154866-93-0Relevant academic research and scientific papers
Synthesis, crystal structure, and biological evaluation of fused thiazolo[3,2-a]pyrimidines as new acetylcholinesterase inhibitors
Mahgoub, Mohamed Y.,Elmaghraby, Awatef M.,Harb, Abd-Elfttah A.,Ferreira Da Silva, Jo?o L.,Justino, Gon?alo C.,Matilde Marques
, (2019/07/10)
A new series of thiazolo[3,2-a]pyrimidine bromide salt derivatives 7a-d were synthesized from 3,4-dihydropyrimidinethione precursors. The target compounds were fully characterized by 1D- and 2D-NMR, high resolution ESI-MS/MS and single crystal X-ray diffraction analysis, which confirmed a regioselective 5H cyclization of the dihydropyrimidinethiones. All target compounds were evaluated in vitro as human acetylcholinesterase (hAChE) inhibitors via an Ellman-based colorimetric assay and showed good inhibition activities (better than 70% at 10 μM and IC50 values in the 1 μM range). Molecular docking simulations for all target products into hAChE were performed and confirmed strong binding to the enzyme. These results provide a promising and new starting point to improve acetylcholinesterase inhibitors and explore novel treatment options against Alzheimer's disease.
Dehydrosulfurative C-N Cross-Coupling and Concomitant Oxidative Dehydrogenation for One-Step Synthesis of 2-Aryl(alkyl)aminopyrimidines from 3,4-Dihydropyrimidin-1H-2-thiones
Phan, Nguyen Huu Trong,Kim, Hyeji,Shin, Hyunik,Lee, Hee-Seung,Sohn, Jeong-Hun
supporting information, p. 5154 - 5157 (2016/10/14)
A method for the synthesis of 2-aryl(alkyl)aminopyrimidines from readily available 3,4-dihydropyrimidin-1H-2-thiones (DHPMs) via dehydrosulfurative C-N cross-coupling and concomitant oxidative dehydrogenation under a Pd/Cu catalytic system is described. This reaction protocol provides unprecedented diversity of fully substituted 2-aryl(alkyl)aminopyrimidines in a single step from a wide range of DHPMs and amine coupling partners.
Synthesis of dihydropyrimidine α,μ3-diketobutanoic acid derivatives targeting HIV integrase
Sari, Ozkan,Roy, Vincent,Métifiot, Mathieu,Marchand, Christophe,Pommier, Yves,Bourg, Stéphane,Bonnet, Pascal,Schinazi, Raymond F.,Agrofoglio, Luigi A.
, p. 127 - 138 (2015/10/28)
The synthesis and antiviral evaluation of a series of dihydropyrimidinone and thiopyrimidine derivatives bearing aryl α,γ-diketobutanoic acid moiety are described using the Biginelli multicomponent reaction as key step. The most active among 20 synthesized novel compounds were 4c, 4d and 5b, which possess nanomolar HIV-1 integrase (IN) stand transfer (ST) inhibition activities. In order to understand their mode of interactions within the IN active site, we docked all the compounds into the previously reported X-ray crystal structure of IN. We observed that compounds 4c, 4d and 5b occupied an area close to the two catalytic Mg2+ ions surrounded by their chelating triad (E221, D128 and D185), DC16, Y212 and the β-diketo acid moiety of 4c, 4d and 5b chelating Mg2+. As those compounds lack anti-HIV activities in cell, their prodrugs were synthetized. The prodrug 4c′ exhibited an anti-HIV activity of 0.19 μM in primary human lymphocytes with some cytotoxicity. All together, these results indicate that the new analogs potentially interact within the catalytic site with highly conserved residues important for IN catalytic activity.
Synthesis of 2-substituted pyrimidines and benzoxazoles via a visible-light-driven organocatalytic aerobic oxidation: Enhancement of the reaction rate and selectivity by a base
Wang, Lin,Ma, Zhi-Gang,Wei, Xiao-Jing,Meng, Qing-Yuan,Yang, Deng-Tao,Du, Shao-Fu,Chen, Zi-Fei,Wu, Li-Zhu,Liu, Qiang
supporting information, p. 3752 - 3757 (2014/08/05)
An efficient visible-light-driven photocatalytic oxidation of various 2-substituted dihydropyrimidines and phenolic imines has been achieved using an organic photocatalyst eosin Y bis(tetrabutyl ammonium salt) (TBA-eosin Y) and inexpensive oxidant molecular oxygen. With the aid of a base, significantly enhanced photoinduced electron transfer from substrates dihydropyrimidines or phenolic imines to the excited state of TBA-eosin Y has enabled the aerobic oxidation to yield 2-(methylthio)pyrimidines or 2-arylbenzoxazoles selectively. This journal is the Partner Organisations 2014.
