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Published on: September 28, 2015
Cytokine amplification and macrophage effector functions in aortic inflammation and abdominal aortic aneurysm
Talha Ijaz1, Ronald G Tilton2, Allan R Brasier2
1Departments of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, TX, USA.
Abstract:
On April 29, 2015, Son and colleagues published an article entitled "Granulocyte macrophage colony-stimulating factor (GM-CSF) is required for aortic dissection/intramural haematoma" in Nature Communications. The authors observed that the heterozygous Kruppel-like transcription factor 6 (KLF6) deficiency or absence of myeloid-specific KLF6 led to upregulation of macrophage GM-CSF expression, promoted the development of aortic hematoma/dissection, and stimulated abdominal aortic aneurysm (AAA) formation when the vessel wall was subjected to an inflammatory stimulus. The additional findings of increased adventitial fibrotic deposition, marked infiltration of macrophages, and increased expression of matrix metalloprotease-9 (MMP-9) and IL-6 were blocked with neutralizing GM-CSF antibodies, or recapitulated in normal mice with excess GM-CSF administration. The authors concluded that GM-CSF is a key regulatory molecule in the development of AAA and further suggested that activation of GM-CSF is independent of the transforming growth factor β (TGFβ)-Smad pathway associated with the Marfan aortic pathology. In this perspective, we expand on this mechanism, drawing from previous studies implicating a similar essential role for IL-6 signaling in macrophage activation, Th17 expansion and aortic dissections. We propose a sequential "two-hit" model of vascular inflammation involving initial vascular injury followed by recruitment of Ly6C(hi) macrophages. Aided by fibroblast interactions inflammatory macrophages produce amplification of IL-6 and GM-CSF expression that converge on a common, pathogenic Janus kinase (JAK)-signal transducers and activations of transcription 3 (STAT3) signaling pathway. This pathway stimulates effector functions of macrophages, promotes differentiation of Th17 lymphocytes and enhances matrix metalloproteinase expression, ultimately resulting in deterioration of vascular wall structural integrity. Further research evaluating the impact of interventions modulating this common JAK-STAT3 pathway may yield new therapeutic interventions for late stages of vascular expansion in inflammation driven aortic disease.
Insights
Granulocyte macrophage colony-stimulating factor (GM-CSF) drives abdominal aortic aneurysm (AAA) formation by promoting inflammation and vascular wall damage. Targeting the common JAK-STAT3 pathway may offer new therapeutic strategies for AAA.
Area of Science:
- Vascular Biology
- Immunology
- Genetics
Background:
- Granulocyte macrophage colony-stimulating factor (GM-CSF) is implicated in abdominal aortic aneurysm (AAA) development.
- KLF6 deficiency upregulates macrophage GM-CSF, promoting aortic hematoma/dissection and AAA formation under inflammatory conditions.
- GM-CSF blockade or deficiency mitigates AAA development, indicating its critical role.
Discussion:
- A sequential "two-hit" model of vascular inflammation is proposed, involving initial injury and subsequent macrophage recruitment.
- Inflammatory macrophages, with fibroblast support, amplify IL-6 and GM-CSF, converging on the JAK-STAT3 pathway.
- This pathway drives macrophage effector functions, Th17 differentiation, and matrix metalloproteinase expression, degrading vascular integrity.
Key Insights:
- GM-CSF is essential for AAA pathogenesis, independent of the TGFβ-Smad pathway.
- IL-6 signaling plays a parallel role in macrophage activation and Th17 expansion, contributing to aortic dissections.
- The JAK-STAT3 signaling pathway represents a common convergence point for inflammatory mediators in AAA.
Outlook:
- Further research into interventions targeting the JAK-STAT3 pathway could lead to novel therapeutic approaches for inflammatory aortic diseases.
- Understanding the interplay between GM-CSF, IL-6, and the JAK-STAT3 pathway is crucial for developing effective AAA treatments.
- Modulating this common pathway may offer a unified strategy for managing late-stage vascular complications driven by inflammation.
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