CBD curbs artery plaque in male mice—but sex matters

Cannabidiol attenuates atherosclerosis in male ApoE-/- mice with sex-dependent lipidomic and proteomic remodeling.

Journal of lipid research • • Highly Relevant
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AI Summary

This preclinical study tested whether cannabidiol (CBD) could slow atherosclerosis, the buildup of fatty plaques in arteries. Male and female ApoE-deficient mice ate a Western-style diet and received CBD in drinking water for 12 weeks. CBD significantly reduced aortic plaque area in male mice, but not in female mice, and it did not change body weight or standard blood-lipid measurements. The abstract does not report the size of the plaque reduction.

In male mice, CBD also produced sex-specific changes in blood lipids and reduced activity in mitochondrial oxidative and stress-related pathways in artery tissue. Laboratory experiments further found that CBD reduced oxidative stress and inflammatory activation in endothelial cells exposed to oxidized LDL. These findings suggest a possible direct protective effect on blood vessels, but the role of ether-linked lipid changes remains uncertain. Because this was a mouse study with different results by sex, it is not evidence that CBD prevents heart disease in people and does not establish a safe or effective dose for cannabis users.

💡 Key Findings

1
CBD significantly reduced aortic plaque area in male ApoE-deficient mice, but produced no comparable plaque benefit in females.
Moderate
50%
2
CBD caused sex-specific remodeling of the serum lipidome in male mice, including enrichment of ether-linked triacylglycerols; the abstract says no lipid class was a robust correlate of plaque burden.
Moderate
50%
3
In male mice, CBD was associated with lower activity in mitochondrial oxidative and stress-related pathways, consistent with a reduced vascular oxidative burden.
Moderate
50%
4
In cultured endothelial cells, CBD attenuated oxidized-LDL-induced oxidative stress and inflammatory activation, supporting a possible direct vascular mechanism.
Moderate
50%

📄 Original Abstract

Cannabidiol (CBD), a non-psychoactive phytocannabinoid from Cannabis sativa, exhibits anti-inflammatory and antioxidant properties. We therefore hypothesized that CBD may modulate atherosclerosis development; however, preclinical evidence remains limited and sex-specific effects are poorly understood. Male and female apolipoprotein E-deficient (ApoE-/-) mice were fed a Western-type diet for 12 weeks and received either a CBD nanoemulsion (≈80 mg/kg/day) or vehicle via drinking water. Atherosclerosis was quantified by aortic plaque area, and lipidomic profiling together with aortic root proteomics were used to characterize CBD-induced metabolic changes. CBD treatment significantly reduced aortic plaque area in male but not female mice, without affecting body weight or standard serum lipid parameters. Untargeted lipidomics revealed sex-specific remodeling of the serum lipidome in males, including enrichment of ether-linked triacylglycerols, a class connected to ether-lipid metabolism; however, no lipid class emerged as a robust correlate of plaque burden. Proteomic analysis identified male-specific downregulation of mitochondrial oxidative and stress-related pathways, consistent with reduced vascular oxidative burden. In vitro, CBD attenuated oxLDL-induced oxidative stress and inflammatory activation in endothelial cells, supporting a direct vascular effect. CBD elicited no comparable molecular or plaque changes in females. Collectively, chronic CBD administration exerts a sex-dependent, anti-atherogenic effect in male ApoE-/- mice, associated with downregulation of mitochondrial oxidative metabolism and attenuation of endothelial oxidative and inflammatory activation, alongside remodeling of ether-linked lipid metabolism whose contribution to plaque protection remains to be established. These findings highlight the importance of incorporating sex-specific responses in future mechanistic and translational studies of CBD in atherosclerosis.

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