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Platelet PI3Kγ Contributes to Carotid Intima-Media Thickening under Severely Reduced Flow Conditions
Cuiping Wang1, Rong Jin2, Anil Nanda2
1Department of Cardiolog, Affiliated Hospital of Jiangsu University, Zhenjiang, Jiangsu Province, 212001, P. R. China; Department of Neurosurgery, LSU Health Science Center, Shreveport, LA, 71103, United States of America.
Insights
Platelet phosphoinositide 3-kinase gamma (PI3Kγ) drives vascular inflammation and carotid artery thickening. Blocking PI3Kγ in platelets may treat vascular diseases.
Area of Science:
- Immunology
- Vascular Biology
- Molecular Medicine
Background:
- Platelets are increasingly recognized for their roles in immune responses and vascular inflammation.
- Phosphoinositide 3-kinase gamma (PI3Kγ) is implicated in inflammatory and autoimmune conditions.
- The specific contribution of platelet PI3Kγ to vascular remodeling under reduced flow remains unclear.
Purpose of the Study:
- To investigate the role of platelet PI3Kγ in vascular remodeling and inflammation under conditions of severely reduced blood flow.
- To determine if PI3Kγ in platelets contributes to leukocyte recruitment and the expression of pro-inflammatory mediators in the carotid artery.
Main Methods:
- A mouse model of partial left carotid artery ligation was employed.
- Adoptive transfer of wild-type or PI3Kγ-deficient platelets was performed.
- Analysis included intima-media area, leukocyte infiltration, and expression of adhesion molecules and cytokines.
- In vitro studies assessed platelet activation, platelet-leukocyte interactions, and platelet-endothelial cell interactions.
Main Results:
- Mice receiving wild-type platelets showed increased intima-media thickening, neutrophil and macrophage recruitment, and expression of ICAM-1, VCAM-1, TNF-α, and IL-6.
- These pro-inflammatory effects were abolished in mice receiving PI3Kγ-deficient platelets.
- Platelet PI3Kγ deficiency reduced platelet-leukocyte aggregation and platelet-endothelial cell interactions.
- PI3Kγ mediated ADP-induced platelet activation via Akt and p38 MAP kinase pathways.
Conclusions:
- Platelet PI3Kγ is a key mediator of vascular inflammation and carotid intima-media thickening in response to reduced blood flow.
- Targeting platelet PI3Kγ presents a potential therapeutic strategy for vascular diseases.
Abstract:
Studies have begun to focus on the emerging function of platelets as immune and inflammatory cells that initiate and accelerate vascular inflammation. Phosphoinositide 3-kinase gamma (PI3Kγ) is critically involved in a number of inflammatory and autoimmune diseases. This study aims to investigate the contribution of platelet PI3Kγ to vascular remodeling under flow severely reduced conditions. Mouse partial left carotid artery ligation with adoptive transfer of activated, washed wild-type or PI3Kγ-/- platelets was used as the model. Intima-media area, leukocyte recruitment, and proinflammatory mediator expression were assessed. In vitro PI3Kγ-/- platelets were used to verify the effect of PI3Kγ on platelet activation, interaction with leukocytes, and endothelial cells. Mice injected with activated platelets showed a significant increase in intima-media thickening, recruitment of neutrophils (at 3 d) and macrophages (at 21 d), and intercellular adhesion molecule-1, vascular cell adhesion molecule-1, tumor necrosis factor alpha, and interleukin-6 expression (at 3 d) in the flow-reduced area. These effects were abrogated by platelet PI3Kγ deficiency. Circulating platelet-leukocyte aggregates were reduced in PI3Kγ-/- mice after partial ligation. In vivo data confirmed that PI3Kγ mediated Adenine di-Phosphate -induced platelet activation through the Akt and p38 MAP kinase signaling pathways. Moreover, platelet PI3Kγ deficiency reduced platelet-leukocyte aggregation and platelet-endothelial cell (EC) interaction. These findings indicate that platelet PI3Kγ contributes to platelet-mediated vascular inflammation and carotid intima-media thickening after flow severely reduced. Platelet PI3Kγ may be a new target in the treatment of vascular diseases.
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