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Regulatory Sequences of the Porcine THBD Gene Facilitate Endothelial-Specific Expression of Bioactive Human Thrombomodulin in Single- and Multitransgenic Pigs

  • Annegret Wuensch
  • , Andrea Baehr
  • , Anjan K. Bongoni
  • , Elisabeth Kemter
  • , Andreas Blutke
  • , Wiebke Baars
  • , Sonja Haertle
  • , Valeri Zakhartchenko
  • , Mayuko Kurome
  • , Barbara Kessler
  • , Claudius Faber
  • , Jan Michael Abicht
  • , Bruno Reichart
  • , Ruediger Wanke
  • , Reinhard Schwinzer
  • , Hiroshi Nagashima
  • , Robert Rieben
  • , David Ayares
  • , Eckhard Wolf
  • , Nikolai Klymiuk
  • Ludwig-Maximilians-Universität München
  • University of Bern
  • Medizinische Hochschule Hannover
  • Meiji University
  • Revivicor, Inc.

Research output: Contribution to journalArticlepeer-review

72 Scopus citations

Abstract

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.

Original languageEnglish
Pages (from-to)138-147
Number of pages10
JournalTransplantation
Volume97
Issue number2
DOIs
StatePublished - 27 Jan 2014
Externally publishedYes

Keywords

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

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