Cargando…

HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model

It has been reported that valproic acid (VPA) combined with therapeutic hypothermia can improve survival and neurologic outcomes in a rat asphyxial cardiac arrest model. However, neuroprotective mechanisms of such combined treatment of valproic acid with hypothermia remains unclear. We hypothesized...

Descripción completa

Detalles Bibliográficos
Autores principales: Oh, Joo Suk, Park, Jungtaek, Kim, Kiwook, Jeong, Hyun Ho, Oh, Young Min, Choi, Semin, Choi, Kyoung Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8211226/
https://www.ncbi.nlm.nih.gov/pubmed/34138955
http://dx.doi.org/10.1371/journal.pone.0253328
_version_ 1783709438242193408
author Oh, Joo Suk
Park, Jungtaek
Kim, Kiwook
Jeong, Hyun Ho
Oh, Young Min
Choi, Semin
Choi, Kyoung Ho
author_facet Oh, Joo Suk
Park, Jungtaek
Kim, Kiwook
Jeong, Hyun Ho
Oh, Young Min
Choi, Semin
Choi, Kyoung Ho
author_sort Oh, Joo Suk
collection PubMed
description It has been reported that valproic acid (VPA) combined with therapeutic hypothermia can improve survival and neurologic outcomes in a rat asphyxial cardiac arrest model. However, neuroprotective mechanisms of such combined treatment of valproic acid with hypothermia remains unclear. We hypothesized that epigenetic regulation of HSP70 by histone acetylation could increase HSP70-mediated neuroprotection suppressed under hypothermia. Male Sprague-Dawley rats that achieved return of spontaneous circulation (ROSC) from asphyxial cardiac arrest were randomized to four groups: normothermia (37°C ± 1°C), hypothermia (33°C ± 1°C), normothermia + VPA (300 mg/kg IV initiated 5 minutes post-ROSC and infused over 20 min), and hypothermia + VPA. Three hours after ROSC, acetyl-histone H3 was highly expressed in VPA-administered groups (normothermia + VPA, hypothermia + VPA). Four hours after ROSC, HSP70 mRNA expression levels were significantly higher in normothermic groups (normothermia, normothermia + VPA) than in hypothermic groups (hypothermia, hypothermia + VPA). The hypothermia + VPA group showed significantly higher HSP70 mRNA expression than the hypothermia group. Similarly, at five hours after ROSC, HSP70 protein levels were significantly higher in normothermic groups than in hypothermic groups. HSP70 levels were significantly higher in the hypothermia + VPA group than in the hypothermia group. Only the hypothermia + VPA group showed significantly attenuated cleaved caspase-9 levels than the normothermia group. Hypothermia can attenuate the expression of HSP70 at transcriptional level. However, VPA administration can induce hyperacetylation of histone H3, leading to epigenetic transcriptional activation of HSP70 even in a hypothermic status. Combining VPA treatment with hypothermia may compensate for reduced activation of HSP70-mediated anti-apoptotic pathway.
format Online
Article
Text
id pubmed-8211226
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-82112262021-06-29 HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model Oh, Joo Suk Park, Jungtaek Kim, Kiwook Jeong, Hyun Ho Oh, Young Min Choi, Semin Choi, Kyoung Ho PLoS One Research Article It has been reported that valproic acid (VPA) combined with therapeutic hypothermia can improve survival and neurologic outcomes in a rat asphyxial cardiac arrest model. However, neuroprotective mechanisms of such combined treatment of valproic acid with hypothermia remains unclear. We hypothesized that epigenetic regulation of HSP70 by histone acetylation could increase HSP70-mediated neuroprotection suppressed under hypothermia. Male Sprague-Dawley rats that achieved return of spontaneous circulation (ROSC) from asphyxial cardiac arrest were randomized to four groups: normothermia (37°C ± 1°C), hypothermia (33°C ± 1°C), normothermia + VPA (300 mg/kg IV initiated 5 minutes post-ROSC and infused over 20 min), and hypothermia + VPA. Three hours after ROSC, acetyl-histone H3 was highly expressed in VPA-administered groups (normothermia + VPA, hypothermia + VPA). Four hours after ROSC, HSP70 mRNA expression levels were significantly higher in normothermic groups (normothermia, normothermia + VPA) than in hypothermic groups (hypothermia, hypothermia + VPA). The hypothermia + VPA group showed significantly higher HSP70 mRNA expression than the hypothermia group. Similarly, at five hours after ROSC, HSP70 protein levels were significantly higher in normothermic groups than in hypothermic groups. HSP70 levels were significantly higher in the hypothermia + VPA group than in the hypothermia group. Only the hypothermia + VPA group showed significantly attenuated cleaved caspase-9 levels than the normothermia group. Hypothermia can attenuate the expression of HSP70 at transcriptional level. However, VPA administration can induce hyperacetylation of histone H3, leading to epigenetic transcriptional activation of HSP70 even in a hypothermic status. Combining VPA treatment with hypothermia may compensate for reduced activation of HSP70-mediated anti-apoptotic pathway. Public Library of Science 2021-06-17 /pmc/articles/PMC8211226/ /pubmed/34138955 http://dx.doi.org/10.1371/journal.pone.0253328 Text en © 2021 Oh et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Oh, Joo Suk
Park, Jungtaek
Kim, Kiwook
Jeong, Hyun Ho
Oh, Young Min
Choi, Semin
Choi, Kyoung Ho
HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
title HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
title_full HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
title_fullStr HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
title_full_unstemmed HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
title_short HSP70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
title_sort hsp70-mediated neuroprotection by combined treatment of valproic acid with hypothermia in a rat asphyxial cardiac arrest model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8211226/
https://www.ncbi.nlm.nih.gov/pubmed/34138955
http://dx.doi.org/10.1371/journal.pone.0253328
work_keys_str_mv AT ohjoosuk hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel
AT parkjungtaek hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel
AT kimkiwook hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel
AT jeonghyunho hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel
AT ohyoungmin hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel
AT choisemin hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel
AT choikyoungho hsp70mediatedneuroprotectionbycombinedtreatmentofvalproicacidwithhypothermiainaratasphyxialcardiacarrestmodel