骨桥蛋白在内侧增厚和新内膜形成的发展中起重要作用

K. Isoda, Kenichiro Nishikawa, Y. Kamezawa, Mikoto Yoshida, M. Kusuhara, M. Moroi, N. Tada, F. Ohsuzu
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引用次数: 174

摘要

骨桥蛋白(Osteopontin, OPN)是一种可溶性分泌磷蛋白,与几种整合素具有高亲和力,并且在动脉粥样硬化病变部位被发现。然而,OPN在体内表达的作用仍然知之甚少。为了详细研究OPN的生理作用,我们在巨细胞病毒增强子/鸡&bgr;-肌动蛋白启动子的控制下,培养了过表达OPN基因的转基因小鼠(Tg)。我们用Northern印迹法在3种Tg小鼠的几乎所有组织中检测到OPN mrna。Tg组血清OPN水平显著高于非Tg组(782±107 vs 182±44 ng/mL;P <0.001)。与非Tg小鼠相比,Tg小鼠在出生后16周和32周的主动脉内侧厚度增加了73%(88±6对51±7)和94%(126±15对73±11)P <0.0001)。然而,在没有动脉损伤的Tg小鼠的任何区域,我们没有发现炎症细胞粘附内皮细胞、内膜增生或钙化的证据。然后我们研究了袖带对股动脉损伤的影响。Tg小鼠的内膜增厚比非Tg小鼠增加了2.9倍(4.9±1.9比1.7±0.4;P =0.022)。OPN的表达可诱导未损伤时的内侧增厚和损伤后的内膜形成,提示OPN在体内动脉粥样硬化、血管重塑和血管成形术后再狭窄的发生中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Osteopontin Plays an Important Role in the Development of Medial Thickening and Neointimal Formation
Osteopontin (OPN) is a soluble secreted phosphoprotein that binds with high affinity to several integrins and it has been found at the site of atherosclerotic lesions. However, the role of OPN expression in vivo is still poorly understood. To investigate the physiological role of OPN in detail, we generated transgenic mice (Tg) overexpressing the OPN gene under control of the cytomegalovirus enhancer/chicken &bgr;-actin promoter. We detected OPN mRNAs in almost all tissues of 3 lines of Tg mice by Northern blotting. The serum levels of OPN were significantly higher in Tg than in non-Tg mice (782±107 versus 182±44 ng/mL;P <0.001). Compared with non-Tg mice, a 73% (88±6 versus 51±7 &mgr;m;P <0.001) and 94% (126±15 versus 73±11 &mgr;m;P <0.0001) increase in the medial thickness of the aorta was determined in Tg mice at 16 and 32 weeks after birth. However, we found no evidence of inflammatory cells adhering to endothelial cells, intimal hyperplasia, or calcification in any region of Tg mice without artery injury. We then investigated the effect of cuff-induced injury to the femoral artery. The intimal thickening in Tg mice increased 2.9-fold more than that in non-Tg mice (4.9±1.9 versus 1.7±0.4 &mgr;m;P =0.022). The expression of OPN induces both medial thickening without injury and neointimal formation after injury, thus suggesting that OPN plays a role in the development of atherosclerosis, vascular remodeling, and restenosis after angioplasty in vivo.
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