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Updated: Dec 17, 2025

A Microphysiological System to Study Leukocyte-Endothelial Cell Interaction during Inflammation
Published on: December 9, 2021
Butyrate mitigates TNF-α-induced attachment of monocytes to endothelial cells
Yan Wang1, Yuanyuan Xu1, Mao Yang1
1Department of Cardiology, the Fourth Hospital of Harbin Medical University, Harbin, 150001, Heilongjiang, China.
Insights
Butyrate, a natural compound, shows promise in treating atherosclerosis by reducing inflammation and oxidative stress. It ameliorates the overproduction of adhesion molecules and suppresses inflammatory factors, offering potential atheroprotective effects.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Inflammation Research
Background:
- Atherosclerosis is a major cause of late-life cardiovascular disease.
- Endothelial dysfunction and monocyte adhesion, mediated by VCAM-1 and E-selectin, drive atherogenesis.
- Tumor Necrosis Factor-alpha (TNF-α) is implicated in atherosclerosis via inflammation and oxidative stress.
Purpose of the Study:
- To investigate the potential atheroprotective effects of butyrate.
- To elucidate the molecular mechanisms by which butyrate influences atherogenic processes.
Main Methods:
- Assessing the impact of butyrate on adhesion molecule expression (VCAM-1, E-selectin).
- Measuring oxidative stress markers (ROS, 4-HNE) and inflammatory cytokines (MCP-1, IL-8).
- Evaluating the effect of butyrate on KLF2 expression via the ERK5 pathway.
Main Results:
- Butyrate ameliorated the overproduction of VCAM-1 and E-selectin.
- Butyrate reduced oxidative stress markers (ROS, 4-HNE) and suppressed inflammatory cytokines (MCP-1, IL-8).
- Butyrate restored KLF2 expression, mediated by the ERK5 pathway.
Conclusions:
- Butyrate exhibits significant anti-inflammatory and antioxidant effects relevant to atherosclerosis.
- Butyrate demonstrates promise as a therapeutic agent for atherosclerosis.
- The ERK5 pathway is involved in butyrate's protective effects against atherogenesis.
Abstract:
A major cause of late-life health complications is the cardiovascular disease known as atherosclerosis. The process of atherogenesis is marked by endothelial cell dysfunction, the development of atherogenic lesions, and plaque buildup on the intima of the arterial endothelium. This process is fueled primarily by the adhesion of monocytes to endothelial cells via the actions of the cellular adhesion molecules VCAM-1 and E-selectin. When expressed at their basal levels, these molecules are vital to various cellular processes, but when in a state of overproduction, they drive the progression of atherosclerosis by recruiting monocytes to roll along and adhere to the endothelium. TNF-α is theorized to play a causal role in the development of atherosclerosis, but the exact mechanism remains poorly understood. This cytokine is known to upregulate various factors associated with inflammation and oxidative stress, both of which greatly contribute to endothelial dysfunction and atherogenesis. In the present study, we aimed to elucidate the effect of butyrate on these atherogenic processes. Previously not known to have atheroprotective effects, this natural compound shows promise as a treatment for atherosclerosis. In the present study, we found butyrate to exert various anti-inflammatory and downstream regulatory effects. Namely, butyrate ameliorated the overproduction of adhesion molecules, including VCAM-1 and E-selectin, reduced oxidative stress by reducing the levels of ROS and 4-HNE, and suppressed inflammation via inhibition of MCP-1 and IL-8. Additionally, butyrate rescued the reduced expression of the protective factor KLF2, which was mediated through the ERK5 pathway. Thus, butyrate may serve as a promising treatment against atherosclerosis.
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