Literature DB >> 16013886

Multiple enzyme layers on carbon nanotubes for electrochemical detection down to 80 DNA copies.

Bernard Munge1, Guodong Liu, Greg Collins, Joseph Wang.   

Abstract

Signal amplification using enzyme multilayers on carbon nanotube (CNT) templates is shown to yield a remarkably sensitive electrochemical detection of proteins and nucleic acids. The electrostatic layer-by-layer (LBL) self-assembly onto CNT carriers maximizes the ratio of enzyme tags per binding event to offer the greatest amplification factor reported to date. Absorption spectroscopy, TEM, and electrochemical characterization confirm the formation of LBL enzyme nanostructures on individual CNT carriers. The enzymatic activity is found to increase with the number of enzyme layers. The new protocol is illustrated for monitoring sandwich hybridization and antibody-antigen interactions in connection with alkaline phosphatase tracers. Factors affecting the enzyme loading and the analytical performance have been optimized. Such amplified bioelectronic assays allow detection of DNA and proteins down to 80 copies (5.4 aM) and 2000 protein molecules (67 aM), respectively. Given the enormous amplification afforded by the new CNT-LBL biolabel, such route offers great promise for ultrasensitive detection of infectious agents and disease markers.

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Year:  2005        PMID: 16013886     DOI: 10.1021/ac050132g

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  16 in total

1.  Ultrasensitive aptamer-based protein detection via a dual amplified biocatalytic strategy.

Authors:  Yun Xiang; Yuyong Zhang; Xiaoqing Qian; Yaqin Chai; Joseph Wang; Ruo Yuan
Journal:  Biosens Bioelectron       Date:  2010-04-14       Impact factor: 10.618

Review 2.  Measurement of biomarker proteins for point-of-care early detection and monitoring of cancer.

Authors:  James F Rusling; Challa V Kumar; J Silvio Gutkind; Vyomesh Patel
Journal:  Analyst       Date:  2010-07-08       Impact factor: 4.616

Review 3.  Nanomaterials-based electrochemical immunosensors for proteins.

Authors:  James F Rusling
Journal:  Chem Rec       Date:  2012-01-30       Impact factor: 6.771

4.  Sandwich electrochemical immunoassay for the detection of Staphylococcal enterotoxin B based on immobilized thiolated antibodies.

Authors:  Madhu Prakash Chatrathi; Joseph Wang; Greg E Collins
Journal:  Biosens Bioelectron       Date:  2007-01-16       Impact factor: 10.618

5.  Programming the detection limits of biosensors through controlled nanostructuring.

Authors:  Leyla Soleymani; Zhichao Fang; Edward H Sargent; Shana O Kelley
Journal:  Nat Nanotechnol       Date:  2009-09-27       Impact factor: 39.213

6.  Rapid and efficient protein digestion using trypsin-coated magnetic nanoparticles under pressure cycles.

Authors:  Byoungsoo Lee; Daniel Lopez-Ferrer; Byoung Chan Kim; Hyon Bin Na; Yong Il Park; Karl K Weitz; Marvin G Warner; Taeghwan Hyeon; Sang-Won Lee; Richard D Smith; Jungbae Kim
Journal:  Proteomics       Date:  2010-12-17       Impact factor: 3.984

7.  Sensitive electrochemical immunosensor for matrix metalloproteinase-3 based on single-wall carbon nanotubes.

Authors:  Bernard S Munge; Jacqueline Fisher; Lines N Millord; Colleen E Krause; Richard S Dowd; James F Rusling
Journal:  Analyst       Date:  2010-03-31       Impact factor: 4.616

8.  Magnetic particles in ultrasensitive biomarker protein measurements for cancer detection and monitoring.

Authors:  Vigneshwaran Mani; Bhaskara V Chikkaveeraiah; James F Rusling
Journal:  Expert Opin Med Diagn       Date:  2011-09-01

9.  Characterization of multienzyme-antibody-carbon nanotube bioconjugates for immunosensors.

Authors:  Gary C Jensen; Xin Yu; Joseph D Gong; Bernard Munge; Ashwin Bhirde; Sang N Kim; Fotios Papadimitrakopoulos; James F Rusling
Journal:  J Nanosci Nanotechnol       Date:  2009-01

10.  Designing nanomaterial-enhanced electrochemical immunosensors for cancer biomarker proteins.

Authors:  James F Rusling; Gregory Sotzing; Fotios Papadimitrakopoulosa
Journal:  Bioelectrochemistry       Date:  2009-04-05       Impact factor: 5.373

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