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Scanning electron microscopy investigation of fibrin networks after thermal injury

机译:热损伤后纤维蛋白网络的扫描电子显微镜研究

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Injury due to burning is known to impact on coagulation and haemostasis by disturbing the coagulation cascade and is also associated with impaired fibrinolysis. Also, venous thrombosis, pulmonary embolism and hypercoagulability are common during thermal injury. Using a Wistar albino rat model, we investigated in this study whether burn injury affects the ultrastructure of the fibrin networks. A typical fibrin network will contain mostly major, thick fibres with minor, thin fibres distributed amongst them. We found that the clot architecture changes after burn injury, showing more prominent minor, thin fibres in a netted appearance. Also, the clot showed areas of matted fibrin. We suggest that the thrombotic events associated with burn injury are due to the thickened and netlike areas formed when thrombin activates the coagulation cascade. This is due to impaired fibrinolysis activities, causing the resulting fibrin clots not to be successfully disseminated. Small fragments of these netted, clumped areas may therefore break loose and lead to thrombotic events after burn injuries. The current study therefore provided morphological evidence for thrombotic events associated with burn injury.
机译:已知由于燃烧引起的伤害会通过干扰凝血级联而影响凝血和止血,并且还与纤维蛋白溶解受损有关。此外,在热损伤期间静脉血栓形成,肺栓塞和高凝性很常见。使用Wistar白化病大鼠模型,我们在这项研究中调查了烧伤是否影响血纤蛋白网络的超微结构。典型的纤维蛋白网络将主要包含主要的粗纤维,而次要的细纤维分布在其中。我们发现,烧伤后血块的结构发生了变化,显示出网状外观中更突出的次要细纤维。而且,血块显示出纤维蛋白不均匀的区域。我们建议与烧伤相关的血栓形成事件是由于凝血酶激活凝血级联反应时形成的增厚和网状区域所致。这是由于纤维蛋白溶解活性受损,导致无法成功传播所形成的纤维蛋白凝块。因此,这些网状结块区域的小碎片可能会破裂并烧伤后导致血栓形成。因此,当前的研究为与烧伤相关的血栓形成事件提供了形态学证据。

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