斑马鱼体内 VIII 因子的缺失可重新平衡抗凝血酶缺乏症,但出血症状有限。

IF 7.1 1区 医学 Q1 HEMATOLOGY
Azhwar Raghunath, Catherine E Richter, Megan S Griffin, Sylvia M Emly, Murat Yaman, Valder R Arruda, Benjamin J Samelson-Jones, Jordan A Shavit
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引用次数: 0

摘要

凝血因子 VIII(FVIII,F8)的缺陷会导致出血性疾病血友病 A。治疗出血性疾病的一种新兴疗法是通过限制天然抗凝剂(如抗凝血酶 AT3)来增强止血效果。为了在体内模型中研究促/抗凝血止血平衡,我们利用基因组编辑技术在斑马鱼中创建了f8和von Willebrand因子(vwf)的空等位基因,斑马鱼是一种与哺乳动物止血系统高度同源的模式生物,具有独特的属性,包括外部发育和光学透明度。f8 基因同源突变幼体在受到激光介导的内皮损伤时竟然形成了正常的血栓,没有明显的出血迹象,但死亡率却略有上升。我们之前已经证明,at3-/-幼虫会出现弥散性血管内凝血(DIC),并伴有自发性血栓形成和纤维蛋白原消耗,从而导致出血表型,其特点是内皮损伤时继发性缺乏诱导血栓形成。我们发现,FVIII(f8-/-;at3-/-)缺失后,幼虫不再出现自发性纤维蛋白血栓,但会在内皮损伤时产生血凝块。相比之下,斑马鱼 Vwf 的同基因缺失无法挽救 at3 DIC 表型。这些研究结果表明,天然抗凝剂的平衡发生了改变,从而缓解了斑马鱼的 FVIII 缺乏症,这与临床开发中的止血药物类似,并表明斑马鱼的 FVIII 可能独立于 Vwf 而循环。进一步探索斑马鱼体内这种独特的平衡,可以为治疗 A 型血友病和冯-威廉氏病提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Loss of factor VIII in zebrafish rebalances antithrombin deficiency but has a limited bleeding diathesis.

Abstract: Deficiencies in coagulation factor VIII (FVIII, F8) result in the bleeding disorder hemophilia A. An emerging novel therapeutic strategy for bleeding disorders is to enhance hemostasis by limiting natural anticoagulants, such as antithrombin (AT3). To study pro/anticoagulant hemostatic balance in an in vivo model, we used genome editing to create null alleles for f8 and von Willebrand factor (vwf) in zebrafish, a model organism with a high degree of homology to the mammalian hemostatic system and unique attributes, including external development and optical transparency. f8 homozygous mutant larvae surprisingly formed normal thrombi when subjected to laser-mediated endothelial injury, had no overt signs of hemorrhage, although they did have a modest increase in mortality. We have previously shown that at3-/- larvae develop disseminated intravascular coagulation (DIC), with spontaneous thrombosis and fibrinogen consumption, resulting in a bleeding phenotype marked by secondary lack of induced thrombus formation upon endothelial injury. We found that with loss of FVIII (f8-/-;at3-/-), larvae no longer developed spontaneous fibrin thrombi and produced clots in response to endothelial injury. In contrast, homozygous loss of zebrafish Vwf failed to rescue the at3 DIC phenotype. These findings demonstrate an altered balance of natural anticoagulants that mitigates FVIII deficiency in zebrafish, similar to hemostatic drugs in the clinical development pipeline, and suggest that zebrafish FVIII might circulate independently of Vwf. Further exploration of this unique balance in zebrafish could provide novel insights into the treatment of hemophilia A and von Willebrand disease.

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来源期刊
Blood advances
Blood advances Medicine-Hematology
CiteScore
12.70
自引率
2.70%
发文量
840
期刊介绍: Blood Advances, a semimonthly medical journal published by the American Society of Hematology, marks the first addition to the Blood family in 70 years. This peer-reviewed, online-only, open-access journal was launched under the leadership of founding editor-in-chief Robert Negrin, MD, from Stanford University Medical Center in Stanford, CA, with its inaugural issue released on November 29, 2016. Blood Advances serves as an international platform for original articles detailing basic laboratory, translational, and clinical investigations in hematology. The journal comprehensively covers all aspects of hematology, including disorders of leukocytes (both benign and malignant), erythrocytes, platelets, hemostatic mechanisms, vascular biology, immunology, and hematologic oncology. Each article undergoes a rigorous peer-review process, with selection based on the originality of the findings, the high quality of the work presented, and the clarity of the presentation.
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