4.6 Article

Neuraminidase 1 Exacerbating Aortic Dissection by Governing a Pro-Inflammatory Program in Macrophages

Journal

FRONTIERS IN CARDIOVASCULAR MEDICINE
Volume 8, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fcvm.2021.788645

Keywords

NEU1; aortic dissection; vascular remodeling; macrophage polarization; MMP

Funding

  1. National Natural Science Foundation of China [81800324, 81960061, 81600241]
  2. Natural Science Foundation of Jiangxi Province [20192ACBL21040, 20204BCJ23017]
  3. Key Project of Science and Technology Research Funds of Department of Education of Jiangxi Province [GJJ170136, GJJ170005]
  4. Science Project of Department of Health Commission of Jiangxi Province [20203094]

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This study demonstrates the critical role of macrophage-derived NEU1 in pathological vascular remodeling of aortic dissection (AD). NEU1 exacerbates BAPN-induced pathological vascular remodeling and may represent a potential therapeutic target for the treatment of AD. By knocking out NEU1 in mice, improved aorta function and decreased mortality due to aortic rupture were observed, indicating the importance of NEU1 in maintaining vascular homeostasis.
Inflammation plays an important role in aortic dissection (AD). Macrophages are critically involved in the inflammation after aortic injury. Neuraminidases (NEUs) are a family of enzymes that catalyze the cleavage of terminal sialic acids from glycoproteins or glycolipids, which is emerging as a regulator of macrophage-associated immune responses. However, the role of neuraminidase 1 (NEU1) in pathological vascular remodeling of AD remains largely unknown. This study sought to characterize the role and identify the potential mechanism of NEU1 in pathological aortic degeneration. After beta-aminopropionitrile monofumarate (BAPN) administration, NEU1 elevated significantly in the lesion zone of the aorta. Global or macrophage-specific NEU1 knockout (NEU1 CKO) mice had no baseline aortic defects but manifested improved aorta function, and decreased mortality due to aortic rupture. Improved outcomes in NEU1 CKO mice subjected to BAPN treatment were associated with the ameliorated vascular inflammation, lowered apoptosis, decreased reactive oxygen species production, mitigated extracellular matrix degradation, and improved M2 macrophage polarization. Furthermore, macrophages sorted from the aorta of NEU1 CKO mice displayed a significant increase of M2 macrophage markers and a marked decrease of M1 macrophage markers compared with the controls. To summarize, the present study demonstrated that macrophage-derived NEU1 is critical for vascular homeostasis. NEU1 exacerbates BAPN-induced pathological vascular remodeling. NEU1 may therefore represent a potential therapeutic target for the treatment of AD.

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