Tetrahydrobiopterin attenuates ischemiareperfusion injury following organ transplantation by targeting the nitric oxide synthase: Investigations in an animal model

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Abstract

Ischemia-reperfusion injury is a primarily nonallospecific event leading to the depletion of the essential nitric oxide synthase cofactor and potent antioxidant tetrahydrobiopterin. Suboptimal concentrations of tetrahydrobiopterin result in a reduced biosynthesis of nitric oxide leading to vascular endothelial dysfunction. Tetrahydrobiopterin supplementation has been shown to protect from this pathological state in a plethora of cardiovascular diseases including transplant-related ischemia-reperfusion injury. Even though still controversially discussed, there is increasing evidence emerging from both human as well as animal studies that tetrahydrobiopterin-mediated actions rely on its nitric oxide synthase cofactor activity rather than on its antioxidative properties. Herein, we review the current literature regarding the role of tetrahydrobiopterin in ischemia-reperfusion injury including our experience acquired in a murine pancreas transplantation model. © 2013 Walter de Gruyter GmbH, Berlin/Boston.

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Cardini, B., Oberhuber, R., Hein, S. R., Watschinger, K., Hermann, M., Obrist, P., … Maglione, M. (2013). Tetrahydrobiopterin attenuates ischemiareperfusion injury following organ transplantation by targeting the nitric oxide synthase: Investigations in an animal model. Pteridines. Walter de Gruyter GmbH. https://doi.org/10.1515/pterid-2013-0006

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