Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu, Taiwan, 30013.
Biomed Microdevices. 2013 Jun;15(3):539-51. doi: 10.1007/s10544-013-9753-0.
Seasonal and novel influenza infections have the potential to cause worldwide pandemics. In order to properly treat infected patients and to limit its spread, a rapid, accurate and automatic influenza diagnostic tool needs to be developed. This study therefore presents a new integrated microfluidic system for the rapid detection of influenza infections. It integrated a suction-type, pneumatic-driven microfluidic control module, a magnetic bead-based fluorescent immunoassay (FIA) and an end-point optical detection module. This new system can successfully distinguish between influenza A and B using a single chip test within 15 min automatically, which is faster than existing devices. By utilizing the micromixers to thoroughly wash out the sputum-like mucus, this microfluidic system could be used for the diagnosis of clinical specimens and reduced the required sample volume to 40 μL. Furthermore, the results of diagnostic assays from 86 patient specimens have demonstrated that this system has 84.8 % sensitivity and 75.0 % specificity. This developed system may provide a powerful platform for the fast screening of influenza infections.
季节性和新型流感感染有可能导致全球大流行。为了正确治疗感染患者并限制其传播,需要开发一种快速、准确和自动的流感诊断工具。因此,本研究提出了一种用于快速检测流感感染的新型集成微流控系统。它集成了一种抽吸式、气动驱动的微流控控制模块、基于磁珠的荧光免疫分析(FIA)和终点光学检测模块。该新系统可以在 15 分钟内自动使用单个芯片测试成功区分流感 A 和 B,比现有设备更快。通过利用微混合器彻底冲洗出类似痰液的粘液,该微流控系统可用于临床标本的诊断,并将所需样本量减少到 40 μL。此外,对 86 份患者标本的诊断检测结果表明,该系统的灵敏度为 84.8%,特异性为 75.0%。该开发的系统可为流感感染的快速筛查提供一个强大的平台。