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Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus

BACKGROUND & AIMS: MicroRNA (miRNA) is highly stable in biospecimens and provides tissue-specific profiles, making it a useful biomarker of carcinogenesis. We aimed to discover a set of miRNAs that could accurately discriminate Barrett’s esophagus (BE) from normal esophageal tissue and to test i...

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Autores principales: Li, Xiaodun, Kleeman, Sam, Coburn, Sally B., Fumagalli, Carlo, Perner, Juliane, Jammula, Sriganesh, Pfeiffer, Ruth M., Orzolek, Linda, Hao, Haiping, Taylor, Philip R., Miremadi, Ahmad, Galeano-Dalmau, Núria, Lao-Sirieix, Pierre, Tennyson, Maria, MacRae, Shona, Cook, Michael B., Fitzgerald, Rebecca C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: W.B. Saunders 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6120784/
https://www.ncbi.nlm.nih.gov/pubmed/29906417
http://dx.doi.org/10.1053/j.gastro.2018.05.050
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author Li, Xiaodun
Kleeman, Sam
Coburn, Sally B.
Fumagalli, Carlo
Perner, Juliane
Jammula, Sriganesh
Pfeiffer, Ruth M.
Orzolek, Linda
Hao, Haiping
Taylor, Philip R.
Miremadi, Ahmad
Galeano-Dalmau, Núria
Lao-Sirieix, Pierre
Tennyson, Maria
MacRae, Shona
Cook, Michael B.
Fitzgerald, Rebecca C.
author_facet Li, Xiaodun
Kleeman, Sam
Coburn, Sally B.
Fumagalli, Carlo
Perner, Juliane
Jammula, Sriganesh
Pfeiffer, Ruth M.
Orzolek, Linda
Hao, Haiping
Taylor, Philip R.
Miremadi, Ahmad
Galeano-Dalmau, Núria
Lao-Sirieix, Pierre
Tennyson, Maria
MacRae, Shona
Cook, Michael B.
Fitzgerald, Rebecca C.
author_sort Li, Xiaodun
collection PubMed
description BACKGROUND & AIMS: MicroRNA (miRNA) is highly stable in biospecimens and provides tissue-specific profiles, making it a useful biomarker of carcinogenesis. We aimed to discover a set of miRNAs that could accurately discriminate Barrett’s esophagus (BE) from normal esophageal tissue and to test its diagnostic accuracy when applied to samples collected by a noninvasive esophageal cell sampling device. METHODS: We analyzed miRNA expression profiles of 2 independent sets of esophageal biopsy tissues collected during endoscopy from 38 patients with BE and 26 patients with normal esophagus (controls) using Agilent microarray and Nanostring nCounter assays. Consistently up-regulated miRNAs were quantified by real-time polymerase chain reaction in esophageal tissues collected by Cytosponge from patients with BE vs without BE. miRNAs were expressed from plasmids and antisense oligonucleotides were expressed in normal esophageal squamous cells; effects on proliferation and gene expression patterns were analyzed. RESULTS: We identified 15 miRNAs that were significantly up-regulated in BE vs control tissues. Of these, 11 (MIR215, MIR194, MIR 192, MIR196a, MIR199b, MIR10a, MIR145, MIR181a, MIR30a, MIR7, and MIR199a) were validated in Cytosponge samples. The miRNAs with the greatest increases in BE tissues (7.9-fold increase in expression or more, P < .0001: MIR196a, MIR192, MIR194, and MIR215) each identified BE vs control tissues with area under the curve (AUC) values of 0.82 or more. We developed an optimized multivariable logistic regression model, based on expression levels of 6 miRNAs (MIR7, MIR30a, MIR181a, MIR192, MIR196a, and MIR199a), that identified patients with BE with an AUC value of 0.89, 86.2% sensitivity, and 91.6% specificity. Expression level of MIR192, MIR196a, MIR199a, combined that of trefoil factor 3, identified patients with BE with an AUC of 0.93, 93.1% sensitivity, and 93.7% specificity. Hypomethylation was observed in the promoter region of the highly up-regulated cluster MIR192–MIR194. Overexpression of these miRNAs in normal esophageal squamous cells increased their proliferation, via GRHL3 and PTEN signaling. CONCLUSIONS: In analyses of miRNA expression patterns of BE vs non-BE tissues, we identified a profile that can identify Cytosponge samples from patients with BE with an AUC of 0.93. Expression of MIR194 is increased in BE samples via epigenetic mechanisms that might be involved in BE pathogenesis.
