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Updated: Jan 19, 2026

An Immunohistopathologic Study to Profile the Folate Receptor Beta Macrophage and Vascular Immune Microenvironment in Giant Cell Arteritis
Published on: February 8, 2019
[Physiopathology of giant cell arteritis: From inflammation to vascular remodeling]
Alexis Régent1, Kim Heang Ly2, Luc Mouthon1
1Université Paris Descartes, Sorbonne Paris Cité, institut Cochin, LabEx INFLAMEX, Inserm U1016, CNRS UMR 8104, 75014 Paris, France; Assistance publique-Hôpitaux de Paris (AP-HP), hôpital Cochin, centre de référence pour les maladies systémiques auto-immunes rares d'Île-de-France, service de médecine interne, 75014 Paris, France.
Insights
Giant cell arteritis (GCA) involves large vessels and its pathophysiology is complex. Immune cell dysfunction, including T-lymphocytes and dendritic cells, drives sustained inflammation and vascular remodeling in GCA.
Area of Science:
- Immunology
- Pathophysiology
- Vascular Biology
Background:
- Giant cell arteritis (GCA) is a large-vessel vasculitis affecting the aorta and its branches.
- The precise pathophysiology of GCA remains incompletely understood despite advances.
Purpose of the Study:
- To elucidate the complex pathophysiology of Giant Cell Arteritis.
- To detail the cellular and molecular mechanisms driving vascular inflammation and remodeling in GCA.
Main Methods:
- Review of current literature on GCA pathophysiology.
- Analysis of immune cell involvement, including dendritic cells and T-lymphocytes.
- Examination of molecular mediators and cellular processes in vascular remodeling.
Main Results:
- Infectious triggers may initiate dendritic cell maturation, leading to T-lymphocyte recruitment.
- An imbalance in T-helper (Th1, Th17, Th9) and regulatory T cells (Treg), influenced by IL-21 and IL-6, is observed.
- Inflammatory mediators (IFN-γ, IL-17, IL-6, IL-33) and growth factors (VEGF, PDGF) promote vascular smooth muscle cell proliferation and arterial remodeling.
- Matrix metalloproteinases and their inhibitors contribute to vessel wall remodeling, with neovascularization perpetuating inflammation.
Conclusions:
- GCA pathophysiology involves a complex interplay of immune dysregulation, sustained inflammation, and vascular remodeling.
- Aberrant immune responses and molecular signaling contribute to the characteristic vascular changes and potential ischemic complications in GCA.
Abstract:
Giant cell arteritis (GCA) is a large-vessel vasculitis involving the aorta and its main branches, especially supra aortic branches. Although much progress has been made, the pathophysiology remains incompletely understood. An initial trigger, suspected of infectious origin, lead to the maturation and recruitment of dendritic cells (DC). The lack of migration of these DC allows the local recruitment of T-lymphocytes (LT). These LT- CD4+ polarize in Type 1 helper (Th1), Th17 but also Th9. A qualitative and quantitative deficit in regulatory T cells (Treg) is observed under the influence of IL-21 overproduction. In addition, an imbalance in the Th17/Treg balance is favored by IL-6. The secretion of IFN-γ, IL-17, IL-6, IL-33 is responsible for a sustained local inflammatory reaction that is organized around tertiary lymphoid follicles. Locally recruited macrophages secrete reactive forms of oxygen together with VEGF and PDGF. These growth factors, together with neurotrophins and endothelin contribute to increase the proliferation of vascular smooth muscle cells (VSMCs). The imbalance between matrix metalloproteases (MMP)-2, MMP-9 and MMP-14 and tissue inhibitors of metalloproteases (TIMP)-1 and TIMP-2 also contribute to the remodeling process occurring in the vessel wall. Finally, arterial neovascularization contribute to the perpetuation of lymphocyte recruitment. This persistent remodeling is sometimes complicated by ischemic events responsible for the initial severity of the disease.
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