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Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array

Proteomics analysis of biofluid-derived vesicles holds enormous potential for discovering non-invasive disease markers. Obtaining vesicles of sufficient quality and quantity for profiling studies has, however, been a major problem, as samples are often replete with co-isolated material that can inte...

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Autores principales: Welton, Joanne Louise, Brennan, Paul, Gurney, Mark, Webber, Jason Paul, Spary, Lisa Kate, Carton, David Gil, Falcón-Pérez, Juan Manuel, Walton, Sean Peter, Mason, Malcolm David, Tabi, Zsuzsanna, Clayton, Aled
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Co-Action Publishing 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4929354/
https://www.ncbi.nlm.nih.gov/pubmed/27363484
http://dx.doi.org/10.3402/jev.v5.31209
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author Welton, Joanne Louise
Brennan, Paul
Gurney, Mark
Webber, Jason Paul
Spary, Lisa Kate
Carton, David Gil
Falcón-Pérez, Juan Manuel
Walton, Sean Peter
Mason, Malcolm David
Tabi, Zsuzsanna
Clayton, Aled
author_facet Welton, Joanne Louise
Brennan, Paul
Gurney, Mark
Webber, Jason Paul
Spary, Lisa Kate
Carton, David Gil
Falcón-Pérez, Juan Manuel
Walton, Sean Peter
Mason, Malcolm David
Tabi, Zsuzsanna
Clayton, Aled
author_sort Welton, Joanne Louise
collection PubMed
description Proteomics analysis of biofluid-derived vesicles holds enormous potential for discovering non-invasive disease markers. Obtaining vesicles of sufficient quality and quantity for profiling studies has, however, been a major problem, as samples are often replete with co-isolated material that can interfere with the identification of genuine low abundance, vesicle components. Here, we used a combination of ultracentrifugation and size-exclusion chromatography to isolate and analyse vesicles of plasma or urine origin. We describe a sample-handling workflow that gives reproducible, quality vesicle isolations sufficient for subsequent protein profiling. Using a semi-quantitative aptamer-based protein array, we identified around 1,000 proteins, of which almost 400 were present at comparable quantities in plasma versus urine vesicles. Significant differences were, however, apparent with elements like HSP90, integrin αVβ5 and Contactin-1 more prevalent in urinary vesicles, while hepatocyte growth factor activator, prostate-specific antigen–antichymotrypsin complex and many others were more abundant in plasma vesicles. This was also applied to a small set of specimens collected from men with metastatic prostate cancer, highlighting several proteins with the potential to indicate treatment refractory disease. The study provides a practical platform for furthering protein profiling of vesicles in prostate cancer, and, hopefully, many other disease scenarios.
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spelling pubmed-49293542016-07-27 Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array Welton, Joanne Louise Brennan, Paul Gurney, Mark Webber, Jason Paul Spary, Lisa Kate Carton, David Gil Falcón-Pérez, Juan Manuel Walton, Sean Peter Mason, Malcolm David Tabi, Zsuzsanna Clayton, Aled J Extracell Vesicles Original Research Article Proteomics analysis of biofluid-derived vesicles holds enormous potential for discovering non-invasive disease markers. Obtaining vesicles of sufficient quality and quantity for profiling studies has, however, been a major problem, as samples are often replete with co-isolated material that can interfere with the identification of genuine low abundance, vesicle components. Here, we used a combination of ultracentrifugation and size-exclusion chromatography to isolate and analyse vesicles of plasma or urine origin. We describe a sample-handling workflow that gives reproducible, quality vesicle isolations sufficient for subsequent protein profiling. Using a semi-quantitative aptamer-based protein array, we identified around 1,000 proteins, of which almost 400 were present at comparable quantities in plasma versus urine vesicles. Significant differences were, however, apparent with elements like HSP90, integrin αVβ5 and Contactin-1 more prevalent in urinary vesicles, while hepatocyte growth factor activator, prostate-specific antigen–antichymotrypsin complex and many others were more abundant in plasma vesicles. This was also applied to a small set of specimens collected from men with metastatic prostate cancer, highlighting several proteins with the potential to indicate treatment refractory disease. The study provides a practical platform for furthering protein profiling of vesicles in prostate cancer, and, hopefully, many other disease scenarios. Co-Action Publishing 2016-06-29 /pmc/articles/PMC4929354/ /pubmed/27363484 http://dx.doi.org/10.3402/jev.v5.31209 Text en © 2016 Joanne Louise Welton et al. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License, permitting all non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research Article
Welton, Joanne Louise
Brennan, Paul
Gurney, Mark
Webber, Jason Paul
Spary, Lisa Kate
Carton, David Gil
Falcón-Pérez, Juan Manuel
Walton, Sean Peter
Mason, Malcolm David
Tabi, Zsuzsanna
Clayton, Aled
Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
title Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
title_full Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
title_fullStr Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
title_full_unstemmed Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
title_short Proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
title_sort proteomics analysis of vesicles isolated from plasma and urine of prostate cancer patients using a multiplex, aptamer-based protein array
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4929354/
https://www.ncbi.nlm.nih.gov/pubmed/27363484
http://dx.doi.org/10.3402/jev.v5.31209
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