Polycarbonates, polyester carbonates and polyesters having lateral, cycloalkyl-substituted phenols
申请人:——
公开号:US20040158025A1
公开(公告)日:2004-08-12
A process of using of a particularly substituted phenol as a chain terminator of a polymeric resin is disclosed. The chain terminator is a member selected from among ortho-substituted phenol, metha-substituted phenol, and their corresponding coupled esters. The polymeric resin is selected among polycarbonate, polyester carbonate and polyester. The thus chain terminated resin is suitable for producing molded parts and extrudates. Also disclosed are the process for producing these polymers and processes for producing the molded parts and extrudates.
POLYCARBONATE, POLYESTERCARBONATE UND POLYESTER MIT LATERAL-STÄNDIGEN CYCLOALKYL-SUBSTITUIERTEN PHENOLEN
申请人:Bayer MaterialScience AG
公开号:EP1556434B1
公开(公告)日:2007-10-17
MODULATORS OF FARNESOID X RECEPTOR AND METHODS FOR THE USE THEREOF
申请人:XIAMEN UNIVERSITY
公开号:US20180116993A1
公开(公告)日:2018-05-03
Compounds, compositions and methods are provided for treating the FXR-mediated disease or process in a mammal, comprising administering to the mammal a therapeutically effective amount of a compound claimed, wherein the FXR-mediated disease or condition linked to chronic liver diseases such as nonalcoholic fatty liver disease and nonalcoholic steatohepatitis; gastrointestinal diseases; cardiovascular diseases; metabolic diseases such as diabetes and obesity; inflammation, or cancer etc.
US6916899B2
申请人:——
公开号:US6916899B2
公开(公告)日:2005-07-12
Inhibition of estrone sulfatase (ES) by alkyl and cycloalkyl ester derivatives of 4-[(aminosulfonyl)oxy] benzoic acid
作者:Chirag K. Patel、Caroline P. Owen、Sabbir Ahmed
DOI:10.1016/j.bmcl.2003.11.067
日期:2004.2
In our search for potent inhibitors of the enzyme estrone sulfatase (ES), we have undertaken the synthesis and biochemical evaluation of a range of esters of 4-[(aminosulfonyl)oxy] benzoic acid. The results of the study show that the synthesised compounds possess potent inhibitory activity, indeed the cyclooctyl derivative was found to be more potent than 667-COUMATE, which is currently undergoing