Matches in SemOpenAlex for { <https://semopenalex.org/work/W2000876078> ?p ?o ?g. }
- W2000876078 endingPage "961" @default.
- W2000876078 startingPage "952" @default.
- W2000876078 abstract "Background/Aims Blocking of adhesion molecules is considered to be one of the therapeutic strategies inflammatory diseases, although it remains unclear whether this strategy is beneficial. Methods We used CD44-deficient mice to assess whether inhibition of CD44 could control liver injury caused by carbon tetrachloride (CCl4). Results CD44-deficient mice exhibited suppressed liver inflammation during the early phase (within 6 h) after CCl4 injection due to reduced inflammatory cell infiltration and cytokine production, but showed severe liver inflammation with increased numbers of apoptotic hepatocytes at the late phase (after 12 h). The induction of hepatocyte apoptosis was triggered by reduced NF-κB activity, which was induced by the low inflammatory cytokine concentrations. Furthermore, macrophages contributed to the induction of hepatocyte apoptosis, since neutralization by an anti-CD11b antibody significantly protected against hepatocyte apoptosis. Finally, we found that blocking of MIP-2 and TNF-α reduced hepatocyte apoptosis with decreased numbers of intrahepatic leukocytes and reduced inflammatory cytokine production. Conclusions These findings suggest that targeting of CD44 as a therapeutic approach for inflammatory liver diseases may require caution for particular immune systems in the liver. Blocking of adhesion molecules is considered to be one of the therapeutic strategies inflammatory diseases, although it remains unclear whether this strategy is beneficial. We used CD44-deficient mice to assess whether inhibition of CD44 could control liver injury caused by carbon tetrachloride (CCl4). CD44-deficient mice exhibited suppressed liver inflammation during the early phase (within 6 h) after CCl4 injection due to reduced inflammatory cell infiltration and cytokine production, but showed severe liver inflammation with increased numbers of apoptotic hepatocytes at the late phase (after 12 h). The induction of hepatocyte apoptosis was triggered by reduced NF-κB activity, which was induced by the low inflammatory cytokine concentrations. Furthermore, macrophages contributed to the induction of hepatocyte apoptosis, since neutralization by an anti-CD11b antibody significantly protected against hepatocyte apoptosis. Finally, we found that blocking of MIP-2 and TNF-α reduced hepatocyte apoptosis with decreased numbers of intrahepatic leukocytes and reduced inflammatory cytokine production. These findings suggest that targeting of CD44 as a therapeutic approach for inflammatory liver diseases may require caution for particular immune systems in the liver." @default.
- W2000876078 created "2016-06-24" @default.
- W2000876078 creator A5013524621 @default.
- W2000876078 creator A5016857780 @default.
- W2000876078 creator A5041284607 @default.
- W2000876078 creator A5041450266 @default.
- W2000876078 creator A5048187734 @default.
- W2000876078 creator A5052109987 @default.
- W2000876078 creator A5053330372 @default.
- W2000876078 creator A5079953843 @default.
- W2000876078 date "2008-06-01" @default.
- W2000876078 modified "2023-10-11" @default.
- W2000876078 title "Critical role of CD44 in hepatotoxin-mediated liver injury" @default.
- W2000876078 cites W1493418974 @default.
- W2000876078 cites W1564861083 @default.
- W2000876078 cites W1964179595 @default.
- W2000876078 cites W1969250152 @default.
- W2000876078 cites W1969544178 @default.
- W2000876078 cites W1975268714 @default.
- W2000876078 cites W2017682182 @default.
- W2000876078 cites W2026244707 @default.
- W2000876078 cites W2027700151 @default.
- W2000876078 cites W2037625112 @default.
- W2000876078 cites W2037632318 @default.
- W2000876078 cites W2043841563 @default.
- W2000876078 cites W2046369009 @default.
- W2000876078 cites W2047873121 @default.
- W2000876078 cites W2056738560 @default.
- W2000876078 cites W2095826615 @default.
- W2000876078 cites W2099675490 @default.
