4.7 Article

A Novel Oxygen Carrier (M101) Attenuates Ischemia-Reperfusion Injuries during Static Cold Storage in Steatotic Livers

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MDPI
DOI: 10.3390/ijms22168542

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ischemia-reperfusion; steatotic livers; oxygen-carrier

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The addition of HEMO2life(R) to the preservation solution has been shown to significantly protect steatotic livers during static cold storage, reducing reperfusion injury and improving graft function. This approach also decreases the generation of reactive oxygen species and reduces inflammation.
The combined impact of an increasing demand for liver transplantation and a growing incidence of nonalcoholic liver disease has provided the impetus for the development of innovative strategies to preserve steatotic livers. A natural oxygen carrier, HEMO2life(R), which contains M101 that is extracted from a marine invertebrate, has been used for static cold storage (SCS) and has shown superior results in organ preservation. A total of 36 livers were procured from obese Zucker rats and randomly divided into three groups, i.e., control, SCS-24H and SCS-24H + M101 (M101 at 1 g/L), mimicking the gold standard of organ preservation. Ex situ machine perfusion for 2 h was used to evaluate the quality of the livers. Perfusates were sampled for functional assessment, biochemical analysis and subsequent biopsies were performed for assessment of ischemia-reperfusion markers. Transaminases, GDH and lactate levels at the end of reperfusion were significantly lower in the group preserved with M101 (p < 0.05). Protection from reactive oxygen species (low MDA and higher production of NO2-NO3) and less inflammation (HMGB1) were also observed in this group (p < 0.05). Bcl-1 and caspase-3 were higher in the SCS-24H group (p < 0.05) and presented more histological damage than those preserved with HEMO2life(R). These data demonstrate, for the first time, that the addition of HEMO2life(R) to the preservation solution significantly protects steatotic livers during SCS by decreasing reperfusion injury and improving graft function.

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