Related Experiment Videos
N-methyl-D-aspartate receptors mediate hypoxic neuronal injury in cortical culture
M P Goldberg1, J H Weiss, P C Pham
1Department of Neurology, Stanford University Medical Center, California.
Abstract:
The ability of several glutamate receptor antagonists to reduce hypoxic cortical neuronal injury was quantitatively examined in cell cultures derived from fetal mice. Cultures exposed to hypoxia for 8 hr showed by the following day widespread neuronal injury, which was substantially attenuated by addition of the specific N-methyl-D-aspartate (NMDA) receptor antagonist 2-amino-5-phosphonovalerate (APV). The protective effect of APV was concentration dependent (ED50 about 2 microM) and stereospecific (D-APV approximately 100 times more potent that L-APV). Neuron-protective effects were also observed with several other NMDA antagonists: 2-amino-7-phosphonoheptanoate, phencyclidine and (+)-SKF 10,047 [(+)-N-allylnormetazocine]--as well as with the nonspecific glutamate antagonists D-glutamylglycine and kynurenate. In addition, a similar antagonist profile was observed with a chemical model of hypoxic neuronal injury, produced by brief exposure to high concentrations of cyanide. In contrast, 1 mM concentrations of glutamate diethylester and gamma-aminomethyl sulfonate, compounds reported in some studies to preferentially antagonize non-NMDA glutamate receptors, failed to protect neurons against either hypoxia or cyanide. These results are consistent with the hypothesis that NMDA receptors are preferentially involved in the pathogenesis of hypoxic cortical neuronal injury and suggest that cortical cell culture may be a useful system in which to quantitatively characterize the pharmacology of that injury.
Insights
N-methyl-D-aspartate (NMDA) receptor antagonists significantly reduced hypoxic injury in mouse cortical cell cultures. This suggests NMDA receptors play a key role in neuronal damage from oxygen deprivation.
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Hypoxic conditions can lead to significant neuronal injury.
- Glutamate receptors are implicated in excitotoxicity and neuronal damage.
Purpose of the Study:
- To investigate the efficacy of glutamate receptor antagonists in mitigating hypoxic cortical neuronal injury.
- To characterize the pharmacology of hypoxic neuronal injury using cell cultures.
Main Methods:
- Primary cortical cell cultures from fetal mice were exposed to hypoxia for 8 hours.
- Neuronal injury was assessed the following day.
- The effects of various N-methyl-D-aspartate (NMDA) receptor antagonists and non-specific glutamate antagonists were evaluated.
- A chemical model using cyanide exposure was also employed.
Main Results:
- The specific NMDA receptor antagonist 2-amino-5-phosphonovalerate (APV) substantially reduced hypoxic neuronal injury in a concentration-dependent and stereospecific manner.
- Other NMDA antagonists (2-amino-7-phosphonoheptanoate, phencyclidine, (+)-SKF 10,047) and non-specific glutamate antagonists (D-glutamylglycine, kynurenate) also demonstrated protective effects.
- Compounds reported to antagonize non-NMDA receptors did not provide protection against hypoxia or cyanide-induced injury.
Conclusions:
- NMDA receptors are preferentially involved in the pathogenesis of hypoxic cortical neuronal injury.
- Cortical cell culture serves as a valuable model for quantitatively studying the pharmacology of hypoxic neuronal injury.