Biological evaluation of halogenated thiazolo[3,2-a]pyrimidin-3-one carboxylic acid derivatives targeting the YycG histidine kinase
Zhao, Dan,Chen, Chen,Liu, Huayong,Zheng, Likang,Tong, Yao,Qu, Di,Han, Shiqing
supporting information, p. 500 - 507 (2015/01/09)
With an intention to potent inhibitors of YycG histidine kinase, a series of halogenated thiazolo[3,2-a]pyrimidin-3-one carboxylic acid derivatives were synthesized and evaluated for their antibacterial, antibiofilm and hemolytic activities. The majority of the compounds showed good activity against Staphylococcus epidermidis and Staphylococcus aureus, with MIC values of 1.56-6.25 μM, simultaneously presented promising antiobifilm activity against S. epidermidis ATCC35984 at 50 μM. The test of inhibitory activity on YycG kinase suggested the antibacterial activities of these derivatives are based on inhibiting the enzyme activity of the YycG HK domain. The hemolytic activity test suggested these compounds exhibited in vitro antibacterial activity at non-hemolytic concentrations.
Sulfonated carbon catalyzed Biginelli reaction for one-pot synthesis of 3,4-dihydropyrimidin-2(1H)-ones and -thiones
Moghaddas, Maryam,Davoodnia, Abolghasem,Heravi, Majid M.,Tavakoli-Hoseini, Niloofar
experimental part, p. 706 - 710 (2012/07/31)
A sulfonated carbon material was shown to be a highly efficient, eco-friendly, and recyclable solid acid catalyst for the Biginelli reaction of β-ketoester, aldehyde, and urea or thiourea under solvent-free conditions. It gave 3,4-dihydropyrimidin-2(1H)-ones and -thiones in good to excellent yields. This method has the advantages of a simple procedure with easy work-up, short reaction time, and high yields. The catalyst can be recycled after a simple work-up and was reused four times without substantial reduction in activity.
Thiazolidione derivatives as novel antibiofilm agents: Design, synthesis, biological evaluation, and structure-activity relationships
Pan, Bin,Huang, Renzheng,Zheng, Likang,Chen, Chen,Han, Shiqing,Qu, Di,Zhu, Mingli,Wei, Ping
scheme or table, p. 819 - 824 (2011/04/16)
Rational designed novel thiazolidiones were synthesized and evaluated for antibiofilm activity. The active derivatives were not only potent inhibitors of Staphylococcus epidermidis biofilm growth but also efficient antibacterial agents. 3f showed 4-fold higher activity (6.25 μM) in the biofilms dispersal assay and significantly higher antibacterial activity (MIC 3.125 μM) in comparison to the 3-(5-((6- (ethoxycarbonyl)-5-(benzo[1,3]dioxol-5-yl)-3-oxo-7- phenyl- thiazolo[3,2-a]pyrimidin-2(5H)-ylidene)methyl)furan-2-yl)benzoic acid (1).
Oxidative transformation of thiols to disulfides promoted by activated carbon-air system
Hayashi, Masahiko,Okunaga, Ken-Ichi,Nishida, Shunsuke,Kawamura, Kenjiro,Eda, Kazuo
supporting information; experimental part, p. 6734 - 6736 (2011/02/25)
Efficient oxidative transformation of thiols to disulfides took place in the presence of activated carbon under an oxygen (or air) atmosphere. The present oxidation method is available not only for a variety of thiols such as simple aromatic and aliphatic thiols but also for 3,4-dihydropyrimidin-2(1H)- thiones and N-Boc-l-cysteine.
Synthesis of 3,4-dihydropyrimidin-2-ones (DHPMs) using mesoporous aluminosilicate (AlKIT-5) catalyst with cage type pore structure
Shobha,Chari,Mano,Selvan,Mukkanti,Vinu
experimental part, p. 10608 - 10611 (2010/02/27)
Here we demonstrate on the synthesis of 3,4-dihydropyrimidin-2-ones (DHPMs) and their derivatives through a three-component condensation reactions of aldehyde, β-ketoester and urea or thiourea using mesoporous aluminosilicate (AlKIT-5) nanocage as catalyst and acetonitrile as solvent under reflux conditions. The catalyst was found to be highly active and selective, affording a high yield of DHPMs. Compared to the classical Biginelli reaction conditions, this new approach consistently has the advantage of excellent yields (80-96%) and short reaction times, 3.0-4.0 h. The effect of the acidity and the concentration of the catalyst on the above process was investigated. We also demonstrate the synthesis of various multifunctional Biginelli compounds using the highly active AlKIT-5 catalysts.
