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基质金属蛋白酶-2增强了在流动条件下胶原上的血小板沉积。

Matrix metalloproteinase-2 enhances platelet deposition on collagen under flow conditions.

机构信息

Paolo Gresele, MD, PhD, Section of Internal and Cardiovascular Medicine, Department of Medicine, University of Perugia, Via E. Dal Pozzo, 06126 Perugia, Italy, Tel.: +39 075 5783989, Fax: +39 075 5716083, E-mail:

出版信息

Thromb Haemost. 2016 Jan;115(2):333-43. doi: 10.1160/TH15-04-0300. Epub 2015 Oct 29.

Abstract

Platelets contain and release matrix metalloproteinase-2 (MMP-2) that in turn potentiates platelet aggregation. Platelet deposition on a damaged vascular wall is the first, crucial, step leading to thrombosis. Little is known about the effects of MMP-2 on platelet activation and adhesion under flow conditions. We studied the effect of MMP-2 on shear-dependent platelet activation using the O'Brien filtration system, and on platelet deposition using a parallel-plate perfusion chamber. Preincubation of human whole blood with active MMP-2 (50 ng/ml, i.e. 0.78 nM) shortened filter closure time (from 51.8 ± 3.6 sec to 40 ± 2.7 sec, p<0.05) and increased retained platelets (from 72.3 ± 2.3% to 81.1 ± 1.8%, p<0.05) in the O'Brien system, an effect prevented by a specific MMP-2 inhibitor. High shear stress induced the release of MMP-2 from platelets, while TIMP-2 levels were not significantly reduced, therefore, the MMP-2/TIMP-2 ratio increased significantly showing enhanced MMP-2 activity. Preincubation of whole blood with active MMP-2 (0.5 to 50 ng/ml, i.e 0.0078 to 0.78 nM) increased dose-dependently human platelet deposition on collagen under high shear-rate flow conditions (3000 sec⁻¹) (maximum +47.0 ± 11.9%, p<0.05, with 50 ng/ml), while pre-incubation with a MMP-2 inhibitor reduced platelet deposition. In real-time microscopy studies, increased deposition of platelets on collagen induced by MMP-2 started 85 sec from the beginning of perfusion, and was abolished by a GPIIb/IIIa antagonist, while MMP-2 had no effect on platelet deposition on fibrinogen or VWF. Confocal microscopy showed that MMP-2 enhances thrombus volume (+20.0 ± 3.0% vs control) rather than adhesion. In conclusion, we show that MMP-2 potentiates shear-induced platelet activation by enhancing thrombus formation.

摘要

血小板含有并释放基质金属蛋白酶-2(MMP-2),进而增强血小板聚集。血小板在受损血管壁上的沉积是导致血栓形成的第一步,也是至关重要的一步。目前对于 MMP-2 在流动条件下对血小板激活和黏附的影响知之甚少。我们使用 O'Brien 过滤系统研究了 MMP-2 对剪切依赖性血小板激活的影响,并使用平行板灌注腔研究了对血小板沉积的影响。人全血与活性 MMP-2(50ng/ml,即 0.78nM)孵育可缩短 O'Brien 系统中的滤器关闭时间(从 51.8±3.6 秒缩短至 40±2.7 秒,p<0.05)和增加滤器中保留的血小板(从 72.3±2.3%增加至 81.1±1.8%,p<0.05),这一作用可被特异性 MMP-2 抑制剂所阻止。高剪切力诱导血小板释放 MMP-2,而 TIMP-2 水平无明显降低,因此,MMP-2/TIMP-2 比值显著增加,表明 MMP-2 活性增强。全血与活性 MMP-2(0.5 至 50ng/ml,即 0.0078 至 0.78nM)孵育可剂量依赖性地增加人血小板在高剪切速率(3000 秒⁻¹)下胶原表面的沉积(最大增加+47.0±11.9%,p<0.05,50ng/ml),而 MMP-2 抑制剂预处理则减少血小板沉积。在实时显微镜研究中,MMP-2 诱导的血小板在胶原上的沉积增加始于灌注开始后的 85 秒,且可被 GPIIb/IIIa 拮抗剂所阻断,而 MMP-2 对血小板在纤维蛋白原或 vWF 上的沉积无影响。共聚焦显微镜显示,MMP-2 增强血栓体积(+20.0±3.0%比对照)而不是黏附。总之,我们发现 MMP-2 通过增强血栓形成来增强剪切诱导的血小板激活。

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