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PMID: 16344604 Published · ppublish English Journal Article Review

Activation of the innate immune system and alcoholic liver disease: effects of ethanol per se or enhanced intestinal translocation of bacterial toxins induced by ethanol?

Alcoholism, clinical and experimental research ·Vol. 29 ·No. 11 Suppl ·2005-11-00 ·Pages 166S-71S

Bode C, Bode JC

Abstract

It is generally accepted that activation of the innate immune system and increased release of pro-inflammatory cytokines and other mediators plays an important role in the development of alcoholic liver disease (ALD). The mechanisms involved in the ethanol-induced activation of monocytes/macrophages (including Kupffer cells) are however, still a matter of debate. The brief review will summarize the published data from the literature on the two main pathomechanisms discussed until now: I) Gut-derived bacterial toxins, specially endotoxin; and II) metabolic changes induced by alcohol oxidation (independent of mechanism I). For pathomechanism I, clear evidence has been published from numerous groups: Alcohol induces mucosal injury in the upper gastrointestinal tract and leads to marked increase in the permeability of the gut mucosa to macromolecules such as endotoxin. The resulting endotoxemia then leads to activation of Kupffer cells and other macrophages. The increased release of pro-inflammatory mediators (e.g., TNF-alpha, Il-1, reacting oxygen species) and infiltration of other inflammatory cells (e.g., neutrophils) finally causes liver damage. Regarding the second pathomechanism it has repeatedly been argued that the metabolic alterations which are induced by chronic administration of ethanol to rats or mice might increase the sensitivity of monocytes/macrophages to secrete TNF-alpha and other pro-inflammatory mediators thereby increasing the susceptibility to ethanol-induced liver injury. However, in all feeding experiments the effect of ethanol on intestinal permeability and enhanced translocation of bacterial toxins (endotoxin) is likely to occur (or at least cannot be excluded). The latter holds true also for experiments using isolated macrophages/Kupffer cells from ethanol fed animals. Therefore, to clarify whether or not alterations related to ethanol metabolism ("direct" effects of ethanol) contribute to the activation of the innate immune system studies using germ-free animals are needed to exclude the "indirect" effect of ethanol via gut-derived bacterial toxins.

MeSH Terms
Animals Bacterial Toxins/metabolism Endotoxemia/etiology Ethanol/metabolism,pharmacology Gastrointestinal Tract/drug effects,microbiology Humans Immunity, Innate/drug effects Intestinal Absorption/drug effects Intestinal Mucosa/drug effects,immunology,pathology Lipopolysaccharides/metabolism Liver/immunology,physiopathology Liver Diseases, Alcoholic/immunology,physiopathology Tumor Necrosis Factor-alpha/metabolism
Chemicals
Bacterial Toxins Lipopolysaccharides Tumor Necrosis Factor-alpha Ethanol
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Bode Christiane
Department of Physiology of Nutrition, Hohenheim University, Stuttgart, Germany. bodeck@uhi
Bode J Christian
Article Info
Journal
Alcoholism, clinical and experimental research
Abbr.
Alcohol Clin Exp Res
ISSN
0145-6008
Published
2005-11-00
Pages
166S-71S
Language
English
Region
England
NLM ID
7707242
Subset
IM
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