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Blood Biomarkers for Monitoring and Prognosis of Large Vessel Vasculitides
Enrico Tombetti1,2, Elvis Hysa3, Justin C Mason4,5
1Internal Medicine, Department of Biomedical and Clinical Sciences "Luigi Sacco", Milan, Italy.
Insights
Current blood biomarkers for large vessel vasculitides (LVVs) like giant cell arteritis (GCA) and Takayasu arteritis (TA) are limited. Research is exploring new biomarkers for improved diagnosis and management of these inflammatory arterial diseases.
Area of Science:
- Vascular Inflammation and Immunology
- Biomarker Discovery and Validation
- Arterial Remodelling and Pathophysiology
Background:
- Large vessel vasculitides (LVVs), including giant cell arteritis (GCA) and Takayasu arteritis (TA), involve inflammation of large arteries, potentially causing severe complications like aneurysms, stroke, and blindness.
- Accurate diagnosis and monitoring of LVVs are crucial due to the inaccessibility of arterial walls, making blood biomarkers essential for guiding therapeutic decisions and personalized patient management.
- Existing biomarkers such as erythrocyte sedimentation rate (ESR) and C-reactive protein (CRP) have limitations, including normal levels during relapse and unreliability in patients treated with interleukin-6 (IL-6) receptor inhibitors.
Purpose of the Study:
- To review the current evidence on the role of blood biomarkers in the diagnosis, monitoring, and prognosis of large vessel vasculitides (LVVs).
- To highlight promising new biomarkers beyond traditional markers like ESR and CRP.
- To discuss the potential of novel biomarkers in understanding disease mechanisms, arterial remodelling, and organ damage in LVVs.
Main Methods:
- Review of the latest scientific evidence and research findings on blood biomarkers for LVVs.
- Analysis of the clinical utility and limitations of current and emerging biomarkers.
- Exploration of biomarkers related to inflammation, arterial remodelling, and organ damage.
Main Results:
- Interleukin-6 (IL-6) is a promising biomarker, showing higher sensitivity than ESR in active GCA and potentially indicating persistent inflammation in patients on IL-6 receptor inhibitors.
- Emerging IL-6-independent inflammatory biomarkers include S100 proteins, pentraxin-3, and osteopontin.
- Biomarkers for arterial remodelling (e.g., MMP2/9, VEGF) and organ damage (e.g., NT-proBNP, pentraxin-3, endothelin-1) are under investigation for prognostic stratification and guiding emergency treatment.
Conclusions:
- While IL-6 shows promise, the clinical application of novel biomarkers for LVVs is currently limited by availability, cost, and the need for further validation studies.
- Continued research is essential to identify reliable biomarkers that reflect diverse disease features, aiding in personalized management and a deeper understanding of LVV pathogenesis.
- Future biomarker strategies aim to improve diagnostic accuracy, monitor disease activity, predict prognosis, and guide therapeutic interventions in patients with large vessel vasculitides.
Purpose Of Review:
Large vessel vasculitides (LVVs) are inflammatory conditions of the wall of large-sized arteries, mainly represented by giant cell arteritis (GCA) and Takayasu arteritis (TA). The inflammatory process within the vessel wall can lead to serious consequences such as development of aneurysms, strokes and blindness; therefore, early diagnosis and follow-up of LVV are fundamental. However, the arterial wall is poorly accessible and blood biomarkers are intended to help physicians not only in disease diagnosis but also in monitoring and defining the prognosis of these conditions, thus assisting therapeutic decisions and favouring personalised management. The field is the object of intense research as the identification of reliable biomarkers is likely to shed light on the mechanisms of disease progression and arterial remodelling. In this review, we will discuss the role of blood biomarkers in LVVs in the light of the latest evidence.
Recent Findings:
In clinical practice, the most widely performed laboratory investigations are the erythrocyte sedimentation rate (ESR) and C-reactive protein (CRP). However, these indices may be within normal limits during disease relapse and they are not reliable in patients receiving interleukin-6 (IL-6) receptor inhibitors. New biomarkers struggle to gain traction in clinical practice and no molecule with good accuracy has been identified to date. IL-6, a pro-inflammatory cytokine that drives CRP synthesis and increases the ESR, is one of the most promising biomarkers in the field. IL-6 analysis is increasingly performed, and serum levels are more sensitive than ESR for active GCA and might reflect persistent inflammation with high risk of relapse in patients on IL-6 receptor inhibitors. A future with biomarkers that reflect different disease features is an important aspiration. Accordingly, intense effort is being made to identify IL-6-independent inflammatory biomarkers, such as S100 proteins, pentraxin-3 and osteopontin. Moreover, metalloproteinases such as MMP2/9 and angiogenic modulators such as VEGF, YLK-40 and angiopoietins are being studied as markers of arterial remodelling. Lastly, biomarkers indicating organ damage may guide prognostic stratification as well as emergency therapeutic decisions: the most promising biomarkers so far identified are NT-proBNP, which reflects myocardial strain; pentraxin-3, which has been associated with recent optic nerve ischemia; and endothelin-1, which is associated with ischaemic complications. Currently, the use of these molecules in clinical practice is limited because of their restricted availability, lack of sufficient studies supporting their validity and associated costs. Further evidence is required to better interpret their biological and clinical value.
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