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The Biochemical Journal|September 1, 1974
Carnitine and trimethylaminobutyrate synthesis in rat tissuesR A Cox, C L HoppelThe Biochemical Journal|December 1, 1973
Biosynthesis of carnitine and 4-N-trimethylaminobutyrate from 6-N-trimethyl-lysineR A Cox, C L HoppelThe Biochemical Journal|December 1, 1973
Biosynthesis of carnitine and 4-N-trimethylaminobutyrate from lysineR A Cox, C L HoppelThe Biochemical Journal|May 15, 1980
N6-Trimethyl-lysine metabolism. 3-Hydroxy-N6-trimethyl-lysine and carnitine biosynthesisC L Hoppel, R A Cox, R F NovakFederation Proceedings|October 1, 1982
Carnitine and carnitine palmitoyltransferase in fatty acid oxidation and ketosisC L HoppelThe Journal of Nutrition|January 1, 1976
Relationship between hepatic mitochondrial oxidative metabolism and morphology during riboflavin deficiency and recovery in miceC L Hoppel, B TandlerBeitrage Zur Pathologie|September 1, 1975
The failure of supplemental dietary copper to prevent cuprizone-induced alterations in mouse hepatocytesB Tandler, C L HoppelThe Anatomical Record|February 1, 1980
Ultrastructural effects of riboflavin deficiency on rat hepatic mitochondriaB Tandler, C L HoppelEuropean Journal of Biochemistry|November 20, 1989
Butyrobetaine availability in liver is a regulatory factor for carnitine biosynthesis in rat. Flux through butyrobetaine hydroxylase in fasting stateA Sandor, C L HoppelThe Journal of Nutrition|May 1, 1975
Riboflavin and mouse hepatic cell structure and function. Mitochondrial oxidative metabolism in severe deficiency statesC L Hoppel, B TandlerPageof 30