首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Mutation-specific hemostatic variability in mice expressing common type 2B von Willebrand disease substitutions.
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Mutation-specific hemostatic variability in mice expressing common type 2B von Willebrand disease substitutions.

机译:表达常见2B型von Willebrand疾病替代的小鼠中的突变特异性止血变异性。

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摘要

Type 2B von Willebrand disease (2B VWD) results from von Willebrand factor (VWF) A1 mutations that enhance VWF-GPIbalpha binding. These "gain of function" mutations lead to an increased affinity of the mutant VWF for platelets and the binding of mutant high-molecular-weight VWF multimers to platelets in vivo, resulting in an increase in clearance of both platelets and VWF. Three common 2B VWD mutations (R1306W, V1316M, and R1341Q) were independently introduced into the mouse Vwf cDNA sequence and the expression vectors delivered to 8- to 10-week-old C57Bl6 VWF(-/-) mice, using hydrodynamic injection. The resultant phenotype was examined, and a ferric chloride-induced injury model was used to examine the thrombogenic effect of the 2B VWD variants in mice. Reconstitution of only the plasma component of VWF resulted in the generation of the 2B VWD phenotype in mice. Variable thrombocytopenia was observed in mice expressing 2B VWF, mimicking the severity seen in 2B VWD patients: mice expressing the V1316M mutation showed the most severe thrombocytopenia. Ferric chloride-induced injury to cremaster arterioles showed a marked reduction in thrombus development and platelet adhesion in the presence of circulating 2B VWF. These defects were only partially rescued by normal platelet transfusions, thus emphasizing the key role of the abnormal plasma VWF environment in 2B VWD.
机译:2B型von Willebrand病(2B VWD)是由增强VWF-GPIbalpha结合的von Willebrand因子(VWF)A1突变引起的。这些“功能获得”突变导致突变体VWF对血小板的亲和力增加,并使突变体高分子量VWF多聚体与体内血小板结合,导致血小板和VWF的清除率增加。将三个常见的2B VWD突变(R1306W,V1316M和R1341Q)独立引入小鼠Vwf cDNA序列,并使用流体动力注射将表达载体递送至8至10周龄的C57B16 VWF(-/-)小鼠。检查所得的表型,并使用氯化铁诱导的损伤模型检查小鼠中2B VWD变体的血栓形成作用。 VWF仅血浆成分的重建导致小鼠2B VWD表型的生成。在表达2B VWF的小鼠中观察到可变的血小板减少症,模仿了在2B VWD患者中观察到的严重程度:表达V1316M突变的小鼠表现出最严重的血小板减少症。在循环2B VWF的存在下,氯化铁诱导的对提睾小动脉的损伤显示血栓形成和血小板粘附的明显减少。正常的血小板输注只能部分挽救这些缺陷,从而强调了异常血浆VWF环境在2B VWD中的关键作用。

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