U.T. Nanomateriales, INTI-Procesos Superficiales, Instituto Nacional de Tecnología Industrial, Av. Gral. Paz 5445, San Martín B1650WAB, Argentina.
Centro de Micro y Nanoelectrónica, Instituto Nacional de Tecnología Industrial, Av. Gral. Paz 5445, San Martín B1650WAB, Argentina.
Biosensors (Basel). 2018 Nov 15;8(4):109. doi: 10.3390/bios8040109.
In this article, we introduce the use of a carboxy-functionalized waterborne carbon nanotube ink for the fabrication of an amperometric biosensor aimed at the quantification of β-lactoglobulin. Detection of this protein from cow's milk was performed by a sandwich immunoassay onto printed carbon nanotube electrodes. The electrodes were printed using a carbon nanotube ink modified with polystyrene beads containing a high amount of carboxylic groups for protein immobilization. This strategy showed enhanced sensing performance compared to the use of oxidative treatments for the functionalization of electrodes. These electrodes showed an excellent electrochemical behavior, and proteins could be immobilized on their surface via the carbodiimide reaction. These antibody-immobilized carbon nanotube electrodes allowed for the detection of β-lactoglobulin in sub-ppm concentrations.
在本文中,我们介绍了羧基功能化的水性碳纳米管油墨在安培生物传感器制造中的应用,该传感器旨在定量检测β-乳球蛋白。通过在印刷碳纳米管电极上进行夹心免疫测定,从牛奶中检测到这种蛋白质。电极使用经过聚苯乙烯珠改性的碳纳米管油墨进行印刷,该聚苯乙烯珠含有大量的羧酸基团,用于蛋白质固定化。与电极的氧化处理相比,这种策略显示出了更好的传感性能。这些电极表现出优异的电化学行为,并且可以通过碳二亚胺反应将蛋白质固定在其表面上。这些抗体固定化的碳纳米管电极允许检测亚ppm 浓度的β-乳球蛋白。