Synthesis and Evaluation of Some New 4 H -Pyran Derivatives as Antioxidant, Antibacterial and Anti-HCT-116 Cells of CRC, with Molecular Docking, Antiproliferative, Apoptotic and ADME Investigations.
Nahed Nasser Eid El-SayedMagdi E A ZakiSami A Al-HussainAbir Ben BachaMalika BerredjemVijay H MasandZainab M AlmarhoonHanaa S OmarPublished in: Pharmaceuticals (Basel, Switzerland) (2022)
Colorectal cancer oncogenesis is linked to dysbiosis, oxidative stress and overexpression of CDK2. The 4 H -pyran scaffold is considered an antitumoral, antibacterial and antioxidant lead as well as a CDK2 inhibitor. Herein, certain 4 H -pyran derivatives were evaluated as antibacterial, antioxidant and cytotoxic agents against HCT-116 cells. Derivatives 4g and 4j inhibited all the tested Gram-positive isolates, except for B. cereus (ATCC 14579), with lower IC 50 values (µM) than ampicillin. In addition, 4g and 4j demonstrated the strongest DPPH scavenging and reducing potencies, with 4j being more efficient than BHT. In cell viability assays, 4d and 4k suppressed the proliferation of HCT-116 cells, with the lowest IC 50 values being 75.1 and 85.88 µM, respectively. The results of molecular docking simulations of 4d and 4k , inhibitory kinase assays against CDK2, along with determination of CDK2 protein concentration and the expression level of CDK2 gene in the lysates of HCT-116 treated cells, suggested that these analogues blocked the proliferation of HCT-116 cells by inhibiting kinase activity and downregulating expression levels of CDK2 protein and gene. Moreover, 4d and 4k were found to induce apoptosis in HCT-116 cells via activation of the caspase-3 gene. Lastly, compounds 4g , 4j , 4d and 4k were predicted to comply with Lipinski's rule of five, and they are expected to possess excellent physiochemical and pharmacokinetic properties suitable for in vivo bioavailability, as predicted by the SwissADME web tool.
Keyphrases
- cell cycle arrest
- induced apoptosis
- cell death
- molecular docking
- oxidative stress
- pi k akt
- signaling pathway
- endoplasmic reticulum stress
- cell cycle
- cell proliferation
- gene expression
- molecular dynamics simulations
- poor prognosis
- transcription factor
- high throughput
- copy number
- molecular dynamics
- high resolution
- tyrosine kinase
- binding protein
- protein kinase
- gram negative
- heat stress
- genome wide identification