← 返回

Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.

Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.

期刊: Nature communications 日期: 2026-07-07 PMID: 42414306 DOI: 10.1038/s41467-026-75214-2 浏览: 31
作者: Chen B, Prabhu A, Li G, Kaltenbach A, Wang Y, Shakir G, Natarelli L, Megens R, Jansen Y, Ramanathan S
B, C., A, P., G, L., A, K., Y, W., G, S., L, N., R, M., Y, J., & S, R. (2026). Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.. Nature communications. https://doi.org/10.1038/s41467-026-75214-2
B C, A P, G L, A K, Y W, G S, et al. Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.. Nature communications. 2026; doi: 10.1038/s41467-026-75214-2
B C, A P, G L, et al. Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.[J]. Nature communications. 2026. DOI: 10.1038/s41467-026-75214-2.
@article{b2026,
  author = {Chen B and Prabhu A and Li G and Kaltenbach A and Wang Y and Shakir G and Natarelli L and Megens R and Jansen Y and Ramanathan S},
  title = {Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.},
  journal = {Nature communications},
  year = {2026},
  doi = {10.1038/s41467-026-75214-2},
  note = {PMID: 42414306},
}
TY  - JOUR
AU  - Chen B
AU  - Prabhu A
AU  - Li G
AU  - Kaltenbach A
AU  - Wang Y
AU  - Shakir G
AU  - Natarelli L
AU  - Megens R
AU  - Jansen Y
AU  - Ramanathan S
TI  - Endothelial cannabinoid CB1 receptor deficiency reduces shear stress-induced arterial inflammation and lipid uptake.
T2  - Nature communications
PY  - 2026
DO  - 10.1038/s41467-026-75214-2
AN  - PMID:42414306
ER  - 

摘要

Peripheral cannabinoid CB1 receptor antagonists that lack central nervous system effects are emerging as promising therapies for metabolic disease, yet the role of endothelial CB1 signaling in atherosclerosis remains unclear. Here, we show that endothelial CB1 is expressed in human atherosclerotic plaques, is induced by oscillatory shear stress in atheroprone flow regions, and promotes vascular inflammation, permeability and lipid uptake. Endothelial-specific Cnr1 deletion or peripheral CB1 antagonism in mice attenuates atherosclerosis, reduces endothelial caveolae-dependent low-density lipoprotein uptake by downregulating caveolin-1 and ALK1 expression, and improves metabolic parameters in brown and white adipose tissue and the liver. The anti-atherogenic and metabolic effects are more pronounced in females, which is possibly linked to estrogen signaling. These findings identify endothelial CB1 as a proatherogenic, sex-biased regulator of vascular lipid transport and plaque development and associated metabolic dysfunction.

AI 智能解读

相关文献

返回分类: 动脉粥样硬化 查看原文 (DOI)
已选择 0 篇文献