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Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice

After spinal cord injury (SCI), the disruption of blood-spinal cord barrier by activation of the endothelin (ET) system is a critical event leading to leukocyte infiltration, inflammatory response and oxidative stress, contributing to neurological disability. In the present study, we showed that blo...

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Autores principales: GUO, JIAN, LI, YIQIAO, HE, ZHENNIAN, ZHANG, BIN, LI, YONGHUAN, HU, JIANGHUA, HAN, MINGYUAN, XU, YUANLIN, LI, YONGFU, GU, JIE, DAI, BO, CHEN, ZHONG
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4072339/
https://www.ncbi.nlm.nih.gov/pubmed/24756152
http://dx.doi.org/10.3892/ijmm.2014.1751
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author GUO, JIAN
LI, YIQIAO
HE, ZHENNIAN
ZHANG, BIN
LI, YONGHUAN
HU, JIANGHUA
HAN, MINGYUAN
XU, YUANLIN
LI, YONGFU
GU, JIE
DAI, BO
CHEN, ZHONG
author_facet GUO, JIAN
LI, YIQIAO
HE, ZHENNIAN
ZHANG, BIN
LI, YONGHUAN
HU, JIANGHUA
HAN, MINGYUAN
XU, YUANLIN
LI, YONGFU
GU, JIE
DAI, BO
CHEN, ZHONG
author_sort GUO, JIAN
collection PubMed
description After spinal cord injury (SCI), the disruption of blood-spinal cord barrier by activation of the endothelin (ET) system is a critical event leading to leukocyte infiltration, inflammatory response and oxidative stress, contributing to neurological disability. In the present study, we showed that blockade of ET receptor A (ETAR) and/or ET receptor B (ETBR) prevented early inflammatory responses directly via the inhibition of neutrophil and monocyte diapedesis and inflammatory mediator production following traumatic SCI in mice. Long-term neurological improvement, based on a series of tests of locomotor performance, occurred only in the spinal cord-injured mice following blockade of ETAR and ETBR. We also examined the post-traumatic changes of the microenvironment within the injured spinal cord of mice following blockade of ET receptors. Oxidative stress reflects an imbalance between malondialdehyde and superoxide dismutase in spinal cord-injured mice treated with vehicle, whereas blockade of ETAR and ETBR reversed the oxidation state imbalance. In addition, hemeoxygenase-1, a protective protease involved in early SCI, was increased in spinal cord-injured mice following the blockade of ETAR and ETBR, or only ETBR. Matrix metalloproteinase-9, a tissue-destructive protease involved in early damage, was decreased in the injured spinal cord of mice following blockade of ETAR, ETBR or a combination thereof. The findings of the present study therefore suggested an association between ETAR and ETBR in regulating early pathogenesis of SCI and determining the outcomes of long-term neurological recovery.
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spelling pubmed-40723392014-06-26 Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice GUO, JIAN LI, YIQIAO HE, ZHENNIAN ZHANG, BIN LI, YONGHUAN HU, JIANGHUA HAN, MINGYUAN XU, YUANLIN LI, YONGFU GU, JIE DAI, BO CHEN, ZHONG Int J Mol Med Articles After spinal cord injury (SCI), the disruption of blood-spinal cord barrier by activation of the endothelin (ET) system is a critical event leading to leukocyte infiltration, inflammatory response and oxidative stress, contributing to neurological disability. In the present study, we showed that blockade of ET receptor A (ETAR) and/or ET receptor B (ETBR) prevented early inflammatory responses directly via the inhibition of neutrophil and monocyte diapedesis and inflammatory mediator production following traumatic SCI in mice. Long-term neurological improvement, based on a series of tests of locomotor performance, occurred only in the spinal cord-injured mice following blockade of ETAR and ETBR. We also examined the post-traumatic changes of the microenvironment within the injured spinal cord of mice following blockade of ET receptors. Oxidative stress reflects an imbalance between malondialdehyde and superoxide dismutase in spinal cord-injured mice treated with vehicle, whereas blockade of ETAR and ETBR reversed the oxidation state imbalance. In addition, hemeoxygenase-1, a protective protease involved in early SCI, was increased in spinal cord-injured mice following the blockade of ETAR and ETBR, or only ETBR. Matrix metalloproteinase-9, a tissue-destructive protease involved in early damage, was decreased in the injured spinal cord of mice following blockade of ETAR, ETBR or a combination thereof. The findings of the present study therefore suggested an association between ETAR and ETBR in regulating early pathogenesis of SCI and determining the outcomes of long-term neurological recovery. D.A. Spandidos 2014-07 2014-04-22 /pmc/articles/PMC4072339/ /pubmed/24756152 http://dx.doi.org/10.3892/ijmm.2014.1751 Text en Copyright © 2014, Spandidos Publications http://creativecommons.org/licenses/by/3.0 This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Articles
GUO, JIAN
LI, YIQIAO
HE, ZHENNIAN
ZHANG, BIN
LI, YONGHUAN
HU, JIANGHUA
HAN, MINGYUAN
XU, YUANLIN
LI, YONGFU
GU, JIE
DAI, BO
CHEN, ZHONG
Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
title Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
title_full Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
title_fullStr Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
title_full_unstemmed Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
title_short Targeting endothelin receptors A and B attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
title_sort targeting endothelin receptors a and b attenuates the inflammatory response and improves locomotor function following spinal cord injury in mice
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4072339/
https://www.ncbi.nlm.nih.gov/pubmed/24756152
http://dx.doi.org/10.3892/ijmm.2014.1751
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