General anesthetics alter brain function via mechanisms that remain unknown. Although much evidence points to the GABAA receptor as a key target, causal relationships between changes in receptor function and behavioral end points have not yet been well established, and molecular mechanisms by which anesthetics alter channel function have not been determined. The goal of the proposed research is to relate molecular actions of anesthetics on GABAA receptors to specific behavioral effects. The strategy is to focus on inhibition in the hippocampus, a brain structure that plays an important role in memory and is particularly susceptible to development of seizure activity. To accomplish this goal, three specific aims are identified: 1) Test the hypothesis that the amnestic and convulsant properties of volatile anesthetics and related agents in vivo result from their actions on separate types of GABAA responses that are observed in vitro; 2) Determine which GABAA receptor channel kinetic parameters are altered by anesthetics, and how these changes cause inhibitory synaptic currents to be prolonged; 3) Determine the structural and kinetic basis of GABAA receptor block by volatile agents. Experiments will be conducted using electrophysiological techniques to record the responses of hippocampal neurons to anesthetics, non-immobilizers, and pro-convulsant agents. Responses of different receptor populations will be compared to test for associations with behaviorally specific actions. Kinetic mechanisms of anesthetic action will be investigated using rapid solution exchange techniques, single channel recordings, and recombinant receptors. Results will be interpreted in terms of standard and newly developed allosteric kinetic models. Structural features associated with channel block will be determined using chimeric receptors created from alpha and gamma subunits, which differ substantially in susceptibility to block. These results will provide new information regarding the cellular and molecular bases of anesthetic action. These drugs are widely used, and understanding the mechanisms by which they produce their beneficial effects and detrimental side-effects will enable the safer use of existing agents and the development of safer new compounds.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM055719-09
Application #
6929018
Study Section
Surgery, Anesthesiology and Trauma Study Section (SAT)
Program Officer
Cole, Alison E
Project Start
1997-05-01
Project End
2007-07-31
Budget Start
2005-08-01
Budget End
2007-07-31
Support Year
9
Fiscal Year
2005
Total Cost
$322,109
Indirect Cost
Name
University of Wisconsin Madison
Department
Anesthesiology
Type
Schools of Medicine
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Bland, Brian H; Bland, Cheryl E; MacIver, M Bruce (2016) Median raphe stimulation-induced motor inhibition concurrent with suppression of type 1 and type 2 hippocampal theta. Hippocampus 26:289-300
Burkat, Paul M; Lor, Chong; Perouansky, Misha et al. (2014) Enhancement of ?5-containing ?-aminobutyric acid type A receptors by the nonimmobilizer 1,2-dichlorohexafluorocyclobutane (F6) is abolished by the ?3(N265M) mutation. Anesth Analg 119:1277-84
Goldschen-Ohm, Marcel P; Haroldson, Alexander; Jones, Mathew V et al. (2014) A nonequilibrium binary elements-based kinetic model for benzodiazepine regulation of GABAA receptors. J Gen Physiol 144:27-39
Dai, Shuiping; Perouansky, Misha; Pearce, Robert A (2012) Isoflurane enhances both fast and slow synaptic inhibition in the hippocampus at amnestic concentrations. Anesthesiology 116:816-23
Pearce, R A; Duscher, P; Van Dyke, K et al. (2012) Isoflurane impairs odour discrimination learning in rats: differential effects on short- and long-term memory. Br J Anaesth 108:630-7
Perouansky, Misha; Pearce, Robert A (2011) How we recall (or don't): the hippocampal memory machine and anesthetic amnesia. Can J Anaesth 58:157-66
Perouansky, Misha; Hentschke, Harald; Perkins, Mark et al. (2007) Amnesic concentrations of the nonimmobilizer 1,2-dichlorohexafluorocyclobutane (F6, 2N) and isoflurane alter hippocampal theta oscillations in vivo. Anesthesiology 106:1168-76
Benkwitz, Claudia; Liao, Mark; Laster, Michael J et al. (2007) Determination of the EC50 amnesic concentration of etomidate and its diffusion profile in brain tissue: implications for in vitro studies. Anesthesiology 106:114-23
Borghese, C M; Werner, D F; Topf, N et al. (2006) An isoflurane- and alcohol-insensitive mutant GABA(A) receptor alpha(1) subunit with near-normal apparent affinity for GABA: characterization in heterologous systems and production of knockin mice. J Pharmacol Exp Ther 319:208-18
Boileau, Andrew J; Pearce, Robert A; Czajkowski, Cynthia (2005) Tandem subunits effectively constrain GABAA receptor stoichiometry and recapitulate receptor kinetics but are insensitive to GABAA receptor-associated protein. J Neurosci 25:11219-30

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