Literature DB >> 20093001

Direct label-free electrical immunodetection in human serum using a flow-through-apparatus approach with integrated field-effect transistors.

Ansoon Kim1, Chil Seong Ah, Chan Woo Park, Jong-Heon Yang, Taeyoub Kim, Chang-Geun Ahn, Sun Hee Park, Gun Yong Sung.   

Abstract

In order to identify changes in the levels of key proteins in response to the onset or development of a disease, the research fields of proteomics and genomics seek to develop new biomarkers. Specifically, simple and fast biomarker screens have a central role in many areas of healthcare, including disease diagnosis and drug discovery. Biologically modified field-effect transistor (BioFET) is one of the most attractive approaches because of the on-chip integration of the sensor array, fast response, high reliability and low-cost mass production. However, the BioFETs used to detect macromolecules have been operated only in buffer solution with low salt concentrations because of the Debye screening length of blood or serum. Here we report a novel detection technique for direct label-free immunodetection of cancer markers in human serum using a Si-FET that was fabricated by conventional photolithographic processes. The proposed sensing method shows no dissociation of antigen-antibody binding as in general immunoassays, unlike the previous reports on Si-FET sensors. This method therefore overcomes the Debye length problem of immunodetection in human fluids, such as serum, that are generally encountered by FET-based biosensors. Our results demonstrate specific label-free and real-time immunodetection of a cancer marker at a concentration of 0.2 ng/mL in human serum, quantitative detection of the marker from 0.2 to 114 ng/mL, and successful multiplexed sensing of three different cancer markers. We believe that connecting our simple electrical detection method, which does not require pretreatment of serum, with well-established whole blood filter technology will contribute to the development of new point-of-care testing (POCT) sensors. (c) 2009 Elsevier B.V. All rights reserved.

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Year:  2009        PMID: 20093001     DOI: 10.1016/j.bios.2009.12.026

Source DB:  PubMed          Journal:  Biosens Bioelectron        ISSN: 0956-5663            Impact factor:   10.618


  8 in total

Review 1.  Molecular analysis of blood with micro-/nanoscale field-effect-transistor biosensors.

Authors:  Matthew S Makowski; Albena Ivanisevic
Journal:  Small       Date:  2011-06-03       Impact factor: 13.281

2.  Immunoassays for the cancer biomarker CA125 based on a large-birefringence nematic liquid-crystal mixture.

Authors:  Shih-Hung Sun; Mon-Juan Lee; Yun-Han Lee; Wei Lee; Xiaolong Song; Chao-Yuan Chen
Journal:  Biomed Opt Express       Date:  2014-12-23       Impact factor: 3.732

3.  Dithiobis(succinimidyl propionate) modified gold microarray electrode based electrochemical immunosensor for ultrasensitive detection of cortisol.

Authors:  Sunil K Arya; Ganna Chornokur; Manju Venugopal; Shekhar Bhansali
Journal:  Biosens Bioelectron       Date:  2010-03-18       Impact factor: 10.618

4.  Technical Perspectives on Applications of Biologically Coupled Gate Field-Effect Transistors.

Authors:  Toshiya Sakata
Journal:  Sensors (Basel)       Date:  2022-07-01       Impact factor: 3.847

Review 5.  Droplet-based Biosensing for Lab-on-a-Chip, Open Microfluidics Platforms.

Authors:  Piyush Dak; Aida Ebrahimi; Vikhram Swaminathan; Carlos Duarte-Guevara; Rashid Bashir; Muhammad A Alam
Journal:  Biosensors (Basel)       Date:  2016-04-14

6.  Development of an immunoFET biosensor for the detection of biotinylated PCR product.

Authors:  Wannaporn Muangsuwan; Chamras Promptmas; Wutthinan Jeamsaksiri; Win Bunjongpru; Awirut Srisuwan; Charndet Hruanun; Amporn Poyai; Prapimpun Wongchitrat; Montri Yasawong
Journal:  Heliyon       Date:  2016-10-27

7.  On the Use of Scalable NanoISFET Arrays of Silicon with Highly Reproducible Sensor Performance for Biosensor Applications.

Authors:  Dipti Rani; Vivek Pachauri; Achim Mueller; Xuan Thang Vu; Thanh Chien Nguyen; Sven Ingebrandt
Journal:  ACS Omega       Date:  2016-07-12

Review 8.  Miniaturized technology for protein and nucleic acid point-of-care testing.

Authors:  Felix Olasagasti; Juan Carlos Ruiz de Gordoa
Journal:  Transl Res       Date:  2012-03-11       Impact factor: 7.012

  8 in total

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