into the thin-film glass plate by use of a broadband fiber-coupling method. With the use of a CCD detector to monitor the light beam emitted from an end face of the glass plate, the plasmon absorption spectrum of the colloidal gold submonolayer was determined to depend on the polarization states of the guided light and to change with the refractive index of the medium in contact with the colloids. In addition to simplicity of fabrication and the ease of use, the sensor yields a larger absorbance sensitivity than the normal transmission measurement.
一种基于光谱测量固定在平面波导上的胶体金亚单层等离子体吸收的新型光学传感器已被开发出来,用于在传感器表面无标记地检测生物分子相互作用。我们通过用血红蛋白(Hb)局部修饰一块50微米厚的玻璃板,然后将金胶体从水溶液中自组装到玻璃板的Hb修饰区域来制造该传感器。利用宽带光纤耦合方法将氙弧灯发出的多色光射入薄膜玻璃板。通过使用电荷耦合器件(CCD)探测器监测从玻璃板端面发射的光束,确定胶体金亚单层的等离子体吸收光谱取决于导波光的偏振态,并随与胶体接触的介质的折射率而变化。除了制造简单和使用方便外,该传感器比常规透射测量具有更高的吸光度灵敏度。