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首页> 外文期刊>ACS applied materials & interfaces >Magnetic Printing of a Biosensor: Inexpensive Rapid Sensing To Detect Picomolar Amounts of Antigen with Antibody-Functionalized Carbon Nanotubes
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Magnetic Printing of a Biosensor: Inexpensive Rapid Sensing To Detect Picomolar Amounts of Antigen with Antibody-Functionalized Carbon Nanotubes

机译:生物传感器的磁性印刷:廉价快速感测,以检测与抗体官能化碳纳米管的皮摩尔量的抗原量

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摘要

When an antibody (Ab) is immobilized on its surface, a carbon nanotube (CNT) becomes a biosensor that detects the corresponding antigen (Ag) because Ag-Ab complexes formed on the CNT surface moderate the current flow through it. We synthesized a biological ink containing CNTs that are twice functionalized, first with magnetic nanoparticles and thereafter with the anti-c-Myc monoclonal Ab,:The ink is pipetted and dynamically self-organized by an external magnetic field into a dense electrically conducting sensor strip that measures the decrease in current when a sample containing c-Myc Ag is deposited on it. Prototypes are rapidly fabricated materials that cost less than 20 cents (Canadian) for each sensor. With larger current decreases due to real-time specific Ag Ab binding for higher e-Myc concentrations, the biosensor distinguishes between picomolar cMYc concentrations within a minute, offering proof of concept of a simple, rapid, economical, and sensitive method to detect specific molecules recognizable by Abs.
机译:当抗体(AB)固定在其表面上时,碳纳米管(CNT)成为检测相应抗原(AG)的生物传感器,因为在CNT表面上形成的Ag-AB复合物通过其中等电流。我们合成含有两次官能化的CNT的生物油墨,首先用磁性纳米颗粒,然后用抗C-myc单克隆AB,:用外部磁场移液并动态地将外部磁场自组织成致密导电传感器条当沉积含有C-MYC AG的样品时,测量电流的降低。原型是迅速制造的材料,用于每个传感器的成本小于20美分(加拿大)。由于电流较大,由于实时特异性Ag Ab结合较高的E-Myc浓度,生物传感器在一分钟内分别区分皮摩尔CMYC浓度,提供了检测特定分子的简单,快速,经济,敏感方法的概念证明ABS无法识别。

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