Abstract
Cotton, commonly used in wound care, has limitations such as quick saturation and wound adhesion, prompting surface modifications. In our studies, iron, which promotes platelet aggregation and coagulation, was deposited onto cotton via direct current (DC) magnetron sputtering. Thus, the biochemical properties of cotton fabrics were enhanced. Microscopic analyses revealed uniform iron coating on the fibers, and biochemical tests, such as activated partial thromboplastin time (aPTT) and prothrombin time (PT), showed that the modification did not affect the material’s coagulation activity. Measurements with the thiobarbituric acid (TBA) method (TBARS) showed that iron-modified cotton had antioxidant activity by lowering lipid peroxidation, which can be beneficial for better wound healing and lower infection risk. Moreover, our analysis showed the absence of cyto- and genotoxic properties against normal peripheral blood mononuclear cells (PBM cells). It was found that tested fabrics did not directly interact with DNA.
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Kudzin, M. H., Mrozińska, Z., Kaczmarek, A., Chruściel, J. J., Pinar, A., Sulak, E., … Ponczek, M. B. (2025). Development of Iron-Modified Cotton Material: Surface Characterization, Biochemical Activity, and Cytotoxicity Assessment. Coatings, 15(6). https://doi.org/10.3390/coatings15060663
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