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Updated: Jan 12, 2026

Preparation of Acute Brain Slices Using an Optimized N-Methyl-D-glucamine Protective Recovery Method
Published on: February 26, 2018
Optimizing post brain death vascularized composite graft quality through ex vivo restoration of S-nitrosothiol
Lin Zhu1,2, Ryan Nazemian1,2, Mohamed Awad1,2
1Institute for Transformative Molecular Medicine, School of Medicine Case Western Reserve University, Cleveland, USA.
Abstract:
A challenge in vascularized composite allotransplantation (VCA) is mitigating tissue damage within the composite secondary to brain death (BD). Loss of central nervous system function disrupts S-nitrosothiol (SNO) homeostasis to produce systemic hypoxia and ischemic injury during the donor support phase. We reasoned that addition of an S-nitrosylating agent to the preservation solution could correct this damage during ex vivo storage. Employing a swine BD preparation, we excised VC tissues (abdominal blocks and limbs) after a 16-h period of systemic support. The composites were perfused with/without the S-nitrosylating agent ethyl nitrite (ENO) present in the preservation solution. Flow rates and resistance were recorded during the storage period; tissue hypoxia was also quantified. BD decreased circulating SNO levels and reduced tissue oxygenation and muscle protein NO content. During storage, ENO increased flow and decreased resistance within the VCs. Muscle from ENO-treated VCs had lower protein levels of inducible nitric oxide synthase and the hypoxia marker Hif1α and higher levels of the anti-apoptotic protein Bcl2, all suggestive of enhancements of tissue oxygenation. As such, ex vivo S-nitrosylation therapy may be a means to correct BD-induced impairments in SNO-status to improve the quality of composite tissue grafts prior to transplantation.

