An acoustic prion assay

An acoustic prion assay has been demonstrated for sheep brain samples. Only five false positives and no false negatives were observed in a test of 45 positive and 45 negative samples. The acoustic prion sensor was constructed using a thickness shear mode quartz resonator coated with a covalently bou...

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Main Authors: Gordon Hayward, Angela Catford, Aru Balachandran, Warren Stiver
Format: Article
Language:English
Published: Elsevier 2016-12-01
Series:Sensing and Bio-Sensing Research
Online Access:http://www.sciencedirect.com/science/article/pii/S2214180416301416
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spelling doaj-206b5b92528c41c2a3fc68d8deb5e0b12020-11-24T23:55:50ZengElsevierSensing and Bio-Sensing Research2214-18042016-12-01119498An acoustic prion assayGordon Hayward0Angela Catford1Aru Balachandran2Warren Stiver3School of Engineering, University of Guelph, Guelph, Ontario, Canada; Corresponding author.School of Engineering, University of Guelph, Guelph, Ontario, CanadaNational and OIE Reference Laboratory for Scrapie and CWD, Canadian Food Inspection Agency, Ottawa, Ontario, CanadaSchool of Engineering, University of Guelph, Guelph, Ontario, CanadaAn acoustic prion assay has been demonstrated for sheep brain samples. Only five false positives and no false negatives were observed in a test of 45 positive and 45 negative samples. The acoustic prion sensor was constructed using a thickness shear mode quartz resonator coated with a covalently bound recombinant prion protein. The characteristic indicator of a scrapie infected sheep brain sample was an observed shoulder in the frequency decrease in response to a sample.The response of the sensor aligns with a conformational shift in the surface protein and with the propagation mechanism of the disease. This alignment is evident in the response timing and shape, dependence on concentration, cross species behaviour and impact of blood plasma. This alignment is far from sufficient to prove the mechanism of the sensor but it does offer the possibility of a rapid and inexpensive additional tool to explore prion disease. Keywords: Prions, Thickness shear mode quartz sensorhttp://www.sciencedirect.com/science/article/pii/S2214180416301416
collection DOAJ
language English
format Article
sources DOAJ
author Gordon Hayward
Angela Catford
Aru Balachandran
Warren Stiver
spellingShingle Gordon Hayward
Angela Catford
Aru Balachandran
Warren Stiver
An acoustic prion assay
Sensing and Bio-Sensing Research
author_facet Gordon Hayward
Angela Catford
Aru Balachandran
Warren Stiver
author_sort Gordon Hayward
title An acoustic prion assay
title_short An acoustic prion assay
title_full An acoustic prion assay
title_fullStr An acoustic prion assay
title_full_unstemmed An acoustic prion assay
title_sort acoustic prion assay
publisher Elsevier
series Sensing and Bio-Sensing Research
issn 2214-1804
publishDate 2016-12-01
description An acoustic prion assay has been demonstrated for sheep brain samples. Only five false positives and no false negatives were observed in a test of 45 positive and 45 negative samples. The acoustic prion sensor was constructed using a thickness shear mode quartz resonator coated with a covalently bound recombinant prion protein. The characteristic indicator of a scrapie infected sheep brain sample was an observed shoulder in the frequency decrease in response to a sample.The response of the sensor aligns with a conformational shift in the surface protein and with the propagation mechanism of the disease. This alignment is evident in the response timing and shape, dependence on concentration, cross species behaviour and impact of blood plasma. This alignment is far from sufficient to prove the mechanism of the sensor but it does offer the possibility of a rapid and inexpensive additional tool to explore prion disease. Keywords: Prions, Thickness shear mode quartz sensor
url http://www.sciencedirect.com/science/article/pii/S2214180416301416
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