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Heat shock proteins in vascular disease--a review
T A Mehta1, J Greenman, C Ettelaie
1Academic Surgical Unit, University of Hull, Hull Royal Infirmary, Anlaby Road, Hull HU3 2JZ, UK. tapanmehta99@yahoo.com
Insights
Heat shock proteins (HSPs) are linked to atherosclerotic vascular diseases. Increased anti-HSP antibodies correlate with disease severity and predict risk, suggesting a role in pathogenesis.
Area of Science:
- Cardiovascular Research
- Immunology
- Molecular Biology
Background:
- Growing evidence suggests heat shock proteins (HSPs) involvement in atherosclerotic vascular disease pathogenesis.
- HSPs are stress-inducible proteins with a potential role in disease development.
Purpose of the Study:
- To systematically review the evidence linking HSPs to atherosclerotic vascular diseases.
- To explore the role of HSPs as auto-antigens in the immune response in atherosclerosis.
Main Methods:
- Comprehensive literature search and bibliographic review.
- Systematic examination of evidence across carotid, coronary, aortic, and peripheral vascular diseases.
Main Results:
- HSPs are present in atherosclerotic lesions.
- Elevated anti-HSP antibodies are found in vascular disease patients, correlating with atherosclerosis severity.
- Anti-HSP antibody levels are independent predictors of risk and possess prognostic value.
Conclusions:
- A strong association exists between heat shock protein expression and atherosclerotic vascular diseases.
- Understanding HSP involvement may facilitate novel therapeutic strategies for vascular disease.
Introduction:
There is growing evidence that heat shock proteins (HSPs), a family of stress-inducible proteins may be involved in the pathogenesis of atherosclerotic vascular diseases. Here, we systematically review the evidence behind this notion.
Methods:
A detailed literature search and extensive bibliographic review of literature relating to HSPs and atherosclerotic vascular disease.
Results:
Atherosclerotic vascular disease is classified into four main areas of presentation: carotid, coronary, aortic and peripheral vascular disease, for consideration in this review. In each of these vascular diseases, the evidence linking HSPs and atherosclerosis is outlined in a systematic manner. Current evidence suggests that components of the immune system may be involved in the pathogenesis of atherosclerosis, with HSPs acting as auto-antigens in the immune response. HSPs are detected in atherosclerotic lesions and antibodies to HSPs are increased in patients with vascular disease; the rise often correlating with the severity of atherosclerosis. The levels of anti-HSP antibodies have been shown to be independent predictors of risk and have prognostic value.
Conclusion:
There is a strong link between heat shock protein expression and the principal manifestations of atherosclerotic vascular diseases. A better understanding of this involvement could lead to the development of new and improved treatment strategies.
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