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In vivo Liver Endocytosis Followed by Purification of Liver Cells by Liver Perfusion
Published on: November 10, 2011
Dual endothelin-converting enzyme/neutral endopeptidase blockade in rats with D-galactosamine-induced liver failure
Berthold Hocher1, S Heiden, K von Websky
1Institute of Nutritional Science, University of Potsdam, Potsdam, Germany. berthold.hocher@charite.de
Abstract:
Secondary activation of the endothelin system is thought to be involved in toxic liver injury. This study tested the hypothesis that dual endothelin-converting enzyme / neutral endopeptidase blockade might be able to attenuate acute toxic liver injury. - Male Sprague-Dawley rats were implanted with subcutaneous minipumps to deliver the novel compound SLV338 (10 mg/kg*d) or vehicle. Four days later they received two intraperitoneal injections of D-galactosamine (1.3 g/kg each) or vehicle at an interval of 12 hours. The animals were sacrificed 48 hours after the first injection. - Injection of D-galactosamine resulted in very severe liver injury, reflected by strongly elevated plasma liver enzymes, hepatic necrosis and inflammation, and a mortality rate of 42.9 %. SLV338 treatment did not show any significant effect on the extent of acute liver injury as judged from plasma parameters, hepatic histology and mortality. Plasma measurements of SLV338 confirmed adequate drug delivery. Plasma concentrations of big endothelin-1 and endothelin-1 were significantly elevated in animals with liver injury (5-fold and 62-fold, respectively). Plasma endothelin-1 was significantly correlated with several markers of liver injury. SLV338 completely prevented the rise of plasma big endothelin-1 (p<0.05) and markedly attenuated the rise of endothelin-1 (p = 0.055). - In conclusion, dual endothelin-converting enzyme / neutral endopeptidase blockade by SLV338 did not significantly attenuate D-galactosamine-induced acute liver injury, although it largely prevented the activation of the endothelin system. An evaluation of SLV338 in a less severe model of liver injury would be of interest, since very severe intoxication might not be relevantly amenable to pharmacological interventions.
Insights
Dual blockade of endothelin-converting enzyme and neutral endopeptidase with SLV338 did not significantly reduce D-galactosamine-induced toxic liver injury in rats. However, it did prevent endothelin system activation.
Area of Science:
- Hepatology
- Pharmacology
- Toxicology
Background:
- The endothelin system is implicated in toxic liver injury.
- Dual blockade of endothelin-converting enzyme (ECE) and neutral endopeptidase (NEP) is a potential therapeutic strategy.
Purpose of the Study:
- To investigate the efficacy of the novel compound SLV338, a dual ECE/NEP inhibitor, in attenuating acute toxic liver injury induced by D-galactosamine in rats.
Main Methods:
- Male Sprague-Dawley rats received SLV338 or vehicle via minipumps.
- Acute liver injury was induced by D-galactosamine injections.
- Liver injury was assessed by plasma liver enzymes, hepatic histology, and mortality.
Main Results:
- D-galactosamine caused severe liver injury, with a 42.9% mortality rate.
- SLV338 treatment did not significantly alter liver injury markers or mortality.
- SLV338 prevented the increase in big endothelin-1 and attenuated the increase in endothelin-1.
Conclusions:
- Dual ECE/NEP blockade with SLV338 did not significantly protect against severe D-galactosamine-induced liver injury.
- The compound effectively inhibited endothelin system activation.
- Further studies in less severe liver injury models may be warranted.

