Pyrimidine Schiff Bases: Synthesis, Structural Characterization and Recent Studies on Biological Activities

Iwona Bryndal, Marcin Stolarczyk, Aleksandra Mikolajczyk, Magdalena Krupinska, Anna Pyra, Marcin Maczynski, Agnieszka Matera-Witkiewicz

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES(2024)

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Abstract
Recently, 5-[(4-ethoxyphenyl)imino]methyl-N-(4-fluorophenyl)-6-methyl-2-phenylpyrimidin-4-amine has been synthesized, characterized, and evaluated for its antibacterial activity against Enterococcus faecalis in combination with antineoplastic activity against gastric adenocarcinoma. In this study, new 5-iminomethylpyrimidine compounds were synthesized which differ in the substituent(s) of the aromatic ring attached to the imine group. The structures of newly obtained pyrimidine Schiff bases were established by spectroscopy techniques (ESI-MS, FTIR and 1H NMR). To extend the current knowledge about the features responsible for the biological activity of the new 5-iminomethylpyrimidine derivatives, low-temperature single-crystal X-ray analyses were carried out. For all studied crystals, intramolecular N-H center dot center dot center dot N hydrogen bonds and intermolecular C-H center dot center dot center dot F interactions were observed and seemed to play an essential role in the formation of the structures. Simultaneously, their biological properties based on their cytotoxic features were compared with the activities of the Schiff base (III) published previously. Moreover, computational investigations, such as ADME prediction analysis and molecular docking, were also performed on the most active new Schiff base (compound 4b). These results were compared with the highest active compound III.
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Key words
anticancer activity,cytotoxic activity,pyrimidine Schiff bases,X-ray structures,ADME prediction analysis
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