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Updated: May 23, 2026

Simultaneous Study of the Recruitment of Monocyte Subpopulations Under Flow In Vitro
Published on: November 26, 2018
Monocyte-endothelial adhesion is modulated by Cx43-stimulated ATP release from monocytes
Dongdong Yuan1, Qin Wang, Dengpan Wu
1Department of Pharmacology, Zhongshan School of Medicine, Sun Yat-Sen University, Guangzhou, PR China.
Insights
Monocyte connexin43 (Cx43) channel activity releases ATP, reducing monocyte adhesion to endothelial cells. However, Cx43 expression increases this adhesion, revealing a dual role in vascular inflammation.
Area of Science:
- Vascular Biology
- Cellular Signaling
- Immunology
Background:
- Monocyte adhesion to endothelial cells is key in vascular inflammation, like atherosclerosis.
- Connexin43 (Cx43) and ATP release are implicated but their specific roles are unclear.
Purpose of the Study:
- To investigate the distinct roles of connexin43 (Cx43) channel function and expression in monocyte-endothelial cell adhesion.
- To determine the involvement of ATP release in this process.
Main Methods:
- Manipulated Cx43 using channel inhibitors, overexpression, and siRNA in U937 monocytes and HUVEC.
- Measured ATP release and monocyte-endothelial cell adhesion.
- Assessed the impact of exogenous adenosine (ADO) and ATP.
Main Results:
- Cx43 channel inhibition decreased monocyte ATP release and increased adhesion.
- Monocyte ATP release correlated with Cx43 expression.
- Exogenous ATP/ADO reduced adhesion; inhibiting ATP to ADO conversion increased adhesion.
- Cx43 expression in monocytes enhanced adhesion, while its channel function decreased it.
Conclusions:
- Monocyte Cx43 channel activity promotes ATP release, which is converted to ADO, thereby reducing adhesion.
- Cx43 expression itself enhances monocyte-endothelial adhesion.
- Cx43's dual role (channel function vs. expression) dynamically regulates adhesion, impacting vascular inflammatory diseases.
Abstract:
Adhesion of circulating monocytes to vascular endothelial cells is a crucial event in development of vascular inflammatory conditions, including atherosclerosis. We investigated the roles of connexin43 (Cx43) and ATP release on monocyte-endothelial adhesion. Cx43 function and expression were manipulated by connexin channel inhibitors, overexpression and siRNA. Connexin channel inhibitors rapidly decreased ATP release from U937 monocytes and increased adhesion to human umbilical vein endothelial cells (HUVEC). Monocyte ATP release correlated with Cx43 expression, not with Cx37 expression. Exogenous adenosine (ADO) or ATP decreased adhesion, and inhibition of ATP conversion to ADO increased adhesion. We infer that monocyte Cx43 channel activity causes ATP release, likely via Cx43-containing hemichannels, and that ATP decreases adhesion via conversion to ADO. Inhibition of HUVEC connexin channel activity did not affect ATP release or adhesion. In contrast, expression of Cx43 protein in U937 cells enhanced adhesion. Thus, Cx43 channel function and expression have opposite effects: Cx43 channel function in monocytes, but not in HUVEC, rapidly decreases adhesion via ATP release and conversion to ADO, whereas Cx43 expression itself enhances adhesion. These studies suggest that local regulation of monocyte Cx43 activity within the vasculature can dynamically modulate the monocyte-endothelial adhesion that is an initiating event in vascular inflammatory pathologies, with the baseline adhesion set by Cx43 expression levels. This balance of rapid and tonic influences may be crucial in development of vascular pathologies.
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