Selective androgen receptor modulators, analogs and derivatives thereof and uses thereof
a selective androgen receptor and modulator technology, applied in the field of nuclear hormone receptor binding compounds, can solve the problems of reducing sexual sensitivity, affecting the onset of osteoporosis in the elderly, and difficult subject of contraception, so as to reduce the incidence, delay the onset, and reduce the severity
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example 1
Synthesis of Compound XIII
[1010]2-substituted acrylic acid (compound 46) is reacted with 4-cyano-3-trifluoromethyl-aniline followed by epoxidation. An opening of the epoxide ring with p-CN-phenol in the presence of potassium carbonate yields compound XIII, as presented in FIG. 1B.
example 2
Synthesis of Compound V
[1011]4-cyano-3-trifluoromethyl-aniline is reacted with propene-2-sulfonyl chloride (51), and subjected to epoxidation followed by opening of the epoxide ring with p-CN-phenol in the presence of potassium carbonate to yield compound V, as presented in FIG. 1C.
example 3
Synthesis of Compound XI
[1012]Oxiranylmethyl-carbamic acid tert-butyl ester (54) was opened with p-CN-phenol to yield compound 55, followed by deprotection with TFA to yield amino alcohol 56. Compound 56 was introduced in an electrophilic substitution reaction with 4-fluoro-2-trifluoromethyl-benzonitrile (57) to form compound 58. Oxidation of 58 to corresponding carbonyl derivative 59 which was used in further addition reactions to yield compound XI which as presented in FIG. 1D.
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