SPKLOMHNMB and Central Laboratory, Liaocheng People's Hospital, Medical School of Liaocheng, Taishan Medical University, PR China.
Int J Cardiol. 2012 May 3;156(3):283-8. doi: 10.1016/j.ijcard.2010.11.001. Epub 2010 Dec 3.
Intravascular Brachytherapy as a tool to reduce restenosis is thought to alter vascular wall biology and vessel wall protein function. Platelet accumulation is also indeed important in the genesis of restenosis. We examine the in vitro effects of beta-radiation on the certain vessel wall extra cellular matrix proteins. We hypothesized that vessel wall (proteins) had become less prone to thrombosis.
We examined platelet adhesion to 20-Gy beta radiation treated extra cellular matrix proteins under flow conditions. Platelet flow adhesion was evaluated or quantified by image analysis, aggregation size analysis using the Watershed program and real-time fluorescence images of thrombus formation. The effect of beta radiation on vWF was further showing by measuring the binding of domain-specific antibodies to radiation treated vWF.
20-Gy beta radiation significantly decreased platelet adhesion to extra cellular matrix protein; vWF and collagen Type III and had no effect on the adhesion upon fibrinogen and fibronectin. The beta-radiation affected mostly the AI, A2 and A3 domains of the vWF molecule on the surface, whereas the D'-D3 and B-C1 domains on the surface remain unaffected and suggesting a significant decrease in vWF binding capacity to the GPIb, heparin and collagen ligands.
Beta radiation treatment can alter the reactivity of the certain vessel wall extra cellular matrix proteins, in particular vWF and collagen. The vessel wall may become less prone to platelet adhesion, which results in decrease thrombus formation. It might help to reduce the onset of acute coronary occlusion after the intervention.
血管内放射治疗被认为可以改变血管壁生物学和血管壁蛋白功能,从而减少再狭窄。血小板聚集在再狭窄的发生中确实很重要。我们研究了β辐射对血管壁细胞外基质某些蛋白的体外影响。我们假设血管壁(蛋白)变得不易发生血栓形成。
我们在流动条件下检查了 20-Gyβ辐射处理的细胞外基质蛋白对血小板黏附的影响。使用 Watershed 程序进行图像分析和聚集大小分析以及实时血栓形成荧光图像评估或量化血小板的流动黏附。通过测量针对辐射处理 vWF 的结构域特异性抗体的结合,进一步显示β辐射对 vWF 的影响。
20-Gyβ辐射显著降低了血小板对细胞外基质蛋白(vWF 和胶原 III)的黏附;对纤维蛋白原和纤维连接蛋白的黏附没有影响。β辐射主要影响 vWF 分子表面的 AI、A2 和 A3 结构域,而表面的 D'-D3 和 B-C1 结构域不受影响,并提示 vWF 与 GPIb、肝素和胶原配体的结合能力显著降低。
β辐射处理可以改变血管壁细胞外基质某些蛋白的反应性,特别是 vWF 和胶原。血管壁可能变得不易发生血小板黏附,从而减少血栓形成。这可能有助于减少介入治疗后急性冠状动脉闭塞的发生。