Synthesis and structural characterization of silver(I) complexes with NSAIDs (Tolphenamic acid) and picolin derivatives and investigation of anticancer activities on breast cancer cell lines (MCF-7 and MDA-MB-453)
2020
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Advisor: Doç. Dr. Ahmet Altay
Abstract (EN)
In this study, two new mixed ligand based silver(I)-tolfenamic acid including picoline derivatives, devised as [Ag2(tolf)2(2-pic)2] 1 and [Ag2(tolf)2(4-pic)2] 2 (tolf = tolfenamato, 2-pic = 2-picoline, 4-pic = 4-picoline) have been synthesized and identified by elemental analysis, FT-IR, thermal analysis. The structure of 1 was clarified with single-crystal X-ray diffraction while 2 was obtained in a powder form. The data clearly indicated that the silver(I) ion is coordinated to one 2-pic, two tolf ligands and other silver(I) ion demonstrating a distorted tetrahedral geometry. The deprotonated tolfenamato ligands act as a bridging bidentate ligands. The chains are further stabilized by the intramolecular Ag(I)⋯π and π···π interactions. The FT-IR analysis revealed that the structure of complex 1 and 2 might have a similar molecular structure. The thermogravimetric analysis displayed the presence of coordinated picoline and tolfenamato ligands in the coordination sphere. the Antiproliferative activities of the synthesized complexes were tested against human-derived breast cancer MCF-7 and MDA-MB-453 cell lines by XTT assay in vitro. The results showed that both complexes decreased the proliferation of both cell lines in a dose dependent manner. Complex 2 showed more antiproliferative activity than complex 1 against the tested cell lines. Moreover, both complexes were observed to exhibit istatistically much more antiproliferative activity with their lower IC50 values than carboplatin and 5-Fluorouracil, which are used as chemotherapeutic agents in breast cancer therapy.
Author
Dr. Betül Harurluoğlu
How to Cite
Betül Harurluoğlu (Master Thesis). Synthesis and structural characterization of silver(I) complexes with NSAIDs (Tolphenamic acid) and picolin derivatives and investigation of anticancer activities on breast cancer cell lines (MCF-7 and MDA-MB-453), 2020, Erzincan Binali Yıldırım University.
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