N-Alkoxypyrazoles as biomimetics for the alkoxyphenyl group in tamoxifen

The preparation of a series of novel analogues of the selective antiestrogen tamoxifen is reported. 1 Z-alkoxyphenyl group in tamoxifen has been replaced by a N-alkoxypyrazole, while functionalised phenyl groups or heteroaromatics were introduced at the 2 Z-position using sequential Suzuki cross cou...

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Veröffentlicht in:Bioorganic & medicinal chemistry 2003-04, Vol.11 (8), p.1883-1899
Hauptverfasser: Wenckens, Martin, Jakobsen, Palle, Vedsø, Per, Huusfeldt, Per Olaf, Gissel, Birgitte, Barfoed, Marianne, Lundin Brockdorff, Bettina, Lykkesfeldt, Anne E, Begtrup, Mikael
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Sprache:eng
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Zusammenfassung:The preparation of a series of novel analogues of the selective antiestrogen tamoxifen is reported. 1 Z-alkoxyphenyl group in tamoxifen has been replaced by a N-alkoxypyrazole, while functionalised phenyl groups or heteroaromatics were introduced at the 2 Z-position using sequential Suzuki cross coupling of 1,2-(bis)borylpinacol 1-phenylbutene with 4- or 5-iodo-1- N, N-dimethylaminoethyl or propyl-pyrazoles. Approximately 50 tamoxifen analogues were obtained and tested in an estrogen receptor (ERα) affinity assay. Several compounds exhibited binding affinities 2–5-fold lower than tamoxifen. Dose–response experiments with six selected compounds were carried out using two different human breast cancer cell lines, MCF-7 and the tamoxifen resistant cell line MCF-/TAM R-1. Both cell lines exhibited growth inhibition upon treatment with the tamoxifen analogues. Co-treatment of the cells, with estradiol and the individual compounds, were also performed. The results indicated that the observed growth inhibitory effect was mediated by the ERα. Analogues of the potent antiestrogen 4-hydroxytamoxifen (4-OHT) were synthesised where the 1 E-4-hydroxyphenyl was replaced by a 1-hydroxypyrazol-4-yl group. However, modest growth inhibition of MCF-7 cells was observed upon treatment with these analogues. In contrast, 1 Z-, 2 Z-ringclosed tamoxifen analogue ( 59) was shown to possess antiproliferative effects on MCF-7 and MCF-/TAM R-1 cells in lower doses than tamoxifen. Graphic
ISSN:0968-0896
1464-3391
DOI:10.1016/S0968-0896(02)00566-7