Related Experiment Video
Updated: Aug 9, 2026

A Human Fallopian Tube Model for Investigation of C. trachomatis Infections
Published on: August 11, 2012
Chlamydia pneumoniae and atherosclerosis -- what we know and what we don't
Insights
Chlamydia pneumoniae infection is investigated as a potential cause of atherosclerosis, a leading cause of death. Evidence from various studies suggests a link, but definitive proof is pending large-scale human trials.
Area of Science:
- Vascular biology and infectious diseases research.
- Focus on inflammatory mechanisms in atherosclerosis.
Background:
- Atherosclerosis, including coronary artery disease and stroke, is a major global health concern.
- Emerging risk factors include homocysteine and microbial infections.
- The 'infectious' hypothesis suggests microorganisms contribute to atherosclerosis.
Purpose of the Study:
- To review the evidence linking Chlamydia pneumoniae (C. pneumoniae) infection with atherosclerosis.
- To explore the role of C. pneumoniae as a potential inflammatory stimulus in vascular disease.
Main Methods:
- Compilation of evidence from seroepidemiological, pathological, animal model, immunological, and antibiotic intervention studies.
- Analysis of C. pneumoniae presence in atherosclerotic plaques.
- Evaluation of C. pneumoniae's role in atherogenesis through animal models.
Main Results:
- Seroepidemiological studies show weak, circumstantial evidence.
- Pathological studies confirm C. pneumoniae presence in atherosclerotic tissues.
- Animal models demonstrate C. pneumoniae can induce atherosclerosis.
- Immunological studies identify C. pneumoniae's role in atherogenic processes.
Conclusions:
- Multiple lines of evidence suggest a link between C. pneumoniae and atherosclerosis.
- Antibiotic intervention studies show mixed results regarding secondary prevention.
- Ongoing large-scale human trials are crucial to establish a causal relationship.
Abstract:
The clinical manifestations of atherosclerosis include coronary artery disease (CAD), stroke, abdominal aortic aneurysm and peripheral vascular disease. World-wide, CAD and stroke are the leading causes of death and disability. The recognition of atherosclerosis as an inflammatory disease in its genesis, progression and ultimate clinical manifestations has created an interesting area of vascular research. Apart from those well-known traditional risk factors for atherosclerosis, novel and potentially treatable atherosclerotic risk factors such as homocysteine (an amino acid derived from the metabolism of dietary methionine that induces vascular endothelial dysfunction) and infections have emerged. In fact, the century-old 'infectious' hypothesis of atherosclerosis has implicated a number of micro-organisms that may act as contributing inflammatory stimuli. Although cytomegalovirus, Helicobacter pylori and Chlamydia pneumoniae are the three micro-organisms most extensively studied, this review will focus on C. pneumoniae. Collaborative efforts from many disciplines have resulted in the accumulation of evidence from seroepidemiological, pathological, animal model, immunological and antibiotic intervention studies, linking C. pneumoniae with atherosclerosis. Seroepidemiological observations provide circumstantial evidence, which is weak in most prospective studies. Pathological studies have demonstrated the preferential existence of C. pneumoniae in atherosclerotic plaque tissues, while animal model experiments have shown the induction of atherosclerosis by C. pneumoniae. Finally, immunological processes whereby C. pneumoniae could participate in key atherogenic and atherothrombotic events have also been identified. Although benefits of the secondary prevention of atherosclerosis have been demonstrated in some antibiotic intervention studies, a number of negative studies have also emerged. The results of the ongoing large prospective human antibiotic intervention trials may help to finally establish if there is a causal link between C. pneumoniae infection and atherosclerosis.
Related Concept Videos
Sexually Transmitted Infections
Pneumonia II: Pathophysiology
Atherosclerosis I: Introduction
Atherosclerosis II: Clinical Manifestations and Diagnostic Tests
Bacterial Phylum Chlamydiae
Atypical Pneumonia

