Laboratory of Analytical Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Athens, 157 71, Greece.
Laboratory of Analytical Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Athens, 157 71, Greece.
Anal Chim Acta. 2021 Nov 22;1186:339114. doi: 10.1016/j.aca.2021.339114. Epub 2021 Sep 28.
The low-cost e-fabrication of specialized multianalyte biosensors within the point-of-care (POC) settings in a few minutes remains a great challenge. Unlike prefabricated biosensors, 3D printing seems to be able to meet this challenge, empowering the end user with the freedom to create on-demand devices adapted to immediate bioanalytical need. Here, we describe a novel miniature all-3D-printed 4-electrode biochip, capable of the simultaneous determination of different biomarkers in a single assay. The chip is utterly fabricated via an one-step 3D printing process and it is connected to a mini portable bi-potentiostant, permitting simultaneous measurements. The bioanalytical capability of the microchip is demonstrated through the simultaneous amperometric determination of two cardiac biomarkers (cholesterol and choline) in the same blood droplet, via enzymatic assays developed on its two tiny integrated electrodes. The simultaneous determination of cholesterol and choline is free from cross-talk phenomena and interferences offering limits of detection much lower than the cut-off levels of these biomarkers in blood for coronary syndromes. The biodevice is an easy-constructed, low-cost, sensitive and e-transferable POC chip with wide scope of applicability to other enzymatic bioassays.
在几分钟内,在即时护理 (POC) 环境中以低成本制作专门的多分析物生物传感器仍然是一个巨大的挑战。与预制生物传感器不同,3D 打印似乎能够应对这一挑战,使最终用户能够自由创建按需设备,以适应即时的生物分析需求。在这里,我们描述了一种新颖的微型全 3D 打印 4 电极生物芯片,能够在单次测定中同时测定不同的生物标志物。该芯片完全通过一步 3D 打印工艺制造,并且与微型便携式双电位计相连,允许进行同时测量。通过在其两个微小的集成电极上进行酶促测定,该微芯片的生物分析能力通过同时安培测定同一血滴中的两种心脏生物标志物(胆固醇和胆碱)来证明。胆固醇和胆碱的同时测定不受串扰现象和干扰的影响,其检测限远低于这些生物标志物在血液中的冠心病综合征的截止水平。该生物器件是一种易于构建、低成本、灵敏且可转移的 POC 芯片,适用于其他酶促生物测定。