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Search Results (11)

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Keywords = 1,5-diaryl pyrazole

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20 pages, 2363 KB  
Article
On the Question of the Application Potential and the Molecular Mechanism of the Formation of 1,3-Diaryl-5-Nitropyrazoles from Trichloromethylated Diarylnitropyrazolines
by Karolina Kula and Radomir Jasiński
Molecules 2025, 30(21), 4306; https://doi.org/10.3390/molecules30214306 - 5 Nov 2025
Cited by 3 | Viewed by 1353
Abstract
The molecular mechanism of the formation of 1,3-diaryl-5-nitropyrazoles via a CHCl3-elimination reaction was investigated using ωB97xD/6-31+G(d,p) (PCM) calculations. It was found that, regardless of the polarity of the reaction environment or the nature of the substituents on the phenyl rings of [...] Read more.
The molecular mechanism of the formation of 1,3-diaryl-5-nitropyrazoles via a CHCl3-elimination reaction was investigated using ωB97xD/6-31+G(d,p) (PCM) calculations. It was found that, regardless of the polarity of the reaction environment or the nature of the substituents on the phenyl rings of the starting molecules, the elimination process proceeds through a single-step mechanism characterized by an extremely asynchronous transition state. The ELF (Electron Localization Function) analysis of selected critical structures confirms the proposed mechanism and reveals a pronounced reorganization of electrons within the heterocyclic ring. The in silico analysis based on ADME (Activity, Distribution, Metabolism, and Excretion) and PASS (Prediction of Activity Spectra for Substances) predictions indicates that the title 1,3-diaryl-5-nitropyrazoles exhibit promising biological potential, showing inhibitory activity against both oxidoreductases and proteases. The most consistent targets include hyponitrite reductase, (R)-6-hydroxynicotine oxidase, acrocylindropepsin, saccharopepsin, and chymosin. Thus, the presented CHCl3-elimination provides an efficient and versatile route to functionalized pyrazoles, and, together with their promising bioactivity, confirms the utility of this approach for their synthesis. Full article
(This article belongs to the Special Issue Selectivity and Theoretical Studies of Cycloaddition Reactions)
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20 pages, 3692 KB  
Article
Dual Anti-Inflammatory and Anticancer Activity of Novel 1,5-Diaryl Pyrazole Derivatives: Molecular Modeling, Synthesis, In Vitro Activity, and Dynamics Study
by Priya Deivasigamani, S. M. Esther Rubavathy, Narayanan Jayasankar, Venkatesan Saravanan, Ramasamy Thilagavathi, Muthuramalingam Prakash, Chelliah Selvam, Rajakrishnan Rajagopal, Ahmed Alfarhan, Muthu Kumaradoss Kathiravan, Selvaraj Arokiyaraj and Jesu Arockiaraj
Biomedicines 2024, 12(4), 788; https://doi.org/10.3390/biomedicines12040788 - 3 Apr 2024
Cited by 25 | Viewed by 3971
Abstract
A series of novel 1,5-diaryl pyrazole derivatives targeting the COX enzyme were designed by combined ligand and structure-based approach. The designed molecules were then further subjected to ADMET and molecular docking studies. Out of 34 designed compounds, the top-10 molecules from the computation [...] Read more.
