Kim Dong Sung, Lee Se Hwan, Ahn Chong H, Lee Jae Y, Kwon Tai Hun
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), San 31 Hyoja-dong Nam-gu, Pohang, Kyungbuk 790-784, Korea.
Lab Chip. 2006 Jun;6(6):794-802. doi: 10.1039/b516495h. Epub 2006 Apr 4.
Blood typing is the most important test for both transfusion recipients and blood donors. In this paper, a low cost disposable blood typing integrated microfluidic biochip has been designed, fabricated and characterized. In the biochip, flow splitting microchannels, chaotic micromixers, reaction microchambers and detection microfilters are fully integrated. The loaded sample blood can be divided by 2 or 4 equal volumes through the flow splitting microchannel so that one can perform 2 or 4 blood agglutination tests in parallel. For the purpose of obtaining efficient reaction of agglutinogens on red blood cells (RBCs) and agglutinins in serum, we incorporated a serpentine laminating micromixer into the biochip, which combines two chaotic mixing mechanisms of splitting/recombination and chaotic advection. Relatively large area reaction microchambers were also introduced for the sake of keeping the mixture of the sample blood and serum during the reaction time before filtering. The gradually decreasing multi-step detection microfilters were designed in order to effectively filter the reacted agglutinated RBCs, which show the corresponding blood group. To achieve the cost-effectiveness of the microfluidic biochip for disposability, the biochip was realized by the microinjection moulding of COC (cyclic olefin copolymer) and thermal bonding of two injection moulded COC substrates in mass production with a total fabrication time of less than 20 min. Mould inserts of the biochip for the microinjection moulding were fabricated by SU-8 photolithography and the subsequent nickel electroplating process. Human blood groups of A, B and AB have been successfully determined with the naked eye, with 3 microl of the whole sample bloods, by means of the fabricated biochip within 3 min.
血型鉴定对于输血受者和献血者来说都是最重要的检测。本文设计、制作并表征了一种低成本一次性血型鉴定集成微流控生物芯片。在该生物芯片中,流路分流微通道、混沌微混合器、反应微腔和检测微滤器完全集成在一起。加载的样本血液可通过流路分流微通道被分成2或4等份体积,以便能并行进行2或4次血液凝集试验。为了使红细胞上的凝集原与血清中的凝集素高效反应,我们在生物芯片中引入了一种蛇形层压微混合器,它结合了分裂/重组和混沌平流这两种混沌混合机制。还引入了相对较大面积的反应微腔,以便在过滤前的反应时间内保持样本血液和血清的混合。设计了逐渐变窄的多步检测微滤器,以有效过滤已反应的凝集红细胞,这些红细胞显示相应的血型。为了实现微流控生物芯片一次性使用的成本效益,该生物芯片通过环烯烃共聚物(COC)的微注塑成型以及两个注塑成型的COC基板的热键合在批量生产中实现,总制作时间不到20分钟。用于微注塑成型的生物芯片模具镶件通过SU-8光刻和随后的镍电镀工艺制作。借助制作的生物芯片,用3微升全血样本在3分钟内成功地用肉眼确定了A、B和AB型人类血型。