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Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin

OBJECTIVE: Ischemic stroke may result from transient or permanent reductions of regional cerebral blood flow. Polymorphonuclear neutrophils have been described as the earliest inflammatory cells to arrive in ischemic tissue. CXCR1/2 receptors are involved in the recruitment of these cells. However,...

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Autores principales: da Cunha Sousa, Larissa Fonseca, Coelho, Fernanda Matos, Rodrigues, David Henrique, Campos, Alline Cristina, da Silva Barcelos, Lucíola, Teixeira, Mauro Martins, Alvarenga Rachid, Milene, Teixeira, Antonio Lúcio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3611745/
https://www.ncbi.nlm.nih.gov/pubmed/23644861
http://dx.doi.org/10.6061/clinics/2013(03)OA17
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author da Cunha Sousa, Larissa Fonseca
Coelho, Fernanda Matos
Rodrigues, David Henrique
Campos, Alline Cristina
da Silva Barcelos, Lucíola
Teixeira, Mauro Martins
Alvarenga Rachid, Milene
Teixeira, Antonio Lúcio
author_facet da Cunha Sousa, Larissa Fonseca
Coelho, Fernanda Matos
Rodrigues, David Henrique
Campos, Alline Cristina
da Silva Barcelos, Lucíola
Teixeira, Mauro Martins
Alvarenga Rachid, Milene
Teixeira, Antonio Lúcio
author_sort da Cunha Sousa, Larissa Fonseca
collection PubMed
description OBJECTIVE: Ischemic stroke may result from transient or permanent reductions of regional cerebral blood flow. Polymorphonuclear neutrophils have been described as the earliest inflammatory cells to arrive in ischemic tissue. CXCR1/2 receptors are involved in the recruitment of these cells. However, the contribution of these chemokine receptors during transient brain ischemia in mice remains poorly understood. In this work, we investigated the effects of reparixin, an allosteric antagonist of CXCR1/2 receptors, in a model of middle cerebral artery occlusion and reperfusion in mice. METHODS: C57BL/6J male mice treated with reparixin or vehicle were subjected to a middle cerebral artery occlusion procedure 1 h after the treatment. Ninety minutes after ischemia induction, the monofilament that prevented blood flow was removed. Twenty-four hours after the reperfusion procedure, behavioral changes, including motor signs, were analyzed with the SmithKline/Harwell/Imperial College/Royal Hospital/Phenotype Assessment (SHIRPA) battery. The animals were sacrificed, and brain tissue was removed for histological and biochemical analyses. Histological sections were stained with hematoxylin and eosin, neutrophil infiltration was estimated by myeloperoxidase activity and the inflammatory cytokine IL-1β was measured by ELISA. RESULTS: Pre-treatment with reparixin reduced the motor deficits observed in this model of ischemia and reperfusion. Myeloperoxidase activity and IL-1β were reduced in the reparixin-treated group. Histological analysis revealed that ischemic injury was also attenuated by reparixin pre-treatment. CONCLUSIONS: Our results suggest that the blockade of the CXCR1/2 receptors by reparixin promotes neuroprotective effects by reducing the levels of polymorphonuclear infiltration in the brain and the tissue damage associated with middle cerebral artery occlusion and reperfusion.
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spelling pubmed-36117452013-04-05 Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin da Cunha Sousa, Larissa Fonseca Coelho, Fernanda Matos Rodrigues, David Henrique Campos, Alline Cristina da Silva Barcelos, Lucíola Teixeira, Mauro Martins Alvarenga Rachid, Milene Teixeira, Antonio Lúcio Clinics (Sao Paulo) Basic Research OBJECTIVE: Ischemic stroke may result from transient or permanent reductions of regional cerebral blood flow. Polymorphonuclear neutrophils have been described as the earliest inflammatory cells to arrive in ischemic tissue. CXCR1/2 receptors are involved in the recruitment of these cells. However, the contribution of these chemokine receptors during transient brain ischemia in mice remains poorly understood. In this work, we investigated the effects of reparixin, an allosteric antagonist of CXCR1/2 receptors, in a model of middle cerebral artery occlusion and reperfusion in mice. METHODS: C57BL/6J male mice treated with reparixin or vehicle were subjected to a middle cerebral artery occlusion procedure 1 h after the treatment. Ninety minutes after ischemia induction, the monofilament that prevented blood flow was removed. Twenty-four hours after the reperfusion procedure, behavioral changes, including motor signs, were analyzed with the SmithKline/Harwell/Imperial College/Royal Hospital/Phenotype Assessment (SHIRPA) battery. The animals were sacrificed, and brain tissue was removed for histological and biochemical analyses. Histological sections were stained with hematoxylin and eosin, neutrophil infiltration was estimated by myeloperoxidase activity and the inflammatory cytokine IL-1β was measured by ELISA. RESULTS: Pre-treatment with reparixin reduced the motor deficits observed in this model of ischemia and reperfusion. Myeloperoxidase activity and IL-1β were reduced in the reparixin-treated group. Histological analysis revealed that ischemic injury was also attenuated by reparixin pre-treatment. CONCLUSIONS: Our results suggest that the blockade of the CXCR1/2 receptors by reparixin promotes neuroprotective effects by reducing the levels of polymorphonuclear infiltration in the brain and the tissue damage associated with middle cerebral artery occlusion and reperfusion. Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo 2013-03 /pmc/articles/PMC3611745/ /pubmed/23644861 http://dx.doi.org/10.6061/clinics/2013(03)OA17 Text en Copyright © 2013 Hospital das Clínicas da FMUSP http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Basic Research
da Cunha Sousa, Larissa Fonseca
Coelho, Fernanda Matos
Rodrigues, David Henrique
Campos, Alline Cristina
da Silva Barcelos, Lucíola
Teixeira, Mauro Martins
Alvarenga Rachid, Milene
Teixeira, Antonio Lúcio
Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin
title Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin
title_full Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin
title_fullStr Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin
title_full_unstemmed Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin
title_short Blockade of CXCR1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: Ischemia and Reparixin
title_sort blockade of cxcr1/2 chemokine receptors protects against brain damage in ischemic stroke in mice: ischemia and reparixin
topic Basic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3611745/
https://www.ncbi.nlm.nih.gov/pubmed/23644861
http://dx.doi.org/10.6061/clinics/2013(03)OA17
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