Induction of 72 kDa heat-shock protein following sub-lethal oxygen deprivation in organotypic hippocampal slice cultures
- 1 August 1997
- journal article
- Published by Wiley in Neuropathology and Applied Neurobiology
- Vol. 23 (4) , 289-298
- https://doi.org/10.1111/j.1365-2990.1997.tb01298.x
Abstract
The phenomenon of induced tolerance to a normally lethal episode of ischaemia by preconditioning with sub‐lethal ischaemia has been linked to induction of the 72 kDa heat‐shock protein (HSP72). However, a direct correlation between HSP72 expression and ischaemic preconditioning in vivo has not been proven. Using an in vitro model of ischaemia‐related neuronal damage we have investigated whether HSP72 protein expression is temporally correlated with subsequent tolerance to a normally lethal ischaemic episode. Organotypic hippocampal slice cultures were maintained in vitro for 14 daysbefore being exposed to hypoxia for 15–180 min. Periods of hypoxia shorter than 60 min did not produce neuronal damage. No HSP72 immunoreactivity was observed in either untreated cultures or in those exposed to hypoxia for 15 min. Following 30 and 45 min hypoxia a significant induction of HSP72 occurred in neurons of both the CA1 and CA3/4 regions of the pyramidal cell layer. A significant number of microglia were positively stained with HSP72. The peak of HSP72 expression occurred 18 h after the induction of hypoxia but remained significantly elevated for 48 h post‐hypoxia. Prolonged hypoxia (60 or 180 min) produced a selective lesion of the CA1 pyramidal cell layer which was not associated with an induction of HSP72. Pre‐conditioning with 45 min hypoxia 18 h prior to 180 min hypoxia did not reduce the neuronal damage associated with 180 min hypoxia alone. These data strongly suggest that HSP72 does not directly confer tolerance in this in vitro model of ischaemia‐related neuronal death.Keywords
This publication has 38 references indexed in Scilit:
- Immediate Early Gene Expression in Response to Cerebral IschemiaStroke, 1996
- Pre‐exposure to Subtoxic Levels Prevents Kainic Acid Lesions in Organotypic Hippocampal Slice Cultures: Effects of Kainic Acid on Parvalbumin‐immunoreactive Neurons and Expression of Heat Shock Protein 72 Following the Induction of ToleranceEuropean Journal of Neuroscience, 1996
- Development of kainic acid and N-methyl-d-aspartic acid toxicity in organotypic hippocampal culturesExperimental Neurology, 1995
- The preconditioned hippocampus accelerates HSP70 heat shock gene expression following transient ischemia in the gerbilNeuroscience Letters, 1993
- Structural modifications associated with synaptic development in area CA1 of rat hippocampal organotypic culturesDevelopmental Brain Research, 1993
- Induction of heat shock protein 72-like immunoreactivity in the hippocampal formation following transient global ischemiaBrain Research Bulletin, 1991
- In vivo hyperthermia induces expression of HSP70 mRNA in brain regions controlling the neuroendocrine response to stressMolecular Brain Research, 1990
- Hypoxia—ischemia induces heat shock protein-like (HSP72) immunoreactivity in neonatal rat brainDevelopmental Brain Research, 1990
- On the numbers of neurons on fields CA1 and CA3 of the hippocampus of Sprague-Dawley and Wistar ratsBrain Research, 1987
- DEVELOPMENT OF THE HIPPOCAMPUS INVITRO - CELL-TYPES, SYNAPSES AND RECEPTORSNeuroscience, 1983