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Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy

BACKGROUND: There are no blood-based molecular biomarkers of temporal lobe epilepsy (TLE) to support clinical diagnosis. MicroRNAs are short noncoding RNAs with strong biomarker potential due to their cell-specific expression, mechanistic links to brain excitability, and stable detection in biofluid...

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Autores principales: Raoof, Rana, Bauer, Sebastian, El Naggar, Hany, Connolly, Niamh M.C., Brennan, Gary P., Brindley, Elizabeth, Hill, Thomas, McArdle, Hazel, Spain, Elaine, Forster, Robert J., Prehn, Jochen H.M., Hamer, Hajo, Delanty, Norman, Rosenow, Felix, Mooney, Catherine, Henshall, David C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306312/
https://www.ncbi.nlm.nih.gov/pubmed/30396857
http://dx.doi.org/10.1016/j.ebiom.2018.10.068
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author Raoof, Rana
Bauer, Sebastian
El Naggar, Hany
Connolly, Niamh M.C.
Brennan, Gary P.
Brindley, Elizabeth
Hill, Thomas
McArdle, Hazel
Spain, Elaine
Forster, Robert J.
Prehn, Jochen H.M.
Hamer, Hajo
Delanty, Norman
Rosenow, Felix
Mooney, Catherine
Henshall, David C.
author_facet Raoof, Rana
Bauer, Sebastian
El Naggar, Hany
Connolly, Niamh M.C.
Brennan, Gary P.
Brindley, Elizabeth
Hill, Thomas
McArdle, Hazel
Spain, Elaine
Forster, Robert J.
Prehn, Jochen H.M.
Hamer, Hajo
Delanty, Norman
Rosenow, Felix
Mooney, Catherine
Henshall, David C.
author_sort Raoof, Rana
collection PubMed
description BACKGROUND: There are no blood-based molecular biomarkers of temporal lobe epilepsy (TLE) to support clinical diagnosis. MicroRNAs are short noncoding RNAs with strong biomarker potential due to their cell-specific expression, mechanistic links to brain excitability, and stable detection in biofluids. Altered levels of circulating microRNAs have been reported in human epilepsy, but most studies collected samples from one clinical site, used a single profiling platform or conducted minimal validation. METHOD: Using a case-control design, we collected plasma samples from video-electroencephalogram-monitored adult TLE patients at epilepsy specialist centers in two countries, performed genome-wide PCR-based and RNA sequencing during the discovery phase and validated findings in a large (>250) cohort of samples that included patients with psychogenic non-epileptic seizures (PNES). FINDINGS: After profiling and validation, we identified miR-27a-3p, miR-328-3p and miR-654-3p with biomarker potential. Plasma levels of these microRNAs were also changed in a mouse model of TLE but were not different to healthy controls in PNES patients. We determined copy number of the three microRNAs in plasma and demonstrate their rapid detection using an electrochemical RNA microfluidic disk as a prototype point-of-care device. Analysis of the microRNAs within the exosome-enriched fraction provided high diagnostic accuracy while Argonaute-bound miR-328-3p selectively increased in patient samples after seizures. In situ hybridization localized miR-27a-3p and miR-328-3p within neurons in human brain and bioinformatics predicted targets linked to growth factor signaling and apoptosis. INTERPRETATION: This study demonstrates the biomarker potential of circulating microRNAs for epilepsy diagnosis and mechanistic links to underlying pathomechanisms.
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spelling pubmed-63063122018-12-28 Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy Raoof, Rana Bauer, Sebastian El Naggar, Hany Connolly, Niamh M.C. Brennan, Gary P. Brindley, Elizabeth Hill, Thomas McArdle, Hazel Spain, Elaine Forster, Robert J. Prehn, Jochen H.M. Hamer, Hajo Delanty, Norman Rosenow, Felix Mooney, Catherine Henshall, David C. EBioMedicine Research paper BACKGROUND: There are no blood-based molecular biomarkers of temporal lobe epilepsy (TLE) to support clinical diagnosis. MicroRNAs are short noncoding RNAs with strong biomarker potential due to their cell-specific expression, mechanistic links to brain excitability, and stable detection in biofluids. Altered levels of circulating microRNAs have been reported in human epilepsy, but most studies collected samples from one clinical site, used a single profiling platform or conducted minimal validation. METHOD: Using a case-control design, we collected plasma samples from video-electroencephalogram-monitored adult TLE patients at epilepsy specialist centers in two countries, performed genome-wide PCR-based and RNA sequencing during the discovery phase and validated findings in a large (>250) cohort of samples that included patients with psychogenic non-epileptic seizures (PNES). FINDINGS: After profiling and validation, we identified miR-27a-3p, miR-328-3p and miR-654-3p with biomarker potential. Plasma levels of these microRNAs were also changed in a mouse model of TLE but were not different to healthy controls in PNES patients. We determined copy number of the three microRNAs in plasma and demonstrate their rapid detection using an electrochemical RNA microfluidic disk as a prototype point-of-care device. Analysis of the microRNAs within the exosome-enriched fraction provided high diagnostic accuracy while Argonaute-bound miR-328-3p selectively increased in patient samples after seizures. In situ hybridization localized miR-27a-3p and miR-328-3p within neurons in human brain and bioinformatics predicted targets linked to growth factor signaling and apoptosis. INTERPRETATION: This study demonstrates the biomarker potential of circulating microRNAs for epilepsy diagnosis and mechanistic links to underlying pathomechanisms. Elsevier 2018-11-02 /pmc/articles/PMC6306312/ /pubmed/30396857 http://dx.doi.org/10.1016/j.ebiom.2018.10.068 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Raoof, Rana
Bauer, Sebastian
El Naggar, Hany
Connolly, Niamh M.C.
Brennan, Gary P.
Brindley, Elizabeth
Hill, Thomas
McArdle, Hazel
Spain, Elaine
Forster, Robert J.
Prehn, Jochen H.M.
Hamer, Hajo
Delanty, Norman
Rosenow, Felix
Mooney, Catherine
Henshall, David C.
Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
title Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
title_full Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
title_fullStr Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
title_full_unstemmed Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
title_short Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
title_sort dual-center, dual-platform microrna profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306312/
https://www.ncbi.nlm.nih.gov/pubmed/30396857
http://dx.doi.org/10.1016/j.ebiom.2018.10.068
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