Lília I. L. Cabral
University of the Algarve
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Publication
Featured researches published by Lília I. L. Cabral.
Antimicrobial Agents and Chemotherapy | 2015
Sofia Cortes; Andreia Albuquerque; Lília I. L. Cabral; Liliana Lopes; Lenea Campino; Maria Lurdes Santos Cristiano
ABSTRACT Leishmaniasis is among the worlds most neglected diseases. Currently available drugs for treatment present drawbacks, urging the need for more effective, safer, and cheaper drugs. A small library of artemisinin-derived trioxanes and synthetic trioxolanes was tested against promastigote and intramacrophage amastigote forms of Leishmania infantum. The trioxolanes LC50 and LC95 presented the best activity and safety profiles, showing potential for further studies in the context of leishmanial therapy. Our results indicate that the compounds tested exhibit peroxide-dependent activity.
Chemistry: A European Journal | 2018
Lília I. L. Cabral; Elisa M. Brás; Marta S. C. Henriques; Cátia L. Marques; Luís M.T. Frija; Luísa Barreira; J. A. Paixão; Rui Fausto; Maria Lurdes Santos Cristiano
Reports showing that the copper concentration is considerably higher in neoplasms than in normal tissues prompted the need to develop selective copper chelators. We disclosed recently that some N-linked tetrazole-saccharinates bind selectively to copper, forming complexes that are highly cytotoxic towards cancer cells. Because tetrazole-saccharinates are photolabile, due to the photoreactivity of tetrazoles, we proposed thiadiazolyl-saccharinates as an alternative. Herein we describe the synthesis, structure, and monomeric photochemistry of a sulphanyl-bridged thiadiazolyl-saccharinate, 3-[(5-methyl-1,3,4-thiadiazol-2-yl)sulphanyl]-1,2-benzothiazole 1,1-dioxide (MTSB). The monomeric structure, charge density analysis, and characteristic infrared spectrum of MTSB were investigated theoretically, using quantum chemical calculations, and also experimentally, using matrix-isolation infrared spectroscopy. The crystal structure was investigated by combining X-ray crystallography with infrared and Raman spectroscopies. Results show that the structure of isolated MTSB is similar to that found in the crystal, with an S⋅⋅⋅N interaction clearly contributing to the structure of the molecule and of the crystal. Matrix irradiation revealed a high photostability of MTSB, compared to parent tetrazole-saccharinates and to the 5-methyl-1,3,4-thiadiazole building block, emphasizing the photostabilizing effect of the saccharyl system. Finally, in vitro toxicity assays of MTSB showed a copper concentration-dependent toxicity against cancer cells, without affecting normal cells. In particular, MTSB was most effective towards the hepatic (HepG2), neuroblastoma (SH-SY5), and lymphoma cell lines (U937). Thus, MTSB represents a promising lead for cancer chemotherapy based on chelating agents.
ChemMedChem | 2013
Louise La Pensée; Sunil Sabbani; Raman Sharma; Inder Bhamra; Emma R. Shore; Amy E. Chadwick; Neil G. Berry; James Firman; Nuna C. Araújo; Lília I. L. Cabral; Maria Lurdes Santos Cristiano; Cerys Bateman; Omar Janneh; Adelina Gavrila; Yi Hang Wu; Afthab Hussain; Stephen A. Ward; Paul A. Stocks; Richard Cosstick; Paul M. O'Neill
Greater than the sum of its parts: Artemisinins are currently in phase I-II clinical trials against breast, colorectal and non-small-cell lung cancers. In an attempt to offer increased specificity, a series of hybrid artemisinin-polypyrrole minor groove binder conjugates are described. DNA binding/modelling studies and preliminary biological evaluation give insights into their mechanism of action and the potential of this strategy.
Memorias Do Instituto Oswaldo Cruz | 2016
Lis Lobo; Bruno de Sousa; Lília I. L. Cabral; Maria Lurdes Santos Cristiano; Fátima Nogueira
Ever increasing multi-drug resistance by Plasmodium falciparum is creating new challenges in malaria chemotherapy. In the absence of licensed vaccines, treatment and prevention of malaria is heavily dependent on drugs. Potency, range of activity, safety, low cost and ease of administration are crucial issues in the design and formulation of antimalarials. We have tested three synthetic ozonides NAC89, LC50 and LCD67 in vitro and in vivo against multidrug resistant Plasmodium. In vitro, LC50 was at least 10 times more efficient inhibiting P. falciparum multidrug resistant Dd2 strain than chloroquine and mefloquine and as efficient as artemisinin (ART), artesunate and dihydroartemisinin. All three ozonides showed high efficacy in clearing parasitaemia in mice, caused by multi-drug resistant Plasmodium chabaudi strains, by subcutaneous administration, demonstrating high efficacy in vivo against ART and artesunate resistant parasites.
Journal of Molecular Structure | 2011
Andrea Gómez-Zavaglia; A. Ismael; Lília I. L. Cabral; Agnieszka Kaczor; J. A. Paixão; Rui Fausto; Maria Lurdes Santos Cristiano
Tetrahedron | 2013
Lília I. L. Cabral; Teresa M. R. Maria; L. Martelo; M. E. S. Eusébio; Maria Lurdes Santos Cristiano; Rui Fausto
Canadian Journal of Chemistry | 2015
Ana Borba; Lília I. L. Cabral; Rui Fausto; Maria Lurdes Santos Cristiano
Molecular Catalysis | 2017
Luís M.T. Frija; Maxim L. Kuznetsov; Bruno G. M. Rocha; Lília I. L. Cabral; M. Lurdes S. Cristiano; Maximilian N. Kopylovich; Armando J. L. Pombeiro
Malaria Journal | 2018
Lis Lobo; Lília I. L. Cabral; Maria Inês Sena; Bruno Guerreiro; António Rodrigues; Valter Ferreira de Andrade-Neto; Maria Lurdes Santos Cristiano; Fátima Nogueira
Tetrahedron Letters | 2017
Lília I. L. Cabral; Marta S. C. Henriques; J. A. Paixão; Maria Lurdes Santos Cristiano