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Inflammation, oxidative stress and lipids: the risk triad for atherosclerosis in gout
1Division of Immunology and Rheumatology, Stanford University School of Medicine, Palo Alto, CA, USA. e.krishnan@stanford.edu
Insights
Gout (high uric acid) is linked to cardiovascular disease risk through inflammation and oxidative stress. Lowering uric acid may improve heart health, but more research is needed.
Area of Science:
- Cardiovascular Medicine
- Rheumatology
- Metabolic Disorders
Background:
- The link between gout and cardiovascular disease (CVD) risk was long considered coincidental.
- Emerging data suggest an etiological connection, though complex, involving inflammation, oxidative stress, and genetics.
Purpose of the Study:
- To explore the complex relationship between uric acid, inflammation, oxidative stress, and cardiovascular risk.
- To review the role of urate in inflammatory processes and its impact on endothelial function.
Main Methods:
- Review of epidemiological and clinical data.
- Analysis of studies on hyperuricemia and atherosclerotic risk factors.
- Examination of urate's dual role in oxidative stress (antioxidant and pro-oxidant).
Main Results:
- Urate activates immune responses via the inflammasome, central to gout flares.
- Urate's pro-oxidant properties can impair endothelial function, contributing to atherosclerosis.
- Hyperuricemia is associated with multiple atherosclerotic risk factors; urate reduction often improves them.
Conclusions:
- The connection between gout and CVD is multifactorial, involving inflammatory and oxidative pathways.
- The extent to which lowering serum urate improves cardiovascular risk requires further investigation.
- New urate-lowering agents may offer insights and improved treatment for both gout and atherosclerosis.
Abstract:
For many years, the relationship between cardiovascular disease risk and gout, though strong and consistent, was suspected of being coincidental rather than causative. In recent years, compelling epidemiological and clinical data have increasingly favoured an aetiological connection. However, that connection is notably complex, involving a multifaceted model that includes interactions between inflammatory processes, oxidative stress and potential genetic influences, as well as cardiovascular and renal components that remain only partly explained. Urate appears to be able to activate the immune response, and in that context has a mediating role in the inflammatory process via the inflammasome. This interaction of urate and inflammation is central to the inflammatory cascade associated with gout flares. In the arena of oxidative stress, urate has both antioxidant and pro-oxidant properties, and while potentially beneficial in scavenging free radicals, it can also impair endothelial function and thereby give rise to atherosclerotic risk. Human and animal studies have revealed associations between hyperuricaemia and a host of atherosclerotic risk factors, whereas a reduction in urate levels is frequently associated with improvement or even resolution of such risk factors. The degree to which reduction of serum urate can reliably improve cardiovascular risk remains uncertain. It is hoped that the introduction of newer urate-lowering agents may help to clarify this picture and improve treatment options for both gout and atherosclerosis.
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