A series of novel 1,5-diaryl pyrazole derivatives targeting the COX enzyme were designed by combined ligand and structure-based approach. The designed molecules were then further subjected to ADMET and molecular docking studies. Out of 34 designed compounds, the top-10 molecules from the computation studies were synthesized, characterized, and evaluated for COX-2 inhibition and anti-cancer activity. Initially, the target compounds were screened for the protein denaturation assay. The results of the top-five molecules T2, T3, T5, T6, and T9 were further subjected to in vitro COX-2 enzymatic assay and anti-cancer activity. As far as COX-2 inhibitory activity is considered, two compounds, T3 and T5, exhibited the half maximum inhibitory concentration (IC50) at 0.781 µM and 0.781 µM respectively. Further, the two compounds T3 and T5, when evaluated for COX-1 inhibition, exhibited excellent inhibitory activity with T3 IC50 of 4.655μM and T5 with IC50 of 5.596 μM. The compound T5 showed more significant human COX-2 inhibition, with a selectivity index of 7.16, when compared with T3, which had a selectivity index of 5.96. Further, in vitro anti-cancer activity was screened against two cancer cell lines in which compounds T2 and T3 were active against A549 cell lines and T6 was active against the HepG2 cell line. Stronger binding energy was found by comparing MM-PBSA simulations with molecular docking, which suggests that compounds T3 and T5 have a better possibility of being effective compounds, in which T5 showed higher binding affinity. The results suggest that these compounds have the potential to develop effective COX-2 inhibitors as anti-cancer agents. Full article
(This article belongs to the Section Drug Discovery, Development and Delivery)
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11 pages, 6932 KB  
Communication
A Novel Fluorescence Sensor for Iodide Detection Based on the 1,3-Diaryl Pyrazole Unit with AIE and Mechanochromic Fluorescence Behavior
by Lili Deng, Jian Xiong, Wenqin Liu, Lixue Wu, Huiyi Hu, Jiaqing Wu, Yue Liu, Lide Yu, Yuling Zhou, Wenjun Gao, Haifeng He and Weiyan Yin
Molecules 2023, 28(20), 7111; https://doi.org/10.3390/molecules28207111 - 16 Oct 2023
Cited by 9 | Viewed by 2896
Abstract
A D−A type of luminophore, TPA-CDP, was designed and synthesized by using triphenylamine (TPA) as D (electron donor), 1,3-diaryl pyrazole with cyano groups (CDP) as A (electron acceptor) and employing a cyanovinyl segment as a recognition group. Firstly, TPA-CDP demonstrates effective fluorescence quenching [...] Read more.
A D−A type of luminophore, TPA-CDP, was designed and synthesized by using triphenylamine (TPA) as D (electron donor), 1,3-diaryl pyrazole with cyano groups (CDP) as A (electron acceptor) and employing a cyanovinyl segment as a recognition group. Firstly, TPA-CDP demonstrates effective fluorescence quenching as a sensor for I by the nucleophilic addition reaction of the cyanovinyl segment with a high level of sensitivity, selectivity and a low determination limit of 4.43 μM. Interestingly, TPA-CDP exhibited an AIE phenomenon with the fw value reaching 50%. In addition, TPA-CDP displayed distinct mechanochromic fluorescence behavior with 70 nm red shift, which was observed over four repeated cycles. Furthermore, the mechanochromic fluorescence behavior of TPA-CDP, as observed in powder XRD experiments, was found to be associated with the morphological transition from a crystalline state to an amorphous state. These results confirm the significant potential of CDP as a powerful electron-deficient component in the creation of D−A-type mechanochromic fluorescence materials and biosensors for detecting I. Full article
(This article belongs to the Special Issue Advances in Fluorescent Probe Technology)
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7 pages, 2204 KB  
Communication
Photoinduced Ring Opening of Methyl 1-Aryl-5-oxo-6,7-dihydro-1H,5H-pyrazolo[1,2-a]pyrazole-2-carboxylates in the Presence of Diaryl Disulfides
by Nejc Petek and Uroš Grošelj
Molbank 2023, 2023(2), M1670; https://doi.org/10.3390/M1670 - 15 Jun 2023
Viewed by 1982
Abstract
Among the methods used for the synthesis of functionalized heterocyclic compounds, photochemistry has gained immense popularity due to the reactivity of intermediates in photoinduced reactions. In this study, we report on the effect of diaryl disulfides as hydrogen atom transfer catalysts on the [...] Read more.
