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An Experimental Model of Hepatic Fibrosis Induced by Alcohol and CCl4: Can the Lipopolysaccharide Prevent Liver Injury Induced by Alcohol and CCl4? / 대한간학회지
The Korean Journal of Hepatology ; : 173-178, 2002.
Article in Korean | WPRIM | ID: wpr-109820
ABSTRACT
BACKGROUND/

AIMS:

It is well known that alcohol enhances the toxicity of CCl4. We tried to establish an alcoholic liver cirrhosis model by administration of alcohol and CCl4 to rats. We also wanted to know the hepatoprotective effect of low doses of lipopolysaccharide(LPS) in this animal model.

METHODS:

Of 20 female adult rats, 8 were ingested with alcohol ad libitum(group 1) Another 6 were ingested with 10% alcohol and 50% 1mL/kg CCl4 intragastrically by Sonde twice a week(group 2) The remaining 6 were ingested with 10% alcohol, CCl4, and 0.1mg/kg LPS intraperitoneally twice a week(group 3) The fibrosis was evaluated semiquantitatively on a scale of 0(none) to 3(cirrhosis).

RESULTS:

1) After 10 weks, septal fibrosis or cirrhosis was produced in 9 out of 12 rats in groups 2 and 3 but there was no fibrotic change in group 1. 2) There was no significant difference in pathological grading between groups 2 and 3.

CONCLUSIONS:

Hepatic fibrosis or cirrhosis can be sufficiently induced by alcohol and repetitive CCl4 ingestion for 10 weeks. We can not prove the hepatoprotective effect of low dose LPS by semiquantitative evaluation of pathological grading.
Subject(s)

Full text: Available Index: WPRIM (Western Pacific) Main subject: English Abstract / Carbon Tetrachloride Poisoning / Lipopolysaccharides / Rats, Sprague-Dawley / Ethanol / Liver / Liver Cirrhosis, Alcoholic Limits: Animals Language: Korean Journal: The Korean Journal of Hepatology Year: 2002 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: English Abstract / Carbon Tetrachloride Poisoning / Lipopolysaccharides / Rats, Sprague-Dawley / Ethanol / Liver / Liver Cirrhosis, Alcoholic Limits: Animals Language: Korean Journal: The Korean Journal of Hepatology Year: 2002 Type: Article