Cargando…

Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats

It has been demonstrated that the K(+)-dependent Na(+)/Ca(2+) exchanger, NCKX2, is a new promising stroke neuroprotective target. However, because no pharmacological activator of NCKX2 is still available, microRNA (miRNA) may represent an alternative method to modulate NCKX2 expression. In particula...

Descripción completa

Detalles Bibliográficos
Autores principales: Cuomo, Ornella, Cepparulo, Pasquale, Anzilotti, Serenella, Serani, Angelo, Sirabella, Rossana, Brancaccio, Paola, Guida, Natascia, Valsecchi, Valeria, Vinciguerra, Antonio, Molinaro, Pasquale, Formisano, Luigi, Annunziato, Lucio, Pignataro, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6906731/
https://www.ncbi.nlm.nih.gov/pubmed/31791013
http://dx.doi.org/10.1016/j.omtn.2019.10.022
_version_ 1783478405799346176
author Cuomo, Ornella
Cepparulo, Pasquale
Anzilotti, Serenella
Serani, Angelo
Sirabella, Rossana
Brancaccio, Paola
Guida, Natascia
Valsecchi, Valeria
Vinciguerra, Antonio
Molinaro, Pasquale
Formisano, Luigi
Annunziato, Lucio
Pignataro, Giuseppe
author_facet Cuomo, Ornella
Cepparulo, Pasquale
Anzilotti, Serenella
Serani, Angelo
Sirabella, Rossana
Brancaccio, Paola
Guida, Natascia
Valsecchi, Valeria
Vinciguerra, Antonio
Molinaro, Pasquale
Formisano, Luigi
Annunziato, Lucio
Pignataro, Giuseppe
author_sort Cuomo, Ornella
collection PubMed
description It has been demonstrated that the K(+)-dependent Na(+)/Ca(2+) exchanger, NCKX2, is a new promising stroke neuroprotective target. However, because no pharmacological activator of NCKX2 is still available, microRNA (miRNA) may represent an alternative method to modulate NCKX2 expression. In particular, by bioinformatics analysis, miR-223-5p emerged as a possible modulator of NCKX2 expression. In the light of these premises, the aims of the present study were: (1) to evaluate miR-223-5p and NCKX2 expression in the temporoparietal cortex and striatum of rats subjected to transient middle cerebral artery occlusion; (2) to evaluate whether miR-223-5p targets the 3′ UTR of the NCKX2 transcript; and (3) to evaluate the effect of miR-223-5p modulation on brain ischemic volume and neurological deficits. Our results showed that miR-223-5p expression increased in a time-dependent manner in the striatum of ischemic rats in parallel with NCKX2 downregulation, and that the transfection of cortical neurons with miR-223-5p induced a reduction of NCKX2 expression. Moreover, a luciferase assay showed that miR-223-5p specifically interacts with the NCKX2 3′ UTR subregion (+7037 to +8697), thus repressing NCKX2 translation. More interestingly, intracerebroventricular infusion of anti-miR-223-5p prevented NCKX2 downregulation after ischemia, thus promoting neuroprotection. The present findings support the idea that blocking miR-223-5p by antimiRNA is a reasonable strategy to reduce the neurodetrimental effect induced by NCKX2 downregulation during brain ischemia.
format Online
Article
Text
id pubmed-6906731
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-69067312019-12-23 Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats Cuomo, Ornella Cepparulo, Pasquale Anzilotti, Serenella Serani, Angelo Sirabella, Rossana Brancaccio, Paola Guida, Natascia Valsecchi, Valeria Vinciguerra, Antonio Molinaro, Pasquale Formisano, Luigi Annunziato, Lucio Pignataro, Giuseppe Mol Ther Nucleic Acids Article It has been demonstrated that the K(+)-dependent Na(+)/Ca(2+) exchanger, NCKX2, is a new promising stroke neuroprotective target. However, because no pharmacological activator of NCKX2 is still available, microRNA (miRNA) may represent an alternative method to modulate NCKX2 expression. In particular, by bioinformatics analysis, miR-223-5p emerged as a possible modulator of NCKX2 expression. In the light of these premises, the aims of the present study were: (1) to evaluate miR-223-5p and NCKX2 expression in the temporoparietal cortex and striatum of rats subjected to transient middle cerebral artery occlusion; (2) to evaluate whether miR-223-5p targets the 3′ UTR of the NCKX2 transcript; and (3) to evaluate the effect of miR-223-5p modulation on brain ischemic volume and neurological deficits. Our results showed that miR-223-5p expression increased in a time-dependent manner in the striatum of ischemic rats in parallel with NCKX2 downregulation, and that the transfection of cortical neurons with miR-223-5p induced a reduction of NCKX2 expression. Moreover, a luciferase assay showed that miR-223-5p specifically interacts with the NCKX2 3′ UTR subregion (+7037 to +8697), thus repressing NCKX2 translation. More interestingly, intracerebroventricular infusion of anti-miR-223-5p prevented NCKX2 downregulation after ischemia, thus promoting neuroprotection. The present findings support the idea that blocking miR-223-5p by antimiRNA is a reasonable strategy to reduce the neurodetrimental effect induced by NCKX2 downregulation during brain ischemia. American Society of Gene & Cell Therapy 2019-10-28 /pmc/articles/PMC6906731/ /pubmed/31791013 http://dx.doi.org/10.1016/j.omtn.2019.10.022 Text en © 2019 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 Article
Cuomo, Ornella
Cepparulo, Pasquale
Anzilotti, Serenella
Serani, Angelo
Sirabella, Rossana
Brancaccio, Paola
Guida, Natascia
Valsecchi, Valeria
Vinciguerra, Antonio
Molinaro, Pasquale
Formisano, Luigi
Annunziato, Lucio
Pignataro, Giuseppe
Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats
title Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats
title_full Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats
title_fullStr Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats
title_full_unstemmed Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats
title_short Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats
title_sort anti-mir-223-5p ameliorates ischemic damage and improves neurological function by preventing nckx2 downregulation after ischemia in rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6906731/
https://www.ncbi.nlm.nih.gov/pubmed/31791013
http://dx.doi.org/10.1016/j.omtn.2019.10.022
work_keys_str_mv AT cuomoornella antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT cepparulopasquale antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT anzilottiserenella antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT seraniangelo antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT sirabellarossana antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT brancacciopaola antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT guidanatascia antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT valsecchivaleria antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT vinciguerraantonio antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT molinaropasquale antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT formisanoluigi antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT annunziatolucio antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats
AT pignatarogiuseppe antimir2235pamelioratesischemicdamageandimprovesneurologicalfunctionbypreventingnckx2downregulationafterischemiainrats