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trans-1-(2-aminophenyl)-3-(4-fluorophenyl)-prop-2-en-1-one is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

156492-25-0

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156492-25-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 156492-25-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,5,6,4,9 and 2 respectively; the second part has 2 digits, 2 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 156492-25:
(8*1)+(7*5)+(6*6)+(5*4)+(4*9)+(3*2)+(2*2)+(1*5)=150
150 % 10 = 0
So 156492-25-0 is a valid CAS Registry Number.

156492-25-0Relevant academic research and scientific papers

Synthesis of [1,4]Thiazino[4,3- a]indol-10-one Derivatives through Radical Anti Aza-Michael Addition of 2′-Aminochalcones

Zhang, Pingshun,Yang, Linjie,Chen, Wanzhi,Liu, Miaochang,Wu, Huayue

supporting information, p. 6094 - 6098 (2021/08/01)

An efficient method for the synthesis of [1,4]thiazino[4,3-a]indole derivatives using sodium chlorodifluoroacetate (ClCF2CO2Na) and elemental sulfur as the difluoromethylthiolating reagent system has been developed. Three-component reactions of 2′-aminochalcones, sulfur, and ClCF2CO2Na under basic conditions using TEMPO as the oxidant afforded [1,4]thiazino[4,3-a]indol-10-ones containing a difluoromethyl thioether moiety in good yields. Four bonds including one C-N, two C-S, and one C-C bonds are selectively formed in the sequential transformation process.

Synthesis of 2-(1h-indol-2-yl)acetamides via br?nsted acid-assisted cyclization cascade

Aksenov, Alexander V.,Aksenov, Dmitrii A.,Aksenov, Nicolai A.,Griaznov, Georgii D.,Prityko, Lidiya A.,Rubin, Michael,Skomorokhov, Anton A.

, p. 12128 - 12146 (2020/11/10)

An efficient and straightforward Br?nsted-acid mediated cascade process was developed, involving cyclization of readily available β-ketonitriles into 2-aminofurans, and their subsequent recyclization into 2-(1H-indol-2-yl)acetamides is developed. This synthetic route opens a new avenue for an expeditious assembly of various isotryptamine derivatives for medicinal chemistry.

Pd-Catalyzed Decarboxylative Cyclization of Trifluoromethyl Vinyl Benzoxazinanones with Sulfur Ylides: Access to Trifluoromethyl Dihydroquinolines

Punna, Nagender,Harada, Kyosuke,Zhou, Jun,Shibata, Norio

supporting information, p. 1515 - 1520 (2019/03/07)

An unprecedented Pd-catalyzed decarboxylative cyclization of 4-trifluoromethyl-4-vinyl benzoxazinanones (4) with sulfur ylides (2) is reported. While the reactions of 4-vinyl/4-CF3 benzoxazinanones (1a/1c) with 2 furnished the 3-vinyl/3-CF3 indolines (3a/3c), via an attack on the C1 carbon of the π-allyl/benzyl zwitterionic intermediates, 4 was converted into 4-trifluoromethyl-dihydroquinolines (5) in good yields via an attack on the C3 carbon of the π-allyl intermediate. The corresponding methyl-substituted analogues afford different products via an attack on the C2 carbon.

Antiproliferative and pro-apoptotic activities of 2′- and 4′-aminochalcones against tumor canine cells

Santos, Mariana B.,Pinhanelli, Vitor C.,Garcia, Mayara A.R.,Silva, Gabriel,Baek, Seung J.,Fran?a, Suzelei C.,Fachin, Ana L.,Marins, Mozart,Regasini, Luis O.

, p. 884 - 889 (2017/07/24)

In the present study, a series of 2′- and 4′-aminochalcones were synthesized and their antiproliferative activity against a canine malignant histiocytic cell line (DH82) was evaluated. Particularly aminochalcones with a hydrophobic substituent on ring B proved to be potent antiproliferative agents. Among these compounds, aminochalcones 3, 4 and 11 inhibited the growth of DH82 cells, with IC50 values of 34.4, 31.4 and 38.2 μM, respectively, and were three times more potent than etoposide (IC50 = 95.5 μM). The selected chalcones induced death through apoptosis rather than necrosis in DH82 and non-tumorigenic Madin-Darby canine kidney cells (MDCK). Further experiments suggested that the aminochalcones interfere with the regulation of oncogenes/tumor suppressor genes. Aminochalcone 11 inhibited transcription of the TOPOIIα and TP53 genes and aminochalcone 4 down-regulated Sp1 protein expression in a concentration-dependent manner.

