Reduction of Ferric Chloride in Yeast Growth Media, by Sugars and Aluminum

K. Mažeika, V. Melvydas, Dovilė Čepukoit
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Abstract

Iron compounds can be used in antimicrobial applications by exploiting the toxicity of divalent iron to living organisms due to the Fenton reaction. In this study, the growth inhibitory effects of ferrous sulfate FeSO4·7H2O and ferric chloride FeCl3·6H2O were observed on Metschnikowia clade and Saccharomyces cerevisiae yeast cells. The relatively high amount of reduced Fe3+ to Fe2+ in the growth medium determined by Mössbauer spectroscopy may contribute to the antimicrobial activity of ferric chloride. In order to test the reducing ability of sugars in the growth media of yeasts, the reaction of ferric chloride FeCl3·6H2O with sugars was investigated. In mixtures of FeCl3·6H2O and fructose, approximately two thirds of Fe3+ can be reduced to Fe2+. When the mixture of FeCl3·6H2O and fructose is placed on the surface of aluminum foil, an iron film is formed on the surface of the aluminum due to the reduction by both fructose and aluminum. The relative amount of Fe3+ which was reduced to Fe0 reached 68%.
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糖和铝对酵母生长培养基中氯化铁的还原作用
利用二价铁在芬顿反应中对生物体的毒性,铁化合物可用于抗菌。在这项研究中,观察了硫酸亚铁 FeSO4-7H2O 和氯化铁 FeCl3-6H2O 对 Metschnikowia clade 和酿酒酵母细胞的生长抑制作用。通过莫斯鲍尔光谱测定,生长介质中被还原成 Fe2+ 的 Fe3+ 相对较多,这可能是氯化铁具有抗菌活性的原因。为了测试酵母菌生长培养基中糖的还原能力,研究了氯化铁 FeCl3-6H2O 与糖的反应。在氯化铁 3-6H2O 和果糖的混合物中,大约三分之二的 Fe3+ 可以还原成 Fe2+。当把 FeCl3-6H2O 和果糖的混合物放在铝箔表面时,由于果糖和铝的还原作用,铝表面会形成一层铁膜。被还原成 Fe0 的 Fe3+ 的相对量达到 68%。
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