Nanoparticles of a Pyrazolo-Pyridazine Derivative as Potential EGFR and CDK-2 Inhibitors: Design, Structure Determination, Anticancer Evaluation and In Silico Studies
Hashem, Heba E.; Amr, Abd El-Galil E.; Almehizia, Abdulrahman A.; Naglah, Ahmed M.; Kariuki, Benson M.; Eassa, Heba A.; Nossier, Eman S.;
Abstract
The strategic planning of this study is based upon using the nanoformulation method to prepare nanoparticles 4-SLNs and 4-LPHNPs of the previously prepared 4,5-diphenyl-1H-pyrazolo[3,4-c]pyridazin-3-amine (4) after confirming its structure with single crystal X-ray analysis. These nanoparticles exhibited promising cytotoxic activity against HepG-2, HCT-116 and MCF-7 cancer cell lines in comparison with the reference doxorubicin and the original derivative 4. Moreover, their inhibitory assessment against EGFR and CDK-2/cyclin A2 displayed improved and more favorable impact than the parent 4 and the references. Detection of their influence upon cancer biomarkers revealed upregulation of Bax, p53 and caspase-3 levels and downregulation of Bcl-2 levels. The docking simulation demonstrated that the presence of the pyrazolo[3,4-c]pyridazin-3-amine scaffold is amenable to enclosure and binding well within EGFR and CDK-2 receptors through different hydrophilic interactions. The pharmacokinetic and physicochemical properties of target 4 were also assessed with ADME investigation, and the outcome indicated good drug-like characteristics.
Other data
| Title | Nanoparticles of a Pyrazolo-Pyridazine Derivative as Potential EGFR and CDK-2 Inhibitors: Design, Structure Determination, Anticancer Evaluation and In Silico Studies | Authors | Hashem, Heba E. ; Amr, Abd El-Galil E.; Almehizia, Abdulrahman A.; Naglah, Ahmed M.; Kariuki, Benson M.; Eassa, Heba A.; Nossier, Eman S. | Keywords | ADME analysis | cytotoxicity | docking simulation | EGFR and CDK-2/cyclin A2 inhibition | nanoparticles | pyrazolo[3,4-c]pyridazine | Issue Date | 1-Nov-2023 | Journal | Molecules | ISSN | 1420-3049 | DOI | 10.3390/molecules28217252 | PubMed ID | 37959672 | Scopus ID | 2-s2.0-85176587315 | 
Recommend this item
Similar Items from Core Recommender Database
	
	Items in Ain Shams Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.