Detection of heart-type fatty acid-binding protein (h-FABP) using piezoresistive polymer microcantilevers functionalized by a dry method

被引:0
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作者
Dilip Kumar Agarwal
Abhinav Prasad
Madhuri Vinchurkar
Sahir Gandhi
Deepika Prabhakar
Soumyo Mukherji
V. Ramgopal Rao
机构
[1] Centre of Excellence in Nanoelectronics,Department of Electrical Engineering
[2] IIT Bombay,Department of Biosciences and Bioengineering
[3] Centre for Research in Nanotechnology and Science,undefined
[4] IIT Bombay,undefined
[5] IIT Bombay,undefined
来源
Applied Nanoscience | 2018年 / 8卷
关键词
Microcantilevers; Piezoresistive; h-FABP; Sensing; Cardiac marker;
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学科分类号
摘要
Piezoresistive microcantilever-based sensor platform is being used for the last two decades due to their low cost, rapid response and label-free detection system. In this work, we are reporting a microfabricated piezoresistive SU-8/carbon black (polymer cantilever)-based sensor platform for the detection of a clinically important early-stage cardiac marker, i.e., fatty acid-binding protein. It is a most preferred cardiac marker for the diagnosis of acute myocardial infarction. The embodiment of the sensor is a SU-8 microcantilever chip with an integrated nanoparticle composite (carbon black) as a piezoresistor for on-chip electrical transduction. Prior to improving the sensing and susceptibility towards the specific target biomolecule (i.e., h-FABP), the fabricated SU-8 polymer cantilevers were subjected to tailored functionalization. This includes the use of an in-house dry method of hot wire chemical vapour deposition technique to graft amine groups onto the SU-8 surface. The surface-modified microcantilevers were further integrated with a polydimethylsiloxane liquid flow cell and connected externally with an electrical read-out system. Immobilization of the antibody corresponding to the marker protein on the microcantilever surface and subsequent recording of the signal generated upon the antibody–antigen interaction were carried out inside the liquid flow cell. Using our optimized immobilization protocol with this experimental set-up, we were successfully able to detect h-FABP concentration as low as 100 ng/ml.
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页码:1031 / 1042
页数:11
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