Llobera A, Demming S, Wilke R, Büttgenbach S
Institut für Mikrotechnik, Technische Universität Braunschweig, Alte Salzdahlumer Strasse 203, 38124 Braunschweig, Germany.
Lab Chip. 2007 Nov;7(11):1560-6. doi: 10.1039/b704454b. Epub 2007 Aug 21.
Compact poly(dimethylsiloxane)-based (PDMS) multiple internal reflection systems which comprise self-alignment systems, lenses, microfluidic channels and mirrors have been developed for highly sensitive absorbance measurements. With the proper definition of air mirrors at both sides of the sensing region, the optical path of the light from the LED has been meaningfully lengthened without a dramatic increase of the mean flow cell volume. By recursive positioning of such air mirrors, propagating multiple internal reflection (PMIR) systems have been designed, simulated and characterized. Experimental results confirm the ray-tracing predictions and allow the determining that there are some regions of the mean flow cell volume that do not contribute to the increase of the sensitivity. The tailoring of the sensing region, following the optical path, results in a similar limit of detection (110 nM) for fluorescein diluted in phosphate buffer. Finally, a ring configuration, labelled RMIR, has also been developed. With the addition of a third air mirror, the LOD can be decreased to 41 nM with the additional advantage of a substantial decrease of the length of the sensing region. These results confirm the validity of the proposed systems for high sensitivity measurements.
已经开发出基于紧凑聚二甲基硅氧烷(PDMS)的多内反射系统,该系统包括自对准系统、透镜、微流体通道和镜子,用于高灵敏度吸光度测量。通过在传感区域两侧适当定义空气镜,来自发光二极管的光的光路在平均流通池体积没有大幅增加的情况下得到了有效延长。通过对这种空气镜进行递归定位,设计、模拟并表征了传播型多内反射(PMIR)系统。实验结果证实了光线追踪预测,并确定了平均流通池体积中存在一些对灵敏度增加没有贡献的区域。沿着光路对传感区域进行调整,对于在磷酸盐缓冲液中稀释的荧光素,检测限类似(110 nM)。最后,还开发了一种环形配置,标记为RMIR。通过添加第三个空气镜,检测限可降至41 nM,同时传感区域长度大幅缩短还有额外优势。这些结果证实了所提出的系统用于高灵敏度测量的有效性。