Effects of General Anesthetics on Synaptic Transmission and Plasticity.

Jimcy Platholi, Hugh C Hemmings
Author Information
  1. Jimcy Platholi: Department of Anesthesiology, Weill Cornell Medicine, New York, NY, USA | Feil Family Brain and Mind Research Institute, Weill Cornell Medicine, New York, NY, USA.
  2. Hugh C Hemmings: Department of Anesthesiology, Weill Cornell Medicine, New York, NY, USA | Department of Pharmacology,, Weill Cornell Medicine, New York, NY, USA.

Abstract

General anesthetics depress excitatory and/or enhance inhibitory synaptic transmission principally by modulating the function of glutamatergic or GABAergic synapses, respectively, with relative anesthetic agent-specific mechanisms. Synaptic signaling proteins, including ligand- and voltage-gated ion channels, are targeted by general anesthetics to modulate various synaptic mechanisms, including presynaptic neurotransmitter release, postsynaptic receptor signaling, and dendritic spine dynamics to produce their characteristic acute neurophysiological effects. As synaptic structure and plasticity mediate higher-order functions such as learning and memory, long-term synaptic dysfunction following anesthesia may lead to undesirable neurocognitive consequences depending on the specific anesthetic agent and the vulnerability of the population. Here we review the cellular and molecular mechanisms of transient and persistent general anesthetic alterations of synaptic transmission and plasticity.

Keywords

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Grants

  1. R01 GM058055/NIGMS NIH HHS
  2. R01 GM130722/NIGMS NIH HHS
  3. GM130722, GM058055/US National Institutes of Health

MeSH Term

Anesthetics, General
Humans
Learning
Synapses
Synaptic Transmission

Chemicals

Anesthetics, General

Word Cloud

Created with Highcharts 10.0.0synaptictransmissionanestheticmechanismsplasticityGeneralanestheticsfunctionSynapticsignalingincludingionchannelsgeneralpresynapticpostsynapticstructuredepressexcitatoryand/orenhanceinhibitoryprincipallymodulatingglutamatergicGABAergicsynapsesrespectivelyrelativeagent-specificproteinsligand-voltage-gatedtargetedmodulatevariousneurotransmitterreleasereceptordendriticspinedynamicsproducecharacteristicacuteneurophysiologicaleffectsmediatehigher-orderfunctionslearningmemorylong-termdysfunctionfollowinganesthesiamayleadundesirableneurocognitiveconsequencesdependingspecificagentvulnerabilitypopulationreviewcellularmoleculartransientpersistentalterationsEffectsAnestheticsTransmissionPlasticityAnesthesia

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