4.8 Article

Mast cells modulate the pathogenesis of elastase-induced abdominal aortic aneurysms in mice

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 117, Issue 11, Pages 3359-3368

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI31311

Keywords

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Funding

  1. NHLBI NIH HHS [HL67249, HL67283, HL75026, R01 HL060942, R01 HL067249, HL60942, R01 HL067283, HL56985, P50 HL056985, R01 HL075026] Funding Source: Medline

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Abdominal aortic aneurysm (AAA), an inflammatory disease, involves leukocyte recruitment, immune responses, inflammatory cytokine production, vascular remodeling, neovascularization, and vascular cell apoptosis, all of which contribute to aortic dilatation. This study demonstrates that mast cells, key participants in human allergic immunity, participate in AAA pathogenesis in mice. Mast cells were found to accumulate in murine AAA lesions. Mast cell-deficient Kit(W-sh)/Kit(W-sh) mice failed to develop AAA elicited by elastase perfusion or periaortic chemical injury. Kit(W-sh)/Kit(W-sh) mice had reduced aortic expansion and internal elastic lamina degradation; decreased numbers of macrophages, CD3(+) T lymphocytes, SMCs, apoptotic cells, and CD31(+) microvessels; and decreased levels of aortic tissue IL-6 and IFN-gamma. Activation of mast cells in WT mice via C48/80 injection resulted in enhanced AAA growth while mast cell stabilization with disodium cromoglycate diminished AAA formation. Mechanistic studies demonstrated that mast cells participated in angiogenesis, aortic SMC apoptosis, and matrix-degrading protease expression. Reconstitution of Kit(W-sh)/Kit(W-sh) mice with bone marrow-derived mast cells from WT or TNF-alpha(-/-) mice, but not from IL-6(-/-) or IFN-gamma(-/-) mice, caused susceptibility to AAA formation to be regained. These results demonstrate that mast cells participate in AAA pathogenesis in mice by releasing pro-inflammatory cytokines IL-6 and IFN-gamma, which may induce aortic SMC apoptosis, matrix-degrading protease expression, and vascular wall remodeling, important hallmarks of arterial aneurysms.

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