Synthesis of Metal-Saccharin Complexes as an Antimicrobial Inorganic Pigment for Surfaces
Camila Acorone Soares1, Patrícia Appelt1, Weslei Domingos da Silva2
1Department of Chemistry, Campus Cedeteg, Universidade Estadual do Centro-Oeste, Guarapuava 85040-080, Brazil.
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There is significant concern within the scientific community regarding the prevention and treatment of diseases caused by viruses and bacteria as well as the increasing resistance of these microorganisms to conventional medicines. Numerous studies have addressed this challenge to explore the antimicrobial potential of various compounds and improve existing drugs, aiming to counteract microbial mutations and prevent large-scale outbreaks. This study synthesized and characterized three metal-saccharin complexes (Fe, Co, and Ni) and investigated their application as antimicrobial activity pigments. The complexes were studied using molar conductivity, Fourier transform infrared spectroscopy, mass spectrometry, nuclear magnetic resonance (NMR 1H), UV-vis spectroscopy, thermogravimetry, single-crystal X-ray diffraction, and colorimetry. The results confirmed the formation and composition of the metal complexes. The synthesized compounds exhibited antimicrobial activity in both solution and solid states, maintaining their efficacy when incorporated into acrylic paste and fabric paint. The Co-sac complex displayed superior antimicrobial activity among the tested complexes across all evaluations. It inhibited the growth of Salmonella typhimurium and Candida albicans at a MIC of 62.5 μg·mL-1, with fungicidal and bactericidal effects confirmed at 125 μg·mL-1. In disk diffusion assays, Co-sac (10%) in acrylic paste showed a maximum inhibition halo of 14.03 ± 0.39 mm against Staphylococcus aureus. When applied to face mask fabric, the same complex achieved inhibition halos of up to 11.65 ± 2.25 mm for Escherichia coli and 8.78 ± 2.34 mm for Listeria monocytogenes. Notably, the antimicrobial activity index reached values as high as 1.05, surpassing those of conventional antibiotics in specific tests.


