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Published on: January 5, 2017
Atorvastatin alleviates atherosclerosis by improving intestinal barrier function in mice and patients by modulating
Congguo Yin1, Lingfei Li2, Zheng Zhang3
1The Fourth School of Clinical Medicine, Zhejiang Chinese Medicine University, Hangzhou, China; Department of Neurology, Hangzhou First People's Hospital, Hangzhou, China.
Insights
Atorvastatin (ATO) protects against atherosclerosis by improving intestinal barrier function and reducing inflammation. This study shows ATO
Area of Science:
- Cardiovascular Research
- Gastroenterology
- Pharmacology
Background:
- Atherosclerosis (AS) is a chronic inflammatory disease driven by high cholesterol and linked to gastrointestinal dysfunction.
- Atorvastatin (ATO) is a lipid-lowering drug that also impacts intestinal function.
- Understanding the gastrointestinal-vascular interaction is crucial for AS treatment.
Purpose of the Study:
- To evaluate the effect of Atorvastatin (ATO) on atherosclerosis.
- To investigate how ATO influences gastrointestinal-vascular interactions in AS.
Main Methods:
- ApoE-/- mice were fed a high-cholesterol diet and treated with ATO or placebo.
- In vitro permeability tests were conducted on Caco-2 cells.
- Clinical study involved patients with AS, AS treated with ATO, and healthy controls, assessing carotid artery narrowing and serum markers.
Main Results:
- ATO treatment significantly reduced aortic atherosclerosis and improved lipid profiles in mice.
- ATO decreased intestinal permeability, inhibited intestinal immune activation, and lowered circulating endotoxin levels.
- Clinical data confirmed ATO's lipid-lowering effects and revealed correlations between endotoxins, inflammatory cytokines, and ZO-1 in AS patients.
Conclusions:
- Atorvastatin (ATO) demonstrates anti-atherosclerotic effects potentially mediated by enhanced intestinal barrier function and anti-inflammatory actions.
- The findings highlight the significance of the intestine-vessel axis in managing AS and suggest novel therapeutic avenues.
Background:
Atherosclerosis (AS) is a chronic inflammatory disease caused by high cholesterol levels in the blood, leading to plaque deposition on the inside of arteries. Gastrointestinal dysfunction is a determining factor in the progression of AS by modulating inflammatory pathways. Atorvastatin (ATO) is a classic drug used to lower lipids levels, thus preventing AS. However, the underlying mechanism of ATO extends beyond lipid metabolism; it affects various pathophysiological processes, such as intestinal function. Therefore, this study attempted to measure the effect of ATO on AS and determine how it impacts mechanisms associated with gastrointestinal-vascular interaction.
Methods:
ApoE-/- mice were fed a lipid and cholesterol-rich diet containing angiotensin II ad libitum for 12 weeks. Subsequently, ATO or phosphate-buffered saline solution was orally administered for another 4 weeks. Aorta, colon, and serum samples were obtained. Permeability tests were performed on human Caco-2 colon carcinoma cells using transepithelial electrical resistance. Twenty-seven patients with AS, 22 with AS treated with ATO (AS+ATO), and 17 healthy controls were enrolled in this study. Carotid artery narrowing was evaluated using carotid artery ultrasound, and blood samples were collected for enzyme-linked immunosorbent assays.
Results:
ATO significantly alleviated aortic AS and improved blood lipid levels in mice. Simultaneously, ATO reduced intestinal permeability, inhibited immune activation inside the intestines of the mice, and decreased circulating endotoxin levels. The protective effects of ATO on intestinal barrier function were also demonstrated in an AS cell model. Clinical samples were obtained to determine the efficacy of ATO in humans, and the results primarily verified that ATO significantly decreased lipids in human serum. Moreover, a positive correlation between circulating endotoxin, inflammatory cytokines, and ZO-1 was also found in the serum of AS patients. The findings indicate the importance of intestine-vessel connections while treating stroke, providing novel therapeutic strategies for AS.
Conclusions:
ATO is a classic drug used for AS prevention. The findings of this study suggest that the anti-atherosclerotic effect of ATO may be mediated, at least in part, through its protective effects on intestinal barrier function and anti-inflammatory properties.
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