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cc-by-nc-nd (c) Elsevier B.V., 2016
Si us plau utilitzeu sempre aquest identificador per citar o enllaçar aquest document: https://hdl.handle.net/2445/168551

Toxicity study in blood and tumor cells of laser produced medicines for application in fabrics

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Phenothiazine derivatives are non-antibiotics with antimicrobial, fungistatic and fungicidal effects. We exposed to a high energy UV laser beam phenothiazines solutions in water at 20mg/mL concentration to increase antibacterial activity of resulting mixtures. Compared to previous results obtained on bacteria, more research is needed about UV laser irradiated phenothiazines applications on cancer cell cultures to evidence possible anticancerous properties. Evaluation of the safety of the newly obtained photoproducts in view of use on humans is also needed. Due to expensive animal testing in toxicology and pressure from general public and governments to develop alternatives to in vivo testing, in vitro cell-based models are attractive for preliminary testing of new materials. Cytotoxicity screening reported here shows that laser irradiated (4h exposure time length) chlorpromazine and promazine are more efficient against some cell cultures. Interaction of laser irradiated phenothiazines with fabrics show that promethazine and chlorpromazine have improved wetting properties. Correlation of these two groups of properties shows that chlorpromazine appears to be more recommended for applications on tissues using fabrics as transport vectors. The reported results concern stability study of phenothiazines water solutions to know the time limits within which they are stable and may be used. Keywords: Culture cells; Fabrics; Hemolysis; In vitro cytotoxicity; Laser; Phenothiazines.

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MORÁN BADENAS, María del carmen, TOZAR, Tatiana, SIMON, Agota, DINACHE, Andra, SMARANDACHE, Adriana, ANDREI, Ionut relu, BONI, Mihai, PASCU, Mihail lucian, CIRISANO, Francesca, FERRARI, Michele. Toxicity study in blood and tumor cells of laser produced medicines for application in fabrics. _Colloids and Surfaces B-Biointerfaces_. 2016. Vol. 137, núm. 91-103. [consulta: 14 de gener de 2026]. ISSN: 0927-7765. [Disponible a: https://hdl.handle.net/2445/168551]

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