Background: Within the GABA(A)-receptor field, two important questions are what molecular mechanisms underlie benzodiazepine tolerance, and whether tolerance can be ascribed to certain GABA(A)-receptor subtypes. Methods: We investigated tolerance to acute anxiolytic, hypothermic and sedative effects of diazepam in mice exposed for 28-days to non-selective/selective GABA(A)-receptor positive allosteric modulators: diazepam (non-selective), bretazenil (partial non-selective), zolpidem (alpha(1) selective) and TPA023 (alpha(2/3) selective). In-vivo binding studies with [H-3]flumazenil confirmed compounds occupied CNS GABA(A) receptors. Results: Chronic diazepam treatment resulted in tolerance to diazepam's acute anxiolytic, hypothermic and sedative effects. In mice treated chronically with bretazenil, tolerance to diazepam's anxiolytic and hypothermic, but not sedative, effects was seen. Chronic zolpidem treatment resulted in tolerance to diazepam's hypothermic effect, but partial anxiolytic tolerance and no sedative tolerance. Chronic TPA023 treatment did not result in tolerance to diazepam's hypothermic, anxiolytic or sedative effects. Conclusions: Our data indicate that: (i) GABA(A)-alpha(2)/alpha(3) subtype selective drugs might not induce tolerance; (ii) in rodents quantitative and temporal variations in tolerance development occur dependent on the endpoint assessed, consistent with clinical experience with benzodiazepines (e. g., differential tolerance to antiepileptic and anxiolytic actions); (iii) tolerance to diazepam's sedative actions needs concomitant activation of GABA(A)-alpha(1)/GABA(A)-alpha(5) receptors. Regarding mechanism, in-situ hybridization studies indicated no gross changes in expression levels of GABA(A) alpha(1), alpha(2) or alpha(5) subunit mRNA in hippocampus or cortex. Since selective chronic activation of either GABA(A) alpha(2), or alpha(3) receptors does not engender tolerance development, subtype-selective GABA(A) drugs might constitute a promising class of novel drugs.
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Harvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Wake Forest Baptist Med Ctr, Winston Salem, NC USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Duke, Angela N.
Tiruveedhula, V. V. N. Phani Babu
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Univ Wisconsin, Milwaukee Inst Drug Discovery, Dept Chem & Biochem, Milwaukee, WI 53211 USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Tiruveedhula, V. V. N. Phani Babu
Sharmin, Dishary
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Univ Wisconsin, Milwaukee Inst Drug Discovery, Dept Chem & Biochem, Milwaukee, WI 53211 USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Sharmin, Dishary
Knutson, Daniel E.
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Univ Wisconsin, Milwaukee Inst Drug Discovery, Dept Chem & Biochem, Milwaukee, WI 53211 USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Knutson, Daniel E.
Cook, James M.
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Univ Wisconsin, Milwaukee Inst Drug Discovery, Dept Chem & Biochem, Milwaukee, WI 53211 USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Cook, James M.
Platt, Donna M.
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Harvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Univ Mississippi, Med Ctr, Dept Psychiat & Human Behav, 2500 North State St, Jackson, MS 39216 USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Platt, Donna M.
Rowlett, James K.
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Harvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA
Univ Mississippi, Med Ctr, Dept Psychiat & Human Behav, 2500 North State St, Jackson, MS 39216 USAHarvard Med Sch, New England Primate Res Ctr, One Pine Hill Dr, Southborough, MA 01772 USA