Periostin as a Novel Factor Responsible for Ventricular Dilation

医学 骨膜炎 膨胀(度量空间) 心脏病学 内科学 细胞生物学 数学 生物 组合数学 细胞外基质
作者
Naruto Katsuragi,Ryuichi Morishita,Noriko Nakamura,Tayehito Ochiai,Yoshiaki Taniyama,Yasuhiro Hasegawa,Kayoko Kawashima,Yasufumi Kaneda,Toshio Ogihara,Keijiro Sugimura
出处
期刊:Circulation [Ovid Technologies (Wolters Kluwer)]
卷期号:110 (13): 1806-1813 被引量:130
标识
DOI:10.1161/01.cir.0000142607.33398.54
摘要

Periostin is highly expressed in the myocardium in patients with heart failure. However, no report has documented the function of periostin. To identify the function of periostin in the pathophysiology of heart failure, overexpression or loss of function of the periostin gene was examined by direct transfection into the rat heart.Rats transfected with the periostin gene by the HVJ-liposome method showed left ventricular (LV) dilation as assessed by echocardiography, accompanied by an increase in periostin expression. Consistently significant differences were observed in LV pressure, LV end-diastolic pressure, LV dP/dt(max), and LV dP/dt(min) at 6 and 12 weeks after transfection in rats transfected with the periostin gene, accompanied by a decrease in cardiac myocytes and an increase in collagen deposition. Importantly, periostin has the ability to inhibit the spreading of myocytes and the adhesion of cardiac fibroblasts with or without fibronectin. Markers of cardiac dysfunction such as brain natriuretic peptide and endothelin-1 gene expression were significantly increased after transfection in the LV of rats transfected with the periostin gene. These data demonstrate that overexpression of the periostin gene led to cardiac dysfunction. Thus, we examined the inhibition of periostin in Dahl salt-sensitive rats by an antisense strategy because periostin is highly expressed in heart failure. Importantly, inhibition of periostin gene expression resulted in a significant increase in survival rate, accompanied by an improvement of LV function.The present study demonstrates the contribution of the periostin gene to cardiac dilation in animal models. Inhibition of periostin might become a new therapeutic target for the treatment of heart failure.
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