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Retrograde activation of CB1R by muscarinic receptors protects against central organophosphorus toxicity.

Authors :
Hoffman KM
Eisen MR
Chandler JK
Nelson MR
Johnson EA
McNutt PM
Source :
Neuropharmacology [Neuropharmacology] 2019 Sep 01; Vol. 155, pp. 113-120. Date of Electronic Publication: 2019 May 24.
Publication Year :
2019

Abstract

The acute toxicity of organophosphorus-based compounds is primarily a result of acetylcholinesterase inhibition in the central and peripheral nervous systems. The resulting cholinergic crisis manifests as seizure, paralysis, respiratory failure and neurotoxicity. Though overstimulation of muscarinic receptors is the mechanistic basis of central organophosphorus (OP) toxicities, short-term changes in synapse physiology that precede OP-induced seizures have not been investigated in detail. To study acute effects of OP exposure on synaptic function, field excitatory postsynaptic potentials (fEPSPs) were recorded from Schaffer collateral synapses in the mouse hippocampus CA1 stratum radiatum during perfusion with various OP compounds. Administration of the OPs paraoxon, soman or VX rapidly and stably depressed fEPSPs via a presynaptic mechanism, while the non-OP proconvulsant tetramethylenedisulfotetramine had no effect on fEPSP amplitudes. OP-induced presynaptic long-term depression manifested prior to interictal spiking, occurred independent of recurrent firing, and did not require NMDA receptor currents, suggesting that it was not mediated by activity-dependent calcium uptake. Pharmacological dissection revealed that the presynaptic endocannabinoid type 1 receptor (CB1R) as well as postsynaptic M <subscript>1</subscript> and M <subscript>3</subscript> muscarinic acetylcholine receptors were necessary for OP-LTD. Administration of CB1R antagonists significantly reduced survival in mice after a soman challenge, revealing an acute protective role for endogenous CB1R signaling during OP exposure. Collectively these data demonstrate that the endocannabinoid system alters glutamatergic synaptic function during the acute response to OP acetylcholinesterase inhibitors.<br /> (Published by Elsevier Ltd.)

Details

Language :
English
ISSN :
1873-7064
Volume :
155
Database :
MEDLINE
Journal :
Neuropharmacology
Publication Type :
Academic Journal
Accession number :
31132436
Full Text :
https://doi.org/10.1016/j.neuropharm.2019.05.028