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Lily Freeman-Striegel

2 papers in the library · 9 citations · publishing 2023-2024

Papers

Vaporized Δ9-tetrahydrocannabinol exposure in utero has negative effects on attention in a dose- and sex-dependent manner.

Pharmacology, biochemistry, and behavior September 1, 2024 Samantha L Penman, Nicole M Roeder, Jia Wang et al. 9 citations

Prenatal exposure to vaporized THC, the psychoactive component of cannabis, may lead to attention deficits and altered memory performance in adolescence. In a rodent study, pregnant rats inhaled THC daily from early pregnancy until birth. Their offspring, raised on either a standard or high-fat diet, were tested in early and late adolescence. Low-dose THC exposure reduced object exploration in memory and attention tests, indicating decreased attention. Female offspring showed even lower attention than males. Some learning pattern differences appeared in the high-dose group during early adolescence, but final memory performance was unaffected. This is the first study to examine vaporized THC's effects on adolescent memory and attention.

Chronic Δ9-tetrahydrocannabinol treatment has dose-dependent effects on open field exploratory behavior and [3H] SR141716A receptor binding in the rat brain.

Life Sciences August 15, 2023 Lily Freeman-Striegel, John Hamilton, Renuka Kannappan et al.

Chronic exposure to Δ9-tetrahydrocannabinol (THC) in adolescent rats alters cannabinoid-1 receptor (CB1R) levels in the brain and affects locomotion in a dose-dependent manner. High-dose THC (2.0 mg/kg daily for 24 days) reduced vertical activity in an open field and decreased CB1R binding in several cortical regions (cingulate, motor, somatosensory, rhinal, and auditory cortices) by 33–50% relative to low-dose THC. Low-dose THC (0.75 mg/kg) increased vertical activity and elevated CB1R binding in the primary motor cortex and hypothalamus by 33% compared to controls. No changes were found in mu-opioid receptor binding. The results indicate that chronic THC dose-dependently affects CB1R levels and motor behavior.