New insights into the pathogenesis of giant cell arteritis: are they relevant for precision medicine?
Francesco Ciccia1, Federica Macaluso2, Daniele Mauro1
1Department of Precision Medicine, Section of Rheumatology, Università della Campania L Vanvitelli, Naples, Italy.
Insights
Giant cell arteritis (GCA) is an inflammatory vasculitis affecting large vessels in individuals over 50. Further research into GCA pathogenesis and biomarkers is crucial for developing precision medicine approaches.
Area of Science:
- Immunology
- Rheumatology
- Pathology
Background:
- Giant cell arteritis (GCA) is a granulomatous vasculitis targeting large and medium-sized vessels in individuals over 50.
- Despite advances, GCA's specific triggers and chronic damage mechanisms remain elusive.
- Understanding the inflammatory hierarchy of cells and cytokines in GCA is an active research area.
Purpose of the Study:
- To review recent evidence on GCA pathogenesis.
- To explore a new pathogenetic-centered approach for GCA patient management.
- To highlight the potential of temporal artery biopsies for defining GCA pathotypes.
Main Methods:
- Review of current scientific literature on GCA pathogenesis.
- Analysis of existing data on cellular and molecular inflammatory pathways in GCA.
- Exploration of diagnostic and prognostic implications of temporal artery biopsies.
Main Results:
- Significant progress has been made in understanding GCA pathophysiology.
- Specific disease triggers and mechanisms of chronic damage require further investigation.
- Temporal artery biopsies offer a unique opportunity to identify distinct GCA pathotypes.
Conclusions:
- Precision medicine in GCA requires baseline stratification using clinical, imaging, and molecular biomarkers.
- Identifying distinct GCA pathotypes may lead to tailored therapeutic interventions.
- A pathogenetic-centered approach is essential for advancing GCA treatment strategies.
Abstract:
Giant cell arteritis is a primary granulomatous vasculitis characterised by a strict tissue tropism for large and medium-size vessels, occurring in people older than 50 years. Although considerable progress in understanding some of the pathophysiological mechanisms involved in the pathogenesis of giant cell arteritis has been made in the past 10 years, specific triggers of disease and mechanisms of chronic damage have not yet been identified. The definition of a specific pro-inflammatory hierarchy between the multiple cell types and the different cytokines or chemokines involved in the inflammatory process are still unexplored areas of study. The overall goal of precision medicine is to identify the best possible therapeutic approach for an individual or group of individuals with a given disease. The fundamental prerequisite of this approach is the identification, at baseline, of clinical and imaging findings and of molecular biomarkers that allow a precise stratification of patients and an adequate prediction of the therapeutic response. In this regard, the possibility of obtaining temporal artery biopsies for diagnostic purposes offers incredible exploratory possibilities to define different disease pathotypes potentially susceptible to different therapeutic interventions. In this Series paper, we will describe the most recent evidence relating to the pathogenesis of giant cell arteritis, trying to define, if possible, a new pathogenetic-centred approach to patients with giant cell arteritis.
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