89144-76-3Relevant academic research and scientific papers
Amine-functionalized nano-NaY zeolite for the synthesis of N-acetyl pyrazoles and dihydropyrimidines
Razavian Mofrad, Raheleh,Kabirifard, Hassan,Tajbakhsh, Mahmood,Firouzzadeh Pasha, Ghasem
, (2021/08/23)
An efficient base-catalyzed synthesis of dihydropyrimidines and N-acetyl pyrazoles is reported using 1-(2-aminoethyl)piperazine-modified nano-NaY zeolite (ZeSi–AP) under mild and green conditions. The structure of the catalyst was identified by using FT-IR, XRD, TGA, DTA, DLS, SEM, TEM, and elemental analyses. This heterogeneous catalyst has many benefits, such as a simple work-up procedure, high product yield, and it is easily regenerated and reused at least for four cycles without losing its activity.
SAR studies of differently functionalized chalcones based hydrazones and their cyclized derivatives as inhibitors of mammalian cathepsin B and cathepsin H
Raghav, Neera,Singh, Mamta
supporting information, p. 4233 - 4245 (2014/08/18)
Cathepsins have emerged as potential drug targets for melanoma therapy and engrossed attention of researchers for development and evaluation of cysteine cathepsin inhibitors as cancer therapeutics. In this direction, we have designed, synthesized, and ass
Solvent-free synthesis of some1-acetyl pyrazoles
Thirunarayanan, Ganesamoorthy,Sekar, Krishnamoorthy Guna
, p. 599 - 605 (2013/11/06)
Some N-acetyl pyrazoles including 1-(3-(3,4-dichlorophenyl)-5-(substituted phenyl)-4,5-dihydro-1H-pyrazole-1-yl) ethanones have been synthesised by solvent free cyclization cum acetylation of chalcones like substituted styryl 3,4-dichlorophenyl
TBD-organocatalysed synthesis of pyrazolines
Mahe, Olivier,Frath, Denis,Dez, Isabelle,Marsais, Francis,Levacher, Vincent,Briere, Jean-Franois
supporting information; experimental part, p. 3648 - 3651 (2009/10/23)
It was found that TBD, a cheap and commercially available guanidine, easily catalysed the synthesis of biologically important 3,5-diarylpyrazolines from chalcones and acylhydrazines via a selective secondary amine alkylation.
Synthesis and in vitro selective anti-Helicobacter pylori activity of pyrazoline derivatives
Chimenti,Bizzarri,Manna,Bolasco,Secci,Chimenti,Granese,Rivanera,Lilli,Scaltrito,Brenciaglia
, p. 603 - 607 (2007/10/03)
In order to develop new anti-Helicobacter pylori agents, a series of N1-substituted 3,5-diphenyl pyrazolines P1-P13 was prepared and evaluated for their antibacterial activity. All synthesized compounds showed little or no activity against different species of Gram-positive and Gram-negative bacteria of clinical relevance and against various strains of pathogenic fungi. The same derivatives exhibited a significant degree of activity against a range of H. pylori strains, including those resistant to the reference compound metronidazole. Among the prepared compounds those with an N1-acetyl group and a 4-methoxy substituent in the 5-phenyl ring showed the best activity against H. pylori metronidazole resistant strains in the 1-4 μg/mL MIC range.
Inhibition of amine oxidases activity by 1-acetyl-3,5-diphenyl-4,5-dihydro-(1H)-pyrazole derivatives
Manna, Fedele,Chimenti, Franco,Bolasco, Adriana,Secci, Daniela,Bizzarri, Bruna,Befani, Olivia,Turini, Paola,Mondov, Bruno,Alcaro, Stefano,Tafi, Andrea
, p. 3629 - 3633 (2007/10/03)
A novel series of 1-acetyl-3,5-diphenyl-4,5-dihydro-(1H)-pyrazole derivatives have been synthesised and investigated for the ability to inhibit selectively monoamine oxidases, swine kidney oxidase, and bovine serum amine oxidase. The newly synthesised compounds 1-6 proved to be reversible and non-competitive inhibitors of all types of the assayed amine oxidases. Compounds inhibit monoamine oxidases potently, displaying low I50 values of particular interest. In particular 1-acetyl-3-(2,4-dihydroxyphenyl)-5-(3-methylphenyl)-4,5-dihydro-(1H)-pyrazole 6 showed to be a potent monoamine oxidase inhibitor with a Ki of about 10-8 M. Further insights in the theoretical evaluation of the possible interactions between the compounds and monoamine oxidase B have been developed through a computational approach.
Heterocycles. 3. Synthesis and Spectral Data of Some 2-Pyrazolines
El-Rayyes, Nizar R.,Hovakeemian, George H.,Hmoud, Hayat S.
, p. 225 - 229 (2007/10/02)
The reaction of 1,3-diaryl-2-propen-1-ones (Ia-o) with hydrazine and methyl- and phenylhydrazine produced different substituted 2-pyrazolines (III).The structures of these products were evident from their chemical and spectroscopic analysis.
