School of Electronic Science and Engineering, Collaborative Innovation Center of Advanced Microstructures , Nanjing University , Nanjing 210093 , China.
Materials Science and Engineering Program and Department of Mechanical Engineering , The University of Texas at Austin , Austin , Texas 78712 , United States.
Nano Lett. 2018 Jun 13;18(6):3322-3327. doi: 10.1021/acs.nanolett.8b00003. Epub 2018 Feb 12.
Multiplexing, one of the main trends in biosensors, aims to detect several analytes simultaneously by integrating miniature sensors on a chip. However, precisely depositing electrode materials and selective enzymes on distinct microelectrode arrays remains an obstacle to massively produced multiplexed sensors. Here, we report on a "drop-on-demand" inkjet printing process to fabricate multiplexed biosensors based on nanostructured conductive hydrogels in which the electrode material and several kinds of enzymes were printed on the electrode arrays one by one by employing a multinozzle inkjet system. The whole inkjet printing process can be finished within three rounds of printing and only one round of alignment. For a page of sensor arrays containing 96 working electrodes, the printing process took merely ∼5 min. The multiplexed assays can detect glucose, lactate, and triglycerides in real time with good selectivity and high sensitivity, and the results in phosphate buffer solutions and calibration serum samples are comparable. The inkjet printing process exhibited advantages of high efficiency and accuracy, which opens substantial possibilities for massive fabrication of integrated multiplexed biosensors for human health monitoring.
多重检测是生物传感器的主要发展趋势之一,其目的是通过在芯片上集成微型传感器来同时检测多种分析物。然而,要在大量生产的多重传感器上精确地沉积电极材料和选择性酶仍然是一个障碍。在这里,我们报告了一种“按需滴注”喷墨打印工艺,用于制造基于纳米结构导电水凝胶的多重生物传感器,其中电极材料和多种酶通过使用多喷嘴喷墨系统逐个地打印在电极阵列上。整个喷墨打印过程可以在三轮打印和一轮对准内完成。对于包含 96 个工作电极的一页传感器阵列,打印过程仅需约 5 分钟。多重分析可以实时检测葡萄糖、乳酸和甘油三酯,具有良好的选择性和高灵敏度,在磷酸盐缓冲溶液和校准血清样本中的结果相当。喷墨打印工艺具有高效和精确的优点,为大规模制造用于人体健康监测的集成多重生物传感器开辟了广阔的可能性。