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Indian J Biochem Biophys ; 1996 Feb; 33(1): 53-6
Article in English | IMSEAR | ID: sea-29127

ABSTRACT

Oxygen-derived free radicals are known to be generated during ischemia/reperfusion injury and biomembranes are the prime target of these active species. In order to study the effect of in vivo generated free radicals on intestinal mucosal membrane, brush border membranes (BBM) were isolated from rat small intestine after subjecting to ischemia (I) and ischemia/reperfusion (I/R) injury and their lipid composition and marker enzyme activity were compared with BBM prepared from control animals. No significant alteration in the lipid composition of BBM was observed after I or I/R as compared to control. Membrane fluidity measurements showed that I/R increased the fluidity of BBM. Activity of alkaline phosphatase, one of the marker enzymes for BBM was reduced by I or I/R whereas activity of another BBM enzyme, sucrase was not altered. The decrease in alkaline phosphatase activity was more after reperfusion. In vitro fluidization of BBM using benzyl alcohol indicated that the inactivation of alkaline phosphatase was not due to change in fluidity. These results suggest that free radicals generated during I/R inactivate BBM alkaline phosphatase partially without altering the membrane lipid composition.


Subject(s)
Alkaline Phosphatase/metabolism , Animals , Intestinal Mucosa/blood supply , Intestines/blood supply , Ischemia/metabolism , Membrane Fluidity , Membrane Lipids/metabolism , Microvilli/metabolism , Rats , Reference Values , Reperfusion , Sucrase/metabolism
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