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Published on: April 3, 2017
CD11b mediates hypertensive cardiac remodeling by regulating macrophage infiltration and polarization
Yun-Long Zhang1, Jie Bai2, Wei-Jia Yu2
1Department of Emergency Medicine, Beijing Key Laboratory of Cardiopulmonary Cerebral Resuscitation, Beijing Chao-Yang Hospital, Capital Medical University, No. 8 Worker's Stadium South Road, Beijing 100020, China.
Insights
CD11b plays a key role in hypertensive cardiac remodeling by promoting leukocyte infiltration. Targeting CD11b may offer a therapeutic strategy for heart failure (HF).
Area of Science:
- Cardiovascular Biology
- Immunology
- Integrin Signaling
Background:
- Leukocyte infiltration is an early event in cardiac remodeling, often leading to heart failure (HF).
- Integrins mediate leukocyte infiltration during inflammation, but their specific role in hypertensive cardiac remodeling remains unclear.
Purpose of the Study:
- To elucidate the significance of CD11b in hypertensive cardiac remodeling.
Main Methods:
- Induction of cardiac remodeling in mice using Angiotensin II or DOCA-salt.
- Utilized gene knockout (KO), bone marrow (BM) chimeras, and CD11b-targeted therapies (neutralizing antibody or agonist LA1).
Main Results:
- CD11b (Itgam) and CD18 (Itgb2) were highly upregulated in Ang II-infused hearts.
- CD11b blockade attenuated cardiac remodeling, macrophage infiltration, and M1 polarization.
- CD11b KO reduced Ang II-induced macrophage adhesion and M1 polarization in vitro, decreasing cardiomyocyte enlargement and fibroblast differentiation.
- Elevated CD11b+ myeloid cells were observed in HF patients.
Conclusions:
- CD11b+ myeloid cells play a critical role in hypertensive cardiac remodeling.
- Targeting CD11b may represent a novel therapeutic approach for heart failure.
Introduction:
Leukocyte infiltration is an early event during cardiac remodeling frequently leading to heart failure (HF). Integrins mediate leukocyte infiltration during inflammation. However, the importance of specific integrins in hypertensive cardiac remodeling is still unclear.
Objectives:
To elucidate the significance of CD11b in hypertensive cardiac remodeling.
Methods:
Angiotensin (Ang II) or deoxycorticosterone acetate (DOCA)-salt was used to induce cardiac remodeling in mice of gene knockout (KO), bone marrow (BM) chimera, and the CD11b neutralizing antibody or agonist leukadherin-1 (LA1) treatment.
Results:
Our microarray data showed that integrin subunits Itgam (CD11b) and Itgb2 (CD18) were the most highly upregulated in Ang II-infused hearts. CD11b expression and CD11b/CD18+ myelomonocytes were also time-dependently increased. KO or pharmacological blockade of CD11b greatly attenuated cardiac remodeling and macrophage infiltration and M1 polarization induced by Ang II or DOCA-salt. This protection was verified in wild-type mice transplanted with CD11b-deficient BM cells. Conversely, administration of CD11b agonist LA1 showed the opposite effects. Further, CD11b KO reduced Ang II-induced macrophage adhesion and M1 polarization, leading to reduction of cardiomyocyte enlargement and fibroblast differentiation in vitro. The numbers of CD14+CD11b+CD18+ monocytes and CD15+CD11b+CD18+ granulocytes were obviously higher in HF patients than in normal controls.
Conclusion:
Our data demonstrate an important role of CD11b+ myeloid cells in hypertensive cardiac remodeling, and suggest that HF may benefit from targeting CD11b.
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