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Elevated 4-hydroxylation of estradiol by hamster kidney microsomes: a potential pathway of metabolic activation of estrogens.

Data up to Jan 2025

Published1992
Citations64
References13

Total Citations Per Year

Abstract

References (13)

A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye Binding

1976 • 225,752 citations

The Carbon Monoxide-binding Pigment of Liver Microsomes

1964 • 11,832 citations

NADPH-cytochrome P-450 reductase from rat liver: purification by affinity chromatography and characterization

1977 • 205 citations

Peroxidase-mediated oxidation, a possible pathway for metabolic activation of diethylstilbestrol

1978 • 108 citations

2-Fluoroestradiol. Separation of estrogenicity from carcinogenicity.

1983 • 89 citations

Estrogen 2- and 4-hydroxylase activity, catechol estrogen formation, and implications for estrogen carcinogenesis in the hamster kidney.

1985 • 77 citations

Hormonal carcinogenesis: Separation of estrogenicity from carcinogenicity

1986 • 47 citations

Effect of chronic estrogen treatment of syrian hamsters on microsomal enzymes mediating formation of catecholestrogens and their redox cycling: Implications for carcinogenesis

1990 • 40 citations

Correlation of aromatic hydroxylation of 11 beta-substituted estrogens with morphological transformation in vitro but not with in vivo tumor induction by these hormones.

1987 • 26 citations

Peroxidase-catalyzed oxidation of diethylstilbestrol

1962 • 21 citations

Effect of Androgen and Estrogen Treatment on Hamster Liver and Kidney Estrogen 2-/4-Hydroxylase Activity*

1986 • 16 citations

Estrogen metabolism in primary kidney cell cultures from syrian hamsters

1990 • 13 citations

ChemInform Abstract: Fadrozole Hydrochloride: A Potent, Selective, Nonsteroidal Inhibitor of Aromatase for the Treatment of Estrogen‐Dependent Disease.

1991 • 1 citations

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Elevated 4-hydroxylation of estradiol by hamster kidney microsomes: a potential pathway… (1992) – Endocrinology | Metascience Observatory Explorer