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Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach

Technologies capable of characterizing the full breadth of cellular systems need to be able to measure millions of proteins, isoforms, and complexes simultaneously. We describe an approach that fulfils this criterion: Adaptive Dynamic Artificial Poly-ligand Targeting (ADAPT). ADAPT employs an enrich...

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Autores principales: Domenyuk, Valeriy, Zhong, Zhenyu, Stark, Adam, Xiao, Nianqing, O’Neill, Heather A., Wei, Xixi, Wang, Jie, Tinder, Teresa T., Tonapi, Sonal, Duncan, Janet, Hornung, Tassilo, Hunter, Andrew, Miglarese, Mark R., Schorr, Joachim, Halbert, David D., Quackenbush, John, Poste, George, Berry, Donald A., Mayer, Günter, Famulok, Michael, Spetzler, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5316983/
https://www.ncbi.nlm.nih.gov/pubmed/28218293
http://dx.doi.org/10.1038/srep42741
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author Domenyuk, Valeriy
Zhong, Zhenyu
Stark, Adam
Xiao, Nianqing
O’Neill, Heather A.
Wei, Xixi
Wang, Jie
Tinder, Teresa T.
Tonapi, Sonal
Duncan, Janet
Hornung, Tassilo
Hunter, Andrew
Miglarese, Mark R.
Schorr, Joachim
Halbert, David D.
Quackenbush, John
Poste, George
Berry, Donald A.
Mayer, Günter
Famulok, Michael
Spetzler, David
author_facet Domenyuk, Valeriy
Zhong, Zhenyu
Stark, Adam
Xiao, Nianqing
O’Neill, Heather A.
Wei, Xixi
Wang, Jie
Tinder, Teresa T.
Tonapi, Sonal
Duncan, Janet
Hornung, Tassilo
Hunter, Andrew
Miglarese, Mark R.
Schorr, Joachim
Halbert, David D.
Quackenbush, John
Poste, George
Berry, Donald A.
Mayer, Günter
Famulok, Michael
Spetzler, David
author_sort Domenyuk, Valeriy
collection PubMed
description Technologies capable of characterizing the full breadth of cellular systems need to be able to measure millions of proteins, isoforms, and complexes simultaneously. We describe an approach that fulfils this criterion: Adaptive Dynamic Artificial Poly-ligand Targeting (ADAPT). ADAPT employs an enriched library of single-stranded oligodeoxynucleotides (ssODNs) to profile complex biological samples, thus achieving an unprecedented coverage of system-wide, native biomolecules. We used ADAPT as a highly specific profiling tool that distinguishes women with or without breast cancer based on circulating exosomes in their blood. To develop ADAPT, we enriched a library of ~10(11) ssODNs for those associating with exosomes from breast cancer patients or controls. The resulting 10(6) enriched ssODNs were then profiled against plasma from independent groups of healthy and breast cancer-positive women. ssODN-mediated affinity purification and mass spectrometry identified low-abundance exosome-associated proteins and protein complexes, some with known significance in both normal homeostasis and disease. Sequencing of the recovered ssODNs provided quantitative measures that were used to build highly accurate multi-analyte signatures for patient classification. Probing plasma from 500 subjects with a smaller subset of 2000 resynthesized ssODNs stratified healthy, breast biopsy-negative, and -positive women. An AUC of 0.73 was obtained when comparing healthy donors with biopsy-positive patients.
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spelling pubmed-53169832017-02-24 Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach Domenyuk, Valeriy Zhong, Zhenyu Stark, Adam Xiao, Nianqing O’Neill, Heather A. Wei, Xixi Wang, Jie Tinder, Teresa T. Tonapi, Sonal Duncan, Janet Hornung, Tassilo Hunter, Andrew Miglarese, Mark R. Schorr, Joachim Halbert, David D. Quackenbush, John Poste, George Berry, Donald A. Mayer, Günter Famulok, Michael Spetzler, David Sci Rep Article Technologies capable of characterizing the full breadth of cellular systems need to be able to measure millions of proteins, isoforms, and complexes simultaneously. We describe an approach that fulfils this criterion: Adaptive Dynamic Artificial Poly-ligand Targeting (ADAPT). ADAPT employs an enriched library of single-stranded oligodeoxynucleotides (ssODNs) to profile complex biological samples, thus achieving an unprecedented coverage of system-wide, native biomolecules. We used ADAPT as a highly specific profiling tool that distinguishes women with or without breast cancer based on circulating exosomes in their blood. To develop ADAPT, we enriched a library of ~10(11) ssODNs for those associating with exosomes from breast cancer patients or controls. The resulting 10(6) enriched ssODNs were then profiled against plasma from independent groups of healthy and breast cancer-positive women. ssODN-mediated affinity purification and mass spectrometry identified low-abundance exosome-associated proteins and protein complexes, some with known significance in both normal homeostasis and disease. Sequencing of the recovered ssODNs provided quantitative measures that were used to build highly accurate multi-analyte signatures for patient classification. Probing plasma from 500 subjects with a smaller subset of 2000 resynthesized ssODNs stratified healthy, breast biopsy-negative, and -positive women. An AUC of 0.73 was obtained when comparing healthy donors with biopsy-positive patients. Nature Publishing Group 2017-02-20 /pmc/articles/PMC5316983/ /pubmed/28218293 http://dx.doi.org/10.1038/srep42741 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Domenyuk, Valeriy
Zhong, Zhenyu
Stark, Adam
Xiao, Nianqing
O’Neill, Heather A.
Wei, Xixi
Wang, Jie
Tinder, Teresa T.
Tonapi, Sonal
Duncan, Janet
Hornung, Tassilo
Hunter, Andrew
Miglarese, Mark R.
Schorr, Joachim
Halbert, David D.
Quackenbush, John
Poste, George
Berry, Donald A.
Mayer, Günter
Famulok, Michael
Spetzler, David
Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach
title Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach
title_full Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach
title_fullStr Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach
title_full_unstemmed Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach
title_short Plasma Exosome Profiling of Cancer Patients by a Next Generation Systems Biology Approach
title_sort plasma exosome profiling of cancer patients by a next generation systems biology approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5316983/
https://www.ncbi.nlm.nih.gov/pubmed/28218293
http://dx.doi.org/10.1038/srep42741
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