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Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation

Remote limb ischemic postconditioning (RLIP) is a well-established neuroprotective strategy able to protect the brain from a previous harmful ischemic insult through a sub-lethal occlusion of the femoral artery. Neural and humoral mechanisms have been proposed as mediators required to transmit the p...

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Autores principales: Vinciguerra, Antonio, Cepparulo, Pasquale, Anzilotti, Serenella, Cuomo, Ornella, Valsecchi, Valeria, Amoroso, Salvatore, Annunziato, Lucio, Pignataro, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7667695/
https://www.ncbi.nlm.nih.gov/pubmed/33204336
http://dx.doi.org/10.7150/thno.48135
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author Vinciguerra, Antonio
Cepparulo, Pasquale
Anzilotti, Serenella
Cuomo, Ornella
Valsecchi, Valeria
Amoroso, Salvatore
Annunziato, Lucio
Pignataro, Giuseppe
author_facet Vinciguerra, Antonio
Cepparulo, Pasquale
Anzilotti, Serenella
Cuomo, Ornella
Valsecchi, Valeria
Amoroso, Salvatore
Annunziato, Lucio
Pignataro, Giuseppe
author_sort Vinciguerra, Antonio
collection PubMed
description Remote limb ischemic postconditioning (RLIP) is a well-established neuroprotective strategy able to protect the brain from a previous harmful ischemic insult through a sub-lethal occlusion of the femoral artery. Neural and humoral mechanisms have been proposed as mediators required to transmit the peripheral signal from limb to brain. Moreover, different studies suggest that protection observed at brain level is associated to a general genetic reprogramming involving also microRNAs (miRNAs) intervention. Methods: Brain ischemia was induced in male rats by transient occlusion of the middle cerebral artery (tMCAO), whereas RLIP was achieved by one cycle of temporary occlusion of the ipsilateral femoral artery after tMCAO. The expression profile of 810 miRNAs was evaluated in ischemic brain samples from rats subjected either to tMCAO or to RLIP. Among all analyzed miRNAs, there were four whose expression were upregulated after stroke and returned to basal level after RLIP, thus suggesting a possible involvement in RLIP-induced neuroprotection. These selected miRNAs were intracerebroventricularly infused in rats subjected to remote ischemic postconditioning, and their effect was evaluated in terms of brain damage, neurological deficit scores and expression of putative targets. Results: Twenty-one miRNAs, whose expression was significantly affected by tMCAO and by tMCAO plus RLIP, were selected based on microarray microfluidic profiling. Our data showed that: (1) stroke induced an up-regulation of let-7a and miR-143 (2) these two miRNAs were involved in the protective effects induced by RLIP and (3) HIF1-α contributes to their protective effect. Indeed, their expression was reduced after RLIP and the exogenous intracerebroventricularly infusion of let-7a and miR-143 mimics prevented neuroprotection and HIF1-α overexpression induced by RLIP. Conclusions: Prevention of cerebral let-7a and miR-143 overexpression induced by brain ischemia emerges as new potential strategy in stroke intervention.
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spelling pubmed-76676952020-11-16 Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation Vinciguerra, Antonio Cepparulo, Pasquale Anzilotti, Serenella Cuomo, Ornella Valsecchi, Valeria Amoroso, Salvatore Annunziato, Lucio Pignataro, Giuseppe Theranostics Research Paper Remote limb ischemic postconditioning (RLIP) is a well-established neuroprotective strategy able to protect the brain from a previous harmful ischemic insult through a sub-lethal occlusion of the femoral artery. Neural and humoral mechanisms have been proposed as mediators required to transmit the peripheral signal from limb to brain. Moreover, different studies suggest that protection observed at brain level is associated to a general genetic reprogramming involving also microRNAs (miRNAs) intervention. Methods: Brain ischemia was induced in male rats by transient occlusion of the middle cerebral artery (tMCAO), whereas RLIP was achieved by one cycle of temporary occlusion of the ipsilateral femoral artery after tMCAO. The expression profile of 810 miRNAs was evaluated in ischemic brain samples from rats subjected either to tMCAO or to RLIP. Among all analyzed miRNAs, there were four whose expression were upregulated after stroke and returned to basal level after RLIP, thus suggesting a possible involvement in RLIP-induced neuroprotection. These selected miRNAs were intracerebroventricularly infused in rats subjected to remote ischemic postconditioning, and their effect was evaluated in terms of brain damage, neurological deficit scores and expression of putative targets. Results: Twenty-one miRNAs, whose expression was significantly affected by tMCAO and by tMCAO plus RLIP, were selected based on microarray microfluidic profiling. Our data showed that: (1) stroke induced an up-regulation of let-7a and miR-143 (2) these two miRNAs were involved in the protective effects induced by RLIP and (3) HIF1-α contributes to their protective effect. Indeed, their expression was reduced after RLIP and the exogenous intracerebroventricularly infusion of let-7a and miR-143 mimics prevented neuroprotection and HIF1-α overexpression induced by RLIP. Conclusions: Prevention of cerebral let-7a and miR-143 overexpression induced by brain ischemia emerges as new potential strategy in stroke intervention. Ivyspring International Publisher 2020-10-27 /pmc/articles/PMC7667695/ /pubmed/33204336 http://dx.doi.org/10.7150/thno.48135 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Vinciguerra, Antonio
Cepparulo, Pasquale
Anzilotti, Serenella
Cuomo, Ornella
Valsecchi, Valeria
Amoroso, Salvatore
Annunziato, Lucio
Pignataro, Giuseppe
Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation
title Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation
title_full Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation
title_fullStr Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation
title_full_unstemmed Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation
title_short Remote postconditioning ameliorates stroke damage by preventing let-7a and miR-143 up-regulation
title_sort remote postconditioning ameliorates stroke damage by preventing let-7a and mir-143 up-regulation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7667695/
https://www.ncbi.nlm.nih.gov/pubmed/33204336
http://dx.doi.org/10.7150/thno.48135
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