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Updated: May 15, 2026

A Modified Murine Heterotopic Heart Transplant Protocol Matching Contemporary Standards of Aseptic Technique, Anesthesia, and Analgesia
Published on: September 28, 2022
Nucleotide metabolic mismatches in mammalian hearts: implications for transplantation
Z Khalpey1, M H Yacoub, R T Smolenski
1Division of Cardiothoracic Surgery, University of Arizona College of Medicine, 1,501 North Campbell Avenue, PO Box 245071, Tucson, AZ 85724-5071, USA. zkhalpey@surgery.arizona.edu
Introduction:
Human donor organ shortages have led surgeons and scientists to explore the use of animals as alternative organ sources. Acute thrombovascular rejection (AVR) is the main hurdle in xenotransplantation. disparities in nucleotide metabolism in the vessels of different species may contribute significantly to the microvascular component of AVR.
Methods:
We evaluated the extent of nucleotide metabolism mismatch in selected organs and endothelial cells of different mammals with particular focus on the changes in activity of ecto-5'-nucleotidase (E5'n) elicited by exposure of porcine hearts or endothelial cells to human blood (ex vivo) or human plasma (in vitro).
Results:
E5'n activity in the rat heart was significantly higher than in other species. We noted a significant difference (p<0.001) in E5'n activity between human and pig endothelial cell lines. Initial pig aortic endothelial E5'n activity decreased in vitro after a three-hour exposure to human and porcine plasma while remaining constant in controls. ex vivo perfusion with fresh human blood for four hours resulted in a significant decrease of E5'n activity in both wild type and transgenic pig hearts overexpressing human decay accelerating factor (p<0.001).
Conclusions:
This study provides evidence that mismatches in basal mammalian metabolic pathways and humoral immunity interact in a xenogeneic environment. understanding the role of nucleotide metabolism and signalling in xenotransplantation may identify new targets for genetic modifications and may lead to the development of new therapies extending graft survival.
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