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Published on: July 13, 2014
Binge ethanol exposure delays development of GABAergic miniature postsynaptic currents in septal neurons
Dustin W DuBois1, Alan R Parrish, Jerome P Trzeciakowski
1Department of Medical Pharmacology and Toxicology, Texas A&M University System Health Science Center, College Station, TX 77843-1114, United States.
Insights
Early ethanol exposure in rats delays the maturation of inhibitory synapses in septal neurons by interfering with GABA(A) receptor signaling, impacting neuronal development.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Pharmacology
Background:
- GABA(A) receptor (GABA(A)R) currents in rat septal neurons mature rapidly during early postnatal development.
- Early postnatal ethanol exposure has been shown to disrupt this GABA(A)R maturation in vivo.
- However, GABA(A)R function in septal neurons cultured in vitro does not show the same rapid maturation or blunting by ethanol.
Purpose of the Study:
- To investigate the impact of binge ethanol exposure on the maturation of GABAergic synaptic receptors in developing septal neuron cultures.
- To determine if ethanol exposure affects miniature postsynaptic currents (mPSCs), which reflect synaptic receptor function.
Main Methods:
- Septal neuron cultures were exposed to binge ethanol during early development (6-11 days in vitro).
- GABA(A)R-mediated mPSCs were recorded and analyzed for amplitude, frequency, and decay kinetics.
- Cultures were also treated with picrotoxin to assess the role of GABA(A)R signaling.
Main Results:
- Binge ethanol exposure in vitro reduced mPSC amplitude and frequency and significantly slowed decay kinetics.
- These changes in mPSCs after ethanol exposure mimicked immature neuronal characteristics.
- Sustained inhibition of GABA(A)Rs with picrotoxin produced similar effects, suggesting impaired trophic signaling.
Conclusions:
- Binge ethanol exposure delays the maturation of GABAergic synaptic currents in developing septal neurons.
- This delay appears to be mediated by interference with trophic postsynaptic GABA(A)R signaling.
- Ethanol's effects on synaptic maturation differ between in vivo and in vitro preparations, highlighting the complexity of developmental processes.
Abstract:
Whole cell GABA(A)R currents of septal neurons isolated from rat pups increase rapidly during the first weeks of life when inhibitory synapses are forming. Early postnatal binge ethanol intubation on days 4-9 delays this maturational up-regulation in septal neurons isolated several days later suggesting inhibitory synapse formation could be disrupted [S.-H. Hsiao, J.L. Acevedo, D.W. DuBois, K.R. Smith, J.R. West, G.D. Frye, Early postnatal ethanol intubation blunts GABA(A) receptor upregulation and modifies 3alpha-hydroxy-5alpha-pregnan-20-one sensitivity in rat MS/DB neurons, Brain Res. Dev. Brain Res. 130 (2001) 25-40]. Surprisingly, whole cell GABA(A)R function does not increase rapidly when septal neurons are grown for the same period in vitro and is not blunted by comparable ethanol exposure of the cultures [S.-H. Hsiao, D.W. DuBois, R.C. Miranda, G.D. Frye, Critically timed ethanol exposure reduces GABA(A)R function on septal neurons developing in vivo but not in vitro, Brain Res Dev. Brain Res. 1008 (2004) 69-80]. Because GABAergic miniature postsynaptic currents (mPSCs) show parallel patterns of maturation whether cortical neurons are growing in vivo or in vitro [D.D. Dunning, C.L. Hoover, I. Soltesz, M.A. Smith, D.K. ODowd, GABA(A) receptor-mediated miniature postsynaptic currents and alpha-subunit expression in developing cortical neurons, J. Neurophysiol. 82 (1999) 3286-3297], we examined the impact of binge ethanol exposure on synaptic receptors activated by these currents in septal cultures. Binge ethanol treatment of embryonic septal neurons over 6-11 days in vitro (DIV) slightly reduced GABA(A)R-mediated mPSC amplitude and frequency, but also substantially slowed decay kinetics when mPSCs were recorded later on DIV 13-18. Decreased frequency and slowed mPSC decay kinetics after ethanol were consistent with parameters measured in immature neurons. Untreated septal neurons exhibited decreased mPSC amplitude and frequency with acute 30-100 mM ethanol, without changing decay kinetics suggesting a direct inhibition of postsynaptic receptors. Sustained inhibition of GABA(A)Rs with 100 microM picrotoxin on DIV 6-11 decreased mPSC amplitude and frequency and slowed decay kinetics similar to binge ethanol exposure. These results suggest that binge ethanol exposure delays mPSC maturation by interfering with trophic postsynaptic GABA(A)R signaling during the early development of septal neurons.
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