Anticancer Activity Study of Chromone and Coumarin Hybrids using Electrical Impedance Spectroscopy

Author:

Bouhenna Mustapha M.1,Mameri Nabil1,Pérez Mónica V.2,Talhi Oualid3,Bachari Khaldoun3,Silva Artur M.S.4,Luyten Walter5

Affiliation:

1. Unite de Recherche Engineering Environnement (URIE), Ecole Nationale Polytechnique, 10 Avenue Pasteur, El Harrach, Alger, Algeria

2. Cell Death Research and Therapy Unit, Department of Cellular and Molecular Medicine, KU Leuven University of Leuven, Leuven, Belgium

3. Centre de Recherche Scientifique et Technique en Analyses Physico-Chimiques (CRAPC), BP384, Bou-Ismail, 42004, Tipaza, Algeria

4. QOPNA, Department of Chemistry & QOPNA, University of Aveiro, 3810-193 Aveiro, Portugal

5. KU Leuven, Department of Biology, Division of Neurobiology and Animal Physiology, Naamsestraat 59, Bus 2469, 3000 Leuve, Belgium

Abstract

Aims: Oncology treatments aim at selective toxicity for tumor (compared to normal) cells, and chromone- coumarin hybrids have shown such activity. Methods: In this study, we test a novel series of synthetic chromone and coumarin derivatives (1–9) for cytotoxic activity against a panel of tumor cell lines (MCF-7, A549, HepG2, HTC-116, B16 and Caco-2) opposed to non-tumor cells (HEK-293t). Electrical impedance spectroscopy was used to monitor cell viability in real time. Results: Compound 8 showed the most potent activity, and it significantly diminished cancer cell proliferation and viability in different cell lines. It induced apoptosis in a dose-dependent manner, as shown by Western blot and flow cytometry. Conclusion: Electrical impedance spectroscopy appears to be a convenient tool for in vitro cytotoxicity analysis, which could be useful for identifying drug effects and side effects during early phases of drug discovery and development.

Publisher

Bentham Science Publishers Ltd.

Subject

Cancer Research,Pharmacology,Molecular Medicine

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