Conflict of interest: Antonietta Parracino has been partially funded by the new venture company Bionano Photonics. The company was closed in 2009.
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Arraying prostate specific antigen PSA and Fab anti-PSA using light-assisted molecular immobilization technology†
Article first published online: 27 JUL 2010
DOI: 10.1002/pro.461
Copyright © 2010 The Protein Society
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How to Cite
Parracino, A., Neves-Petersen, M. T., di Gennaro, A. K., Pettersson, K., Lövgren, T. and Petersen, S. B. (2010), Arraying prostate specific antigen PSA and Fab anti-PSA using light-assisted molecular immobilization technology. Protein Science, 19: 1751–1759. doi: 10.1002/pro.461
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Publication History
- Issue published online: 23 AUG 2010
- Article first published online: 27 JUL 2010
- Manuscript Accepted: 8 JUL 2010
- Manuscript Revised: 6 JUL 2010
- Manuscript Received: 26 MAR 2010
References
- 1, , , , , ( 2000) Serum total and free prostate-specific antigen for breast cancer diagnosis in women. Clin Cancer Res 6: 467–473.
- 2, ( 2001) Prostate-specific antigen (PSA/hK3): a further player in the field of breast cancer diagnosis. Breast Cancer Res 3: 238–243.
- 3, , , ( 2004) Immunoassay of total prostate-specific antigen using europium[III] nanoparticle labels and streptavidin–biotin technology. J. Immunol Meth 294: 111–122.
- 4, , , , ( 2003) Femtomolar detection of prostate-specific antigen: an immunoassay based on surface-enhanced Raman scattering and immunogold labels. Anal Chem 75: 5936–5943.
- 5, ( 2005) Development and evaluation of three real-time immuno-PCR assemblages for quantification of PSA. J Immunol Methods 304: 107–116.
- 6, , , , , , , , ( 2000) Immunoassays with rolling circle DNA amplification: a versatile platform for ultrasensitive antigen detection. Proc Natl Acad Sci USA 97: 10113–10119.
- 7, , ( 2003) Nanoparticle-based bio-barcodes for the ultrasensitive detection of proteins. Science 301: 1884–1886.
- 8, , , , , , ( 2006) Detection of protein analytes via nanoparticle-based bio-barcode technology. Anal Chem 78: 2055–2059.
- 9, , , ( 2004) Disposable noncompetitive immunosensor for free and total prostate-specific antigen based on capacitance measurement. Anal Chem 76: 5649–5656.
- 10, , , ( 2004) Surface plasmon fluorescence immunoassay of free prostate-specific antigen in human plasma at the femtomolar level. Anal Chem 76: 6765–6770.
- 11, , , , , , ( 2005) Novel electrical detection of label-free disease marker proteins using piezoresistive self-sensing micro-cantilevers. Biosens Bioelectron 20: 1932–1938.
- 12, , , , , , , , , , , , , , ( 2005) Autoantibody signatures in prostate cancer. New Eng J Med 353: 1224–1235.
- 13, , , , , , ( 1991) Prostate-specific antigen in serum occurs predominantly in complex with a1-antichymotrypsin. Clin Chem 37: 1618–1625.
- 14, , , , , , , ( 1997) Molecular forms of prostate-specific antigen in the serum of women with benign and malignant breast diseases. Br J Cancer 76: 1087–1094.
- 15, ( 2004) Prostate specific antigen gene regulation by androgen receptor. J Cell Biochem 93: 233–241.Direct Link:
- 16, , , , ( 2007) Biosensor developments: application to prostate-specific antigen detection. Trends Biotechol 25: 125–131.
- 17, , , , ( 2006) Photonic activation of disulfide bridges achieves oriented protein immobilization on biosensor surfaces. Protein Sci 15: 343–351.Direct Link:
- 18, , , , , ( 2007) Light-induced immobilisation of biomolecules as an attractive alternative to microdroplet dispensing-based arraying technologies. Proteomics 7: 3491–3499.Direct Link:
- 19, , ( 1994) A structural model for the prostate disease marker, human prostate specific antigen. Protein Sci 11: 2033–2044.Direct Link:
- 20, , , ( 1998) The origin of trypsin: evidence for multiple gene duplications in trypsins. J Mol Evol 47: 353–356.
- 21, , , , ( 2008) Chemical strategies for generating protein biochips. Angew Chem Int Ed 47: 9618–9647.Direct Link:
- 22, , ( 1999) Consevation of cys-cys trp structural triads and their geometry in the protein domains of immunoglobulin superfamily members. Mol Immunol 36: 373–386.
- 23, , , , ( 2009a) Immobilizing biomolecules near the diffraction limit. J Nanosci Nanotechnol 9: 4333–4337.
- 24, , , ( 2009b) Photonic immobilization of high density protein arrays using Fourier optics. Proteomics 9: 1–4.Direct Link:
- 25, , , , ( 1999) Characterization of monoclonal antibodies for prostate-specific antigen and development of highly sensitive free prostate-specific antigen assays. Clin Chem 45: 347–354.
- 26, , , ( 2000) Miniature single-particle immunoassay for prostate-specific antigen in serum using recombinant Fab fragments. Clin Chem 46: 1755–1761.
- 27, , , , , , ( 2002) High probability of disrupting a disulphide bridge mediated by an endogenous excited tryptophan residue. Protein Sci 11: 588–600.Direct Link:

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