Irawan Rudi, Tay Chia Meng, Tjin Swee Chuan, Fu Chit Yaw
Singapore-University of Washington Alliance, Biomedical Engineering Research Centre, Nanyang Technological University, Singapore.
Lab Chip. 2006 Aug;6(8):1095-8. doi: 10.1039/b607834f. Epub 2006 Jun 28.
This paper reports a compact and practical fluorescence sensor using an in-fiber microchannel. A blue LED, a multimode PMMA or silica fiber and a mini-PMT were used as an excitation source, a light guide and a fluorescence detector, respectively. Microfluidic channels of 100 microm width and 210 microm depth were fabricated in the optical fibers using a direct-write CO(2) laser system. The experimental results show that the sensor has high sensitivity, able to detect 0.005 microg L(-1) of fluorescein in the PBS solution, and the results are reproducible. The results also show that the silica fiber sensor has better sensitivity than that of the PMMA fiber sensor. This could be due to the fouling effect of the frosty layer formed at the microchannel made within the PMMA fiber. It is believed that this fiber sensor has the potential to be integrated into microfluidic chips for lab-on-a-chip applications.
本文报道了一种使用光纤微通道的紧凑型实用荧光传感器。分别使用蓝色发光二极管、多模聚甲基丙烯酸甲酯(PMMA)或石英光纤以及微型光电倍增管作为激发源、光导和荧光探测器。利用直写式CO₂激光系统在光纤中制作了宽度为100微米、深度为210微米的微流体通道。实验结果表明,该传感器具有高灵敏度,能够检测PBS溶液中0.005微克/升的荧光素,且结果具有可重复性。结果还表明,石英光纤传感器比PMMA光纤传感器具有更好的灵敏度。这可能是由于在PMMA光纤内制作的微通道处形成的霜层的污染效应。据信,这种光纤传感器有潜力集成到用于芯片实验室应用的微流体芯片中。