Тhio-containing pteridines: Synthesis, modification, and biological activity
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Abstract
The present article is devoted to searching for biologically active agents among novel
thio‐containing pteridines. Synthetic protocols based on the condensation of 5,6‐
diamino‐2‐thioxo‐2,3‐dihydropyrimidin‐4(1H)‐ones with dicarbonyl compounds
were elaborated and used for the synthesis of target products. The directions for
further modification of the obtained thio‐containing pteridines were substantiated
and realized. The spectral properties of the obtained compounds were studied and
described. The results of the in silico study revealed that the predicted affinity of the
obtained compounds to the dihydrofolate reductase (DHFR) active site is
comparable with the affinity of methotrexate, despite the differences in the nature
of the ligand–enzyme interactions. The in vitro study of DHFR‐inhibiting activity
revealed that the most active compounds 3.9 and 4.2 have lg IC50 values of −5.889
and −5.233, respectively, significantly inferior to methotrexate (lg IC50 = −7.605).
Additionally, the synthesized compounds were studied for their antiradical activity as
a possible mechanism of pharmacological effects. Among the obtained pteridines,
compounds 5.1 (lg EC50 = −4.82) and 5.3 (lg EC50= −4.92) have antiradical activity
higher than the reference compound ascorbic acid (lg EC50= −4.81). The conducted
structure–activity relationship analysis provided valuable data for the further search
for biologically active agents among thio‐containing pteridines and related
compounds.
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Тhio-containing pteridines: Synthesis, modification, and biological activity / M. S. Kazunin, N. V. Groma, I. S. Nosulenko, A. O. Kinichenko, O. M. Antypenko, V. M. Shvets, O. Y. Voskoboinik, S. I. Kovalenko // Archiv Der Pharmazie. - 2022. - Vol. 355, Iss. 10. - Art. e2200252. - https://doi.org/10.1002/ardp.202200252.