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Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats

Background: Exercise preconditioning (EP(+)) is a useful and important procedure for the prevention of stroke. We aimed to ascertain whether EP(+) protects against ischemic brain injury by preserving heat shock protein (HSP) 72-containing neurons in ischemic brain tissues. Methods: Adult male Spragu...

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Autores principales: Wang, Yu-Lin, Lin, Cheng-Hsien, Chen, Chi-Chun, Chang, Ching-Ping, Lin, Kao-Chang, Su, Fong-Chin, Chou, Willy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6566739/
https://www.ncbi.nlm.nih.gov/pubmed/31217735
http://dx.doi.org/10.7150/ijms.32962
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author Wang, Yu-Lin
Lin, Cheng-Hsien
Chen, Chi-Chun
Chang, Ching-Ping
Lin, Kao-Chang
Su, Fong-Chin
Chou, Willy
author_facet Wang, Yu-Lin
Lin, Cheng-Hsien
Chen, Chi-Chun
Chang, Ching-Ping
Lin, Kao-Chang
Su, Fong-Chin
Chou, Willy
author_sort Wang, Yu-Lin
collection PubMed
description Background: Exercise preconditioning (EP(+)) is a useful and important procedure for the prevention of stroke. We aimed to ascertain whether EP(+) protects against ischemic brain injury by preserving heat shock protein (HSP) 72-containing neurons in ischemic brain tissues. Methods: Adult male Sprague-Dawley rats (n=240) were used to assess the contribution of HSP72-containing neurons to the neuroprotective effects of EP(+) on ischemic brain injury caused by transient middle cerebral artery occlusion. Results: Significant (P<0.05) increases in the percentages of both old HSP72-containing neurons (NeuN+HSP72 double positive cells) (18~20% vs. 40~50%) and newly formed HSP72-containing neurons (BrdU+NeuN+HSP72 triple positive cells); (2~3% vs. 16~20%) after 3 weeks of exercise coincided with significant (P<0.05) reductions in brain ischemia volume (250 mm(3) vs. 100 mm(3)), brain edema (78% vs. 74% brain water content), blood-brain barrier disruption (1.5 μg/g vs. 0.7 μg/g tissue Evans Blue dye extravasation) and neurological motor deficits (neurological severity scores of 12 vs. 6 and maximal angles of 60° vs. 20°) in brain ischemia rats. Reductions in the percentages of both old (from 40~50% to 10~12%) and newly formed (from 18~20% to 5~7%) HSP72-containing neurons by gene silencing with an intracerebral injection of pSUPER small interfering RNA showed a significant (P<0.05) reversal in the neuroprotective outcomes. Our data provide an inverse correlation between the EP(+)-mediated increases in both old and newly formed HSP72-containing neurons and the extent of cerebral ischemic injury. Conclusions: The percentages of both old and newly formed HSP72-containing neurons are inversely correlated with the outcomes of ischemic brain injury. Additionally, preischemic treadmill exercise improves the outcomes of ischemic brain injury by preserving both the old and newly formed HSP72-containing neurons in rats.
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spelling pubmed-65667392019-06-19 Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats Wang, Yu-Lin Lin, Cheng-Hsien Chen, Chi-Chun Chang, Ching-Ping Lin, Kao-Chang Su, Fong-Chin Chou, Willy Int J Med Sci Research Paper Background: Exercise preconditioning (EP(+)) is a useful and important procedure for the prevention of stroke. We aimed to ascertain whether EP(+) protects against ischemic brain injury by preserving heat shock protein (HSP) 72-containing neurons in ischemic brain tissues. Methods: Adult male Sprague-Dawley rats (n=240) were used to assess the contribution of HSP72-containing neurons to the neuroprotective effects of EP(+) on ischemic brain injury caused by transient middle cerebral artery occlusion. Results: Significant (P<0.05) increases in the percentages of both old HSP72-containing neurons (NeuN+HSP72 double positive cells) (18~20% vs. 40~50%) and newly formed HSP72-containing neurons (BrdU+NeuN+HSP72 triple positive cells); (2~3% vs. 16~20%) after 3 weeks of exercise coincided with significant (P<0.05) reductions in brain ischemia volume (250 mm(3) vs. 100 mm(3)), brain edema (78% vs. 74% brain water content), blood-brain barrier disruption (1.5 μg/g vs. 0.7 μg/g tissue Evans Blue dye extravasation) and neurological motor deficits (neurological severity scores of 12 vs. 6 and maximal angles of 60° vs. 20°) in brain ischemia rats. Reductions in the percentages of both old (from 40~50% to 10~12%) and newly formed (from 18~20% to 5~7%) HSP72-containing neurons by gene silencing with an intracerebral injection of pSUPER small interfering RNA showed a significant (P<0.05) reversal in the neuroprotective outcomes. Our data provide an inverse correlation between the EP(+)-mediated increases in both old and newly formed HSP72-containing neurons and the extent of cerebral ischemic injury. Conclusions: The percentages of both old and newly formed HSP72-containing neurons are inversely correlated with the outcomes of ischemic brain injury. Additionally, preischemic treadmill exercise improves the outcomes of ischemic brain injury by preserving both the old and newly formed HSP72-containing neurons in rats. Ivyspring International Publisher 2019-05-10 /pmc/articles/PMC6566739/ /pubmed/31217735 http://dx.doi.org/10.7150/ijms.32962 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wang, Yu-Lin
Lin, Cheng-Hsien
Chen, Chi-Chun
Chang, Ching-Ping
Lin, Kao-Chang
Su, Fong-Chin
Chou, Willy
Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats
title Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats
title_full Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats
title_fullStr Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats
title_full_unstemmed Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats
title_short Exercise Preconditioning Attenuates Neurological Injury by Preserving Old and Newly Formed HSP72-Containing Neurons in Focal Brain Ischemia Rats
title_sort exercise preconditioning attenuates neurological injury by preserving old and newly formed hsp72-containing neurons in focal brain ischemia rats
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6566739/
https://www.ncbi.nlm.nih.gov/pubmed/31217735
http://dx.doi.org/10.7150/ijms.32962
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