PYRAZOLO[1,5-a]PYRIMIDINE DERIVATIVES AS mTOR INHIBITORS
申请人:Deng Yongqi
公开号:US20120114739A1
公开(公告)日:2012-05-10
The present invention provides methods for inhibiting mTOR using pyrazolo[1,5-a]pyrimidine compounds and methods of treatment, prevention, inhibition, or amelioration of one or more diseases associated with mTOR using such compounds.
Pyrazolo[1,5-a]pyrimidine derivatives as mTOR inhibitors
申请人:Deng Yongqi
公开号:US08591943B2
公开(公告)日:2013-11-26
The present invention provides methods for inhibiting mTOR using pyrazolo[1,5-a]pyrimidine compounds and methods of treatment, prevention, inhibition, or amelioration of one or more diseases associated with mTOR using such compounds.
PYRAZOLE CARBOXAMIDE COMPOUNDS, COMPOSITIONS AND METHODS OF USE
申请人:Genentech, Inc.
公开号:US20150158851A1
公开(公告)日:2015-06-11
Provided herein are compounds of formula (AA):
stereoisomers or a pharmaceutically acceptable salt thereof, wherein A, R
a
, p, R
5
and R
6
are defined herein, compositions including the compounds and methods of manufacturing and using the compounds for the treatment of diseases.
Overcoming Limitations in Decarboxylative Arylation via Ag–Ni Electrocatalysis
作者:Maximilian D. Palkowitz、Gabriele Laudadio、Simon Kolb、Jin Choi、Martins S. Oderinde、Tamara El-Hayek Ewing、Philippe N. Bolduc、TeYu Chen、Hao Zhang、Peter T. W. Cheng、Benxiang Zhang、Michael D. Mandler、Vanna D. Blasczak、Jeremy M. Richter、Michael R. Collins、Ryan L. Schioldager、Martin Bravo、T. G. Murali Dhar、Benjamin Vokits、Yeheng Zhu、Pierre-Georges Echeverria、Michael A. Poss、Scott A. Shaw、Sebastian Clementson、Nadia Nasser Petersen、Pavel K. Mykhailiuk、Phil S. Baran
DOI:10.1021/jacs.2c08006
日期:2022.9.28
protocol for achieving decarboxylative cross-coupling (DCC) of redox-active esters (RAE, isolated or generated in situ) and halo(hetero)arenes is reported. This pragmatically focused study employs a unique Ag–Ni electrocatalytic platform to overcome numerous limitations that have plagued this strategically powerful transformation. In its optimized form, coupling partners can be combined in a surprisingly
Deoxygenative Transformation of Alcohols via Phosphoranyl Radical from Exogenous Radical Addition
作者:Wenhao Xu、Chao Fan、Xile Hu、Tao XU
DOI:10.1002/anie.202401575
日期:2024.4.22
A general approach to the direct deoxygenative transformation of primary, secondary, and tertiary alcohols has been developed. It proceeds through phosphoranyl radical intermediates generated by the addition of exogenous iodine radical to trivalent alkoxylphosphanes. Since these alkoxylphosphanes are readily in situ obtained from alcohols and commercially available, inexpensive chlorodiphenylphosphine