Zhu Li, Stalker Timothy J, Fong Karen P, Jiang Hong, Tran Anh, Crichton Irene, Lee Eric K, Neeves Keith B, Maloney Sean F, Kikutani Hitoshi, Kumanogoh Atsushi, Pure Ellen, Diamond Scott L, Brass Lawrence F
Department of Medicine and Pharmacology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Arterioscler Thromb Vasc Biol. 2009 Jul;29(7):1039-45. doi: 10.1161/ATVBAHA.109.185405. Epub 2009 Apr 23.
In dyslipidemic states, platelets become hyperreactive, secreting molecules that promote atherosclerosis. We have shown that the semaphorin family member, sema4D (CD100), is expressed on the surface of platelets and proposed that its role includes promoting thrombus growth by binding to nearby platelets and endothelial cells, both of which express sema4D receptors. Here we tested the hypothesis that deleting sema4D will attenuate the adverse consequences of dyslipidemia on platelets and the vessel wall.
Platelet function and atherosclerotic lesion formation were measured in LDLR(-/-) and sema4D(-/-)LDLR(-/-) mice after 6 months on a high-fat diet. All of the mice developed the dyslipidemia expected on this diet in the absence of functional LDL receptors. However, when compared to LDLR(-/-) mice, sema4D(-/-) LDLR(-/-) mice had reduced lipid deposition in the descending aorta, a 6-fold decrease in the frequency of arterial occlusion and a reduction to near wild-type levels in the accumulation of platelets after injury. These differences were retained ex vivo, with a marked decrease in platelet accumulation on collagen under flow and in platelet aggregation.
These results show that loss of sema4D expression reduces the platelet hyperactivity otherwise found in dyslipidemia, and confers protection against the development of atherosclerosis.
在血脂异常状态下,血小板会变得反应过度,分泌促进动脉粥样硬化的分子。我们已经表明,信号素家族成员信号素4D(CD100)在血小板表面表达,并提出其作用包括通过与附近表达信号素4D受体的血小板和内皮细胞结合来促进血栓生长。在这里,我们测试了以下假设:删除信号素4D将减轻血脂异常对血小板和血管壁的不良影响。
对高脂饮食6个月后的LDLR(-/-)和信号素4D(-/-)LDLR(-/-)小鼠的血小板功能和动脉粥样硬化病变形成进行了测量。在缺乏功能性LDL受体的情况下,所有小鼠都出现了这种饮食预期的血脂异常。然而,与LDLR(-/-)小鼠相比,信号素4D(-/-)LDLR(-/-)小鼠降主动脉中的脂质沉积减少,动脉闭塞频率降低6倍,损伤后血小板积聚减少至接近野生型水平。这些差异在体外得以保留,在流动状态下血小板在胶原蛋白上的积聚以及血小板聚集均显著减少。
这些结果表明,信号素4D表达缺失可降低血脂异常时出现的血小板过度活性,并对动脉粥样硬化的发展具有保护作用。