Among the methods used for the synthesis of functionalized heterocyclic compounds, photochemistry has gained immense popularity due to the reactivity of intermediates in photoinduced reactions. In this study, we report on the effect of diaryl disulfides as hydrogen atom transfer catalysts on the photoinduced transformations of pyrazolo[1,2-a]pyrazolones. After excitation with visible light, these compounds are susceptible to C–N bond cleavage, followed by intermolecular hydrogen atom abstraction. By modifying the reaction conditions, we have developed two novel methods for the synthesis of highly substituted pyrazoles. Full article
(This article belongs to the Collection Heterocycle Reactions)
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16 pages, 1990 KB  
Article
Design and Synthesis of Novel Pyrazole-Substituted Different Nitrogenous Heterocyclic Ring Systems as Potential Anti-Inflammatory Agents
by Eman S. Nossier, Hoda H. Fahmy, Nagy M. Khalifa, Wafaa I. El-Eraky and Marawan A. Baset
Molecules 2017, 22(4), 512; https://doi.org/10.3390/molecules22040512 - 24 Mar 2017
Cited by 62 | Viewed by 7109
Abstract
With the aim of developing novel anti-inflammatory scaffolds, a new series of pyrazole-substituted various nitrogenous heterocyclic ring systems at C-4 position were synthesized through different chemical reactions and validated by means of spectral and elemental data. The new obtained compounds were investigated for [...] Read more.
With the aim of developing novel anti-inflammatory scaffolds, a new series of pyrazole-substituted various nitrogenous heterocyclic ring systems at C-4 position were synthesized through different chemical reactions and validated by means of spectral and elemental data. The new obtained compounds were investigated for their anti-inflammatory activity using the carrageenan-induced paw edema standard technique and revealed that, compound 6b showed increased potency with % inhibition of edema 85.23 ± 1.92 and 85.78 ± 0.99, respectively, higher than the standard reference drugs indomethacin and celebrex (72.99% and 83.76%). Molecular modeling studies were initiated herein to validate the attained pharmacological data and provide understandable evidence for the observed anti-inflammatory behavior. Full article
(This article belongs to the Section Medicinal Chemistry)
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17 pages, 819 KB  
Article
Synthesis and Evaluation of New 1,5-Diaryl-3-[4-(methyl-sulfonyl)phenyl]-4,5-dihydro-1H-pyrazole Derivatives as Potential Antidepressant Agents
by Ahmet Özdemir, Mehlika Dilek Altıntop, Zafer Asım Kaplancıklı, Özgür Devrim Can, Ümide Demir Özkay and Gülhan Turan-Zitouni
Molecules 2015, 20(2), 2668-2684; https://doi.org/10.3390/molecules20022668 - 4 Feb 2015
Cited by 74 | Viewed by 6950
Abstract
In an effort to develop potent antidepressant agents, new pyrazoline derivatives 2as were synthesized and evaluated for their antidepressant-like activity by tail suspension test (TST) and modified forced swimming test (MFST). The effects of the compounds on spontaneous locomotor activity were [...] Read more.
