HETEROARYL COMPOUNDS AS BTK INHIBITORS AND USES THEREOF
申请人:Merck Patent GmbH
公开号:US20160096834A1
公开(公告)日:2016-04-07
The present invention relates to imidazo pyridine compounds, and pharmaceutically acceptable compositions thereof, useful as BTK inhibitors.
本发明涉及咪唑吡啶化合物及其药学上可接受的组合物,用作BTK抑制剂。
[EN] DEFORMYLASE INHIBITOR, PROCESS FOR PREPARING THE SAME, AND ANTIBACTERIAL COMPOSITION COMPRISING THE SAME<br/>[FR] INHIBITEUR DE DEFORMYLASE, PROCEDE D'ELABORATION, ET COMPOSITION ANTIBACTERIENNE RENFERMANT CET INHIBITEUR
申请人:PROMEDITECH INC
公开号:WO2004087643A1
公开(公告)日:2004-10-14
Provided are a novel compound useful for a deformylase inhibitor with excellent antibacterial activity or a pharmaceutically acceptable salt thereof, a process for preparing the same, and an antibacterial composition including the same as an active ingredient. The deformylase inhibitor effectively acts against a broad spectrum of bacteria, including bacteria with resistance to existing antibacterial agents.
C(sp<sup>3</sup>)–C(sp<sup>3</sup>) coupling of non-activated alkyl-iodides with electron-deficient alkenes <i>via</i> visible-light/silane-mediated alkyl-radical formation
作者:Sanesh Mistry、Roopender Kumar、Andrew Lister、Matthew J. Gaunt
DOI:10.1039/d2sc03516b
日期:——
Here, we present a remarkably mild and general initiation protocol for alkyl-radical generation from non-activated alkyl-iodides. An interaction between a silane and an alkyl iodide is excited by irradiation with visible light to trigger carbon–iodide bond homolysis and form the alkyl radical. We show how this method can be developed into an operationally simple and general Giese addition reaction
Site-specific chemoenzymatic protein modifications
申请人:Novartis AG
公开号:US10975120B2
公开(公告)日:2021-04-13
The present invention relates to methods and reagents for use in site-selective modification of proteins having lysine residues with functionalized peptides using a chemoenzymatic microbial transglutaminase-mediated reaction. The functionalized proteins may be used for study or therapeutic uses.