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Chernoff, C. S.

Publications and source records attributed to Chernoff, C. S..

3 recordsLinked to original sources

Accumbal cholinergic interneurons regulate decision making or motor impulsivity depending on latent task state

Dopaminergic transmission within the nucleus accumbens is broadly implicated in risk/reward decision making and impulse control, and the rat gambling task (rGT) measures both behaviours concurrently. While the resulting indices of risky choice and impulsivity correlate at the population level, dopaminergic manipulations rarely impact both behaviours uniformly, with changes in choice more likely when dopaminergic transmission is altered during task acquisition. Although the task structure of the rGT remains constant, the importance of accumbal dopamine signals relevant for reward prediction versus impulse control may vary over time; the former should dominate while learning which option maximises sugar pellet profits, while the suppression of premature responses becomes more valuable once a decision-making strategy is set and can be exploited. Cholinergic interneurons (CINs) critically control dopamine release within the striatum, and can also encode latent task states deciphered by the frontal cortex. We theorised that aCINs may set the dopaminergic tone of the accumbens to maximise reward learning or impulse control during task acquisition or performance, respectively. Using chemogenetics, we found some support for this hypothesis: activation and inhibition of aCINs once behaviour was stable increased and decreased motor impulsivity in both sexes but had no effect on choice patterns. In contrast, activating and inhibiting aCINs throughout task acquisition did not alter motor impulsivity, but decreased and increased risky choice respectively. However, the former effect was only seen in males and the latter in females. We conclude by proposing a set of testable predictions regarding interactions between acetylcholine and dopamine that could explain these sex differences.

animal behavior and cognition↗

Noradrenergic and Pavlovian underpinnings of compulsive versus adaptive coping strategies

BackgroundLoss of control over coping strategies can result in the development of impulsive/compulsive spectrum disorders (ICSDs) such as obsessive-compulsive disorder or trichotillomania. Rats, like humans, show individual differences in their tendency to engage in and maintain control over coping behaviours. While most rats exposed to a schedule-induced polydipsia (SIP) procedure develop controlled, moderate, polydipsic coping, some vulnerable individuals engage in excessive, compulsive drinking, or hyperdipsia. The development of hyperdipsia depends in part on noradrenergic mechanisms, as it is prevented by the noradrenaline reuptake inhibitor, atomoxetine in highly impulsive vulnerable rats. However, whether noradrenergic mechanisms also underlie the expression of well-established hyperdipsia, or if other traits, such as the ICSD-relevant sign-tracking, confer vulnerability to its development, are unknown. MethodsIn two longitudinal studies in male Sprague-Dawley rats, we investigated whether well-established hyperdipsia is influenced by atomoxetine and whether its development is predicted by sign-tracking. ResultsSign-tracking was associated with faster acquisition of SIP and the development of high or compulsive levels of SIP. Chronic atomoxetine both exacerbated hyperdipsia and increased the mRNA levels of the markers of cellular activity and plasticity c-fos and zif268, across the dorsal striatum, as revealed by qPCR assays. Atomoxetine also altered the transcriptomic landscape of the nucleus accumbens shell and the pattern of cFos and zif268 expression in the amygdalo-striatal system. ConclusionsThese results provide new insight into the biobehavioural basis of compulsive behaviours, revealing a differential noradrenergic control of the development and expression of compulsive coping, the latter involving recruitment of distinct striatal processes.

animal behavior and cognition↗

Biological Sex Influences the Contribution of Sign-Tracking and Anxiety-Like Behaviour toward Remifentanil Self-Administration

Most people sample addictive drugs, but use becomes disordered in only a small minority. Two important factors that influence susceptibility to addiction are individual differences in personality traits and biological sex. The influence of traits on addiction-like behaviour is well characterized in preclinical models of cocaine self-administration, but less is understood in regards to opioids. How biological sex influences trait susceptibility to opioid self-administration is likewise less studied than psychostimulants. Thus, we sought to elucidate how biological sex and several addiction-relevant traits interact with the propensity to self-administer the opioid remifentanil. We first screened female (n=19) and male (n=19) rats for four addiction-relevant traits: impulsivity, novelty place-preference, anxiety-like behaviour, and attribution of incentive value to reward cues. Rats were then trained to self-administer remifentanil in a "conflict model" of drug self-administration. Rats had to endure a mild electric shock to access the response manipulandum that triggered an intravenous infusion of remifentanil. In male rats, high anxiety-like behaviour was positively correlated with the number of drug infusions if the shock level was low or completely absent. In females, sign-tracking was predictive of greater resistance to punishment during drug seeking; an effect that was mediated by anxiety-like behaviour. Females consumed more remifentanil under all conditions, and their drug seeking persisted in the face of significantly greater current than males. These findings demonstrate that the influence of behavioural traits over the propensity to self-administer opioids is dependent upon biological sex.

neuroscience↗