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Updated: Aug 20, 2026

On-Chip Endothelial Inflammatory Phenotyping
Published on: July 21, 2012
The microcirculation: a motor for the systemic inflammatory response and large vessel disease induced by
Karen Y Stokes1, D Neil Granger
1Department of Molecular & Cellular Physiology, LSU Health Sciences Center, 1501 Kings Highway, Shreveport, LA 71130-3932, USA.
Insights
High cholesterol (hypercholesterolemia) drives vascular inflammation and atherosclerosis. This review explores how microvascular inflammation may initiate or worsen large vessel disease.
Area of Science:
- Cardiovascular Science
- Inflammation Biology
- Vascular Biology
Background:
- Hypercholesterolemia is strongly linked to vascular inflammation and atherosclerosis.
- Atherosclerosis involves leukocyte infiltration and lipid deposition in arteries.
- Systemic inflammation, including endothelial cell activation, occurs in multiple vascular beds.
Purpose of the Study:
- To review evidence linking the microvasculature to hypercholesterolemia-induced inflammation.
- To propose that microcirculation inflammation contributes to large vessel disease.
Main Methods:
- Literature review of studies on hypercholesterolemia, inflammation, and microcirculation.
- Analysis of evidence for systemic inflammatory responses.
- Hypothesis generation based on endothelial cell activation in microvasculature.
Main Results:
- Hypercholesterolemia induces systemic inflammation beyond large arteries.
- Endothelial cells throughout the vasculature show activation.
- The microvasculature, with its extensive surface area, may be a source of systemic inflammatory mediators.
Conclusions:
- Inflammatory events in the microcirculation may initiate or progress large vessel disease.
- The microvasculature's role in systemic inflammation linked to atherogenesis warrants further investigation.
Abstract:
There is abundant evidence that links hypercholesterolaemia to both vascular inflammation and atherogenesis. While atherosclerosis is a large vessel disease that is characterized by leucocyte infiltration and lipid deposition in the wall of lesion-prone arteries, the inflammatory response does not appear to be confined to these locations. There is evidence supporting a systemic inflammatory response that is characterized by endothelial cell activation in multiple vascular beds and the appearance of activated immune cells and a wide range of inflammatory mediators in blood. The mechanism(s) responsible for initiating this systemic response remain poorly defined, although several inciting factors have been proposed, including infectious agents and oxidative stress resulting from one or more of the cardiovascular risk factors (e.g. hypercholesterolaemia, hypertension). While cells within lesion-prone arteries are often inferred as the source of circulating inflammatory mediators during atherogenesis, the fact that endothelial cells throughout the vasculature are activated raises the possibility that the microvasculature (which encompasses a vast endothelial surface area) may contribute to creating the systemic inflammatory milieu that is linked to atherogenesis. This review addresses evidence that links the microvasculature to the inflammatory responses induced by hypercholesterolaemia and offers the hypothesis that inflammatory events initiated within the microcirculation may contribute to initiation and/or progression of large vessel disease.
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