Abe Koji, Suzuki Koji, Citterio Daniel
Department of Applied Chemistry, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.
Anal Chem. 2008 Sep 15;80(18):6928-34. doi: 10.1021/ac800604v. Epub 2008 Aug 13.
This paper presents an inkjet printing method for the fabrication of entire microfluidic multianalyte chemical sensing devices made from paper suitable for quantitative analysis, requiring only a single printing apparatus. An inkjet printing device is used for the fabrication of three-dimensional hydrophilic microfluidic patterns (550-mum-wide flow channels) and sensing areas (1.5 mm x 1.5 mm squares) on filter paper, by inkjet etching, and thereby locally dissolving a hydrophobic poly(styrene) layer obtained by soaking of the filter paper in a 1 wt % solution of poly(styrene) in toluene. In a second step, the same inkjet printing device is used to print "chemical sensing inks", comprising the necessary reagents for colorimetric analytical assays, into well-defined areas of the patterned microfluidic paper devices. The arrangement of the patterns, printed inks, and sensing areas was optimized to obtain homogeneous color responses. The results are "all-inkjet-printed" chemical sensing devices for the simultaneous determination of pH, total protein, and glucose in clinically relevant concentration ranges for urine analysis (0.46-46 muM for human serum albumin, 2.8-28.0 mM for glucose, and pH 5-9). Quantitative data are obtained by digital color analysis in the Lab* color space by means of a color scanner and a simple computer program.
本文介绍了一种喷墨打印方法,用于制造由纸张制成的适用于定量分析的完整微流体多分析物化学传感装置,仅需一台打印设备。通过喷墨蚀刻,使用喷墨打印设备在滤纸表面制造三维亲水性微流体图案(550微米宽的流动通道)和传感区域(1.5毫米×1.5毫米的正方形),从而局部溶解通过将滤纸浸泡在1重量%的聚苯乙烯甲苯溶液中而获得的疏水性聚苯乙烯层。在第二步中,使用同一台喷墨打印设备将包含比色分析所需试剂的“化学传感墨水”打印到图案化微流体纸质装置的特定区域中。对图案、打印墨水和传感区域的布局进行了优化,以获得均匀的颜色响应。所得到的结果是“全喷墨打印”的化学传感装置,可用于在临床相关浓度范围内同时测定尿液分析中的pH值、总蛋白和葡萄糖(人血清白蛋白为0.46 - 46微摩尔,葡萄糖为2.8 - 28.0毫摩尔,pH值为5 - 9)。通过彩色扫描仪和一个简单的计算机程序,在Lab*颜色空间中进行数字颜色分析来获取定量数据。