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1.
Curr Org Synth ; 20(8): 897-909, 2023.
Article in English | MEDLINE | ID: mdl-36941818

ABSTRACT

AIM: pyrimidine and pyrazole have various biological and pharmaceutical applications such as antibacterial, antifungal, antileishmanial, anti-inflammatory, antitumor, and anti-cancer. INTRODUCTION: In this search, the goal is to prepare pyrimidine-pyrazoles and study their anticancer activity. METHODS: 1-allyl-4-oxo-6-(3,4,5-trimethoxyphenyl)-1,4-dihydropyrimidine-5-carbonitrile bearing pyrazoles (4,6-8) have been synthesized. Firstly, the reaction of 1-allyl-2-(methylthio)-4-oxo-6- (3,4,5-trimethoxyphenyl)-1,4-dihydropyrimidine-5-carbonitrile (1) with chalcones 2a-b produced the intermediates 3a-b. The latter was reacted with hydrazine hydrate to give the targets 4a-b. On the other hand, hydrazinolysis of compound 1 yielded the hydrazino derivative 5 which upon reaction with chalcones 2c-i or 1,3-bicarbonyl compounds afforded the compounds 6-8. Finally, the new compounds were characterized by spectral data (IR, 1H NMR, 13C NMR) and elemental analysis. Moreover, they were evaluated for Panc-1, MCF-7, HT-29, A-549, and HPDE cell lines as anticancer activity. RESULTS: All the tested compounds 3,4,6-8 showed IC50 values > 50 µg/mL against the HPDE cell line. Compounds 6a and 6e exhibited potent anticancer activity where the IC50 values in the range of 1.7- 1.9, 1.4-182, 1.75-1.8, and 1.5-1.9 µg/mL against Panc-1, MCF-7, HT-29, and A-549 cell lines. CONCLUSION: New pyrimidine-pyrazole derivatives were simply synthesized, in addition, some of them showed potential anticancer activity.


Subject(s)
Chalcones , Humans , Pyrimidines/pharmacology , Pyrimidines/chemistry , Pyrazoles , HT29 Cells
2.
Bioorg Chem ; 124: 105808, 2022 07.
Article in English | MEDLINE | ID: mdl-35447409

ABSTRACT

In an attempt to obtain new candidates with potential anti-inflammatory activity, two series of 1,3,4-oxadiazole based derivatives (8a-g) and 1,2,4-triazole based derivatives (10a,b and 11a-g) were synthesized and evaluated for their COX-1/COX-2 inhibitory activity. In vitro assays showed potent COX-2 inhibitory activity and selectivity of the novel designed compounds (IC50 = 0.04 - 0.16 µM, SI = 60.71 - 337.5) compared to celecoxib (IC50 = 0.045 µM, SI = 326.67). The anti-inflammatory and antioxidant activity of the synthesized compounds was investigated via testing their ability to inhibit pro-inflammatory [tumour necrosis factor (TNF-α) and interleukin-6 (IL-6)] and oxidative stress [nitric oxide (NO) and reactive oxygen species (ROS)] markers production in lipopolysaccharide (LPS)-activated RAW 264.7 macrophages. Most of the novel compounds exhibited potent anti-inflammatory and antioxidant activity. In particular, the novel compounds showed excellent IL-6 inhibitory activity (IC50 = 0.96 - 11.14 µM) when compared to celecoxib (IC50 = 13.04 µM) and diclofenac sodium (IC50 = 22.97 µM). Moreover, the most potent and selective COX-2 inhibitor 11c (IC50 = 0.04 µM, SI = 337.5) displayed significantly higher activity against NO and ROS production compared to celecoxib (IC50 = 2.60 and 3.01 µM vs. 16.47 and 14.30 µM, respectively). Molecular modelling studies of the novel designed molecules into COX-2 active sites analysed their binding affinity. In-silico simulation studies indicated their acceptable physicochemical properties and pharmacokinetic profiles. This study suggests that the novel synthesized COX-2 inhibitors exert potent anti-inflammatory and antioxidant activity, highlighting their potential as promising therapeutic agents for the treatment of inflammation and oxidative stress-related diseases.


Subject(s)
Cyclooxygenase 2 Inhibitors , Lipopolysaccharides , Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents, Non-Steroidal/chemistry , Antioxidants/metabolism , Antioxidants/pharmacology , Celecoxib/pharmacology , Cyclooxygenase 2/metabolism , Cyclooxygenase 2 Inhibitors/chemistry , Drug Design , Interleukin-6/metabolism , Lipopolysaccharides/metabolism , Lipopolysaccharides/pharmacology , Macrophages/metabolism , Molecular Docking Simulation , Nitric Oxide/metabolism , Oxadiazoles , Reactive Oxygen Species/metabolism , Structure-Activity Relationship , Triazoles
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