bioRxiv Science⌕ Search

Biology subjects

Blount, H. L.

Publications and source records attributed to Blount, H. L..

2 recordsLinked to original sources

Voluntary alcohol intake alters the motivation to seek intravenous oxycodone and neuronal activation during the reinstatement of oxycodone and sucrose seeking

Opioid-alcohol polysubstance use is prevalent and worsens treatment outcomes. Here we assessed whether co-consumption of oxycodone and alcohol would influence intake of one another, demand for oxycodone, and the neurocircuitry underlying cue-primed reinstatement of oxycodone-seeking. Male and female rats underwent oxycodone intravenous self-administration (IVSA) with access to either alcohol (20% v/v) and water or only water immediately after the IVSA session. Next, economic demand for intravenous oxycodone was assessed while access to alcohol and/or water continued. Control rats self-administered sucrose followed by access to alcohol and/or water. Rats underwent extinction training and brains were processed for c-fos mRNA expression immediately following a cue-primed reinstatement test. While both sexes decreased oxycodone intake if they had access to alcohol, and decreased alcohol intake if they had access to oxycodone, female oxycodone+alcohol rats exhibited decreased demand elasticity for intravenous oxycodone and increased cue-primed reinstatement while male rats did not. Spontaneous withdrawal signs were correlated with oxycodone intake while alcohol intake was correlated with anxiety-like behavior. Alcohol consumption increased the number of basolateral and central amygdala neurons activated during sucrose and oxycodone reinstatement and the number of ventral and dorsal striatum neurons engaged by sucrose reinstatement. Nucleus accumbens shell dopamine 1 receptor containing neurons displayed activation patterns consistent with oxycodone reinstatement. Thus, alcohol alters the motivation to seek oxycodone in a sex-dependent manner and alters the neural circuitry engaged by cue-primed reinstatement of sucrose and oxycodone-seeking.

neuroscience↗

Resilience to anxiety and anhedonia after predator scent stress is accompanied by increased nucleus accumbens mGlu5 in female rats

Despite the higher prevalence of post-traumatic stress disorder (PTSD) in women, the majority of preclinical neuroscience research has been conducted utilizing male subjects. We have found that male rats exposed to the predator scent 2,4,5-trimethyl-3-thiazoline (TMT) show heterogenous development of long-term anxiety-like behavior and conditioned fear to the TMT environment. Stress-Resilient males exhibit increased mGlu5 mRNA expression in the basolateral amygdala (BLA) and prefrontal cortex. Here we sought to determine whether the same behavioral and genetic responses would be observed in female rats exposed to TMT. Sprague-Dawley rats were exposed to TMT for ten minutes, while Controls were exposed to an unscented environment. Anxiety and anhedonia were assessed 7-14 days later with elevated plus maze (EPM), acoustic startle response (ASR), light/dark box, and sucrose preference test. TMT-exposed females spent less time in the EPM open arms and exhibited greater startle amplitude, and reduced sucrose intake compared to Controls. Median split analyses conducted on EPM and sucrose intake yielded phenotypes that displayed behavior in the light/dark box consistent with EPM and sucrose testing. Unlike male Susceptible rats, female Susceptible rats showed no freezing when re-exposed to the TMT context, nor did Resilient female rats present elevated BLA mGlu5 mRNA levels. Instead, Susceptible females had greater BLA mGlu5 than Resilient or Control rats. This work indicates that, as in humans, rats exhibit sex-dependent responses to stress. This translational animal model may provide insight into how females are uniquely affected by PTSD.

neuroscience↗