bioRxiv (Cold Spring Harbor Laboratory)
June 5, 2025
Ekaterina Shatalina, Natalie Ertl, Kat Petrilli et al.
1 citation
preprint
Inhaling cannabis with THC alone or THC plus CBD reduces resting-state functional connectivity in brain networks that are rich in CB1 and CB2 cannabinoid receptors. Co-administering CBD with THC produced more widespread reductions than THC alone, affecting regions involved in cognition and emotion such as the prefrontal cortex, cingulate cortex, insula, hippocampus, amygdala, and putamen. Higher THC levels in the blood were linked to greater connectivity decreases when CBD was also present. Subjective drug effects correlated with connectivity changes in a region-specific way. The findings suggest that CBD may enhance rather than dampen THC's effects on brain connectivity, contrary to some earlier expectations.
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.
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.