Protocatechuic acid alleviates TMAO-aggravated atherosclerosis via mitigating inflammation, regulating lipid metabolism, and reshaping gut microbiota.
Huafang DingJianhui LiuZixing ChenShouhe HuangChi YanErika KwekZouyan HeHanyue ZhuZhen-Yu ChenPublished in: Food & function (2024)
Trimethylamine- N -oxide (TMAO) is a risk factor for atherosclerosis. As a natural phenolic acid, protocatechuic acid (PCA) is abundant in various plant foods. The present study investigated the effect of PCA on TMAO-aggravated atherosclerosis in ApoE -/- mice. The mice were randomly divided into five groups and fed one of the following five diets for 12 weeks: namely a low-fat diet (LFD), a western diet (WD), a WD + 0.2% TMAO diet (WDT), a WDT + 0.5% PCA diet (WDT + LPCA), and a WDT + 1.0% PCA diet (WDT + HPCA). Results demonstrated that dietary TMAO exacerbated the development of atherosclerosis by eliciting inflammation and disturbing lipid metabolism. The diet with PCA at 1% reduced TMAO-induced aortic plaque by 30% and decreased the levels of plasma pro-inflammatory cytokines. PCA also improved lipid metabolism by up-regulating the hepatic gene expression of peroxisome proliferator-activated receptor alpha (PPARα). In addition, PCA supplementation enhanced fecal excretion of fatty acids and decreased hepatic fat accumulation. PCA supplementation favorably modulated gut microbiota by increasing the α-diversity with an increase in the abundance of beneficial genera ( Rikenella , Turicibacter , Clostridium_sensu_stricto and Bifidobacterium ) and a decrease in the abundance of the harmful Helicobacter genus. In summary, PCA could alleviate the TMAO-exacerbated atherosclerosis and inflammation, improve the lipid metabolism, and modulate gut microbiota.
Keyphrases
- weight loss
- fatty acid
- physical activity
- cardiovascular disease
- oxidative stress
- adipose tissue
- south africa
- dna methylation
- coronary artery disease
- cognitive decline
- endothelial cells
- high fat diet induced
- atrial fibrillation
- aortic valve
- pulmonary artery
- mild cognitive impairment
- anti inflammatory
- preterm birth
- microbial community