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Secosteroid
Suitability of Immobilized Systems for Microbiological Degradation of Endocrine Disrupting Compounds
Part I Biopharmaceuticals
Evolution of the Bile Salt Nuclear Receptor FXR in Vertebrates
1,25-Dihydroxyvitamin D3-Induced Genes in Osteoblasts
(12) Patent Application Publication (10) Pub. No.: US 2011/001412.6 A1 Evans Et Al
Paul Talalay 1923–2019
Bacterial Steroid Hydroxylases: Enzyme Classes, Their Functions and Comparison of Their Catalytic Mechanisms
Development of Analyses of Biological Steroids Using Chromatography −−Special Reference to Vitamin D Compounds and Neurosteroids−−
Alternative Formats If You Require This Document in an Alternative Format, Please Contact:
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Bile Acids and Their Derivatives As Vitamin D Receptor Agonists:Molecular Mechanism and Biological Actions
Wo 2010/088409 A2
Expression and Regulation of Steroid Metabolizing Enzymes in Cells of the Nervous and Skeletal Systems
Bile Acids and Their Derivatives As Vitamin D Receptor Agonists:Molecular Mechanism and Biological Actions
Whole-Genome and Enzymatic Analyses of an Androstenedione
(12) Patent Application Publication (10) Pub. No.: US 2006/0019936A1 Eissigmann Et Al
Steroid Hormones and Other Lipid Molecules Involved in Human Reproduction
Ep 0462189 B1
Cyproterone Acetate (18)
Top View
Nuclear Receptors and Their Selective Pharmacologic Modulators