Back to Search Start Over

Macrophage metabolic reprogramming aggravates aortic dissection through the HIF1α-ADAM17 pathway✰

Authors :
Guan Lian
Xiaopeng Li
Linqi Zhang
Yangming Zhang
Lulu Sun
Xiujuan Zhang
Huiying Liu
Yanli Pang
Wei Kong
Tao Zhang
Xian Wang
Changtao Jiang
Source :
EBioMedicine, Vol 49, Iss , Pp 291-304 (2019)
Publication Year :
2019
Publisher :
Elsevier, 2019.

Abstract

Background: Aortic dissection is a severe inflammatory vascular disease with high mortality and limited therapeutic options. The hallmarks of aortic dissection comprise aortic inflammatory cell infiltration and elastic fiber disruption, highlighting the involvement of macrophage. Here a role for macrophage hypoxia-inducible factor 1-alpha (HIF-1α) in aortic dissection was uncovered. Methods: Immunochemistry, immunofluorescence, western blot and qPCR were performed to test the change of macrophage HIF-1α in two kinds of aortic dissection models and human tissues. Metabolomics and Seahorse extracellular flux analysis were used to detect the metabolic state of macrophages involved in the development of aortic dissection. Chromatin Immunoprecipitation (ChIP), enzyme-linked immunosorbent assay (ELISA) and cytometric bead array (CBA) were employed for mechanistic studies. Findings: Macrophages involved underwent distinct metabolic reprogramming, especially fumarate accumulation, thus inducing HIF-1α activation in the development of aortic dissection in human and mouse models. Mechanistic studies revealed that macrophage HIF-1α activation triggered vascular inflammation, extracellular matrix degradation and elastic plate breakage through increased a disintegrin and metallopeptidase domain 17 (ADAM17), identified as a novel target gene of HIF-1α. A HIF-1α specific inhibitor acriflavine elicited protective effects on aortic dissection dependent on macrophage HIF-1α. Interpretation: This study reveals that macrophage metabolic reprogramming activates HIF-1α and subsequently promotes aortic dissection progression, suggesting that macrophage HIF-1α inhibition might be a potential therapeutic target for treating aortic dissection. Keywords: HIF-1α, Macrophage, ADAM17, Aortic dissection

Subjects

Subjects :
Medicine
Medicine (General)
R5-920

Details

Language :
English
ISSN :
23523964
Volume :
49
Issue :
291-304
Database :
Directory of Open Access Journals
Journal :
EBioMedicine
Publication Type :
Academic Journal
Accession number :
edsdoj.b2dd3fd959c349c58031aac8691c7fcc
Document Type :
article
Full Text :
https://doi.org/10.1016/j.ebiom.2019.09.041