5‐Nitrofuryl‐Containing Thiosemicarbazone Gold(I) Compounds: Synthesis, Stability Studies, and Anticancer Activity

Author:

Rodríguez‐Arce Esteban123,Gavrilov Eric2,Alvite Ximena3,Nayeem Nazia24ORCID,León Ignacio E.25ORCID,Neary Michelle C.6ORCID,Otero Lucía3ORCID,Gambino Dinorah3ORCID,Olea Azar Claudio1,Contel María24ORCID

Affiliation:

1. Departamento de Química Inorgánica y Analítica Universidad de Chile Casilla 233 Santiago Chile

2. Department of Chemistry and Brooklyn College Cancer Center Brooklyn College The City University of New York Brooklyn, NY 11210 USA

3. Área Química Inorgánica Facultad de Química Universidad de la República Gral. Flores 2124 11800 Montevideo Uruguay

4. Biology, Biochemistry, and Chemistry PhD Programs The Graduate Center The City University of New York New York, NY 10016 USA

5. CEQUINOR (CCT-CONICET La Plata, Asociado a CIC) Departamento de Química Universidad Nacional de La Plata Blvd. 120 N° 1465 La Plata 1900 Argentina

6. Chemistry Department Hunter College The City University of New York New York, NY 10065 USA

Abstract

AbstractThis work describes the synthesis of four gold(I) [AuClL] compounds containing chloro and biologically active protonated thiosemicarbazones based on 5‐nitrofuryl (L=HSTC). The stability of the compounds in dichloromethane, DMSO, and DMSO/culture media solutions was investigated by spectroscopy, cyclic voltammetry, and conductimetry, indicating the formation overtime of cationic monometallic [Au(HTSC)(DMSO)]± or [Au(HTSC)2]±, and/or dimeric species. Neutral [{Au(TSC)}2] species were obtained from one of the compounds in dichlomethane/n‐hexane solution and characterized by X‐ray crystallography revealing a Au−Au bond, and deprotonated thiosemicarbazone (TSC). The cytotoxicity of the gold compounds and thiosemicarbazone ligands was evaluated against selected cancer cell lines and compared to that of Auranofin. Studies of the most stable, cytotoxic, and selective compound on a renal cancer cell line (Caki‐1) demonstrated its relevant antimigratory and anti‐angiogenic properties, and preferential accumulation in the cell nuclei. Its mode of action seems to involve interaction with DNA, and subsequent cell death via apoptosis.

Funder

City University of New York

Fulbright Austria

Consejo Nacional de Investigaciones Científicas y Técnicas

Air Force Office of Scientific Research

Publisher

Wiley

Subject

General Chemistry

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