Selected mouse lines, alcohol and behavior
- 1 September 1989
- journal article
- review article
- Published by Springer Nature in Cellular and Molecular Life Sciences
- Vol. 45 (9) , 805-827
- https://doi.org/10.1007/bf01954056
Abstract
The technique of selective breeding has been employed to develop a number of mouse lines differing in genetic sensitivity to specific effects of ethanol. Genetic animal models for sensitivity to the hypnotic, thermoregulatory, excitatory, and dependence-producing effects of alcohol have been developed. These genetic animal models have been utilized in numerous studies to assess the bases for those genetic differences, and to determine the specific neurochemical and neurophysiological bases for ethanol's actions. Work with these lines has challenged some long-held beliefs about ethanol's mechanisms of action. For example, lines genetically sensitive to one effect of ethanol are not necessarily sensitive to others, which demonstrates that no single set of genes modulates all ethanol effects. LS mice, selected for sensitivity to ethanol anesthesia, are not similarly sensitive to all anesthetic drugs, which demonstrates that all such drugs cannot have a common mechanism of action. On the other hand, WSP mice, genetically susceptible to the development of severe ethanol withdrawal, show a similar predisposition to diazepam and phenobarbital withdrawal, which suggests that there may be a common set of genes underlying drug dependentcies. Studies with these models have also revealed important new directions for future mechanism-oriented research. Several studies implicate brain gamma-aminobutyric acid and dopamine systems as potentially important mediators of susceptibility to alcohol intoxication. The stability of the genetic animal models across laboratories and generations will continue to increase their power as analytic tools.Keywords
This publication has 137 references indexed in Scilit:
- Ethanol and diazepam withdrawal convulsions are extensively codetermined in WSP and WSR miceLife Sciences, 1989
- Further characterization of benzodiazepine receptor differences in long-sleep and short-sleep miceLife Sciences, 1988
- Correlation between the enhancement of flunitrazepam binding by GABA and seizure susceptibility in miceLife Sciences, 1987
- Gamma-aminobutyric acid and alcohol actions: Neurochemical studies of long sleep and short sleep miceLife Sciences, 1986
- Time course of ethanol's effects on brain prostaglandins in LS and SS miceLife Sciences, 1986
- Relationship of membrane physical properties to alcohol dependence in mice selected for genetic differences in alcohol withdrawalLife Sciences, 1984
- Specific ethanol withdrawal seizures in genetically selected miceLife Sciences, 1984
- Gamma aminobutyric acid in different strains of mice effect of ethanolLife Sciences, 1976
- Differential effects of pentobarbital and ethanol in miceLife Sciences, 1976
- Alcohol withdrawal reactions in mouse strains selectively bred for long or short sleep timesLife Sciences, 1975