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February 4, 2005Circulation Research192 citationsOpen Access

Angiopoietin-1 Promotes Cardiac and Skeletal Myocyte Survival Through Integrins

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SDSusan M. DallabridaNINesreen S. IsmailJOJ. Oberle

Key Result

Angiopoietin-1 promoted survival of cardiac and skeletal myocytes through direct integrin interactions, activating Akt and MAPK pathways independently of the tie2 receptor.

Structured PICO

Does angiopoietin-1 promote survival in cardiac and skeletal myocytes?

P
Population
Mouse C2C12 skeletal myocytes, human skeletal myocytes (HSMs), and freshly isolated rat neonatal cardiac myocytes (NCMs)
I
Intervention
Angiopoietin-1 (immobilized and soluble)
C
Comparator
Angiopoietin-2, cell matrices (laminin, fibronectin, vitronectin, collagen-I, -III, -IV), or untreated/control conditions
O
Outcome
Cell survival, adhesion, and activation of survival pathways (Akt, MAPK)surrogate

Angiopoietin-1 promotes cardiac and skeletal myocyte survival through direct, non-tie2 integrin interactions, suggesting a novel cardioprotective mechanism beyond its known vascular effects.

Abstract

Cardiac myocyte loss, regardless of insult, can trigger compensatory myocardial remodeling leading to heart failure. Identifying mediators of cardiac myocyte survival may advance clinical efforts toward myocardial preservation. Angiopoietin-1 limits ischemia-induced cardiac injury. This benefit is ascribed to angiogenesis because the receptor, tie2, is largely endothelial-specific. We propose that direct, non-tie2 interactions of angiopoietin-1 on cardiac myocytes contribute to this cardioprotection. We found that mouse C2C12 skeletal myocytes lack tie2, yet dose-dependently adhered to angiopoietin-1 and angiopoietin-2 similarly to laminin, fibronectin, vitronectin, and more than to collagen-I, -III, and -IV. Adhesion was divalent cation-mediated (Mn2+, Ca2+, not Mg2+), blocked with EDTA/EGTA, RGD-based peptides, and select integrin subunit antibodies. Similar findings were obtained with human skeletal myocytes (HSMs) and freshly isolated rat neonatal cardiac myocytes (NCMs). Furthermore, angiopoietin-1 conferred significant survival advantage exceeding that of most cell matrices, which was not fully explained by differences in cell adhesion. Angiopoietin-1 promoted survival of serum-starved C2C12, HSM, and NCM (MTT, trypan blue) and prevented taxol-induced apoptosis (caspase-3). Immobilized and soluble angiopoietin-1 phosphorylated Akt(S473) and MAPK(p42/44), (not FAK(Y397)) in C2C12 more than in endothelial cells and more than did angiopoietin-2 or cell matrices. EDTA, RGD-based peptides, and some integrin antibodies blocked these responses. Angiopoietin-1 activated HSM and NCM Akt(S473) and MAPK(p42/44) survival pathways. We propose that this novel function contributes to developmental and cardioprotective actions of angiopoietin-1 presently attributed to vascular effects alone. Angiopoietin-1 may prove therapeutically valuable in cardiac remodeling by supporting myocyte viability and preserving pump function. The full text of this article is available online at http://circres.ahajournals.org.

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Cite This Study

Dallabrida et al. (2005) studied Cardiac myocyte survival. Angiopoietin-1 vs. Angiopoietin-2 and cell matrices was evaluated on Cell survival and adhesion. Angiopoietin-1 promoted survival of cardiac and skeletal myocytes through direct integrin interactions, activating Akt and MAPK pathways independently of the tie2 receptor.

synapsesocial.com/papers/6a1ac901837f1a2c63b910dahttps://doi.org/10.1161/01.res.0000158285.57191.60
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