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Fibrinogen Dusart: electron microscopy of molecules, fibers and clots, and viscoelastic properties of clots.

机译:Fibrinogen Dusart:分子,纤维和血块的电子显微镜,以及血块的粘弹性。

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摘要

Ultrastructural perturbations resulting from defects in polymerization of fibrinogen Dusart, a congenital dysfibrinogenemia with the amino acid substitution A alpha 554 arginine to cysteine, were investigated by a variety of electron microscope studies. Polymerization of this mutant fibrinogen on addition of thrombin is impaired, producing clots with decreased porosity and increased resistance to fibrinolysis, resulting in thrombotic complications in the family members with this dysfibrinogenemia. Electron microscopy of rotary-shadowed individual molecules revealed that, in contrast to control fibrinogen, most of the alpha C domains of fibrinogen or fibrin Dusart appeared to be free-swimming appendages that do not exhibit intra- or intermolecular interactions either with each other or with the central domains. The location of albumin on the alpha C domains was demonstrated by electron microscopy using anti-albumin antibodies. Electron microscopy of negatively contrasted fibrin Dusart fibers indicated that they were less ordered than control fibers and had additional mass visible. Electron microscopy of freeze-dried, unidirectionally shadowed fibers showed that they were twisted with a shorter pitch. Scanning electron microscopy revealed that intact clots were made up of thin fibers with many branch points and very small pore sizes. The viscoelastic properties of Dusart fibrin clots measured with a torsion pendulum indicated a marked increase in stiffness consistent with the structural observations.
机译:通过各种电子显微镜研究,研究了由纤维蛋白原Dusart聚合缺陷引起的超微结构扰动,Dusart是先天性纤维蛋白原血症,氨基酸取代为A alpha 554精氨酸,从而取代了半胱氨酸。添加凝血酶后,这种突变型纤维蛋白原的聚合会受到损害,产生凝块,孔隙率降低,纤维蛋白溶解抵抗力增强,导致血纤维蛋白原血症的家庭成员发生血栓性并发症。带有阴影的单个分子的电子显微镜显示,与对照纤维蛋白原相比,纤维蛋白原或纤维蛋白Dusart的大多数αC结构域似乎是自由游动的附肢,它们之间或分子间或分子间的相互作用均不表现出中央领域。使用抗白蛋白抗体的电子显微镜证实了白蛋白在αC结构域上的位置。负对比纤维蛋白Dusart纤维的电子显微镜检查表明,它们比对照纤维的排列顺序更不规则,并且可见更多质量。冷冻干燥的单向阴影纤维的电子显微镜显示,它们以较短的节距扭曲。扫描电子显微镜显示,完整的血凝块由细纤维组成,细纤维具有许多分支点和很小的孔径。用扭转摆测量的Dusart纤维蛋白凝块的粘弹性特性表明,刚度明显增加,与结构观察一致。

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