Compounds Which Selectively Modulate The CB2 Receptor
申请人:BARTOLOZZI Alessandra
公开号:US20100076029A1
公开(公告)日:2010-03-25
Compounds of formula (I)
are disclosed. Compounds according to the invention bind to and are agonists, antagonists or inverse agonists of the CB2 receptor, and are useful for treating inflammation. Those compounds which are agonists are additionally useful for treating pain.
Mesoporous silica anchored Ru catalysts for highly enantioselective hydrogenation of β-ketoesters
作者:Banu Kesanli、Wenbin Lin
DOI:10.1039/b406697a
日期:——
Recyclable and reusable mesoporous silica anchored Ru catalysts based on 4,4â²-substituted BINAPs were synthesized and used for the hydrogenation of β-alkyl β-ketoesters with up to 98.6% e.e. and β-aryl β-ketoesters with up to 95.2% e.e.
Chiral porous metal phosphonates for heterogeneous asymmetric catalysis
申请人:——
公开号:US20040192543A1
公开(公告)日:2004-09-30
Chiral porous zirconium phosphonates containing metal complex moieties are provided, synthesized via a molecular building block approach, and characterized by a variety of techniques including TGA, adsorption isotherms, XRD, SEM, IR, and microanalysis. These hybrid solids may be used for enantioselective heterogeneous asymmetric hydrogenation of aromatic ketones with remarkably high e.e. values of up to 99.2%. Similarly prepared chiral porous solids may be used for asymmetric hydrogenation of &bgr;-keto esters with e.e.'s of up to 95%. The solid catalysts can also be easily recycled and reused multiple times without the loss of activity and enantioselectivity. Ready tunability of such a molecular building block approach allows the optimization of these hybrid materials to provide practically useful heterogeneous asymmetric catalysts.
Compounds which selectively modulate the CB2 receptor
申请人:Bartolozzi Alessandra
公开号:US08372874B2
公开(公告)日:2013-02-12
Compounds of formula (I)
are disclosed. Compounds according to the invention bind to and are agonists, antagonists or inverse agonists of the CB2 receptor, and are useful for treating inflammation. Those compounds which are agonists are additionally useful for treating pain.