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连接粘附分子A在易患动脉粥样硬化小鼠内膜增生性病变形成和浸润中的重要性。

Importance of junctional adhesion molecule-A for neointimal lesion formation and infiltration in atherosclerosis-prone mice.

作者信息

Zernecke Alma, Liehn Elisa A, Fraemohs Line, von Hundelshausen Philipp, Koenen Rory R, Corada Monica, Dejana Elisabetta, Weber Christian

机构信息

Department of Molecular Cardiovascular Research, RWTH University Hospital, Aachen, Germany.

出版信息

Arterioscler Thromb Vasc Biol. 2006 Feb;26(2):e10-3. doi: 10.1161/01.ATV.0000197852.24529.4f. Epub 2005 Nov 23.

Abstract

OBJECTIVE

Although junctional adhesion molecule-A (JAM-A) has recently been implicated in leukocyte recruitment on early atherosclerotic endothelium and after reperfusion injury, its role in neointima formation after arterial injury remains to be elucidated.

METHODS AND RESULTS

Here we show that the genetic deletion of JAM-A in apolipoprotein E-deficient (apoE(-/-)) mice significantly reduced neointimal hyperplasia after wire injury of carotid arteries without altering medial area. This was associated with a significant decrease in neointimal macrophage content, whereas the relative content of smooth muscle cells and endothelial recovery was unaltered in JAM-A(-/-)apoE(-/-) compared with JAM-A(+/+)apoE(-/-) lesions. In carotid arteries perfused ex vivo, deficiency in JAM-A significantly impaired the recruitment of monocytes 1 week, but not 1 day, after injury. These effects were paralleled by an attenuation of monocyte arrest and transmigration on activated JAM-A(-/-)apoE(-/-) versus JAM-A(+/+)apoE(-/-) endothelial cells under flow conditions in vitro. A mechanism underlying reduced recruitment was implied by findings that the luminal expression of the arrest chemokine RANTES in injured arteries and its endothelial deposition by activated platelets in vitro were diminished by JAM-A deficiency.

CONCLUSIONS

Our data provide the first evidence to our knowledge for a crucial role of JAM-A in accelerated lesion formation and monocyte infiltration in atherosclerosis-prone mice.

摘要

目的

尽管最近发现连接黏附分子A(JAM-A)在早期动脉粥样硬化内皮和再灌注损伤后的白细胞募集中起作用,但其在动脉损伤后新生内膜形成中的作用仍有待阐明。

方法与结果

在此我们表明,载脂蛋白E缺陷(apoE(-/-))小鼠中JAM-A的基因缺失显著减少了颈动脉钢丝损伤后的新生内膜增生,而中膜面积未改变。这与新生内膜巨噬细胞含量显著降低有关,而与JAM-A(+/+)apoE(-/-)病变相比,JAM-A(-/-)apoE(-/-)病变中平滑肌细胞的相对含量和内皮恢复情况未改变。在离体灌注的颈动脉中,JAM-A缺陷在损伤后1周而非1天显著损害单核细胞的募集。这些效应与体外流动条件下活化的JAM-A(-/-)apoE(-/-)与JAM-A(+/+)apoE(-/-)内皮细胞上单核细胞的黏附和迁移减弱相平行。JAM-A缺陷导致损伤动脉中趋化因子RANTES的管腔表达及其在体外活化血小板在内皮上的沉积减少,这一发现暗示了募集减少的潜在机制。

结论

据我们所知,我们的数据首次证明JAM-A在易患动脉粥样硬化小鼠的病变加速形成和单核细胞浸润中起关键作用。

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