- W2000876078 cites W2105620133 @default.
- W2000876078 cites W2124537587 @default.
- W2000876078 cites W2127172916 @default.
- W2000876078 cites W2139007882 @default.
- W2000876078 cites W2141924291 @default.
- W2000876078 cites W2143147838 @default.
- W2000876078 cites W2144192610 @default.
- W2000876078 cites W2145307509 @default.
- W2000876078 cites W2167969842 @default.
- W2000876078 cites W2278793656 @default.
- W2000876078 cites W2470223656 @default.
- W2000876078 cites W4250007760 @default.
- W2000876078 cites W8794497 @default.
- W2000876078 doi "https://doi.org/10.1016/j.jhep.2008.01.033" @default.
- W2000876078 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/18395288" @default.
- W2000876078 hasPublicationYear "2008" @default.
- W2000876078 type Work @default.
- W2000876078 sameAs 2000876078 @default.
- W2000876078 citedByCount "22" @default.
- W2000876078 countsByYear W20008760782012 @default.
- W2000876078 countsByYear W20008760782013 @default.
- W2000876078 countsByYear W20008760782016 @default.
- W2000876078 countsByYear W20008760782017 @default.
- W2000876078 countsByYear W20008760782019 @default.
- W2000876078 crossrefType "journal-article" @default.
- W2000876078 hasAuthorship W2000876078A5013524621 @default.
- W2000876078 hasAuthorship W2000876078A5016857780 @default.
- W2000876078 hasAuthorship W2000876078A5041284607 @default.
- W2000876078 hasAuthorship W2000876078A5041450266 @default.
- W2000876078 hasAuthorship W2000876078A5048187734 @default.
- W2000876078 hasAuthorship W2000876078A5052109987 @default.
- W2000876078 hasAuthorship W2000876078A5053330372 @default.
- W2000876078 hasAuthorship W2000876078A5079953843 @default.
- W2000876078 hasConcept C102124568 @default.
- W2000876078 hasConcept C121332964 @default.
- W2000876078 hasConcept C153400128 @default.
- W2000876078 hasConcept C16224149 @default.
- W2000876078 hasConcept C178790620 @default.
- W2000876078 hasConcept C17991360 @default.
- W2000876078 hasConcept C185592680 @default.
- W2000876078 hasConcept C190283241 @default.
- W2000876078 hasConcept C202751555 @default.
- W2000876078 hasConcept C203014093 @default.
- W2000876078 hasConcept C2776200302 @default.
- W2000876078 hasConcept C2776637226 @default.
- W2000876078 hasConcept C2776914184 @default.
- W2000876078 hasConcept C2777359374 @default.
- W2000876078 hasConcept C2778690821 @default.
- W2000876078 hasConcept C502942594 @default.
- W2000876078 hasConcept C55493867 @default.
- W2000876078 hasConcept C71924100 @default.
- W2000876078 hasConcept C8891405 @default.
- W2000876078 hasConcept C97355855 @default.
- W2000876078 hasConcept C98274493 @default.
- W2000876078 hasConceptScore W2000876078C102124568 @default.
- W2000876078 hasConceptScore W2000876078C121332964 @default.
- W2000876078 hasConceptScore W2000876078C153400128 @default.
- W2000876078 hasConceptScore W2000876078C16224149 @default.
- W2000876078 hasConceptScore W2000876078C178790620 @default.
- W2000876078 hasConceptScore W2000876078C17991360 @default.
- W2000876078 hasConceptScore W2000876078C185592680 @default.
- W2000876078 hasConceptScore W2000876078C190283241 @default.
- W2000876078 hasConceptScore W2000876078C202751555 @default.
- W2000876078 hasConceptScore W2000876078C203014093 @default.
- W2000876078 hasConceptScore W2000876078C2776200302 @default.
- W2000876078 hasConceptScore W2000876078C2776637226 @default.
- W2000876078 hasConceptScore W2000876078C2776914184 @default.
- W2000876078 hasConceptScore W2000876078C2777359374 @default.