Strategies for neuroprotection against L‐trans‐2,4‐pyrrolidine dicarboxylate‐induced neuronal damage during energy impairment in vitro
- 30 April 2001
- journal article
- research article
- Published by Wiley in Journal of Neuroscience Research
- Vol. 64 (4) , 418-428
- https://doi.org/10.1002/jnr.1093
Abstract
Increased levels of extracellular excitatory amino acids and failure of energy metabolism are two conditions associated with brain ischemia. In the present study we have combined the simultaneous inhibition of glutamate uptake and mitochondrial electron transport chain to simulate neuronal damage associated with brain ischemia. Results show that cerebellar granule neurons are not vulnerable to transient glutamate uptake inhibition by L‐trans‐pyrrolidine‐2,4‐dicarboxylate (PDC) despite the increase in the extracellular concentration of glutamate, unless they are simultaneously exposed to the mitochondrial toxins 3‐nitropropionic acid (3‐NP) or sodium azide. Cell damage was assessed by light microscopy observation, by reduction of 3‐(4,5‐dimethylthiazol‐2‐yl)‐2,5‐diphenyltetrazolium bromide (MTT), and by the fluorescent markers for live and dead cells, calcein and ethidium homodimer, respectively. The protective effect of alternative energy substrates, such as pyruvate, acetoacetate, and β‐hydroxybutyrate against PDC‐induced neuronal death during 3‐NP exposure was studied and compared to the effects of the antioxidant vitamin E, the spin trapper α‐phenyl‐N‐tert‐butylnitrone (PBN), voltage‐dependent calcium channel antagonists, and glutamate receptor antagonists. Results show that neuronal damage can be efficiently prevented in the presence of pyruvate and the N‐methyl‐D‐aspartate (NMDA) receptor antagonist MK‐801, whereas the non‐NMDA receptor antagonist NBQX, acetoacetate, vitamin E, and PBN showed partial protection. In contrast, β‐hydroxybutyrate and voltage‐dependent calcium channels blockers did not show any protective effect at the concentrations tested. J. Neurosci. Res. 64:418–428, 2001.Keywords
Funding Information
- DGAPA (IN219798)
- CONACyT (27970N)
This publication has 62 references indexed in Scilit:
- In Vivo Potentiation of Glutamate-Mediated Neuronal Damage after Chronic Administration of the Glycolysis Inhibitor IodoacetateExperimental Neurology, 2000
- The Glutamate Transport Inhibitor L‐trans‐pyrrolidine‐2,4‐dicarboxylate Indirectly Evokes NMDA Receptor Mediated Neurotoxicity in Rat Cortical CulturesEuropean Journal of Neuroscience, 1996
- Properties of AMPA Receptors Expressed in Rat Cerebellar Granule Cell Cultures: Ca2+ Influx StudiesJournal of Neurochemistry, 1995
- Selective neurotoxicity of ruthenium red in primary culturesNeurochemical Research, 1995
- Exacerbation of NMDA, AMPA, and l‐Glutamate Excitotoxicity by the Succinate Dehydrogenase Inhibitor MalonateJournal of Neurochemistry, 1995
- Systemic or Local Administration of Azide Produces Striatal Lesions by an Energy Impairment-Induced Excitotoxic MechanismExperimental Neurology, 1994
- Inhibition of Succinate Dehydrogenase by Malonic Acid Produces an “Excitotoxic” Lesion in Rat StriatumJournal of Neurochemistry, 1993
- Evidence that the Loss of the Voltage‐Dependent Mg2+ Block at the N‐Methyl‐D‐Aspartate Receptor Underlies Receptor Activation During Inhibition of Neuronal MetabolismJournal of Neurochemistry, 1992
- Glutamate Neurotoxicity Is Independent of Calpain I Inhibition in Primary Cultures of Cerebellar Granule CellsJournal of Neurochemistry, 1991
- Excitatory amino acid‐induced alterations of cytoplasmic free Ca2+ individual cerebellar granule neurons: Role in neurotoxicityJournal of Neuroscience Research, 1991