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A polyaromatic receptor with high androgen affinity
Author(s) -
Masahiro Yamashina,
Takahiro Tsutsui,
Yoshihisa Sei,
Munetaka Akita,
Michito Yoshizawa
Publication year - 2019
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aav3179
Subject(s) - progestogen , receptor , chemistry , androgen receptor , hormone , steroid , androgen , androsterone , estrogen receptor , pregnenolone , testosterone (patch) , estrogen , endocrinology , estriol , medicine , biochemistry , biology , prostate cancer , cancer , breast cancer
Biological receptors distinguish and bind steroid sex hormones, e.g., androgen-, progestogen-, and estrogen-type hormones, with high selectivity. To date, artificial molecular receptors have been unable to discriminate between these classes of biosubstrates. Here, we report that an artificial polyaromatic receptor preferentially binds a single molecule of androgenic hormones, known as "male" hormones (indicated with ), over progestogens and estrogens, known as "female" hormones (indicated with ), in water. Competitive experiments established the binding selectivity of the synthetic receptor for various sex hormones to be testosterone () > androsterone () >> progesterone () > β-estradiol () > pregnenolone () > estriol (). These bindings are driven by the hydrophobic effect, and the observed selectivity arises from multiple CH-π contacts and hydrogen-bonding interactions in the semirigid polyaromatic cavity. Furthermore, micromolar fluorescence detection of androgen was demonstrated using the receptor containing a fluorescent dye in water.

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