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Updated: Aug 12, 2026

Laminar Flow-based Assays to Investigate Leukocyte Recruitment on Cultured Vascular Cells and Adherent Platelets
Published on: April 9, 2018
Role of phosphoinositide 3-kinase in monocyte recruitment under flow conditions
R E Gerszten1, E B Friedrich, T Matsui
1Program in Cardiovascular Gene Therapy, Cardiovascular Research Center and the Center for Immunology and Inflammatory Diseases, Massachusetts General Hospital, Charlestown 02129, USA. gerszten@cvrc.mgh.harvard.edu
Insights
Monocyte chemoattractant protein-1 (MCP-1) activates phosphoinositide 3-kinase (PI3K) to promote monocyte adhesion. PI3K activation is both necessary and sufficient for enhancing monocytic adhesion under flow conditions.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Monocyte recruitment to inflamed endothelium is crucial in vascular pathologies.
- Chemokines like MCP-1 mediate monocyte adhesion via integrin activation and PI3K signaling.
- The specific PI3K isoforms involved in MCP-1-induced monocyte adhesion require clarification.
Purpose of the Study:
- To investigate the role of PI3Kalpha activation in MCP-1-induced monocyte adhesion.
- To determine if PI3K activation is sufficient to induce monocyte firm adhesion under flow.
- To establish a cellular model for studying PI3K downstream signaling in monocyte recruitment.
Main Methods:
- Adenoviral gene transfer was used to manipulate PI3K pathways in human monocytes and THP-1 cells.
- In vitro lipid kinase assays assessed PI3K isoform activity in response to MCP-1.
- Monocyte adhesion assays under physiological flow conditions were performed using endothelial cells expressing adhesion molecules (E-selectin, ICAM-1, VCAM-1).
Main Results:
- MCP-1 activated PI3Kalpha, not PI3Kgamma, in human monocytes within 30 seconds.
- Inhibition of PI3K by wortmannin or LY294002 significantly reduced MCP-1-induced monocyte arrest.
- Constitutive activation of PI3K in THP-1 cells enhanced firm adhesion to endothelium under flow, an effect blocked by wortmannin.
Conclusions:
- PI3K activation is necessary and sufficient for enhancing monocytic adhesion under physiological flow.
- The PI3Kalpha pathway is a key mediator of MCP-1-induced monocyte recruitment.
- PI3K-expressing THP-1 cells serve as a valuable tool for dissecting downstream signaling pathways in monocyte recruitment.
Abstract:
Chemokines such as the monocyte chemol attractant protein-1 (MCP-1) convert monocyte rolling to firm arrest under physiological flow conditions via integrin activation and simultaneously activate phosphoinositide 3-kinase (PI3K). Here we used adenoviral gene transfer and biochemical inhibitors to manipulate PI3K-dependent pathways in human monocytes. In in vitro lipid kinase assays from purified human monocytes, we showed that MCP-1 activates the "classical" PI3Kalpha pathway and not PI3Kgamma, a PI3K isoform thought to be activated only by the betagamma complex of heterotrimeric G proteins. The activity of PI3Kalpha in purified human monocytes was evident within 30 s. MCP-1-induced monocyte arrest was significantly inhibited both by wortmannin (n = 4; p < 0.01) and LY294002 (n = 4; p < 0.01) with restoration of the rolling phenotype (p < 0.05 for both inhibitors, compared with rolling of control monocytes after MCP-1 treatment). To test the hypothesis that activation of PI3K is sufficient to induce monocyte adhesion, we transduced the monocytic THP-1 cell line with a recombinant adenovirus (Ad) carrying a constitutively active mutant of PI3K (Ad.BD110). We examined the ability of these cells to adhere to human vascular endothelium (HUVEC) transduced with adenoviruses carrying E-selectin, intercellular adhesion molecule-1 (ICAM-1), and VCAM-1. Under flow conditions, ICAM-1- and VCAM-1-dependent firm adhesion of Ad.BD110-transduced THP-1 cells was enhanced compared with THP-1 cells infected with control Ad (n = 4; p < 0.01 for both). Adhesion augmented by constitutive PI3K activation was entirely abrogated by pretreatment with wortmannin (n = 3; p < 0.01). In contrast, a constitutively active Akt construct had no effect on THP-1 adhesion (n = 3; p = NS). We conclude that PI3K activation is necessary and sufficient to enhance monocytic adhesion under physiological flow conditions. BD110-expressing THP-1 cells should provide a useful tool for identifying the signaling pathways downstream of PI3K that are necessary for monocyte recruitment relevant to a variety of human vascular pathologies.
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