首页> 外文期刊>American Journal of Physiology >CRP promotes monocyte-endothelial cell adhesion via Fcgamma receptors in human aortic endothelial cells under static and shear flow conditions.
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CRP promotes monocyte-endothelial cell adhesion via Fcgamma receptors in human aortic endothelial cells under static and shear flow conditions.

机译:在静态和剪切流动条件下,CRP通过Fcgamma受体促进人主动脉内皮细胞中的单核细胞-内皮细胞粘附。

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摘要

Monocyte-endothelial cell adhesion is a key early event in atherogenesis. C-reactive protein (CRP), a cardiovascular risk marker, is known to stimulate ICAM and VCAM in human aortic endothelial cells (HAEC) and induces monocyte-endothelial cell adhesion. In this study, we examined the mechanisms by which native CRP promotes monocyte-endothelial cell adhesion under static conditions and tested the effect of CRP on adhesion under shear flow. Incubation of HAEC with CRP (>25 microg/ml) upregulated NF-kappaB activity, and this resulted in a significant increase in ICAM (54% increase, P<0.001), VCAM (41% increase, P<0.01), and monocyte-endothelial cell adhesion (44% increase, P<0.02) compared with those of control. Preincubation with antibodies to CD32 and CD64 but not CD16 effectively inhibited this activation. Blocking NF-kappaB activity with inhibitors or a dominant negative inhibitory kappaB significantly decreased ICAM, VCAM upregulation, and subsequent monocyte-endothelial cell adhesion. Preincubationwith antibodies to CD32 and CD64 or transient transfection with small interference RNA to CD32 attenuated CRP-induced NF-kappaB activity, ICAM, VCAM, and monocyte-endothelial cell adhesion under static conditions. Also, the Syk kinase inhibitor piceatannol and MG-132, a proteasome degradation inhibitor, produced similar attenuation in NF-kappaB activity, ICAM, VCAM, and adhesion. Furthermore, CRP-activated endothelial cells supported monocyte rolling, arrest, and transmigration in shear flow (2 dyn/cm2), and this was also inhibited by preincubation with antibodies to CD32 and CD64. Thus, in HAEC, CRP upregulates monocyte-endothelial adhesion by activation of NF-kappaB through engaging the Fcgamma receptors CD32 and CD64.
机译:单核细胞-内皮细胞粘附是动脉粥样硬化发生中的关键早期事件。已知C反应蛋白(CRP)是一种心血管风险标志物,可刺激人主动脉内皮细胞(HAEC)中的ICAM和VCAM并诱导单核-内皮细胞粘附。在这项研究中,我们检查了天然CRP在静态条件下促进单核细胞-内皮细胞粘附的机制,并测试了CRP在剪切流下对粘附的影响。用CRP(> 25 microg / ml)孵育HAEC会上调NF-kappaB活性,这导致ICAM(增加54%,P <0.001),VCAM(增加41%,P <0.01)和单核细胞显着增加-内皮细胞粘附(与对照相比增加44%,P <0.02)。用针对CD32和CD64的抗体(而不是针对CD16的抗体)预孵育有效地抑制了这种激活。用抑制剂或显性负抑制性kappaB阻断NF-κB活性可显着降低ICAM,VCAM上调以及随后的单核-内皮细胞粘附。用CD32和CD64抗体进行预温育,或用小干扰RNA瞬时转染CD32,可在静态条件下减弱CRP诱导的NF-κB活性,ICAM,VCAM和单核细胞-内皮细胞粘附。此外,Syk激酶抑制剂piceatannol和蛋白酶体降解抑制剂MG-132在NF-kappaB活性,ICAM,VCAM和粘附方面产生了相似的衰减。此外,CRP激活的内皮细胞支持单核细胞滚动,停滞和以剪切流(2 dyn / cm2)迁移,并且也可以通过与CD32和CD64抗体进行预孵育来抑制。因此,在HAEC中,CRP通过与Fcγ受体CD32和CD64结合来激活NF-κB,从而上调单核细胞与内皮的粘附。

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