109899-85-6Relevant academic research and scientific papers
Design, synthesis and biological evaluation of 2-Phenyl-4H-chromen-4-one derivatives as polyfunctional compounds against Alzheimer’s disease
Singh, Manjinder,Kaur, Maninder,Vyas, Bhawna,Silakari, Om
, p. 520 - 530 (2017/10/09)
Polyfunctional compounds comprise a novel class of therapeutic agents for the treatment of multi-factorial diseases. A series of 2-Phenyl-4H-chromen-4-one and its derivatives (5a–n) were designed, synthesized, and evaluated for their poly-functionality against acetylcholinestrase (AChE) and advanced glycation end products (AGEs) formation inhibitors against Alzheimer’s disease (AD). The screening results showed that most of them exhibited a significant ability to inhibit AChE AGEs formation with additional radical scavenging activity. Especially, 5m, 5b, and 5j displayed the greatest ability to inhibit AChE (IC50 = 8.0, 8.2, and 11.8 nM, respectively) and AGEs formation (IC50 = 55, 79, and 54 μM, respectively) with good antioxidant activity. Molecular docking studies explored the detailed interaction pattern with active, peripheral, and mid-gorge sites of AChE. These compounds, exhibiting such multiple pharmacological activities, can be further taken a lead for the development of potent drugs for the treatment of Alzheimer’s disease.
Pharmacophore and docking-based hierarchical virtual screening for the designing of aldose reductase inhibitors: Synthesis and biological evaluation
Vyas, Bhawna,Singh, Manjinder,Kaur, Maninder,Silakari, Om,Bahia, Malkeet Singh,Singh, Baldev
, p. 609 - 626 (2016/03/08)
A set of 54 studied flavonoid inhibitors of aldose reductase (ALR2) enzyme has been utilized for pharmacophore modeling and 3D-QSAR analysis using "PHASE" program of Schr?dinger software. The generated pharmacophore model (AADRR.1109) was challenged to screen "PHASE" database to identify new ALR2 inhibitors. The retrieved hits were employed for docking analysis and pharmacokinetic parameter calculation to obtain orally active molecules. To predict the activity of final retrieved hits, 3D-QSAR model was developed, and the best model was selected on the basis of various statistical parameters (Rtrain 2 0.719; Q test 2 0.647 and SD 0.663). Totally five screened molecules which showed better enhanced predicted activity were synthesized and evaluated for in vitro ALR2 inhibitory activity. All tested molecules showed ALR2 inhibitory activity (IC50) below 40 μM. Additionally, the free radical scavenging potential of synthesized molecules was also determined which played a useful role to control the progression of diabetic complications. All molecules showed good antioxidant potential, thus the designed molecules, in future, could be explored to ameliorate the development of diabetic complications.
Structure activity relationship studies of some potent antifungal flavones, 4-thioflavones and 4-iminoflavones
Hasan, Aurangzeb,Mughal,Sadiq
scheme or table, p. 4361 - 4364 (2012/09/07)
A series of flavones, carrying halogens, methoxy and nitro groups at various positions were synthesized by the Baker-Venkataraman rearrangement and were subsequently converted to 4-thioflavones and 4-iminoflavones. The synthesized compounds were evaluated for their in vitro antifungal activity against Trichophyton longifusus, Candida albicans, Aspergillus flavus, Microsporum canis, Fusarium solani and Candida glabrata. All synthesized compounds showed significant activity against T. longusus, A. flavus, M. canis and F. Solani but inactive against C. albicans and C. glabrata, respectively. 2-phenyl-4H-1-benzopyran-4-thiones were relatively more active than flavones and 4-iminoflavones. However, some compounds were even more active than standard miconazol and amphotericin B drugs.
Efficient synthesis of nitroflavones by cyclodehydrogenation of 2prime;-hydroxychalcones and by the Baker-Venkataraman method
Barros, Ana I. R. N. A.,Silva, Artur M. S.
