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Development of Novel Pyridine-Thiazole Hybrid Molecules as Potential Anticancer Agents.

Authors :
Ivasechko, Iryna
Yushyn, Ihor
Roszczenko, Piotr
Senkiv, Julia
Finiuk, Nataliya
Lesyk, Danylo
Holota, Serhii
Czarnomysy, Robert
Klyuchivska, Olga
Khyluk, Dmytro
Kashchak, Nataliya
Gzella, Andrzej
Bielawski, Krzysztof
Bielawska, Anna
Stoika, Rostyslav
Lesyk, Roman
Source :
Molecules; Oct2022, Vol. 27 Issue 19, p6219, 30p
Publication Year :
2022

Abstract

Novel pyridine-thiazole hybrid molecules were synthesized and subjected to physico-chemical characterization and screening of their cytotoxic action towards a panel of cell lines derived from different types of tumors (carcinomas of colon, breast, and lung, glioblastoma and leukemia), and normal human keratinocytes, for comparison. High antiproliferative activity of the 3-(2-fluorophenyl)-1-[4-methyl-2-(pyridin-2-ylamino)-thiazol-5-yl]-propenone 3 and 4-(2-{1-(2-fluorophenyl)-3-[4-methyl-2-(pyridin-2-ylamino)-thiazol-5-yl]-3-oxopropylsulfanyl}-acetylamino)-benzoic acid ethyl ester 4 was revealed. The IC<subscript>50</subscript> of the compound 3 in HL-60 cells of the acute human promyelocytic leukemia was 0.57 µM, while in the pseudo-normal human cell lines, the IC<subscript>50</subscript> of this compound was >50 µM, which suggests that the compounds 3 and 4 might be perspective anticancer agents. The detected selectivity of the derivatives 3 and 4 for cancer cell lines inspired us to study the mechanisms of their cytotoxic action. It was shown that preincubation of tumor cells with Fluzaparib (inhibitor of PARP1) reduced the cytotoxic activity of the derivatives 3 and 4 by more than twice. The ability of these compounds to affect DNA nativity and cause changes in nucleus morphology allows for the suggestion that the mechanism of action of the novel pyridine-thiazole derivatives might be related to inducing the genetic instability in tumor cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
27
Issue :
19
Database :
Complementary Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
159674352
Full Text :
https://doi.org/10.3390/molecules27196219