[EN] COMPOUNDS MODULATING PROTEIN RECRUITMENT AND/OR DEGRADATION<br/>[FR] COMPOSÉS MODULANT LE RECRUTEMENT ET/OU LA DÉGRADATION DE PROTÉINES
申请人:ORIONIS BIOSCIENCES INC
公开号:WO2021126973A1
公开(公告)日:2021-06-24
The invention provides cereblon binders for the degradation of proteins by the ubiquitin proteasome pathway for therapeutic applications.
这项发明提供了用于通过泛素蛋白酶体途径降解蛋白质的 cereblon 结合物,用于治疗应用。
[EN] COMPOSITIONS FOR THE TREATMENT OF PULMONARY FIBROSIS<br/>[FR] COMPOSITIONS POUR LE TRAITEMENT D'UNE FIBROSE PULMONAIRE
申请人:VECTUS BIOSYSTEMS LTD
公开号:WO2018018091A1
公开(公告)日:2018-02-01
The present invention relates to compounds and their use in the prophylactic and/or therapeutic treatment of pulmonary fibrosis and/or related conditions.
本发明涉及化合物及其在预防及/或治疗肺纤维化及/或相关病症的应用。
A Modular Synthesis of Teraryl-Based α-Helix Mimetics, Part 1: Synthesis of Core Fragments with Two Electronically Differentiated Leaving Groups
developed a modular and flexible approach for the synthesis of teraryl‐based α‐helix mimetics. Central to our strategy is the use of a benzene core unit featuring two leaving groups of differentiated reactivity in the Pd‐catalyzed cross‐coupling used for terphenyl assembly. With the halogen/diazonium route and the halogen/triflate route, two strategies have successfully been established. The synthesis of core
The present invention provides compounds which bind to the ubiquitously expressed E3 ligase protein cereblon (CRBN) and their use for the treatment of abnormal cellular proliferation. The present invention also provides compounds that may be used as synthetic intermediates in the synthesis of bifunctional compounds used for targeted protein degradation.
A Modular Synthesis of Teraryl‐Based α‐Helix Mimetics, Part 4: Core Fragments with Two Halide Leaving Groups Featuring Side Chains of Proteinogenic Amino Acids
A series of para-bromoiodoarene compounds decorated with the sidechains of all proteinogenic amino acids is reported. These fragments serve as building blocks for the modular assembly of teraryl-based α-helix mimetics via sequential Pd cross-coupling. Compared to our established iodotriflate approach, the new building blocks showed higher stability and better reactivity under cross-coupling conditions