39974-01-1Relevant academic research and scientific papers
Synthesis and biological evaluation of novel isoxazole-piperazine hybrids as potential anti-cancer agents with inhibitory effect on liver cancer stem cells
?bi?, Kübra,Nalbat, Esra,?al??kan, Burcu,Kahraman, Deniz Cansen,Cetin-Atalay, Rengul,Banoglu, Erden
, (2021)
In our effort for the development of novel anticancer therapeutics, a series of isoxazole-piperazine analogues were prepared, and primarily screened for their antiproliferative potential against hepatocellular carcinoma (HCC; Huh7/Mahlavu) and breast (MCF-7) cancer cells. All compounds demonstrated potent to moderate cytotoxicity on all cell lines with IC50 values in the range of 0.09–11.7 μM. Further biological studies with 6a and 13d in HCC cells have shown that both compounds induced G1 or G2/M arrests resulting in apoptotic cell death. Subsequent analysis of proteins involved in cell cycle progression as well as proliferation of HCC cells revealed that 6a and 13d may affect cellular survival pathways differently depending on the mutation profiles of cells (p53 and PTEN), epidermal/mesenchymal characteristics, and activation of cell mechanisms through p53 dependent/independent pathways. Lastly, we have demonstrated the potential anti-stemness properties of these compounds in which the proportion of liver CSCs in Huh7 cells (CD133+/EpCAM+) were significantly reduced by 6a and 13d. Furthermore, both compounds caused a significant reduction in expression of stemness markers, NANOG or OCT4 proteins, in Mahlavu and Huh7 cells, as well as resulted in a decreased sphere formation capacity in Huh7 cells. Together, these novel isoxazole-piperazine derivatives may possess potential as leads for development of effective anti-cancer drugs against HCC cells with stem cell-like properties.
Lewis acid-promoted synthesis of highly substituted pyrrole-fused benzoxazinones and quinoxalinones
Selvendran, Suresh,Rajendran, Saravanakumar
supporting information, p. 437 - 445 (2020/10/22)
A synthesis of a series of novel fused tricyclic heterocyclic compounds has been achieved in one-pot reaction set up starting from (E)-3-(2-oxo-2-phenylethylidene)indolin-2-one and 1,4-benzoxazinone/quinoxalinone derivatives promoted by tin(IV) chloride.
Discovery of 1,5-Diphenylpyrazole-3-Carboxamide Derivatives as Potent, Reversible, and Selective Monoacylglycerol Lipase (MAGL) Inhibitors
Aghazadeh Tabrizi, Mojgan,Baraldi, Pier Giovanni,Baraldi, Stefania,Ruggiero, Emanuela,De Stefano, Lucia,Rizzolio, Flavio,Di Cesare Mannelli, Lorenzo,Ghelardini, Carla,Chicca, Andrea,Lapillo, Margherita,Gertsch, Jürg,Manera, Clementina,Macchia, Marco,Martinelli, Adriano,Granchi, Carlotta,Minutolo, Filippo,Tuccinardi, Tiziano
, p. 1340 - 1354 (2018/02/17)
Monoacylglycerol lipase (MAGL) is a serine hydrolase that plays an important role in the degradation of the endocannabinoid neurotransmitter 2-arachidonoylglycerol, which is implicated in many physiological processes. Beyond the possible utilization of MA
Synthesis and cellular bioactivities of novel isoxazole derivatives incorporating an arylpiperazine moiety as anticancer agents
?al??kan, Burcu,?bi?, Kübra,Banoglu, Erden,Sinoplu, Esra,Akhan Güzelcan, Ece,?etin Atalay, Rengül
, p. 1352 - 1361 (2018/11/21)
In our endeavour towards the development of effective anticancer therapeutics, a novel series of isoxazole-piperazine hybrids were synthesized and evaluated for their cytotoxic activities against human liver (Huh7 and Mahlavu) and breast (MCF-7) cancer ce
Design and synthesis of hybrids of diarylpyrimidines and diketo acids as HIV-1 inhibitors
Xue, Ping,Lu, Huan-Huan,Zhu, Yuan-Yuan,Ju, Xiu-Lian,Pannecouque, Christophe,Zheng, Xiao-Jiao,Liu, Gen-Yan,Zhang, Xiu-Lan,Gu, Shuang-Xi
supporting information, p. 1640 - 1643 (2017/04/03)
Based on the strategy of molecular hybridization, diketo acid fragment as a classical phamacophore of integrase inhibitors was introduced to reverse transcriptase inhibitors diarylpyrimidines to design a series of diarylpyrimidine-diketo acid hybrids (DAPY-DKAs). The target molecules 10b and 11b showed inhibitory activities against WT HIV-1 with EC50 values of 0.18?μM and 0.14?μM, respectively. And the results of molecular docking demonstrated the potential binding mode and revealed that the DKA moiety and its ester could both be tolerated in the nonnucleoside binding site (NNBS) of HIV-1 RT.
Diphenylpyrazoles as replication protein A inhibitors
Waterson, Alex G.,Kennedy, J. Phillip,Patrone, James D.,Pelz, Nicholas F.,Feldkamp, Michael D.,Frank, Andreas O.,Vangamudi, Bhavatarini,Souza-Fagundes, Elaine M.,Rossanese, Olivia W.,Chazin, Walter J.,Fesik, Stephen W.
supporting information, p. 140 - 145 (2015/03/04)
Replication Protein A is the primary eukaryotic ssDNA binding protein that has a central role in initiating the cellular response to DNA damage. RPA recruits multiple proteins to sites of DNA damage via the N-terminal domain of the 70 kDa subunit (RPA70N). Here we describe the optimization of a diphenylpyrazole carboxylic acid series of inhibitors of these RPA-protein interactions. We evaluated substituents on the aromatic rings as well as the type and geometry of the linkers used to combine fragments, ultimately leading to submicromolar inhibitors of RPA70N protein-protein interactions.
Pyrazole derivatives
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Page/Page column 25, (2010/02/07)
A compound of the formula (I): wherein R1 is hydrogen or lower alkyl; R2 is lower alkyl, etc.; R3 is lower alkoxy, etc.; R4 is hydroxy, etc.; X is O, S, etc.; Y is CH or N; Z is lower alkylene or lower alkenylene; and m is 0 or 1; or salts thereof, which are useful as a medicament.
