首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Regulatory Sequences of the Porcine THBD Gene Facilitate Endothelial-Specific Expression of Bioactive Human Thrombomodulin in Single- and Multitransgenic Pigs
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Regulatory Sequences of the Porcine THBD Gene Facilitate Endothelial-Specific Expression of Bioactive Human Thrombomodulin in Single- and Multitransgenic Pigs

机译:猪THBD基因的调节序列促进了单次和多种式猪生物活性人血栓素的内皮特异性表达

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摘要

BACKGROUND: Among other mismatches between human and pig, incompatibilities in the blood coagulation systems hamper the xenotransplantation of vascularized organs. The provision of the porcine endothelium with human thrombomodulin (hTM) is hypothesized to overcome the impaired activation of protein C by a heterodimer consisting of human thrombin and porcine TM. METHODS: We evaluated regulatory regions of the THBD gene, optimized vectors for transgene expression, and generated hTM expressing pigs by somatic cell nuclear transfer. Genetically modified pigs were characterized at the molecular, cellular, histological, and physiological levels. RESULTS: A 7.6-kb fragment containing the entire upstream region of the porcine THBD gene was found to drive a high expression in a porcine endothelial cell line and was therefore used to control hTM expression in transgenic pigs. The abundance of hTM was restricted to the endothelium, according to the predicted pattern, and the transgene expression of hTM was stably inherited to the offspring. When endothelial cells from pigs carrying the hTM transgene - either alone or in combination with an aGalTKO and a transgene encoding the human CD46 - were tested in a coagulation assay with human whole blood, the clotting time was increased three- to four-fold (P<0.001) compared to wild-type and aGalTKO/CD46 transgenic endothelial cells. This, for the first time, demonstrated the anticoagulant properties of hTM on porcine endothelial cells in a human whole blood assay. CONCLUSIONS: The biological efficacy of hTM suggests that the (multi-)transgenic donor pigs described here have the potential to overcome coagulation incompatibilities in pig-to-primate xenotransplantation.
机译:背景:在人和猪之间的其他不匹配中,血液凝固系统的不相容性阻碍了血管化器官的异种持续性。向人血栓调节蛋白(HTM)的猪内皮的提供是假设的,以克服由人凝血酶和猪TM组成的异二聚体的蛋白质C的受损活化。方法:我们评估了THBD基因的调节区域,用于转基因表达的优化载体,并通过体细胞核转移产生HTM表达猪。基因改性猪的特征在于分子,细胞,组织学和生理水平。结果:发现含有猪THBD基因的整个上游区域的7.6kb片段在猪内皮细胞系中驱动高表达,因此用于控制转基因猪中的HTM表达。根据预测的图案,HTM的丰度仅限于内皮,并且HTM的转基因表达稳定地遗传到后代。当来自携带HTM转基因的猪的内皮细胞 - 单独或与agaltko组合的当与人类全血的凝血测定中测试或与编码人CD46的转基因组合时,凝血时间增加三到四倍(P <0.001)与野生型和AgAltko / CD46转基因内皮细胞相比。这是首次证明了HTM对人类全血症中的猪内皮细胞对HTM的抗凝血性质。结论:HTM的生物学效果表明这里描述的(多)转基因供体猪有可能克服猪对灵长类动物异种植物中的凝血不相容性。

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  • 作者单位

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Department of Clinical Research Graduate School of Cellular and Biomedical Sciences University of;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Institute of Veterinary Pathology Center for Clinical Veterinary Medicine LMU Munich Germany;

    Transplant Laboratory Medizinische Hochschule Hannover Germany;

    Department for Veterinary Sciences LMU Munich Germany;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Institute of Pathology LMU Munich Germany;

    Department of Anaesthesiology LMU Munich Germany;

    Department of Cardiac Surgery LMU Munich Germany;

    Institute of Veterinary Pathology Center for Clinical Veterinary Medicine LMU Munich Germany;

    Transplant Laboratory Medizinische Hochschule Hannover Germany;

    Meiji University International Institute for Bio-Resource Research Kawasaki Japan;

    Department of Clinical Research Graduate School of Cellular and Biomedical Sciences University of;

    Revivicor Inc. Blacksburg VA United States;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

    Molecular Animal Breeding and Biotechnology Gene Center and Department of Veterinary Sciences LMU;

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  • 正文语种 eng
  • 中图分类 器官移植术;
  • 关键词

    Coagulation incompatibility; Human thrombomodulin; Thrombomodulin; Transgenic donor pigs; Transgenic donors; Xenotransplantation;

    机译:凝血不相容;人血栓素;血栓调节蛋白;转基因供体猪;转基因供体;Xenotroansplantation;

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