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Valproic acid protects against haemorrhagic shock-induced signalling changes via PPARγ activation in an in vitro model.
- Source :
-
British Journal of Pharmacology . Nov2015, Vol. 172 Issue 22, p5306-5317. 12p. 1 Illustration, 5 Graphs. - Publication Year :
- 2015
-
Abstract
- <bold>Background and Purpose: </bold>Valproic acid (VPA), a widely used epilepsy and bipolar disorder treatment, provides acute protection against haemorrhagic shock-induced mortality in a range of in vivo models through an unknown mechanism. In the liver, this effect occurs with a concomitant protection against a decrease in GSK3β-Ser(9) phosphorylation. Here, we developed an in vitro model to investigate this protective effect of VPA and define a molecular mechanism.<bold>Experimental Approach: </bold>The human hepatocarcinoma cell line (Huh7) was exposed to conditions occurring during haemorrhagic shock (hypoxia, hypercapnia and hypothermia) to investigate the changes in GSK3β-Ser(9) phosphorylation for a 4 h period following treatment with VPA, related congeners, PPAR agonists, antagonists and siRNA.<bold>Key Results: </bold>Huh7 cells undergoing combined hypoxia, hypercapnia, and hypothermia reproduced the reduced GSK3β-Ser(9) phosphorylation shown in vivo during haemorrhagic shock, and this change was blocked by VPA. The protective effect occurred through upstream PTEN and Akt signalling, and prevented downstream β-catenin degradation while increasing histone 2/3 acetylation. This effect was reproduced by several VPA-related compounds with known PPARγ agonist activity, independent of histone deacetylase (HDAC) inhibitory activity. Specific pharmacological inhibition (by T0070907) or knockdown of PPARγ blocked the protective effect of VPA against these signalling changes and apoptosis. In addition, specific activation of PPARγ using ciglitazone reproduced the changes induced by VPA in haemorrhagic shock-like conditions.<bold>Conclusion and Implications: </bold>Changes in GSK3β-Ser(9) phosphorylation in in vivo haemorrhagic shock models can be modelled in vitro, and this has identified a role for PPARγ activation in the protective role of VPA. [ABSTRACT FROM AUTHOR]
- Subjects :
- *VALPROIC acid
*HEMORRHAGIC shock
*CELLULAR signal transduction
*PEROXISOME proliferator-activated receptors
*MORTALITY
*IN vitro studies
*PREVENTION
*PROTEIN metabolism
*HYPOXEMIA
*APOPTOSIS
*CELL lines
*HYPERCAPNIA
*HYPOTHERMIA
*LACTATE dehydrogenase
*PHOSPHORYLATION
*PREVENTIVE health services
*PROTEINS
*RESEARCH funding
*RNA
*TRANSFERASES
*PHARMACODYNAMICS
Subjects
Details
- Language :
- English
- ISSN :
- 00071188
- Volume :
- 172
- Issue :
- 22
- Database :
- Academic Search Index
- Journal :
- British Journal of Pharmacology
- Publication Type :
- Academic Journal
- Accession number :
- 111246455
- Full Text :
- https://doi.org/10.1111/bph.13320