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Updated: Nov 28, 2025

A Human Ex Vivo Atherosclerotic Plaque Model to Study Lesion Biology
Published on: May 6, 2014
Updating concepts on atherosclerotic inflammation: From pathophysiology to treatment
Stefano Ministrini1,2, Federico Carbone2,3, Fabrizio Montecucco2,3
1Department of Medicine, Internal Medicine, Università degli Studi di Perugia, Perugia, Italy.
Insights
Atherosclerosis is an inflammatory disease. Targeting inflammation may reduce heart attack and stroke risks, but more research is needed to find optimal treatments.
Area of Science:
- Cardiovascular Medicine
- Inflammation Research
- Pharmacology
Background:
- Atherosclerosis is a systemic inflammatory condition.
- Inflammation dysregulation impacts cardiac and cerebral ischemia outcomes.
- Atherothrombosis links inflammation to acute ischemic events.
Purpose of the Study:
- To review inflammation's role in atherogenesis and ischemic complications.
- To identify cellular and molecular targets for novel treatments.
- To assess the potential of anti-inflammatory therapies for atherosclerosis.
Main Methods:
- Narrative review of PubMed literature up to October 2020.
- Search terms included "atherosclerosis, inflammation, acute myocardial infarction, ischemic stroke" and "biomarker, inflammatory cells and molecules, treatment."
Main Results:
- Inflammation is central to atherosclerosis development and complications.
- Novel pharmacological targets for treating atherosclerosis are being explored.
- Reducing inflammation aims to decrease mortality and morbidity from atherosclerotic cardiovascular disease.
Conclusions:
- Anti-inflammatory treatments for atherosclerosis are not yet standard clinical practice.
- Further understanding of inflammation resolution mechanisms is crucial.
- Identifying optimal molecular targets requires deeper pathophysiological insight.
Background:
Atherosclerosis is recognized as a systemic low-grade inflammatory disease. Furthermore, the dysregulation of the inflammatory response and its timely resolution is a pivotal process in determining the clinical manifestations of cardiac and cerebral acute ischaemia following atherothrombosis.
Methods:
This narrative review is based on the material searched on PubMed up to October 2020. The search terms we used were as follows: "atherosclerosis, inflammation, acute myocardial infarction and ischemic stroke" in combination with "biomarker, inflammatory cells and molecules, treatment."
Results:
The expected goal of addressing inflammation for the treatment of atherosclerosis and its acute ischaemic complications is reducing mortality and morbidity related to atherosclerotic cardiovascular disease, which are currently the first cause of death and disability worldwide. In this narrative review, we summarize the evidence about the main cellular and molecular mechanisms of inflammation in atherogenesis, atherothrombosis and acute ischaemic complications, with particular focus on the potential molecular targets for novel pharmacological treatments.
Conclusion:
Although a large amount of evidence from animal models of atherothrombotic disease, and promising results of clinical trials, anti-inflammatory treatments against atherosclerosis are not yet recommended. A deepest understanding of pathophysiological mechanisms underlying the mechanisms driving resolution of the acute inflammation will probably allow to identify the optimal molecular target.
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