, p. 1505 - 1528 (2007/10/03)
Several nitroflavone derivatives were synthesized by cyclodehydrogenation of 2′-hydroxychalcones and by the Baker-Venkataraman approach, starting from 2′-hydroxyacetophenones and benzoic acid derivatives. Nitroflavones synthesised by the first synthetic a
Synthesis and antibacterial activity of substituted flavones, 4-thioflavones and 4-iminoflavones
Ullah Mughal, Ehsan,Ayaz, Muhammad,Hussain, Zakir,Hasan, Aurangzeb,Sadiq, Amina,Riaz, Muhammad,Malik, Abdul,Hussain, Samreen,Choudhary, M. Iqbal
, p. 4704 - 4711 (2007/10/03)
Synthesis of flavones, 4-thioflavones and 4-iminoflavones was carried out with the substitution of variable halogens, methyl, methoxy and nitro groups in the A, B and AB rings of the respective compounds and we also report here their antibacterial activity. Most of the synthesized compounds were found to be active against Escherichia coli, Bacillus subtilis, Shigella flexnari, Salmonella aureus, Salmonella typhi and Pseudomonas aeruginosa. Activity of 4-thioflavones and 4-iminoflavones was found to be higher than that of their corresponding flavone analogues. Investigated compounds having substituents like F, OMe and NO2 at 4′-position in ring-B exhibited enhanced activity and the presence of electronegative groups in the studied compounds showed a direct relationship to the antibacterial activity.
Synthesis of halogenated/nitrated flavone derivatives and evaluation of their affinity for the central benzodiazepine receptor
Marder, Mariel,Zinczuk, Juan,Colombo, Maria I.,Wasowski, Cristina,Viola, Haydee,Wolfman, Claudia,Medina, Jorge H.,Ruveda, Edmundo A.,Paladini, Alejandro C.
, p. 2003 - 2008 (2007/10/03)
A series of halogenated/nitrated flavone compounds were synthesized. Some of the products were found to be potent central benzodiazepine receptor (BDZ-R) ligands. The structure-activity relationships (SAR) analysis of the new synthetic compounds, together with that of others already described, indicates that substitutions at position 6 or 6 and 3' in the flavone nucleus are the only ones that give rise to high affinity BDZ-R ligands.
Synthesis and Biochemical Evaluation of a Series of Aminoflavones as Potential Inhibitors of Protein-Tyrosine Kinases p56lek, EGFr, and p60v-src
Cushman, Mark,Zhu, Helen,Geahlen, Robert L.,Kraker, Alan J.
, p. 3353 - 3362 (2007/10/02)
A series of nitroflavones, 8a-p, and their corresponding aminoflavone hydrochloride salts, 10a-p, was synthesized.The preparation of nitroflavones 8b-i,o,p began with commercially available o-hydroxyacetophenones 2b-f which were converted to o-hydroxynitroacetophenones 3a-h via a variety of nitration methods, followed by condensation with nitrobenzyl chlorides and cyclization under acidic condition.The nitroflavones 8a,j-n were prepared by nitration of the corresponding flavones 7a-e.These new compounds were evaluated for their abilities to inhibit the in vitro protein-tyrosine kinase activities of p56lek, EGFr, and p60v-src, and all of the active compounds were amino-substituted flavones.None of the nitroflavones inhibited the enzymes.The most active substance in this series against p56lek was compound 10j, which had an IC50 of 18 μM.When tested versus EGFr, compounds 10a,m displayed IC50's of 8.7 and 7.8 μM, respectively.Against p60v-src, 10a,m showed IC50 values of 28.8 and 38.4 μM, respectively.
Reactions of Carbonyl Compounds in Basic Solutions. Part 11. The Baker-Venkataraman Rearrangement
Bowden, Keith,Chehel-Amiran, Mohsen
, p. 2039 - 2044 (2007/10/02)
The detailed mechanism of the Baker-Venkataraman rearrangement has been studied.The kinetics of the rearrangement of a series of 2-acetylphenyl 3- or 4-substituted benzoates and acetylnaphthyl benzoates catalysed by a basic 'non-nucleophilic' buffer in dimethyl sulphoxide have been measured.Studies of substituent effects, kinetic isotope effects, and acidity function correlations indicate a pathway involving pre-equilibrium formation of the carbanion, followed by rate-determining intramolecular nucleophilic attack.The methanolysis of the 2-acetylphenyl benzoates catalysed by methoxide in methanolic dimethyl sulphoxide has been similary investigated.In this case the pathway appears to involve neighbouring group participation by the ketonic carbonyl group.
