The formation of chlorobenzene and benzene by the reductive metabolism of lindane in rat liver microsomes
Author:
Publisher
Elsevier BV
Subject
Molecular Biology,Biochemistry,Biophysics
Reference32 articles.
1. Chemical Mechanisms of Halocarbon Metabolism
2. Mechanisms of reductive dechlorination of DDT by rat liver microsomes
3. Metabolism-dependent binding of the chlorinated insecticide DDT and its metabolite, DDD, to microsomal protein and lipids
4. Binding of14C-Carbon Tetrachloride to Microsomal Proteinsin vitroand Formation of CHCl3by Reduced Liver Microsomes
5. The mechanism of chloroform and carbon monoxide formation from carbon tetrachloride by microsomal cytochrome P-450
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