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Sean M. Grady

3 papers in the library · 61 citations · publishing 2020-2025

Papers

Transient Elevation of Plasma Glucocorticoids Supports Psilocybin-Induced Anxiolysis in Mice

ACS Pharmacology & Translational Science August 2, 2023 Zarmeen Zahid, Zhen Zheng, N. Jones et al. 50 citations

Psilocybin reduces anxiety-like behavior in male mice four hours after treatment, an effect that depends on a temporary spike in the stress hormone corticosterone. Blocking the corticosterone rise or the glucocorticoid receptor eliminated the short-term anxiolytic effect. A nonpsychedelic drug that also raised corticosterone produced similar anxiety reduction, as did stress-induced hormone release alone. The anxiolytic effect lasted seven days after a single psilocybin dose, but this long-term benefit was lost in mice with chronically elevated corticosterone. The findings suggest that an acute, resolvable glucocorticoid surge is necessary for psilocybin's postacute anxiety relief, while chronic stress hormone elevation undermines its lasting effects.

Delayed Anxiolytic-Like Effects of Psilocybin in Male Mice Are Supported by Acute Glucocorticoid Release

bioRxiv (Cold Spring Harbor Laboratory) August 14, 2020 N. Jones, Zarmeen Zahid, Sean M. Grady et al. 9 citations preprint

Acute release of the stress hormone corticosterone modifies the lasting behavioral effects of psilocybin in male mice. Psilocybin caused an initial anxiety-like response and a rise in plasma corticosterone, followed by a later reduction in anxiety in the novelty suppressed feeding test. Both the acute and delayed effects disappeared when mice were first given chronic oral corticosterone to suppress their own stress-axis. One week later, psilocybin-treated mice spent more time in the center of an open field, but this long-term anxiolytic effect was also blocked by prior chronic corticosterone exposure. Brief isoflurane anesthesia after psilocybin eliminated these interactions. The findings identify glucocorticoid release as a biological modifier of psilocybin's post-acute and long-term behavioral effects in mice.

Effects of Psilocybin on Mouse Brain Microstructure.

AJNR. American journal of neuroradiology June 3, 2025 Paloma C Frautschi, Ajay P Singh, Nicholas A Stowe et al. 2 citations

Psilocybin treatment in male mice led to structural connectivity differences in the frontal association cortex after 72 hours and microstructural changes in the primary visual cortex after 24 hours, as well as in the striatum and hippocampus after 72 hours, including increased mean diffusivity and decreased neurite density. These findings suggest that diffusion microstructure imaging can detect and characterize brain changes induced by psilocybin, offering a potential method to monitor treatment response and identify clinical endpoints for patients with major depressive disorder.