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Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour

Secretome of primary cultures is an accessible source of biological markers compared to more complex and less decipherable mixtures such as serum or plasma. The protonation state (PS) of secretome reflects the metabolism of cells and can be used for cancer early detection. Here, we demonstrate a sup...

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Autores principales: Malara, N., Gentile, F., Coppedè, N., Coluccio, M. L., Candeloro, P., Perozziello, G., Ferrara, L., Giannetto, M., Careri, M., Castellini, A., Mignogna, C., Presta, I., Pirrone, C. K., Maisano, D., Donato, A., Donato, G., Greco, M., Scumaci, D., Cuda, G., Casale, F., Ferraro, E., Bonacci, S., Trunzo, V., Mollace, V., Onesto, V., Majewska, R., Amato, F., Renne, M., Innaro, N., Sena, G., Sacco, R., Givigliano, F., Voci, C., Volpentesta, G., Guzzi, G., Lavano, A., Scali, E., Bottoni, U., Di Fabrizio, E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6242957/
https://www.ncbi.nlm.nih.gov/pubmed/30480095
http://dx.doi.org/10.1038/s41698-018-0069-7
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author Malara, N.
Gentile, F.
Coppedè, N.
Coluccio, M. L.
Candeloro, P.
Perozziello, G.
Ferrara, L.
Giannetto, M.
Careri, M.
Castellini, A.
Mignogna, C.
Presta, I.
Pirrone, C. K.
Maisano, D.
Donato, A.
Donato, G.
Greco, M.
Scumaci, D.
Cuda, G.
Casale, F.
Ferraro, E.
Bonacci, S.
Trunzo, V.
Mollace, V.
Onesto, V.
Majewska, R.
Amato, F.
Renne, M.
Innaro, N.
Sena, G.
Sacco, R.
Givigliano, F.
Voci, C.
Volpentesta, G.
Guzzi, G.
Lavano, A.
Scali, E.
Bottoni, U.
Di Fabrizio, E.
author_facet Malara, N.
Gentile, F.
Coppedè, N.
Coluccio, M. L.
Candeloro, P.
Perozziello, G.
Ferrara, L.
Giannetto, M.
Careri, M.
Castellini, A.
Mignogna, C.
Presta, I.
Pirrone, C. K.
Maisano, D.
Donato, A.
Donato, G.
Greco, M.
Scumaci, D.
Cuda, G.
Casale, F.
Ferraro, E.
Bonacci, S.
Trunzo, V.
Mollace, V.
Onesto, V.
Majewska, R.
Amato, F.
Renne, M.
Innaro, N.
Sena, G.
Sacco, R.
Givigliano, F.
Voci, C.
Volpentesta, G.
Guzzi, G.
Lavano, A.
Scali, E.
Bottoni, U.
Di Fabrizio, E.
author_sort Malara, N.
collection PubMed
description Secretome of primary cultures is an accessible source of biological markers compared to more complex and less decipherable mixtures such as serum or plasma. The protonation state (PS) of secretome reflects the metabolism of cells and can be used for cancer early detection. Here, we demonstrate a superhydrophobic organic electrochemical device that measures PS in a drop of secretome derived from liquid biopsies. Using data from the sensor and principal component analysis (PCA), we developed algorithms able to efficiently discriminate tumour patients from non-tumour patients. We then validated the results using mass spectrometry and biochemical analysis of samples. For the 36 patients across three independent cohorts, the method identified tumour patients with high sensitivity and identification as high as 100% (no false positives) with declared subjects at-risk, for sporadic cancer onset, by intermediate values of PS. This assay could impact on cancer risk management, individual’s diagnosis and/or help clarify risk in healthy populations.
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spelling pubmed-62429572018-11-26 Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour Malara, N. Gentile, F. Coppedè, N. Coluccio, M. L. Candeloro, P. Perozziello, G. Ferrara, L. Giannetto, M. Careri, M. Castellini, A. Mignogna, C. Presta, I. Pirrone, C. K. Maisano, D. Donato, A. Donato, G. Greco, M. Scumaci, D. Cuda, G. Casale, F. Ferraro, E. Bonacci, S. Trunzo, V. Mollace, V. Onesto, V. Majewska, R. Amato, F. Renne, M. Innaro, N. Sena, G. Sacco, R. Givigliano, F. Voci, C. Volpentesta, G. Guzzi, G. Lavano, A. Scali, E. Bottoni, U. Di Fabrizio, E. NPJ Precis Oncol Article Secretome of primary cultures is an accessible source of biological markers compared to more complex and less decipherable mixtures such as serum or plasma. The protonation state (PS) of secretome reflects the metabolism of cells and can be used for cancer early detection. Here, we demonstrate a superhydrophobic organic electrochemical device that measures PS in a drop of secretome derived from liquid biopsies. Using data from the sensor and principal component analysis (PCA), we developed algorithms able to efficiently discriminate tumour patients from non-tumour patients. We then validated the results using mass spectrometry and biochemical analysis of samples. For the 36 patients across three independent cohorts, the method identified tumour patients with high sensitivity and identification as high as 100% (no false positives) with declared subjects at-risk, for sporadic cancer onset, by intermediate values of PS. This assay could impact on cancer risk management, individual’s diagnosis and/or help clarify risk in healthy populations. Nature Publishing Group UK 2018-11-19 /pmc/articles/PMC6242957/ /pubmed/30480095 http://dx.doi.org/10.1038/s41698-018-0069-7 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Malara, N.
Gentile, F.
Coppedè, N.
Coluccio, M. L.
Candeloro, P.
Perozziello, G.
Ferrara, L.
Giannetto, M.
Careri, M.
Castellini, A.
Mignogna, C.
Presta, I.
Pirrone, C. K.
Maisano, D.
Donato, A.
Donato, G.
Greco, M.
Scumaci, D.
Cuda, G.
Casale, F.
Ferraro, E.
Bonacci, S.
Trunzo, V.
Mollace, V.
Onesto, V.
Majewska, R.
Amato, F.
Renne, M.
Innaro, N.
Sena, G.
Sacco, R.
Givigliano, F.
Voci, C.
Volpentesta, G.
Guzzi, G.
Lavano, A.
Scali, E.
Bottoni, U.
Di Fabrizio, E.
Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
title Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
title_full Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
title_fullStr Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
title_full_unstemmed Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
title_short Superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
title_sort superhydrophobic lab-on-chip measures secretome protonation state and provides a personalized risk assessment of sporadic tumour
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6242957/
https://www.ncbi.nlm.nih.gov/pubmed/30480095
http://dx.doi.org/10.1038/s41698-018-0069-7
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