Evaluation of cytotoxic potential of structurally well-characterized RNA targeted ionic non-steroidal anti-inflammatory (NSAID) Cu(ii) & Zn(ii) DACH-mefenamato drug conjugates against human cancer cell lines.
Huzaifa Yasir KhanSartaj TabassumFarukh ArjmandPublished in: RSC advances (2019)
New RNA targeted ionic [Cu(DACH) 2 (H 2 O) 2 ](mef) 2 , 1 and [Zn(DACH) 2 (H 2 O) 2 ](mef) 2 , 2 drug conjugates were synthesized and characterized by spectroscopic techniques FT-IR, UV-vis, EPR in case of 1 and 1 H and 13 C NMR in case of 2, ESI-MS, thermogravimetric analysis and single-crystal X-ray structure determination in case of 1. The interaction studies of 1 & 2 with most likely drug targets like ctDNA and tRNA were performed which demonstrated that the complexes 1 and 2 exhibited strong preferential binding to tRNA as compared to ctDNA, K b = 2.52(±0.04) × 10 5 M -1 , 7.85(±0.02) × 10 4 M -1 , respectively. Scanning electron microscopy analyses of complex-ctDNA/tRNA condensates suggested the interaction of complexes with ctDNA/tRNA had occurred, followed by lengthening of DNA double helix and bulge region of tRNA. Cytotoxic activity of 1 and 2 against human cancer cell lines namely; MCF-7 (breast), HeLa (cervical), MIA-PA-CA 2 (pancreatic), A-498 (kidney), Hep-G2 (hepatoma) was evaluated by SRB assay. The obtained results showed that copper complex 1 was an outstanding cytotoxic agent with remarkably good GI 50 value (<10 μg ml -1 ) against the tested cancer cell lines except for MIA-PA-CA 2, while zinc complex 2 revealed moderate cytotoxicity against all the tested cancer cell lines.
Keyphrases
- papillary thyroid
- circulating tumor
- electron microscopy
- squamous cell
- endothelial cells
- high resolution
- cancer therapy
- magnetic resonance
- anti inflammatory
- heavy metals
- emergency department
- squamous cell carcinoma
- childhood cancer
- molecular docking
- drug delivery
- nucleic acid
- cell free
- drug induced
- solid state
- risk assessment
- signaling pathway
- oxide nanoparticles
- single molecule
- molecularly imprinted
- contrast enhanced