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首页> 外文期刊>Comparative Medicine >Characterization of a Porcine Model for Von Willebrand Disease Type 1 and 3 Regarding Expression of Angiogenic Mediators in the Nonpregnant Female Reproductive Tract
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Characterization of a Porcine Model for Von Willebrand Disease Type 1 and 3 Regarding Expression of Angiogenic Mediators in the Nonpregnant Female Reproductive Tract

机译:von Willebrand疾病型1和3关于血管生成介质在非妊娠女性生殖道中的表达的表征

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Von Willebrand disease (VWD), a blood coagulation disorder, is also known to cause angiodysplasia. Hitherto, no animal model has been found with angiodysplasia that can be studied in vivo. In addition, VWD patients tend to have a higher incidence of miscarriages for reasons unknown. Thus, we aimed to examine the influence of von Willebrand factor (VWF) on the female reproductive tract histology and the expression and distribution of angiogenic factors in a porcine model for VWD types 1 and 3. The disease-causing tandem duplication within the VWF gene occurred naturally in these pigs, making them a rare and valuable model. Reproductive organs of 6 animals (2 of each mutant genotype and 2 wildtype (WT) animals) were harvested. Genotype plus phenotype were confirmed. Several angiogenic factors were chosen for possible connections to VWF and analyzed alongside VWF by immunohistochemistry and quantitative gene expression studies. VWD type 3 animals showed angiodysplasia in the uterus and shifting of integrin alpha(V)beta(3) from the apical membrane of uterine epithelium to the cytoplasm accompanied by increased vascular endothelial growth factor (VEGF) expression. Varying staining patterns for angiopoietin (Ang)-2 were observed among the genotypes. As compared with WT, the ovaries of the VWD type 3 animals showed decreased gene expression of ANG2 and increased gene expression of TIE (tyrosine kinase with immunoglobulin and epidermal growth factor homology domains) 2, with some differences in the ANG/TIE-system among the mutant genotypes. In conclusion, severely reduced VWF seems to evoke angiodysplasia in the porcine uterus. Varying distribution and expression of angiogenic factors suggest that this large animal model is promising for investigation of influence of VWF on angiogenesis in larger groups.
机译:von willebrand疾病(vwd),血液凝固障碍也已知造成血管血糖。迄今为止,没有动物模型已发现血管无水型血管缺陷,可在体内研究。此外,由于未知的原因,VWD患者往往具有更高的流产的发生率。因此,我们旨在研究Von Willebrand因子(vwf)对雌性生殖道组织学的影响以及VWD类型1和3型猪模型中血管生成因子的表达和分布。疾病导致促进促进型促进型基因在这些猪中自然发生,使它们成为一个罕见和有价值的模型。收获6只动物的生殖器官(每个突变基因型中的2个和2种野生型(WT)动物)。基因型和表型被证实。选择几种血管生成因子用于对VWF的可能连接,并通过免疫组织化学和定量基因表达研究与VWF旁边分析。 VWD 3型动物在子宫内显示出血管无过钙,并从子宫上皮的顶端膜转移到细胞质上的整合蛋白α(3)伴随着增加的血管内皮生长因子(VEGF)表达。在基因型中观察到不同的血管素(Ang)-2的染色模式。与WT相比,VWD 3型动物的卵巢表现出降低的Ang2的基因表达,并增加了系列的基因表达(酪氨酸激酶和表皮蛋白生长因子同源域的酪氨酸激酶)2,在Ang / Tie-System中存在一些差异突变基因型。总之,严重减少的VWF似乎在猪子宫中唤起血管血管性胰腺。变化的血管生成因子的分布和表达表明,这种大型动物模型是有前途的,用于调查VWF对较大群体血管生成的影响。

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