Psilocybin-induced default mode network hypoconnectivity is blunted in alcohol-dependent rats
Ivan Skorodumov, Rainer Spanagel, Jonathan Reinwald, Christian N. Schmitz, Martin Kuchař, Wolfgang Weber‐fahr, Marcus W. Meinhardt
Translational Psychiatry December 14, 2023 DOI: 10.1038/s41398-023-02690-1 via OpenAlex
Summary
AI-generated from the abstractPsilocybin, a psychedelic compound, may help treat alcohol use disorder (AUD), but its brain effects in AUD are not well understood. In a placebo-controlled crossover study with healthy rats and a rat model of alcohol relapse, psilocybin broadly decreased functional connectivity across the brain while increasing connectivity between serotonin-related core regions and cortical areas. It also reduced connectivity within the default mode network (DMN), mirroring human findings. However, in rats with a history of alcohol relapse, this DMN hypoconnectivity was blunted, and the blunting correlated with relapse intensity. The results suggest that a standard psilocybin dose may be insufficient for severe AUD, a consideration for future clinical trials.
Study at a glance
| Characteristics | Randomized, placebo-controlled crossover pharmaco-fMRI study Peer reviewed |
|---|---|
| Population | Healthy rats and a rat model of alcohol relapse |
| Intervention | Psilocybin |
| Topics | Addiction Default mode network Psilocybin |
| Keywords | Neuroscience Hallucinogen |
| Citations | 25 |
| Key finding | Psilocybin induced acute widespread decreases in functional connectivity and DMN hypoconnectivity, but alcohol relapse severity was negatively correlated with neural responsivity to psilocybin, suggesting a standard dose may be insufficient for severe AUD. |
Abstract
Abstract Alcohol Use Disorder (AUD) adversely affects the lives of millions of people, but still lacks effective treatment options. Recent advancements in psychedelic research suggest psilocybin to be potentially efficacious for AUD. However, major knowledge gaps remain regarding (1) psilocybin’s general mode of action and (2) AUD-specific alterations of responsivity to psilocybin treatment in the brain that are crucial for treatment development. Here, we conducted a randomized, placebo-controlled crossover pharmaco-fMRI study on psilocybin effects using a translational approach with healthy rats and a rat model of alcohol relapse. Psilocybin effects were quantified with resting-state functional connectivity using data-driven whole-brain global brain connectivity, network-based statistics, graph theory, hypothesis-driven Default Mode Network (DMN)-specific connectivity, and entropy analyses. Results demonstrate that psilocybin induced an acute wide-spread decrease in different functional connectivity domains together with a distinct increase of connectivity between serotonergic core regions and cortical areas. We could further provide translational evidence for psilocybin-induced DMN hypoconnectivity reported in humans. Psilocybin showed an AUD-specific blunting of DMN hypoconnectivity, which strongly correlated to the alcohol relapse intensity and was mainly driven by medial prefrontal regions. In conclusion, our results provide translational validity for acute psilocybin-induced neural effects in the rodent brain. Furthermore, alcohol relapse severity was negatively correlated with neural responsivity to psilocybin treatment. Our data suggest that a clinical standard dose of psilocybin may not be sufficient to treat severe AUD cases; a finding that should be considered for future clinical trials.