[EN] PROGRAMMABLE POLYMER DROPLETS AND ASSOCIATED USES<br/>[FR] GOUTTELETTES DE POLYMÈRE PROGRAMMABLES ET UTILISATIONS ASSOCIÉES
申请人:[en]ETH ZURICH
公开号:WO2022122675A1
公开(公告)日:2022-06-16
The present invention pertains to liquid droplets comprising a polymer according to Formula (I) and to their use in an aqueous medium for the uptake of compounds from outside the droplets into the droplets for separation, storage and/or reaction of compounds inside the droplets, as well as associated methods of production of the polymer.
Application of Structure-Based Design and Parallel Chemistry to Identify a Potent, Selective, and Brain Penetrant Phosphodiesterase 2A Inhibitor
作者:Christopher J. Helal、Eric P. Arnold、Tracey L. Boyden、Cheng Chang、Thomas A. Chappie、Kimberly F. Fennell、Michael D. Forman、Mihaly Hajos、John F. Harms、William E. Hoffman、John M. Humphrey、Zhijun Kang、Robin J. Kleiman、Bethany L. Kormos、Che-Wah Lee、Jiemin Lu、Noha Maklad、Laura McDowell、Scot Mente、Rebecca E. O’Connor、Jayvardhan Pandit、Mary Piotrowski、Anne W. Schmidt、Christopher J. Schmidt、Hirokazu Ueno、Patrick R. Verhoest、Edward X. Yang
DOI:10.1021/acs.jmedchem.7b00397
日期:2017.7.13
explore the biology of PDE2A inhibition, we sought to identify potent PDE2A inhibitors with improved brain penetration as compared to current literature compounds. Applying estimated human dose calculations while simultaneously leveraging synthetically enabled chemistry and structure-based drug design has resulted in a highly potent, selective, brain penetrant compound 71 (PF-05085727) that effects in