A novel, potent, and orally active VLA-4 antagonist with good aqueous solubility: trans-4-[1-[[2-(5-Fluoro-2-methylphenylamino)-7-fluoro-6-benzoxazolyl]acetyl]-(5S)-[methoxy(methyl)amino]methyl-(2S)-pyrrolidinylmethoxy]cyclohexanecarboxylic acid

Compound 7n with favorable aqueous solubility significantly alleviated bronchial hyper-responsiveness to acetylcholine chloride at 12.5mg/kg, p.o. in an actively sensitized murine asthma model. We have carried out the optimization of substituents at the C-3 or the C-5 position on the pyrrolidine rin...

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Veröffentlicht in:Bioorganic & medicinal chemistry 2013-01, Vol.21 (1), p.42-61
Hauptverfasser: Setoguchi, Masaki, Iimura, Shin, Sugimoto, Yuuichi, Yoneda, Yoshiyuki, Chiba, Jun, Watanabe, Toshiyuki, Muro, Fumihito, Iigo, Yutaka, Takayama, Gensuke, Yokoyama, Mika, Taira, Tomoe, Aonuma, Misato, Takashi, Tohru, Nakayama, Atsushi, Machinaga, Nobuo
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Sprache:eng
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Zusammenfassung:Compound 7n with favorable aqueous solubility significantly alleviated bronchial hyper-responsiveness to acetylcholine chloride at 12.5mg/kg, p.o. in an actively sensitized murine asthma model. We have carried out the optimization of substituents at the C-3 or the C-5 position on the pyrrolidine ring of VLA-4 antagonist 3 with 2-(phenylamino)-7-fluorobenzoxazolyl moiety for the purpose of improving in vivo efficacy while maintaining good aqueous solubility. As a result, we successfully increased in vitro activity in the presence of 3% human serum albumin and achieved an exquisite lipophilic and hydrophilic balance of compounds suitable for oral administrative regimen. The modification resulted in the identification of zwitterionic compound 7n with (5S)-[methoxy(methyl)amino]methylpyrrolidine, which significantly alleviated bronchial hyper-responsiveness to acetylcholine chloride at 12.5mg/kg, p.o. in a murine asthma model and showed favorable aqueous solubility (JP1, 89μg/mL; JP2, 462μg/mL). Furthermore, this compound showed good oral bioavailability (F=54%) in monkeys.
ISSN:0968-0896
1464-3391
DOI:10.1016/j.bmc.2012.11.003