104510-03-4Relevant academic research and scientific papers
The selective condensation of pyrazolones to isatins in aqueous medium
Zhang, Yong,Nie, Long-Jun,Luo, Liang,Mao, Jia-Xin,Liu, Jin-Xiang,Xu, Guo-Hai,Chen, Deliang,Luo, Hai-Qing
supporting information, (2020/01/08)
The selective condensation of pyrazolones with isatins using water as the reaction medium is presented. This strategy provides an environmentally benign synthetic route to synthesize various potentially bioactive pyrazolone substituted oxindoles.
An easy direct arylation of 5-pyrazolones
Gong, Hao,Yang, Yiwen,Wang, Zechao,Kuang, Chunxiang
supporting information, p. 2033 - 2039 (2013/11/06)
A mild, efficient and catalytic ligand-free method for the direct arylation of 5-pyrazolones by Pd-catalyzed C-H bond activation is reported. The process smoothly proceeds and yields are moderate to excellent.
Room-temperature direct alkenylation of 5-pyrazolones
Yang, Yiwen,Gong, Hao,Kuang, Chunxiang
supporting information, p. 5276 - 5281 (2013/09/02)
A mild and efficient method for the direct alkenylation of 5-pyrazoles by Pd-catalyzed C-H bond activation is described. The reaction smoothly proceeds at room temperature to provide products in up to 92 % yield. Heterocycles containing the 5-pyrazolone moiety are synthesized by an oxidative Heck-type reaction. The direct alkenylation of 5-pyrazolones at room temperature through Pd-catalyzed C-H bond activation is described. Copyright
Pyrazolone methylamino piperidine derivatives as novel CCR3 antagonists
Pegurier, Cecile,Collart, Philippe,Danhaive, Pierre,Defays, Sabine,Gillard, Michel,Gilson, Frederic,Kogej, Thierry,Pasau, Patrick,Van Houtvin, Nathalie,Van Thuyne, Marc,van Keulen, BerendJan
, p. 4228 - 4231 (2008/02/09)
The discovery and optimization of a novel class of potent CCR3 antagonists is described. Details of synthesis and SAR are given together with some ADME properties of selected compounds. An optimal balance between activities, physicochemical properties, and in vitro metabolic stability was reached by the proper choice of substituents.
Quantitation and urinary pattern of 4,4' dihydroxyantipyrine, 4 hydroxy antipyrine and 3 hydroxymethyl antipyrine, as main metabolites of antipyrine in man and rat
Bottcher,Bassmann,Schuppel
, p. 168 - 175 (2007/10/02)
A t.l.c.-assay has been developed for the simultaneous determination from the urine of man and animals of three major hydroxylated metabolites of antipyrine (4,4'-dihydroxy-antipyrine, 4-hydroxy-antipyrine, 3-hydroxymethyl-antipyrine). The methodology is