Nazarov cyclization of 1,4-pentadien-3-ols: Preparation of cyclopenta[b]indoles and spiro[indene-1,4′-quinoline]s

Wang, Zhiming,Xu, Xingzhu,Gu, Zhanshou,Feng, Wei,Qian, Houjun,Li, Zhengyi,Sun, Xiaoqiang,Kwon, Ohyun

supporting information, p. 2811 - 2814 (2016/02/18)

The first Lewis acid-catalyzed intramolecular interrupted Nazarov cyclization of 1,4-pentadien-3-ols is described. Using FeBr3 as the catalyst, a series of new substituted cyclopenta[b]indoles was prepared - through a sequence of Nazarov cyclization, nucleophilic amination, and isomerization - with good yields and high diastereo- and regioselectivities. A similar catalytic process was also developed for the synthesis of structurally interesting spiro[indene-1,4′-quinoline]s.

Synthesis of 3-Substituted 2,1-Benzisoxazoles by the Oxidative Cyclization of 2-Aminoacylbenzenes with Oxone

Chiarini, Marco,Del Vecchio, Luana,Marinelli, Fabio,Rossi, Leucio,Arcadi, Antonio

, p. 3017 - 3030 (2016/10/12)

An efficient approach to the synthesis of 2,1-benzisoxazoles through direct construction of the N-O bond by the chemoselective oxidation of 2-aminoacylbenzenes with Oxone is described. This alternative methodology is characterized by its simple and transition-metal-free conditions and good functional group compatibility utilizing Oxone as a green oxidant instead of hypervalent iodine compounds. Moreover, this new procedure simplifies the number of steps compared to the previously reported procedure by circumventing the use of 2-azido-substituted aryl ketones.

Azaisoflavones: Synthesis, antimicrobial evaluation and binding affinity with DNA gyrase

Praveen,Parthasarathy,Kumar, P. Senthil,Perumal

, p. 373 - 382 (2015/03/31)

Antimicrobial potency of azaisoflavones has been evaluated in vitro against nine bacterial and two fungal strains, respectively. The requisite azaisoflavones are conveniently synthesized in three steps, with the key step being the super acid catalyzed tandem reaction. The biological results reveal that out of twelve compounds screened, 3 compounds (5a, 5j and 5l) exhibited comparable activities against the standard drugs and demonstrated activities at μM concentration. In addition, molecular docking revealed that compound 5a as the most potent by showing a least binding energy of -5.99 kcal/mol with DNA gyrase receptor compared to other compounds.

Synthesis and biological evaluation of a new series of 4-alkoxy-2-arylquinoline derivatives as potential antituberculosis agents

Tosun, Gonca,Arslan, Tayfun,Iskefiyeli, Zeynep,Küük, Murat,Karaolu, engül Alpay,Yayli, Nurettin

, p. 850 - 866 (2015/08/06)

Three new series of 33 quinolone compounds, 2-(2-, 3-, and 4-fluorophenyl)-4-O-alkyl(C5-15)quinolines (7a-k, 8a-k, and 9a-k), were synthesized from 2-(2-, 3-, and 4-fluorophenyl)-2,3-dihydroquinolin-4(1H )-one (4, 5, and 6) by the reaction of a

Process Intensification with Bifunctional Heterogeneous Catalysts: Selective One-Pot Synthesis of 2′-Aminochalcones

Climent,Corma,Iborra,Martí

, p. 157 - 166 (2015/04/27)

(Chemical Equation Presented) 2′-Aminochalcones of pharmaceutical and commercial interest have been obtained in high yields and selectivities through a one-pot process using a bifunctional heterogeneous catalyst bearing base and metal active sites. This is a physical mixture material formed by a high-surface-area MgO and Pt on TiO2. The process involves as the first step the Claisen-Schmidt condensation between o-nitroacetophenone and benzaldehyde derivatives on the basic catalytic function. This is followed by a chemoselective hydrogenation of the nitro group in the presence of the carbonyl and double-bond carbon-carbon groups within the molecule. Using the bifunctional catalyst and the reaction system proposed here, it is possible to produce, under mild reaction conditions and short reaction times, 2′-aminochalcones with higher yields and selectivities than those obtained by conventional multistep methods.

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