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Journal of Pharmaceutical Sciences|January 1, 1975
Improved synthesis of 18-hydroxydeoxycorticosteroneW D Slaunwhite, A J SoloJournal of Medicinal Chemistry|June 1, 1976
Quantitative structure-activity relationships among steroids. Investigations of the use of steric parametersR A Coburn, A J SoloJournal of Medicinal Chemistry|February 1, 1979
Structural requirements for progestational activity. Synthesis and properties of rac-8alpha,9beta,10alpha,14beta-progesteroneA J Solo, V Kumar, V AlksJournal of Medicinal Chemistry|February 1, 1975
Synthesis and biological activity of some ethers of testosterone. Implications concerning the biological activity of esters of testosteroneA J Solo, N Bejba, P Hebborn, et al.Journal of Medicinal Chemistry|June 1, 1982
Relative affinity of 17 alpha- and/or 21-esters and 17 alpha, 21-diesters of cortisol for a glucocorticoid receptor from rat thymocytesA J Solo, K M Tramposch, D W Szeto, et al.Drug Design and Discovery|July 1, 1992
QSAR, diagnostic statistics and molecular modelling of 1,4-dihydropyridine calcium antagonists: a difficult road aheadP P Mager, R A Coburn, A J Solo, et al.Journal of Medicinal Chemistry|February 1, 1988
Crystal structures and pharmacologic activities of 1,4-dihydropyridine calcium channel antagonists of the isobutyl methyl 2,6-dimethyl-4-(substituted phenyl)-1,4-dihydropyridine-3,5-dicarboxylate (nisoldipine) seriesR Fossheim, A Joslyn, A J Solo, et al.Steroids|December 1, 1982
7 alpha-Alkyltestosterone derivatives: synthesis and activity as androgens and as aromatase inhibitorsA J Solo, C Caroli, M V Darby, et al.Journal of Medicinal Chemistry|November 1, 1988
1,4-Dihydropyridine antagonist activities at the calcium channel: a quantitative structure-activity relationship approachR A Coburn, M Wierzba, M J Suto, et al.Pageof 1