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CD40/CD40L contributes to hypercholesterolemia-induced microvascular inflammation
Karen Y Stokes1, Leshanna Calahan, Candiss M Hamric
1Dept. of Molecular and Cellular Physiology, LSU Health Sciences Ctr., 1501 E. Kings Hwy., Shreveport, LA 71130-3932, USA.
Insights
High cholesterol causes microvascular dysfunction by promoting inflammation and oxidative stress. The CD40/CD40L pathway, particularly from T cells, is a key mediator of these harmful effects.
Area of Science:
- Cardiovascular Biology
- Immunology
- Vascular Biology
Background:
- Hypercholesterolemia induces endothelial dysfunction, leading to a proinflammatory and prothrombogenic microvasculature.
- The CD40 ligand (CD40L) and its receptor CD40 pathway are involved in inflammatory responses and platelet activation.
Purpose of the Study:
- To investigate the role of the CD40/CD40L pathway, specifically T-cell CD40L, in hypercholesterolemia-induced microvascular dysfunction.
- To determine the contribution of CD40/CD40L to leukocyte and platelet adhesion, vasodilation, and oxidative stress in hypercholesterolemia.
Main Methods:
- Utilized intravital microscopy in wild-type, CD40-deficient, CD40L-deficient, and SCID mice on normal or high-cholesterol diets.
- Assessed leukocyte and platelet recruitment, endothelium-dependent vasodilation, and microvascular oxidative stress.
- Employed bone marrow chimeras and T-cell transfer experiments to elucidate cellular origins of CD40/CD40L effects.
Main Results:
- High-cholesterol diet induced increased leukocyte/platelet adhesion and impaired vasodilation in wild-type mice.
- CD40, CD40L, or lymphocyte deficiency attenuated these hypercholesterolemia-induced responses.
- T-cell transfer rescued the hypercholesterolemic phenotype in CD40L-deficient and SCID mice.
- Hypercholesterolemia-induced oxidative stress was abrogated by CD40/CD40L deficiency and restored by T-cell transfer.
Conclusions:
- CD40/CD40L interactions between circulating cells and the vascular wall mediate microvascular dysfunction in hypercholesterolemia.
- T-cell-associated CD40L is a critical mediator of hypercholesterolemia-induced arteriolar and venular dysfunction.
- Targeting the CD40/CD40L pathway may offer therapeutic potential for managing hypercholesterolemia-related vascular complications.
Abstract:
Hypercholesterolemia is associated with phenotypic changes in endothelial cell function that lead to a proinflammatory and prothrombogenic state in different segments of the microvasculature. CD40 ligand (CD40L) and its receptor CD40 are ubiquitously expressed and mediate inflammatory responses and platelet activation. The objective of this study was to determine whether CD40/CD40L, in particular T-cell CD40L, contributes to microvascular dysfunction induced by hypercholesterolemia. Intravital microscopy was used to quantify blood cell adhesion in cremasteric postcapillary venules, endothelium-dependent vasodilation responses in arterioles, and microvascular oxidative stress in wild-type (WT) C57BL/6, CD40-deficient ((-/-)), CD40L(-/-), or severe combined immune deficient (SCID) mice placed on a normal (ND) or high-cholesterol (HC) diet for 2 wk. WT-HC mice exhibited an exaggerated leukocyte and platelet recruitment in venules and impaired vasodilation responses in arterioles compared with ND counterparts. A deficiency of CD40, CD40L, or lymphocytes attenuated these responses to HC. The HC phenotype was rescued in CD40L(-/-) and SCID mice by a transfer of WT T cells. Bone marrow chimeras revealed roles for both vascular- and blood cell-derived CD40 and CD40L in the HC-induced vascular responses. Hypercholesterolemia induced an oxidative stress in both arterioles and venules of WT mice, which was abrogated by either CD40 or CD40L deficiency. The transfer of WT T cells into CD40L(-/-) mice restored the oxidative stress. These results implicate CD40/CD40L interactions between circulating cells and the vascular wall in both the arteriolar and venular dysfunction elicited by hypercholesterolemia and identify T-cell-associated CD40L as a key mediator of these responses.
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