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Updated: May 8, 2026

Quantification of Monocyte Transmigration and Foam Cell Formation from Individuals with Chronic Inflammatory Conditions
Published on: October 17, 2017
Monocytes in coronary artery disease and atherosclerosis: where are we now?
Angie Ghattas1, Helen R Griffiths, Andrew Devitt
1University of Birmingham Centre for Cardiovascular Sciences, City Hospital, Birmingham, United Kingdom; School of Life and Health Sciences, Aston University, Birmingham, United Kingdom.
Insights
Monocytes, key immune cells, drive atherosclerosis progression. Targeting these cells and their inflammatory pathways offers a promising new therapeutic strategy for cardiovascular disease, the leading cause of death.
Area of Science:
- Cardiovascular Research
- Immunology
- Pathophysiology
Background:
- Atherosclerotic disease remains the primary cause of mortality globally.
- Current therapies focus on hyperlipidemia and thrombosis, not inflammation.
- Monocytes are crucial in atherosclerosis initiation and progression.
Purpose of the Study:
- To review the role of monocytes in atherosclerosis and related cardiovascular conditions.
- To evaluate monocytes as potential therapeutic targets for atherosclerosis.
- To discuss challenges in monocyte subpopulation analysis.
Main Methods:
- Phenotypic characterization of monocyte subsets via cell surface receptor expression.
- Assessment of inflammatory pathways to determine monocyte activity.
- Literature review of experimental and clinical data on monocyte function in atherosclerosis.
Main Results:
- Monocytes are integral to atherosclerosis pathogenesis and complications.
- Distinct monocyte subpopulations exhibit specific roles in disease progression.
- Experimental data suggest monocyte involvement in acute coronary syndromes and post-infarction outcomes.
Conclusions:
- Targeting monocyte inflammatory pathways presents a novel therapeutic avenue for atherosclerosis.
- Further research is needed to overcome challenges in delineating monocyte subpopulations and their functions.
- Understanding monocyte roles is critical for developing advanced atherosclerosis treatments.
Abstract:
Despite improvements in interventional and pharmacological therapy of atherosclerotic disease, it is still the leading cause of death in the developed world. Hence, there is a need for further development of effective therapeutic approaches. This requires better understanding of the molecular mechanisms and pathophysiology of the disease. Atherosclerosis has long been identified as having an inflammatory component contributing to its pathogenesis, whereas the available therapy primarily targets hyperlipidemia and prevention of thrombosis. Notwithstanding a pleotropic anti-inflammatory effect to some therapies, such as acetyl salicylic acid and the statins, none of the currently approved medicines for management of either stable or complicated atherosclerosis has inflammation as a primary target. Monocytes, as representatives of the innate immune system, play a major role in the initiation, propagation, and progression of atherosclerosis from a stable to an unstable state. Experimental data support a role of monocytes in acute coronary syndromes and in outcome post-infarction; however, limited research has been done in humans. Analysis of expression of various cell surface receptors allows characterization of the different monocyte subsets phenotypically, whereas downstream assessment of inflammatory pathways provides an insight into their activity. In this review we discuss the functional role of monocytes and their different subpopulations in atherosclerosis, acute coronary syndromes, cardiac healing, and recovery with an aim of critical evaluation of potential future therapeutic targets in atherosclerosis and its complications. We will also discuss technical difficulties of delineating different monocyte subpopulations, understanding their differentiation potential and function.
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