N-methyl-d-aspartate receptors: Structure, function, and role in organophosphorus compound poisoning
- PMID: 38415801
- DOI: 10.1002/biof.2048
N-methyl-d-aspartate receptors: Structure, function, and role in organophosphorus compound poisoning
Abstract
Acute organophosphorus compound (OP) poisoning induces symptoms of the cholinergic crises with the occurrence of severe epileptic seizures. Seizures are induced by hyperstimulation of the cholinergic system, but are enhanced by hyperactivation of the glutamatergic system. Overstimulation of muscarinic cholinergic receptors by the elevated acetylcholine causes glutamatergic hyperexcitation and an increased influx of Ca2+ into neurons through a type of ionotropic glutamate receptors, N-methyl-d-aspartate (NMDA) receptors (NMDAR). These excitotoxic signaling processes generate reactive oxygen species, oxidative stress, and activation of the neuroinflammatory response, which can lead to recurrent epileptic seizures, neuronal cell death, and long-term neurological damage. In this review, we illustrate the NMDAR structure, complexity of subunit composition, and the various receptor properties that change accordingly. Although NMDARs are in normal physiological conditions important for controlling synaptic plasticity and mediating learning and memory functions, we elaborate the detrimental role NMDARs play in neurotoxicity of OPs and focus on the central role NMDAR inhibition plays in suppressing neurotoxicity and modulating the inflammatory response. The limited efficacy of current medical therapies for OP poisoning concerning the development of pharmacoresistance and mitigating proinflammatory response highlights the importance of NMDAR inhibitors in preventing neurotoxic processes and points to new avenues for exploring therapeutics for OP poisoning.
Keywords: GABA; excitotoxicity; neuroinflammation; neurotoxicity; seizures.
© 2024 International Union of Biochemistry and Molecular Biology.
References
REFERENCES
-
- Maček Hrvat N, Kovarik Z. Counteracting poisoning with chemical warfare nerve agents. Arh Hig Rada Toksikol. 2020;71(4):266–284.
-
- Costa LG. Organophosphorus compounds at 80: some old and new issues. Toxicol Sci. 2018;162(1):24–35.
-
- Timperley CM, Forman JE, Abdollahi M, Al‐Amri AS, Baulig A, Benachour D, et al. Advice on assistance and protection provided by the Scientific Advisory Board of the Organisation for the prohibition of chemical weapons: part 1. On medical care and treatment of injuries from nerve agents. Toxicology. 2019;415(September 2018):56–69.
-
- Timperley CM, Abdollahi M, Al‐Amri AS, Baulig A, Benachour D, Borrett V, et al. Advice on assistance and protection by the Scientific Advisory Board of the Organisation for the prohibition of chemical weapons: part 2. On preventing and treating health effects from acute, prolonged, and repeated nerve agent exposure, and the identification of medical countermeasures able to reduce or eliminate the longer term health effects of nerve agents. Toxicology. 2019;413:13–23.
-
- Casida JE. Organophosphorus xenobiotic toxicology. Annu Rev Pharmacol Toxicol. 2017;57:309–327.
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