In an effort to develop potent antidepressant agents, new pyrazoline derivatives 2as were synthesized and evaluated for their antidepressant-like activity by tail suspension test (TST) and modified forced swimming test (MFST). The effects of the compounds on spontaneous locomotor activity were also investigated using an activity cage apparatus. Among these derivatives, compounds 2b, 2d, 2f, 2o, and 2r decreased both horizontal and vertical activity number of the mice. On the other hand, compounds 2a, 2h, 2j, 2k, 2l, 2m, and 2n, which did not induce any significant change in the locomotor activity, significantly shortened the immobility time of mice in TST and MFST, representing the presence of the antidepressant-like effect. Additionally, the same compounds increased the swimming time of mice in MFST without any change in climbing duration, similar to the reference drug fluoxetine (10 mg/kg). In the light of previous papers examining the effects of pyrazolines on central nervous system, this study, once more, pointed out remarkable antidepressant activity potential of pyrazoline derivatives. Full article
(This article belongs to the Section Medicinal Chemistry)
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15 pages, 305 KB  
Article
Anti-Candida, Anti-Enzyme Activity and Cytotoxicity of 3,5-Diaryl-4,5-dihydro-1H-pyrazole-1-carboximidamides
by Simone Oliveira, Lucas Pizzuti, Frank Quina, Alex Flores, Rafael Lund, Claiton Lencina, Bruna S. Pacheco, Claudio M. P. De Pereira and Evandro Piva
Molecules 2014, 19(5), 5806-5820; https://doi.org/10.3390/molecules19055806 - 6 May 2014
Cited by 20 | Viewed by 7346
Abstract
Because of the need for more effective and less harmful antifungal therapies, and interest in the synthesis of new carboximidamides, the goal of this study was to determine the antifungal and anti-enzyme activities of some new pyrazole carboximidamides and their cytotoxicity. For this [...] Read more.
Because of the need for more effective and less harmful antifungal therapies, and interest in the synthesis of new carboximidamides, the goal of this study was to determine the antifungal and anti-enzyme activities of some new pyrazole carboximidamides and their cytotoxicity. For this purpose, tests were performed to evaluate: minimum inhibitory concentration (MIC) and minimum fungicidal concentration (MFC); production of proteinases and phospholipase, and cytotoxicity of the extracts. Data were analyzed by ANOVA and Tukey Tests (α = 5%). The results were: MIC and MFC ≥ 62.5 μg/mL (C. albicans, C. parapsilosis, C. famata, C. glabrata, and Rhodotorula mucillaginosa) and MIC and MFC ≥ 15.6 μg/mL (C. lipolytica). The values of proteinase and phospholipase (Pz) of C. albicans before and after exposure to the compounds were: 0.6 (±0.024) and 0.2 (±0.022) and 0.9 (±0.074) and 0.3 (±0.04), respectively. These proteinase results were not significant (p = 0.69), but those of phospholipase were (p = 0.01), and 15.6 μg/mL was the most effective concentration. The cytotoxicity means were similar among the tests (p = 0.32). These compounds could be useful as templates for further development through modification or derivatization to design more potent antifungal agents. Data from this study provide evidence that these new pyrazole formulations could be an alternative source for the treatment of fungal infections caused by Candida. However, a specific study on the safety and efficacy of these in vivo and clinical trials is still needed, in order to evaluate the practical relevance of the in vitro results. Full article
(This article belongs to the Section Organic Chemistry)
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15 pages, 1824 KB  
Article
Crystal Structures, Vibrational Spectra, and Fungicidal Activity of 1,5-Diaryl-3-oxypyrazoles
by Yi Li, Yuanyuan Liu, Yihuang Xiong and Xiaohui Xiong
Molecules 2014, 19(1), 1302-1316; https://doi.org/10.3390/molecules19011302 - 21 Jan 2014
Cited by 3 | Viewed by 6288
Abstract
The aryloxypyrazole structure is present in a number of bioactive molecules. Four 1,5-diaryl-3-oxypyrazoles containing benzoyl (I), thiazolidinethione (II and III) or per-O-acetylated glucopyranosyl (IV) moieties were characterized by single-crystal X-ray diffraction. Compounds I and [...] Read more.
