Xenotransplantation · 1996 · 74 citations · 16 references
HistocompatibilityEngineeringImmunologyImmunotherapeuticsImmunotherapyA‐gal EpitopesProtein ExpressionCardiac XenotransplantationAntibody EngineeringCell TransplantationGene TransferXenotransplantationImmunoengineeringα‐Gal EpitopesHyperacute RejectionPorcine DiseaseCell EngineeringCell BiologyMolecular MedicineGenetic EngineeringTransgenic PigSuccessful Discordant XenotransplantationMedicine
Abstract: Hyperacute rejection (from pig to human) is thought to result from activation of complement initiated by the binding of host natural antibodies to α‐galactosyl (α‐Gal) epitopes of donor endothelial cells. However, α‐Gal epitope shares a common precursor with H antigen in humans. This means that H antigens as well as α‐Gal epitopes are synthesized in a competitive manner by different enzymes. We thought that it would be possible to convert α‐Gal epitopes into H antigens by introducing cDNA of α(1,2)‐fucosyltransferase (α1–2FT) into porcine cells, and so, pig embryos were microinjected with αl‐2FT cDNA. Transgenic pigs that carried α1–2FT were thus established. Cytotoxicity of fibrocytes derived from skin of transgenic pig was measured by 51 Cr release assay, which showed that H antigen‐expressing cells were significantly resistant to a challenge with human sera. These experiments indicate that our method provides a new strategy which contributes to a successful discordant xenotransplantation.
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Molecular genetic basis of the histo-blood group ABO system
Fumiichiro Yamamoto, Henrik Clausen, Thayer White et al. · Nature · 1990 · 1.2K citations
Genetics, Hematology, Blood Cell +4
William L. Fodor, B. L. Williams, Louis A. Matis et al. · Proceedings of the National Academy of Sciences · 1994 · 348 citations · Full text