ArticleAddiction neuroscience2026
Stress-coping behavior during predator odor exposure is associated with differences in decision making.
Article in Addiction neuroscience, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Post-traumatic stress disorder (PTSD) and alcohol use disorder (AUD) are chronic psychiatric disorders that have overlapping symptomology and risk factors, including altered motivation and impulsive behavior. Exposure to a predator odor stressor (2,3,5-Trimethyl-3-Thiazoline (TMT)) produces PTSD-like symptomology in rats. Individual differences in stress-coping behaviors such as freezing and defensive digging during TMT exposure can predict long-term differences in alcohol-related behaviors and altered neurobiology. Here, we evaluated the relationship between stress-coping behavior during TMT exposure and reward-related decision making. In Experiment 1, delay discounting curves in male and female rats were evaluated before and >2 weeks after TMT exposure using an adjusting-amounts delay discounting task. In Experiment 2, using a concurrent choice self-administration procedure, lever responses and preference for alcohol over sucrose were evaluated before and >2 weeks after TMT exposure in females. Additionally, motivation for competing reinforcers was evaluated using progressive ratios. Digging during TMT exposure was correlated with greater post-TMT impulsive choice (Experiment 1), reduced sucrose lever responses both before and after TMT exposure (Experiment 2), and reduced sucrose lever breakpoint after TMT (Experiment 2). High-digging rats showed greater delay discounting than low-digging rats after TMT exposure, though neither were different from controls. Additionally, compared to controls, TMT-exposed females had greater motivation for both alcohol and sucrose self-administration when available concurrently. Overall, these findings suggest that behavior prior to and during a stressful experience can predict individual differences in decision making, which may help future studies identify the neurobiology underlying risk for aberrant reward-related behaviors after a traumatic event.
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