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Luzyanin, D.

Publications and source records attributed to Luzyanin, D..

2 recordsLinked to original sources

Psilocybin ameliorates neuropathic pain-like behaviour in mice and facilitates gabapentin-mediated analgesia

Chronic pain states are challenging to control with current drug therapies. Here, we demonstrate that a single dose of psilocybin can produce a sustained anti-nociceptive effect in a model of chronic neuropathic pain in male and female mice. Psilocybin anti-nociceptive effects were mediated by 5-HT2A receptors, although additional mechanisms might also be involved. Furthermore, a single dose of psilocybin caused a significant increase in the anti-nociceptive potential of gabapentin, a widely used treatment for neuropathic pain consistent with the establishment of longer lasting changes in network processing. Overall, these findings present the first preclinical evidence that psilocybin could be a valuable approach for treating chronic pain from nerve injury and serve as a new therapeutic addition for pain management.

neuroscience↗

Neural Encoding of Immediate and Instrumental Value During Planning

Planning is a key executive function that enables humans to anticipate future outcomes by mentally simulating action sequences and balancing immediate gains against long-term goals. While we developed a partial understanding of neural mechanisms of planning in spatial navigation and reward-based reinforcement learning, little is known about the relative neural encoding of the instantaneous and instrumental value of the same action. We used a novel fMRI task in which participants repeatedly chose between two options, each with an immediate monetary value and a known future-oriented instrumental value. Our results show that striatal activity is positively correlated with instrumental value, whereas activity in the dorsomedial prefrontal cortex and bilateral insula is negatively correlated with the instantaneous value. These dissociable patterns support specialization in valuation neural circuits during planning.

neuroscience↗