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spelling pubmed-61207842018-10-01 Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus Li, Xiaodun Kleeman, Sam Coburn, Sally B. Fumagalli, Carlo Perner, Juliane Jammula, Sriganesh Pfeiffer, Ruth M. Orzolek, Linda Hao, Haiping Taylor, Philip R. Miremadi, Ahmad Galeano-Dalmau, Núria Lao-Sirieix, Pierre Tennyson, Maria MacRae, Shona Cook, Michael B. Fitzgerald, Rebecca C. Gastroenterology Article BACKGROUND & AIMS: MicroRNA (miRNA) is highly stable in biospecimens and provides tissue-specific profiles, making it a useful biomarker of carcinogenesis. We aimed to discover a set of miRNAs that could accurately discriminate Barrett’s esophagus (BE) from normal esophageal tissue and to test its diagnostic accuracy when applied to samples collected by a noninvasive esophageal cell sampling device. METHODS: We analyzed miRNA expression profiles of 2 independent sets of esophageal biopsy tissues collected during endoscopy from 38 patients with BE and 26 patients with normal esophagus (controls) using Agilent microarray and Nanostring nCounter assays. Consistently up-regulated miRNAs were quantified by real-time polymerase chain reaction in esophageal tissues collected by Cytosponge from patients with BE vs without BE. miRNAs were expressed from plasmids and antisense oligonucleotides were expressed in normal esophageal squamous cells; effects on proliferation and gene expression patterns were analyzed. RESULTS: We identified 15 miRNAs that were significantly up-regulated in BE vs control tissues. Of these, 11 (MIR215, MIR194, MIR 192, MIR196a, MIR199b, MIR10a, MIR145, MIR181a, MIR30a, MIR7, and MIR199a) were validated in Cytosponge samples. The miRNAs with the greatest increases in BE tissues (7.9-fold increase in expression or more, P < .0001: MIR196a, MIR192, MIR194, and MIR215) each identified BE vs control tissues with area under the curve (AUC) values of 0.82 or more. We developed an optimized multivariable logistic regression model, based on expression levels of 6 miRNAs (MIR7, MIR30a, MIR181a, MIR192, MIR196a, and MIR199a), that identified patients with BE with an AUC value of 0.89, 86.2% sensitivity, and 91.6% specificity. Expression level of MIR192, MIR196a, MIR199a, combined that of trefoil factor 3, identified patients with BE with an AUC of 0.93, 93.1% sensitivity, and 93.7% specificity. Hypomethylation was observed in the promoter region of the highly up-regulated cluster MIR192–MIR194. Overexpression of these miRNAs in normal esophageal squamous cells increased their proliferation, via GRHL3 and PTEN signaling. CONCLUSIONS: In analyses of miRNA expression patterns of BE vs non-BE tissues, we identified a profile that can identify Cytosponge samples from patients with BE with an AUC of 0.93. Expression of MIR194 is increased in BE samples via epigenetic mechanisms that might be involved in BE pathogenesis. W.B. Saunders 2018-09 /pmc/articles/PMC6120784/ /pubmed/29906417 http://dx.doi.org/10.1053/j.gastro.2018.05.050 Text en © 2018 The AGA Institute All rights reserved. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Xiaodun
Kleeman, Sam
Coburn, Sally B.
Fumagalli, Carlo
Perner, Juliane
Jammula, Sriganesh
Pfeiffer, Ruth M.
Orzolek, Linda
Hao, Haiping
Taylor, Philip R.
Miremadi, Ahmad
Galeano-Dalmau, Núria
Lao-Sirieix, Pierre
Tennyson, Maria
MacRae, Shona
Cook, Michael B.
Fitzgerald, Rebecca C.
Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus
title Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus
title_full Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus
title_fullStr Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus
title_full_unstemmed Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus
title_short Selection and Application of Tissue microRNAs for Nonendoscopic Diagnosis of Barrett’s Esophagus
title_sort selection and application of tissue micrornas for nonendoscopic diagnosis of barrett’s esophagus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6120784/
https://www.ncbi.nlm.nih.gov/pubmed/29906417
http://dx.doi.org/10.1053/j.gastro.2018.05.050
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