The presence of activating IgG Fc receptors in macrophages aggravates the development of experimental abdominal aortic aneurysm.

Clin Investig Arterioscler

Laboratorio de Patología Vascular y Renal, Instituto de Investigación Sanitaria-Fundación Jiménez Díaz, Universidad Autónoma de Madrid (IIS-FJD/UAM), Madrid, España; Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas (CIBERDEM), Madrid, España. Electronic address:

Published: November 2023

AI Article Synopsis

  • Abdominal aortic aneurysm (AAA) is a progressive disease linked to inflammation and immune responses that affects the aorta, with specific IgG receptors playing a role in its development.
  • Research using a mouse model showed that transferring macrophages with functional IgG receptors increased AAA progression, characterized by greater aortic dilation and heightened inflammation markers.
  • In vitro experiments demonstrated that inhibiting these IgG receptors or associated pathways reduced inflammation and oxidative stress in macrophages, suggesting potential avenues for AAA treatment.

Article Abstract

Introduction: Abdominal aortic aneurysm (AAA) is a multifactorial, degenerative disease characterized by progressive aortic dilation and chronic activation of inflammation, proteolytic activity, and oxidative stress in the aortic wall. The immune response triggered by antibodies against antigens present in the vascular wall participates in the formation and progression of AAA through mechanisms not completely understood. This work analyses the function of specific IgG receptors (FcγR), especially those expressed by monocytes/macrophages, in the development of experimental AAA.

Methods: In the elastase-induced AAA model, the abdominal aortas from wildtype and FcγR deficient mice with/without macrophage adoptive transfer were analysed by histology and quantitative PCR. In vitro, mouse macrophages were transfected with RNA interference of FcγRIV/CD16.2 or treated with Syk kinase inhibitor before stimulation with IgG immune complexes.

Results: Macrophage adoptive transfer in FcγR deficient mice increased the susceptibility to AAA development. Mice receiving macrophages with functional FcγR exhibited higher aortic diameter increase, higher content of macrophages and B lymphocytes, and upregulated expression of chemokine CCL2, cytokines (TNF-α and IL-17), metalloproteinase MMP2, prooxidant enzyme NADPH oxidase-2, and the isoforms FcγRIII/CD16 and FcγRIV/CD16.2. In vitro, both FcγRIV/CD16.2 gene silencing and Syk inhibition reduced cytokines and reactive oxygen species production induced by immune complexes in macrophages.

Conclusions: Activation of macrophage FcγR contributes to AAA development by inducing mediators of inflammation, proteolysis, and oxidative stress. Modulation of FcγR or effector molecules may represent a potential target for AAA treatment.

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Source
http://dx.doi.org/10.1016/j.arteri.2022.12.004DOI Listing

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