Ahmed A. Noser, Maha M. Salem, Esraa M. ElSafty, Mohamed H. Baren, Adel I. Selim and Hamada S. A. Mandour
{"title":"新型吡唑酮查尔酮的合成、分子对接及生物学研究","authors":"Ahmed A. Noser, Maha M. Salem, Esraa M. ElSafty, Mohamed H. Baren, Adel I. Selim and Hamada S. A. Mandour","doi":"10.1039/D5RA01233C","DOIUrl":null,"url":null,"abstract":"<p >Heterocyclic compounds are essential to the drug development and discovery processes. Herein, we synthesized new pyrazolone chalcones (<strong>3a–g</strong>) through the reaction of azopyrazolone (<strong>2</strong>) with different aromatic aldehydes in a basic medium. Numerous techniques including elemental analysis, <small><sup>1</sup></small>H-NMR, <small><sup>13</sup></small>C-NMR, and FT-IR spectroscopies, were used to characterize pyrazolone chalcone derivatives. Compound <strong>3b</strong> exhibited the highest binding energy towards YAP/TEAD protein with a value of −8.45 kcal mol<small><sup>−1</sup></small> in <em>in silico</em> studies. This observation suggested that compound <strong>3b</strong> inhibits the YAP/TEAD Hippo signaling pathway. In addition, compound <strong>3b</strong> offered a prospective anticancer effect against various cancer cell lines, such as HepG-2, MCF-7, and HCT-116, among the other synthesized compounds, with IC<small><sub>50</sub></small> values equal to 5.03 ± 0.4, 3.92 ± 0.2, and 6.34 ± 0.5 μM, respectively. These results validated our findings regarding the <em>in silico</em> suppression of the YAP/TEAD protein. Its pharmacokinetic properties were theoretically observed using ADMET. Additionally, compound <strong>3b</strong> demonstrated a potent antioxidant scavenging action (<em>in vitro</em>) against DPPH free radicals. Thus, based on our findings, compound <strong>3b</strong> may act as a potential anticancer scaffold owing to its inhibitory impact towards the YAP/TEAD-mediated Hippo signaling pathway with a safe toxic profile on normal cells.</p>","PeriodicalId":102,"journal":{"name":"RSC Advances","volume":" 17","pages":" 13214-13224"},"PeriodicalIF":3.9000,"publicationDate":"2025-04-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://pubs.rsc.org/en/content/articlepdf/2025/ra/d5ra01233c?page=search","citationCount":"0","resultStr":"{\"title\":\"Synthesis, molecular docking, and biological investigations of new pyrazolone chalcones†\",\"authors\":\"Ahmed A. Noser, Maha M. Salem, Esraa M. ElSafty, Mohamed H. Baren, Adel I. Selim and Hamada S. A. Mandour\",\"doi\":\"10.1039/D5RA01233C\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >Heterocyclic compounds are essential to the drug development and discovery processes. Herein, we synthesized new pyrazolone chalcones (<strong>3a–g</strong>) through the reaction of azopyrazolone (<strong>2</strong>) with different aromatic aldehydes in a basic medium. Numerous techniques including elemental analysis, <small><sup>1</sup></small>H-NMR, <small><sup>13</sup></small>C-NMR, and FT-IR spectroscopies, were used to characterize pyrazolone chalcone derivatives. Compound <strong>3b</strong> exhibited the highest binding energy towards YAP/TEAD protein with a value of −8.45 kcal mol<small><sup>−1</sup></small> in <em>in silico</em> studies. This observation suggested that compound <strong>3b</strong> inhibits the YAP/TEAD Hippo signaling pathway. In addition, compound <strong>3b</strong> offered a prospective anticancer effect against various cancer cell lines, such as HepG-2, MCF-7, and HCT-116, among the other synthesized compounds, with IC<small><sub>50</sub></small> values equal to 5.03 ± 0.4, 3.92 ± 0.2, and 6.34 ± 0.5 μM, respectively. These results validated our findings regarding the <em>in silico</em> suppression of the YAP/TEAD protein. Its pharmacokinetic properties were theoretically observed using ADMET. Additionally, compound <strong>3b</strong> demonstrated a potent antioxidant scavenging action (<em>in vitro</em>) against DPPH free radicals. 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Synthesis, molecular docking, and biological investigations of new pyrazolone chalcones†
Heterocyclic compounds are essential to the drug development and discovery processes. Herein, we synthesized new pyrazolone chalcones (3a–g) through the reaction of azopyrazolone (2) with different aromatic aldehydes in a basic medium. Numerous techniques including elemental analysis, 1H-NMR, 13C-NMR, and FT-IR spectroscopies, were used to characterize pyrazolone chalcone derivatives. Compound 3b exhibited the highest binding energy towards YAP/TEAD protein with a value of −8.45 kcal mol−1 in in silico studies. This observation suggested that compound 3b inhibits the YAP/TEAD Hippo signaling pathway. In addition, compound 3b offered a prospective anticancer effect against various cancer cell lines, such as HepG-2, MCF-7, and HCT-116, among the other synthesized compounds, with IC50 values equal to 5.03 ± 0.4, 3.92 ± 0.2, and 6.34 ± 0.5 μM, respectively. These results validated our findings regarding the in silico suppression of the YAP/TEAD protein. Its pharmacokinetic properties were theoretically observed using ADMET. Additionally, compound 3b demonstrated a potent antioxidant scavenging action (in vitro) against DPPH free radicals. Thus, based on our findings, compound 3b may act as a potential anticancer scaffold owing to its inhibitory impact towards the YAP/TEAD-mediated Hippo signaling pathway with a safe toxic profile on normal cells.
期刊介绍:
An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.