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Cymantrenyl-Nucleobases: Synthesis, Anticancer, Antitrypanosomal and Antimicrobial Activity Studies.
Jablonski, Artur; Matczak, Karolina; Koceva-Chyla, Aneta; Durka, Kamil; Steverding, Dietmar; Jakubiec-Krzesniak, Katarzyna; Solecka, Jolanta; Trzybinski, Damian; Wozniak, Krzysztof; Andreu, Vanesa; Mendoza, Gracia; Arruebo, Manuel; Kochel, Krzysztof; Krawczyk, Barbara; Szczukocki, Dominik; Kowalski, Konrad.
Afiliación
  • Jablonski A; Department of Organic Chemistry, Faculty of Chemistry, University of Lódz, Tamka 12, 91-403 Lódz, Poland. ajablonski88@interia.pl.
  • Matczak K; Department of Medical Biophysics, Faculty of Biology and Environmental Protection, University of Lódz, Pomorska 141/143, 90-236 Lódz, Poland. karolina.matczak@biol.uni.lodz.pl.
  • Koceva-Chyla A; Department of Medical Biophysics, Faculty of Biology and Environmental Protection, University of Lódz, Pomorska 141/143, 90-236 Lódz, Poland.
  • Durka K; Department of Medical Biophysics, Faculty of Biology and Environmental Protection, University of Lódz, Pomorska 141/143, 90-236 Lódz, Poland. kamil.durka@biol.uni.lodz.pl.
  • Steverding D; Bob Champion Research & Education Building, Norwich Medical School, University of East Anglia, Norwich Research Park, Norwich NR4 7UQ, UK. D.Steverding@uea.ac.uk.
  • Jakubiec-Krzesniak K; National Institute of Public Health-National Institute of Hygiene, Chocimska 24, 00-791 Warszawa, Poland.
  • Solecka J; National Institute of Public Health-National Institute of Hygiene, Chocimska 24, 00-791 Warszawa, Poland. jsolecka@pzh.gov.pl.
  • Trzybinski D; Biological and Chemical Research Centre, Department of Chemistry, University of Warsaw, Zwirki and Wigury 101, 02-089 Warszawa, Poland. trzybinski@chem.uw.edu.pl.
  • Wozniak K; Biological and Chemical Research Centre, Department of Chemistry, University of Warsaw, Zwirki and Wigury 101, 02-089 Warszawa, Poland. kwozniak@chem.uw.edu.pl.
  • Andreu V; Department of Chemical Engineering. Aragon Institute of Nanoscience (INA), University of Zaragoza, Campus Río Ebro-Edificio I+D, C/ Poeta Mariano Esquillor S/N, 50018 Zaragoza, Spain. vandreu@unizar.es.
  • Mendoza G; Department of Chemical Engineering. Aragon Institute of Nanoscience (INA), University of Zaragoza, Campus Río Ebro-Edificio I+D, C/ Poeta Mariano Esquillor S/N, 50018 Zaragoza, Spain. graciamendoza@gmail.com.
  • Arruebo M; Department of Chemical Engineering. Aragon Institute of Nanoscience (INA), University of Zaragoza, Campus Río Ebro-Edificio I+D, C/ Poeta Mariano Esquillor S/N, 50018 Zaragoza, Spain. arruebom@unizar.es.
  • Kochel K; Networking Research Center on Bioengineering, Biomaterials and Nanomedicine, CIBER-BBN, 28029 Madrid, Spain. arruebom@unizar.es.
  • Krawczyk B; Department of Medical Biophysics, Faculty of Biology and Environmental Protection, University of Lódz, Pomorska 141/143, 90-236 Lódz, Poland. aneta.koceva@biol.uni.lodz.pl.
  • Szczukocki D; Faculty of Chemistry, Department of Inorganic and Analytical Chemistry, University of Lódz, Tamka 12, 91-403 Lódz, Poland. b.t.krawczyk@gmail.com.
  • Kowalski K; Faculty of Chemistry, Department of Inorganic and Analytical Chemistry, University of Lódz, Tamka 12, 91-403 Lódz, Poland.
Molecules ; 22(12)2017 Dec 14.
Article en En | MEDLINE | ID: mdl-29240697
ABSTRACT
The synthesis of four cymantrene-5-fluorouracil derivatives (1-4) and two cymantrene-adenine derivatives (5 and 6) is reported. All of the compounds were characterized by spectroscopic methods and the crystal structure of two derivatives (1 and 6), together with the previously described cymantrene-adenine compound C was determined by X-ray crystallography. While the compounds 1 and 6 crystallized in the triclinic P-1 space group, compound C crystallized in the monoclinic P21/m space group. The newly synthesized compounds 1-6 were tested together with the two previously described cymantrene derivatives B and C for their in vitro antiproliferative activity against seven cancer cell lines (MCF-7, MCF-7/DX, MDA-MB-231, SKOV-3, A549, HepG2m and U-87-MG), five bacterial strains Staphylococcus aureus (methicillin-sensitive, methicillin-resistant and vancomycin-intermediate strains), Staphylococcus epidermidis, and Escherichia coli, including clinical isolates of S. aureus and S. epidermidis, as well as against the protozoan parasite Trypanosoma brucei. The most cytotoxic compounds were derivatives 2 and C for A549 and SKOV-3 cancer cell lines, respectively, with 50% growth inhibition (IC50) values of about 7 µM. The anticancer activity of the cymantrene compounds was determined to be due to their ability to induce oxidative stress and to trigger apoptosis and autophagy in cancer cells. Three derivatives (1, 4 and 5) displayed promising antitrypanosomal activity, with GI50 values in the low micromolar range (3-4 µM). The introduction of the 5-fluorouracil moiety in 1 enhanced the trypanocidal activity when compared to the activity previously reported for the corresponding uracil derivative. The antibacterial activity of cymantrene compounds 1 and C was within the range of 8-64 µg/mL and seemed to be the result of induced cell shrinking.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Compuestos Organometálicos / Tripanocidas / Adenina / Fluorouracilo / Antibacterianos / Antineoplásicos Límite: Humans Idioma: En Revista: Molecules Asunto de la revista: BIOLOGIA Año: 2017 Tipo del documento: Article País de afiliación: Polonia

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Compuestos Organometálicos / Tripanocidas / Adenina / Fluorouracilo / Antibacterianos / Antineoplásicos Límite: Humans Idioma: En Revista: Molecules Asunto de la revista: BIOLOGIA Año: 2017 Tipo del documento: Article País de afiliación: Polonia