Metal chelators can be potentially employed in the treatment of various diseases, ranging from metal overload to neoplastic conditions. Some xanthene derivatives were previously reported to complex metals. Thus, in a search for a novel iron or copper chelator, a series of 9-(substituted phenyl)-2,6,7-trihydroxy-xanthene-3-ones was tested using a competitive spectrophotometric approach. The most promising compound was evaluated in biological models (breast adenocarcinoma cell lines and erythrocytes). In general, substitution of the benzene ring in position 9 had a relatively low effect on the chelation. Only the trifluoromethyl substitution resulted in stronger chelation, probably via a positive effect on solvation. All compounds chelated iron, but their copper-chelating effect was only minimal, since it was no longer observed under highly competitive conditions. Interestingly, all compounds reduced both iron and copper. Additional experiments showed that the trifluoromethyl derivative protected erythrocytes and even cancer cells against excess copper. In summary, the tested compounds are iron chelators, which are also capable of reducing iron/copper, but the copper-reducing effect is not associated with increased copper toxicity

Interaction of 2,6,7-trihydroxy-xanthene-3-ones with iron and copper, and biological effect of the most active derivative on breast cancer cells and erythrocytes / Mladěnka, Přemysl; Karlíčková, Jana; Hrubša, Marcel; Veljović, Elma; Muratović, Samija; Carazo, Alejandro; Shivling Mali, Akash; Špirtović-Halilović, Selma; Saso, Luciano; Pour, Milan; Durić, Kemal. - In: APPLIED SCIENCES. - ISSN 2076-3417. - 10:14(2020), pp. 1-15. [10.3390/app10144846]

Interaction of 2,6,7-trihydroxy-xanthene-3-ones with iron and copper, and biological effect of the most active derivative on breast cancer cells and erythrocytes

Luciano Saso;
2020

Abstract

Metal chelators can be potentially employed in the treatment of various diseases, ranging from metal overload to neoplastic conditions. Some xanthene derivatives were previously reported to complex metals. Thus, in a search for a novel iron or copper chelator, a series of 9-(substituted phenyl)-2,6,7-trihydroxy-xanthene-3-ones was tested using a competitive spectrophotometric approach. The most promising compound was evaluated in biological models (breast adenocarcinoma cell lines and erythrocytes). In general, substitution of the benzene ring in position 9 had a relatively low effect on the chelation. Only the trifluoromethyl substitution resulted in stronger chelation, probably via a positive effect on solvation. All compounds chelated iron, but their copper-chelating effect was only minimal, since it was no longer observed under highly competitive conditions. Interestingly, all compounds reduced both iron and copper. Additional experiments showed that the trifluoromethyl derivative protected erythrocytes and even cancer cells against excess copper. In summary, the tested compounds are iron chelators, which are also capable of reducing iron/copper, but the copper-reducing effect is not associated with increased copper toxicity
2020
chelation; reduction; structure-activity relationship; transition metal; xanthene
01 Pubblicazione su rivista::01a Articolo in rivista
Interaction of 2,6,7-trihydroxy-xanthene-3-ones with iron and copper, and biological effect of the most active derivative on breast cancer cells and erythrocytes / Mladěnka, Přemysl; Karlíčková, Jana; Hrubša, Marcel; Veljović, Elma; Muratović, Samija; Carazo, Alejandro; Shivling Mali, Akash; Špirtović-Halilović, Selma; Saso, Luciano; Pour, Milan; Durić, Kemal. - In: APPLIED SCIENCES. - ISSN 2076-3417. - 10:14(2020), pp. 1-15. [10.3390/app10144846]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1694149
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