Literature DB >> 26064259

Effect of simvastatin on mitochondrial enzyme activities, ghrelin, hypoxia-inducible factor 1α in hepatic tissue during early phase of sepsis.

Hatice Yorulmaz1, Elif Ozkok2, Mine Erguven3, Gulten Ates4, Irfan Aydın5, Sule Tamer4.   

Abstract

We aimed to investigate the effects of prior treatment of simvastatin on mitochondrial enzyme, ghrelin, and hypoxia-inducible factor 1 α (HIF-1 α) on hepatic tissue in rats treated with Lipopolysaccharides (LPS) during the early phase of sepsis. Rats were divided into four groups: control, LPS (20 mg/kg, i.p.), Simvastatin (20 mg/kg, p.o.), and LPS + Simvastatin group. We measured citrate synthase, complex I, II, I-III, II-III enzymes activities, serum and tissue levels of TNF-α, IL-10 using ELISA. Liver sections underwent histopathologic examination and TNF-α, IL-10, HIF-1α and ghrelin immunoreactivity were examined using immunohistochemistry methods. There were no differences in all groups for mitochondrial enzyme activities. In terms of both ELISA and immunohistochemistry findings; the levels of serum and tissue TNF-α and IL-10 were higher in the experimental groups than controls (P < 0.05). In the LPS group, the hepatocyte cell membrane and sinusoid structure were damaged. In the Simvastatin +LPS group, hepatocytes and sinusoidal cord structure were partially improved. For HIF-1α, in all experimental groups immunoreactivity was increased (P < 0.05). In the Simvastatin group, Ghrelin levels were increased in comparison with the other groups (P < 0.01). Ghrelin levels were greatly decreased in LPS (P < 0.05). We observed that the degree of hepatocellular degeneration was partially reduced depending on the dosage and duration of prior simvastatin treatment with LPS, probably due to alterations of Ghrelin and HIF-1α levels.

Entities:  

Keywords:  Lipopolysaccharide; ghrelin; hypoxia-inducible factor 1-α; liver; mitochondrial enzyme activites; simvastatin

Year:  2015        PMID: 26064259      PMCID: PMC4443093     

Source DB:  PubMed          Journal:  Int J Clin Exp Med        ISSN: 1940-5901


  51 in total

1.  Kupffer cells are responsible for producing inflammatory cytokines and hepatocellular dysfunction during early sepsis.

Authors:  D J Koo; I H Chaudry; P Wang
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3.  Statins reduce interleukin-6-induced C-reactive protein in human hepatocytes: new evidence for direct antiinflammatory effects of statins.

Authors:  Claire Arnaud; Fabienne Burger; Sabine Steffens; Niels R Veillard; Tuan Huy Nguyen; Didier Trono; François Mach
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Review 4.  Endotoxin elimination in sepsis: physiology and therapeutic application.

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Review 5.  Mitochondrial dysfunction in sepsis.

Authors:  M Singer; D Brealey
Journal:  Biochem Soc Symp       Date:  1999

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Review 7.  Receptors, mediators, and mechanisms involved in bacterial sepsis and septic shock.

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9.  Mitochondrial dysfunction in a long-term rodent model of sepsis and organ failure.

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