Molecular psychiatry
September 1, 2023
Matthew B Wall, Rebecca Harding, Rayyan Zafar et al.
39 citations
Psychedelic therapy shows promise for treating depression, addiction, PTSD, and other psychiatric disorders. Classic serotonergic psychedelics like psilocybin and LSD act primarily at the 5-HT2A receptor, while ketamine, MDMA, and ibogaine also show potential. Modern neuroimaging techniques, especially PET and MRI, now allow precise measurement of brain effects. Key knowledge gaps remain: the link between acute drug effects and long-term clinical outcomes, detailed characterization of 5-HT2A receptor effects, and the role of neuroplasticity. Future studies combining PET with 5-HT2A-selective ligands like [11C]Cimbi-36 and MRI could bridge molecular, functional, and clinical understanding.
Neurosci Insights
October 8, 2024
Matthew B Wall, Rebecca Harding, Natalie Ertl et al.
3 citations
Psychedelic therapies are new psychiatric treatments that may need to be combined with existing medications, but little is known about their interactions with common psychiatric drugs. This commentary reviews key findings on such drug-drug interactions and proposes that multimodal neuroimaging, combining PET and fMRI with other measures, offers the most thorough way to study these interactions across molecular, functional, and clinical levels.
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.