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Τρίτη 20 Σεπτεμβρίου 2016

Synthesis and Structure–Activity Relationships of 1-Benzylindane Derivatives as Selective Agonists for Estrogen Receptor Beta

Publication date: Available online 20 September 2016
Source:Bioorganic & Medicinal Chemistry
Author(s): Shigeru Yonekubo, Nobuhiko Fushimi, Takashi Miyagi, Osamu Nakanishi, Kenji Katsuno, Motoyasu Ozawa, Chiaki Handa, Noritaka Furuya, Hideyuki Muranaka
The estrogen receptor beta (ERβ) selective agonist is considered a promising candidate for the treatment of estrogen deficiency symptoms in ERβ-expressing tissues, without the risk of breast cancer, and multiple classes of compounds have been reported as ERβ selective agonists. Among them, 6-6 bicyclic ring-containing structures (e.g., isoflavone phytoestrogens) are regarded as one of the cyclized analogues of isobutestrol 5b, and suggest that other cyclized scaffolds comprising 5-6 bicyclic rings could also act as selective ERβ ligands.In this study, we evaluated the selective ERβ agonistic activity of 1-(4-hydroxybenzyl)indan-5-ol 7a and studied structure–activity relationship (SAR) of its derivatives. Some functional groups improved the properties of 7a; introduction of a nitrile group on the indane-1-position resulted in higher selectivity for ERβ (12a), and further substitution with a fluoro or a methyl group to the pendant phenyl ring was also preferable (12b, d, and e). Subsequent chiral resolution of 12a identified that R-12a has a superior profile over S-12a. This is comparable to diarylpropionitrile (DPN) 5c, one of the promising selective ERβ agonists and indicates that this indane-based scaffold has the potential to provide better ERβ agonistic probes.

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