252985-50-5Relevant academic research and scientific papers
METHOD OF INHIBITING APOLIPOPROTEIN-E EXPRESSION WHILE INCREASING EXPRESSION OF AT LEAST ONE OF LDL-RECEPTOR PROTEIN OR ABCA1 PROTEIN COMPRISING ADMINISTERING A SMALL COMPOUND
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Paragraph 0057; 0058, (2018/04/19)
This invention offers an effective method of decreasing expression of apolipoprotein E and increasing expression of at least one of either LDL-receptor protein or AbcA1 protein including selecting mammalian cells expressing apoE and at least one of either LDL-receptor protein or AbcA1 protein, contacting the mammalian cell with an effective amount of a compound having general formula (I) or general formula (II) in an amount sufficient to decrease expression of the apoE and increase expression of at least one of the LDL-receptor protein or the AbcA1 protein in the mammalian cell.
Iron-catalyzed synthesis of arylsulfinates through radical coupling reaction
Zhang, Weixi,Luo, Meiming
supporting information, p. 2980 - 2983 (2016/02/19)
A novel strategy for installation of a sulfonyl fragment into arenes has been accomplished via an iron-catalyzed radical coupling reaction. Arene radicals derived from diaryliodoniums via single electron transfer reaction combine with sulfoxylate anion radicals readily generated from commercially available rongalite (HOCH2SO2Na·2H2O) to afford arylsulfinates efficiently at room temperature. In this protocol, a broad range of functional groups are tolerated to give products in good yields.
PROCESS FOR MAKING SUBSTITUTED ARYL SULFONAMIDES USING AN INDIUM BASED CATALYST SYSTEM
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Page 8, (2008/06/13)
A process for making substituted aryl sulfonamides by sulfamoylation of an activated aromatic compound using an indium compound as a catalyst.
Catalytic arylation of sulfamoyl chlorides: A practical synthesis of sulfonamides
Frost, Christopher G.,Hartley, Joseph P.,Griffin, David
, p. 1928 - 1930 (2007/10/03)
Commercially available indium(III) triflate is shown to be an efficient catalyst for the sulfamoylation of aromatics.
