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Overactivation of Wnt/β-catenin signaling by accumulated β-catenin in the nucleus has been shown to play a crucial role in the etiology of cancer. Interaction of β-catenin with Transcription factor 4 (TCF4) is a key step for the activation of Wnt genes in response to upstream signals of the Wnt/β-catenin pathway. Hence, down regulation of Wnt/β-catenin signaling or targeting downstream events by selective β-catenin/TCF4 protein-protein interaction inhibitors could be a potential therapeutic strategy against such cancers. In this study structure-based drug design approach was followed to design novel 4,7-disubstituted 8-methoxyquinazoline-based derivatives which could act as potential cytotoxic agents inhibiting the β-catenin/TCF4 protein-protein interactions. Fifteen compounds possessing 4,7-disubstituted 8-methoxyquinazoline scaffold were synthesized. Cytotoxic potential of the synthesised derivatives were determined against constitutively activated β-catenin/TCF4 signaling pathway cancer cells (HCT116 and HepG2) using the sulforhodamine B assay. The most potent compound (18B) was selected for detailed biological evaluation. Cell morphology, Hoechst 33342 and Annexin V/PI staining were used to detect apoptosis, while inhibition of cell migration was assessed by in vitro wound healing assay against HCT116 and HepG2 cells. Effect on β-catenin/TCF mediated transcriptional activity was assessed by TOPFlash/FOPFlash assay, TCF4 and β-catenin protein expression by immunocytofluorescence, and Wnt target genes (like c-MYC and Cyclin D1) mRNA levels by RT-PCR against HCT116 cells. Cytotoxic potency of the most potential compound (18B) against primary human gallbladder cancer cells was also evaluated. The derivatives showed interactions with active site residues of β-catenin and were capable of hindering the TCF4 binding, thereby disrupting β-catenin/TCF4 interactions. Cytotoxic potencies (IC) of these derivatives ranged from 5.64 ± 0.68 to 23.18 ± 0.45 μM against HCT116 and HepG2 cells respectively. Compound (18B), the most potent compound among the series, induced apoptosis and inhibited cell migration against HCT116 and HepG2 cells. Mechanistic studies indicated that compound (18B) downregulated β-catenin/TCF4 signaling pathway, β-catenin and TCF4 protein expression, and mRNA levels of c-MYC andCyclin D1 in HCT116 cells and showed cytotoxicity against primary human gallbladder cancer cells with IC value of 8.50 ± 1.44 μM. Thus, novel 4,7-disubstituted 8-methoxyquinazoline derivatives were identified as potential cytotoxic agents with potencies comparable to that of imatinib mesylate. Compound (18B) represents a promising lead molecule as anticancer agent against colon, hepatocellular and gallbladder cancers targeting β-catenin/TCF4 signaling pathway.
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http://dx.doi.org/10.1016/j.tranon.2022.101395 | DOI Listing |
Sci Rep
August 2025
Department of Pharmaceutical Sciences, St. John's University, Queens, NY, USA.
Preterm birth (PTB) occurs in 10% of births worldwide and remains the leading cause of neonatal morbidity and mortality. Previously, we reported that N, N-dimethylacetamide (DMA) and N, N-dimethylformamide (DMF) prevent inflammation-induced PTB in a murine model and inhibit the NF-κB inflammatory pathway. Using in vitro and ex vivo models, we show here that two DMA analogs, N,N-diethylaceatmide (DEA) and N, N-dipropylacetamide (DPA), attenuate LPS-stimulated increased secretion of tumor necrosis factor (TNF)-α, IL-6, IL-1, GM-CSF, MCP-1 and IL-10 from RAW 264.
View Article and Find Full Text PDFPest Manag Sci
July 2025
Department of Chemistry, Universidade Federal de Viçosa, Viçosa, Brazil.
Background: Due to the growing resistance of weeds to known herbicides, the search for new bioactive substances has been increasing in recent years. Imides belong to an important class of chemical compounds known to present various biological activities such as herbicide, fungicide, insecticide, and bactericide. In this study, the synthesis, purification, structural elucidation, and bioassays of four pairs of epoxy tetrahydrophthalimides 15a-18a and 15b-18b were conducted.
View Article and Find Full Text PDFMol Divers
July 2025
School of Pharmacy, Hangzhou Normal University, Hangzhou, 311121, Zhejiang, China.
Ataxia telangiectasia mutated and rad3-related kinase (ATR) and histone deacetylases (HDACs) are important therapeutic targets for cancer. In this study, a series of novel ATR/HDACs dual inhibitors containing 2-aminopyrazine motifs were designed and synthesized for the first time. Compounds 18b and 18c not only exhibited good dual inhibition activity against ATR (IC = 6 and 3 nM) and HDAC6 (IC = 6 and 20 nM), but also showed good anti-proliferative activity against four cancer cell lines.
View Article and Find Full Text PDFBMC Chem
July 2025
Department of Chemistry, Faculty of Science, Cairo University, Giza, 12613, Egypt.
Stirring of 2-(6,7-dimethoxy-3,4-dihydroisoquinolin-1-yl)acetonitrile 1 with thiophene-2-carbaldehyde 2 in absolute ethanol in the presence of hydrochloric acid yielded 2-(6,7-dimethoxy-3,4-dihydroisoquinolin-1-yl)-3-(thiophen-2-yl)acrylonitrile hydrochloride 3. Refluxing of arylidene 3 with α-ketohydrazonoyl halides 4-7 in the presence of triethylamine in chloroform afforded dihydropyrrolo[2,1-a]isoquinolines 11-14. Claisen-Schmidt condensation of 11 with aryl aldehydes 15a-f or pyrazole aldehydes 17a-d in ethanol in the presence of sodium hydroxide solution produced chalcones 16a-f and 18a-d.
View Article and Find Full Text PDFBMC Chem
June 2025
Department of Chemistry, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Compound 2-(2-cyanoacetamido)pyrazine (3) serves as a key precursor for synthesizing various new pyrazine-linked heterocycles, including pyridine, thiazole, pyrazole, chromene, and pyrazolotriazine derivatives. Pyrazine-pyridone analogues 5a-d were obtained by reacting compound 3 with substituted 2-(arylidene)malononitriles (4a-d). Substituted pyrazine-thiazoles (8 and 9) were synthesized by condensation with phenyl isothiocyanate, followed by cyclization using ethyl bromoacetate or chloroacetone.
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