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Published on: January 22, 2016
Selective Inhibition of PDE4B Reduces Methamphetamine Reinforcement in Two C57BL/6 Substrains
Kevin M Honeywell1, Eliyana Van Doren1, Karen K Szumlinski1,2
1Department of Psychological and Brain Sciences, University of California Santa Barbara, Santa Barbara, CA 93106-9660, USA.
Abstract:
Methamphetamine (MA) is a highly addictive psychostimulant drug, and the number of MA-related overdose deaths has reached epidemic proportions. Repeated MA exposure induces a robust and persistent neuroinflammatory response, and the evidence supports the potential utility of targeting neuroimmune function using non-selective phosphodiesterase 4 (PDE4) inhibitors as a therapeutic strategy for attenuating addiction-related behavior. Off-target, emetic effects associated with non-selective PDE4 blockade led to the development of isozyme-selective inhibitors, of which the PDE4B-selective inhibitor A33 was demonstrated recently to reduce binge drinking in two genetically related C57BL/6 (B6) substrains (C57BL/6NJ (B6NJ) and C57BL/6J (B6J)) that differ in their innate neuroimmune response. Herein, we determined the efficacy of A33 for reducing MA self-administration and MA-seeking behavior in these two B6 substrains. Female and male mice of both substrains were first trained to nose poke for a 100 mg/L MA solution followed by a characterization of the dose-response function for oral MA reinforcement (20 mg/L-3.2 g/L), the demand-response function for 400 mg/L MA, and cue-elicited MA seeking following a period of forced abstinence. During this substrain comparison of MA self-administration, we also determined the dose-response function for A33 pretreatment (0-1 mg/kg) on the maintenance of MA self-administration and cue-elicited MA seeking. Relative to B6NJ mice, B6J mice earned fewer reinforcers, consumed less MA, and took longer to reach acquisition criterion with males of both substrains exhibiting some signs of lower MA reinforcement than their female counterparts during the acquisition phase of the study. A33 pretreatment reduced MA reinforcement at all doses tested. These findings provide the first evidence that pretreatment with a selective PDE4B inhibitor effectively reduces MA self-administration in both male and female mice of two genetically distinct substrains but does not impact cue-elicited MA seeking following abstinence. If relevant to humans, these results posit the potential clinical utility of A33 or other selective PDE4B inhibitors for curbing active drug-taking in MA use disorder.
Insights
A selective PDE4B inhibitor, A33, reduced methamphetamine self-administration in mice. This finding suggests potential therapeutic use for A33 in treating methamphetamine use disorder.
Area of Science:
- Neuroscience
- Pharmacology
- Addiction Research
Background:
- Methamphetamine (MA) use disorder is a significant public health crisis with rising overdose deaths.
- Neuroinflammation plays a key role in MA addiction, suggesting neuroimmune targets for treatment.
- Non-selective phosphodiesterase 4 (PDE4) inhibitors show therapeutic potential but have side effects; selective inhibitors like A33 offer a promising alternative.
Purpose of the Study:
- To investigate the efficacy of the selective PDE4B inhibitor A33 in reducing MA self-administration and MA-seeking behavior.
- To compare the effects of A33 in two distinct C57BL/6 substrains (B6NJ and B6J) with differing neuroimmune responses.
- To assess A33's impact on both active drug-taking and cue-elicited drug seeking.
Main Methods:
- Mice (female and male B6NJ and B6J substrains) were trained to self-administer MA orally.
- Dose-response and demand functions for MA reinforcement were characterized.
- The effect of A33 pretreatment on MA self-administration and cue-elicited MA seeking was determined.
- Substrain differences in MA reinforcement were analyzed.
Main Results:
- B6J mice exhibited lower MA reinforcement compared to B6NJ mice, with some sex differences observed.
- A33 pretreatment significantly reduced MA self-administration across all tested doses in both substrains.
- A33 did not significantly affect cue-elicited MA seeking behavior after a period of abstinence.
Conclusions:
- Selective PDE4B inhibition with A33 effectively reduces active methamphetamine self-administration in mice.
- These findings highlight the potential of A33 as a therapeutic agent for methamphetamine use disorder, specifically for reducing drug intake.
- Further research is warranted to explore the clinical utility of selective PDE4B inhibitors in human MA use disorder treatment.
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