28 results on '"Ojasoo T"'
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2. Steroid hormones—agonists and antagonists
3. Receptor Binding as a Tool in the Development of New Bioactive Steroids
4. An Analysis of the Steroid Binding Domain of Receptors and of Ligand Structure and Binding Affinity
5. Citation bias in medical journals
6. World science in 18 disciplinary areas: Comparative evaluation of the publication patterns of 48 countries over the period 1981–1992
7. Affiliations among steroid receptors as revealed by multivariate analysis of steroid binding data
8. Breast cancer: When tumor markers become targets for drugs
9. Prevention
10. A model for the determination of the 3D-spatial distribution of the functions of the hormone-binding domain of receptors that bind 3-keto-4-ene steroids
11. Hydroxylated triphenylacrylonitriles adopt a unique orientation within the binding site of the estrogen receptor
12. 11β-substituted steroids, an original pathway to antihormones
13. RU 16117, an orally active estriol-like weak estrogen
14. ChemInform Abstract: Correspondence Analysis Applied to Steroid Receptor Binding.
15. Contraceptive efficacy of once-weekly oral administration of 2.5 mg R 2323
16. Influence of new hydroxylated Triphenylethylene (TPE) derivatives on estradiol binding to uterine cytosol
17. Hydrophobic cluster analysis (HCA) of the hormone-binding domain of receptor proteins
18. ChemInform Abstract: ADDITIONAL CONFORMATIONAL DATA FOR THE MAPPING OF THE PROGESTIN BINDING SITE: CRYSTAL STRUCTURES OF 21-(PHENYLSELENO)PROGESTERONE AND 17α-(PHENYLSELENO)PROGESTERONE
19. 82. Steroid hormone binding to cytoplasmic receptors: additivity of the relative binding affinity (rba) increments calculated for individual substituents
20. Tags for Steroid Hormone Receptors
21. Independent Estonia
22. Steroid flexibility and receptor specificity
23. Nilutamide
24. Preface
25. Steroid hormone receptors and pharmacology
26. Towards the mapping of the progesterone and androgen receptors
27. Non-michaelian behavior of 5α-reductase in human prostate
28. ChemInform Abstract: 11β-Substituted Steroids, an Original Pathway to Antihormones
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