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POCOP-Ni(II) pincer compounds derived from phloroglucinol. Cytotoxic and antioxidant evaluation. | LitMetric

AI Article Synopsis

  • POCOP-Ni(II) pincer compounds, initially studied for their catalytic properties, were evaluated for their anticancer and antioxidant activities in this research.
  • Four specific POCOP-Ni(II) complexes derived from phloroglucinol showed significant cytotoxicity against various cancer cell lines, with IC values between 2.43 and 7.85 μM.
  • The study also employed techniques like single-crystal X-ray diffraction to analyze molecular structures and suggested that these complexes can intercalate with DNA, indicating potential mechanisms for their therapeutic effects.

Article Abstract

POCOP-Ni(II) pincer compounds have primarily been explored as catalysts, but their potential biological activity has been scarcely studied. To address this gap, we evaluated the anticancer and antioxidant potential of four POCOP-Ni(II) complexes derived from phloroglucinol. A comprehensive supramolecular analysis, based on single-crystal X-ray diffraction (DRX) structures, was conducted using Hirshfeld surfaces and non-covalent interaction analysis. The cytotoxicity of all complexes was systematically assessed against various cancerous cell lines, as well as a non-cancerous cell line (COS-7). The results revealed that complexes and exhibited remarkable antiproliferative activity, with IC values ranging from 2.43 to 7.85 μM against cancerous cell lines U251, K562, HCT-15, MCF-7, and SK-LU-1. To further elucidate their mechanism of action, a competitive fluorescence displacement assay with ethidium bromide (EB) suggested that these complexes possess the ability to intercalate with DNA. This multifaceted investigation not only enhances our understanding of the biological potential of POCOP-Ni complexes but also provides valuable insights into their structural features and interactions, paving the way for future exploration in both catalytic and therapeutic domains.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11614598PMC
http://dx.doi.org/10.3389/fchem.2024.1483999DOI Listing

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