The aryloxypyrazole structure is present in a number of bioactive molecules. Four 1,5-diaryl-3-oxypyrazoles containing benzoyl (I), thiazolidinethione (II and III) or per-O-acetylated glucopyranosyl (IV) moieties were characterized by single-crystal X-ray diffraction. Compounds I and II crystallize in a triclinic P-1 system, whereas III and IV crystallize in an orthorhombic Pbca and a monoclinic P21 space groups, respectively. The dihedral angles between the two benzene rings of the pyrazole are 61.33° (I), 62.87° (II), 57.09° (III) and 70.25° (IV). The structures were stabilized by classical intra- (C-H···S for II and III, C-H···O for IV) and intermolecular (C-H···O for I and IV) H-bonds, as well as intermolecular C-H···π stacking interactions. The theoretical FTIR results showed good agreement with the experimental data. Compounds IV, II and III showed moderate fungicidal activity against Sclerotinia sclerotiorum and Gibberella zeae. The structure-activity relationships were discussed. Full article
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12 pages, 215 KB  
Article
Ultrasonics Promoted Synthesis of 5-(Pyrazol-4-yl)-4,5-Dihydropyrazoles Derivatives
by Jorge Trilleras, Efraín Polo, Jairo Quiroga, Justo Cobo and Manuel Nogueras
Appl. Sci. 2013, 3(2), 457-468; https://doi.org/10.3390/app3020457 - 16 Apr 2013
Cited by 15 | Viewed by 8039
Abstract
A series of new 1,3-diaryl-5-(1-phenyl-3-methyl-5-chloropyrazol-4-yl)-4,5-dihydropyrazole derivatives have been synthesized under sonication conditions in ethanol or methanol/glacial acetic acid mixture (5/1 ratio) with two equivalents of hydrazines and seven kinds of chalcone-like heteroanalogues obtained from 5-chloro-3-methyl-1-phenyl-1H-pyrazole-4-carbaldehyde. The structures were established on the [...] Read more.
A series of new 1,3-diaryl-5-(1-phenyl-3-methyl-5-chloropyrazol-4-yl)-4,5-dihydropyrazole derivatives have been synthesized under sonication conditions in ethanol or methanol/glacial acetic acid mixture (5/1 ratio) with two equivalents of hydrazines and seven kinds of chalcone-like heteroanalogues obtained from 5-chloro-3-methyl-1-phenyl-1H-pyrazole-4-carbaldehyde. The structures were established on the basis of NMR, IR, MS and element analysis. This method provides several advantages over current reaction methodologies, including a simple work-up procedure, shorter reaction times (2–20 min) and good yields (65%–80%). Full article
(This article belongs to the Special Issue Greener and Sustainable Chemistry)
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14 pages, 160 KB  
Article
Synthesis and Biological Activity of Some New Pyrazoline and Pyrrolo[3,4-c]pyrazole-4,6-dione Derivatives: Reaction of Nitrilimines with Some Dipolarophiles
by Nada M. Abunada, Hamdi M. Hassaneen, Nadia G. Kandile and Omar A. Miqdad
Molecules 2008, 13(4), 1011-1024; https://doi.org/10.3390/molecules13041011 - 29 Apr 2008
Cited by 52 | Viewed by 11775
Abstract
Several 1,3-diaryl-5-(cyano-, aminocarbonyl- and ethoxycarbonyl-)-2-pyrazoline, pyrrolo[3,4-c]pyrazole-4,6-dione and 1,3,4,5-tetraaryl-2-pyrazoline derivativeswere prepared by the reaction of nitrilimine with different dipolarophilic reagents. The newcompounds were characterized using IR, 1H-NMR, 13C-NMR and mass spectra. Biologicalscreening of some compounds is reported. Full article
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6 pages, 46 KB  
Article
Synthesis of Some Fused Pyrazoles and Isoxazoles
by Venkatapuram Padmavathi, Boggu Jagan Mohan Reddy, Akula Balaiah, Katta Venugopal Reddy and Dandu Bhaskar Reddy
Molecules 2000, 5(12), 1281-1286; https://doi.org/10.3390/51201281 - 18 Dec 2000
Cited by 55 | Viewed by 8473
Abstract
The α-keto methylene group in 3,5-diaryl-2-cyclohexenones 2 and 3,5-diarylcyclohexanones 8 have been used to obtain fused pyrazoles and isoxazoles. The new compounds were characterized by IR and 1H-NMR spectral data. Full article
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