4.7 Article

Biological In Vitro Evaluation of PIL Graft Conjugates: Cytotoxicity Characteristics

Journal

Publisher

MDPI
DOI: 10.3390/ijms22147741

Keywords

graft copolymers; PIL; ionic conjugates; cytotoxicity; antituberculosis drugs

Funding

  1. National Science Center [2017/27/B/ST5/00960]

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In this study, the cytotoxicity of polymer carriers and drug conjugates on bronchial epithelial cells and cancer cells was evaluated, showing that the polymer systems have a supportive effect on normal cells and a cytostatic effect on cancer cells, which can be regulated by the polymer structure.
In vitro cytotoxicity of polymer-carriers, which in the side chains contain the cholinum ionic liquid units with chloride (Cl) or pharmaceutical anions dedicated for antituberculosis therapy, i.e., p-aminosalicylate (PAS) and clavulanate (CLV), was investigated. The carriers and drug conjugates were examined, in the concentration range of 3.125-100 mu g/mL, against human bronchial epithelial cells (BEAS-2B) and adenocarcinomic human alveolar basal epithelial cells (A549) as an experimental model cancer cell line possibly coexisting in tuberculosis. The cytotoxicity was evaluated by MTT test and confluency index, as well as by the cytometric analyses, including Annexin-V FITC apoptosis assay. The polymer systems showed supporting activity towards the normal cells and no tumor progress, especially at the highest concentration (100 mu g/mL). The analysis of cell death did not show meaningful changes in the case of the BEAS-2B, whereas in the A549 cell line, the cytostatic activity was observed, especially for the drug-free carriers, causing death in up to 80% of cells. This can be regulated by the polymer structure, including the content of cationic units, side-chain length and density, as well as the type and content of pharmaceutical anions. The results of MTT tests, confluency, as well as cytometric analyses, distinguished the polymer systems with Cl/PAS/CLV containing 26% of grafting degree and 43% of ionic units or 46% of grafting degree and 18% of ionic units as the optimal systems.

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