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David Nutt

Imperial College London

137 papers in the library · 15,048 citations · publishing 2007-2026

Papers

Detecting neuroplastic effects induced by ketamine in healthy human subjects: a multimodal approach

bioRxiv Preprint Server May 1, 2025 Claudio Agnorelli, Joseph Peill, Gabriela Sawicka et al. preprint

A single psychedelic dose of ketamine (1 mg/kg, intravenous) alters brain chemistry and connectivity in healthy people for at least one to eight days. After the dose, glutamate levels in the anterior cingulate cortex rose significantly. Functional connectivity decreased within high-order networks such as the default mode network, while integration between low- and high-order networks increased. Increases in a PET marker of synaptic plasticity correlated with reduced intrinsic activity in default mode network regions and a diminished influence of the posterior cingulate cortex on global network dynamics. The posterior cingulate cortex appears to be a central hub through which ketamine may reshape brain hierarchies over the long term.

Correction: Study Protocol for 'PsilOCD: A Pharmacological Challenge Study Evaluating the Effects of the 5-HT2A Agonist Psilocybin on the Neurocognitive and Clinical Correlates of Compulsivity'.

Cureus January 1, 2025 Sorcha O'Connor, Kate Godfrey, Sara Reed et al. correction

A protocol describes a planned study testing whether a low-moderate dose of psilocybin (10 mg), combined with non-interventional therapy, can improve cognitive flexibility and neuroplasticity in people with obsessive-compulsive disorder (OCD). Twenty blinded participants will receive an active placebo (1 mg psilocybin) in a first session and 10 mg in a second session four weeks later. Cognitive flexibility will be measured with the intradimensional-extradimensional shift task two days after each session, and neuroplasticity will be assessed via electroencephalography immediately after each session. Secondary outcomes include OCD symptom severity and patient-reported measures. The results are expected to clarify neural mechanisms and guide a future randomized controlled trial.

Transient destabilization of whole brain dynamics induced by DMT

bioRxiv January 29, 2024 Juan Ignacio Piccinini, Yonatan Sanz Perl, Carla Pallavicini et al. preprint

The brain state induced by psychedelic drugs is often studied as a static snapshot, but this work focuses on the transition itself. Using a time-dependent whole-brain model and fMRI data from 15 volunteers given intravenous DMT, the authors show that the drug briefly pushes the brain near a critical point where it becomes maximally responsive to perturbations. This heightened reactivity is concentrated in fronto-parietal regions and visual cortices and correlates with serotonin 5HT2a receptor density. The findings suggest that even a short psychedelic episode can have a lasting influence because minimal perturbations during this transient achieve maximal effect, with the temporal evolution aligning with the drug's pharmacokinetics.

Psychedelics as psychiatric medicines: Current challenges and future prospects

Psychedelics as Psychiatric Medications March 1, 2023 David Castle, Nicole Ledwos, David Nutt

The renewed scientific interest in psychedelics and related drugs is promising for treating mental health disorders and addictions, but many questions remain unanswered. Key uncertainties include how these drugs work in the brain, how their biological effects interact with psychological support to produce therapeutic change, the duration of benefits, and long-term safety. The necessity of the psychedelic experience for therapeutic benefit, safe delivery of psychological support, integration into mainstream healthcare, funding, therapist training, and gold-standard trial designs addressing blinding, placebo response, and expectancy bias are all outstanding issues that need resolution as research expands across more disorders.

A critique of: Skepticism About Recent Evidence that Psilocybin Opens Depressed Minds

May 10, 2022 Robin Carhart‐Harris, Richard E. Daws, David Nutt preprint

The authors respond to a critique of their earlier work that questioned whether psilocybin truly opens depressed minds. They address the skeptic's arguments, defending their original evidence and conclusions about psilocybin's effects on depression. The response clarifies methodological points and reaffirms the potential of psilocybin as a treatment for depression, while acknowledging the need for further research to address lingering doubts.

Microdosing psychedelics: More questions than answers? An overview and suggestions for future research

Journal of Psychopharmacology July 14, 2019 Livia Ng, Luca Pani, Anaïs Soula et al.

Claims about the positive effects of microdosing psychedelics on mood and cognition have entered public discussion, but scientific studies are scarce and no consensus on what microdosing means exists. This critique identifies questions future research must answer and offers guidelines, focusing on psilocybin due to its potential clinical approval and short-lasting effects. While anecdotal reports emphasize benefits, the paper concludes that future studies should also investigate potential risks of repeated low-dose administrations. Preclinical and clinical research examining biological measures like heart rate and receptor turnover, as well as cognitive parameters such as memory and attention, is needed to uncover possible negative consequences.

Membrane Permeation of Psychedelic Compounds

ChemRxiv Vito Federico Palmisano, Claudio Agnorelli, Andrea Fagiolini et al.

The ability of classic psychedelics to permeate neuronal membranes and reach intracellular 5-HT2A receptors is critical for their therapeutic effects. Using molecular dynamics simulations, this computational study examined how structural modifications to tryptamines affect membrane permeability. Dimethylation of the primary amine group and adding a methoxy group at position 5 increased permeability. In contrast, substitutions at other positions on the indole ring and protonation of the molecules raised the energy barrier at the bilayer center, making the compounds highly impermeable. These findings can guide future drug design to develop psychedelics with enhanced activity.

Detecting neuroplastic effects induced by ketamine in healthy human subjects: A multimodal approach.

Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism March 21, 2026 Claudio Agnorelli, Joseph Peill, Gabriela Sawicka et al.

A single intravenous dose of ketamine (1 mg/kg) in eleven healthy men altered brain chemistry and connectivity days later. Glutamate levels rose in the anterior cingulate cortex (ACC). Functional coupling between the ACC and the dorsolateral prefrontal cortex decreased, while coupling between the ACC and the amygdala increased. Participants whose PET scans indicated increased synaptic plasticity showed reduced intrinsic activity in default mode network (DMN) regions. The findings suggest the DMN is a central hub where ketamine may reshape brain hierarchies, offering clues to its therapeutic mechanisms.

Neuroplasticity and Psychedelics: a comprehensive examination of classic and non-classic compounds in pre and clinical models

arXiv Preprint Archive November 29, 2024 Claudio Agnorelli, Meg Spriggs, Kate Godfrey et al.

Psychedelics like LSD and psilocybin can rewire brain connections after just one dose, unlike traditional psychiatric medications. These compounds boost the brain's natural plasticity, helping neurons form new pathways and adapt to change. Studies show they create a window of enhanced learning and adaptation, leading to lasting improvements in mood and behavior.

Enhanced repertoire of brain dynamical states during the psychedelic experience

arXiv Preprint Archive May 26, 2014 Enzo Tagliazucchi, Robin Carhart-Harris, Robert Leech et al.

Psilocybin, the active compound in magic mushrooms, dramatically expands the brain's repertoire of connectivity states, revealing how consciousness can be altered. Using advanced brain imaging, researchers tracked neural activity before and after psilocybin administration. Results showed increased signal variability in memory and emotion-processing regions, while higher brain networks displayed enhanced flexibility in their communication patterns.