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Dive into the research topics where Carla Queirós is active.

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Featured researches published by Carla Queirós.


Journal of Inorganic Biochemistry | 2011

Investigation of the insulin-like properties of zinc(II) complexes of 3-hydroxy-4-pyridinones: Identification of a compound with glucose lowering effect in STZ-induced type I diabetic animals

Tânia Moniz; M. João Amorim; Rita Ferreira; Ana Nunes; Ana M. G. Silva; Carla Queirós; Andreia Leite; Paula Gameiro; Bruno Sarmento; Fernando Remião; Yutaka Yoshikawa; Hiromu Sakurai; Maria Rangel

Results from an investigation in an in vivo model of STZ-induced diabetic rats demonstrate that compound bis(1,2-dimethyl-3-hydroxy-4(1H)-pyridinonate)zinc(II), Zn(dmpp)(2), significantly lowers the blood glucose levels of individuals, thus showing evidence of glucose lowering activity. The compound was selected from a set of eight zinc(II) complexes of 3-hydroxy-4-pyridinones with diverse lipophilicity that were prepared and characterized in our laboratory. Assessment of insulin-like activity of the complexes was firstly performed in vitro by measuring the inhibition of FFA release in isolated rat adipocytes. The results indicate that compounds bis(2-methyl-3-hydroxy-4-pyridinonate)zinc(II), Zn(mpp)(2) and Zn(dmpp)(2) display significantly higher activity than that of the respective positive control thus suggesting its selection for in vivo tests. Safety evaluation of the active zinc(II) compounds was performed in freshly isolated rat hepatocytes. The results support that cell viability is not significantly different from the control set after 1 and 2h of incubation with both zinc(II) complexes.


Journal of Inorganic Biochemistry | 2013

Rhodamine labeling of 3-hydroxy-4-pyridinone iron chelators is an important contribution to target Mycobacterium avium infection.

Tânia Moniz; Ana Nunes; Ana M. G. Silva; Carla Queirós; Galya Ivanova; Maria Salomé Gomes; Maria Rangel

We have recently demonstrated that tripodal hexadentate chelators, based on 3-hydroxy-4-pyridinone units, can limit the access of iron to bacteria and have a significant inhibitory effect in the intramacrophagic growth of Mycobacterium avium. The results showed that the chelation of iron is a determinant although not sufficient property for antimicrobial activity. The rhodamine B isothiocyanate labelled chelator (MRH7) exhibited the strongest inhibitory activity and was identified as a lead compound since a dose response effect was observed. Significant inhibition of M. avium growth was achieved at a concentration as low as 1 μM. To identify key molecular features essential for the biological activity we designed parent hexadentate and bidentate chelators, in which different structural groups are introduced in the molecular framework. Herein, we report the work concerning three novel fluorescent chelators: a hexadentate ligand labelled with 5(6)-carboxytetramethylrhodamine (MRH8) and two 3-hydroxy-4-pyridinone fluorescent bidentate ligands labelled with rhodamine B isothiocyanate (MRB7) and 5(6)-carboxytetramethylrhodamine (MRB8). The results show that all fluorescent chelators are capable of restricting the intramacrophagic growth of M. avium and that the inhibitory effect is dependent on the fluorophore. In fact, for compounds bearing the same fluorophore the results obtained with the hexadentate or bidentate chelator (MRH7/MRB7 or MRH8/MRB8) are identical as long as the appropriate stoichiometric amount of chelator is used. The inhibitory effect of the rhodamine B isothiocyanate labelled compounds (MRH7 and MRB7) is significantly greater than that observed for the other two chelators, thus pointing out the significance of the rhodamine B isothiocyanate molecular fragment.


Materials | 2017

Preparation of Luminescent Metal-Organic Framework Films by Soft-Imprinting for 2,4-Dinitrotoluene Sensing

Javier Roales; Francisco G. Moscoso; Francisco Gámez; Tânia Lopes-Costa; Ahmad Sousaraei; Santiago Casado; Jose Castro-Smirnov; Juan Cabanillas-Gonzalez; José Manuel Marques Martins de Almeida; Carla Queirós; Luís Cunha-Silva; Ana M. G. Silva; José M. Pedrosa

A novel technique for the creation of metal-organic framework (MOF) films based on soft-imprinting and their use as gas sensors was developed. The microporous MOF material [Zn2(bpdc)2(bpee)] (bpdc = 4,4′-biphenyldicarboxylate; bpee = 1,2-bipyridylethene) was synthesized solvothermally and activated by removing the occluded solvent molecules from its inner channels. MOF particles were characterized by powder X-ray diffraction and fluorescence spectroscopy, showing high crystallinity and intense photoluminescence. Scanning electron microscope images revealed that MOF crystals were mainly in the form of microneedles with a high surface-to-volume ratio, which together with the high porosity of the material enhances its interaction with gas molecules. MOF crystals were soft-imprinted into cellulose acetate (CA) films on quartz at different pressures. Atomic force microscope images of soft-imprinted films showed that MOF crystals were partially embedded into the CA. With this procedure, mechanically stable films were created, with crystals protruding from the CA surface and therefore available for incoming gas molecules. The sensing properties of the films were assessed by exposing them to saturated atmospheres of 2,4-dinitrotoluene, which resulted in a substantial quenching of the fluorescence after few seconds. The soft-imprinted MOF films on CA/quartz exhibit good sensing capabilities for the detection of nitroaromatics, which was attributed to the MOF sensitivity and to the novel and more efficient film processing method based on soft-imprinting.


Materials | 2017

Preparation and Optimization of Fluorescent Thin Films of Rosamine-SiO2/TiO2 Composites for NO2 Sensing

María G. Guillén; Francisco Gámez; Belén Suárez; Carla Queirós; Ana M. G. Silva; Angel Barranco; Juan R. Sanchez-Valencia; José M. Pedrosa; Tânia Lopes-Costa

The incorporation of a prototypical rosamine fluorescent dye from organic solutions into transparent and microstructured columnar TiO2 and SiO2 (MO2) thin films, prepared by evaporation at glancing angles (GAPVD), was evaluated. The aggregation of the adsorbed molecules, the infiltration efficiency and the adsorption kinetics were studied by means of UV-Vis absorption and fluorescence spectroscopies. Specifically, the infiltration equilibrium as well as the kinetic of adsorption of the emitting dye has been described by a Langmuir type adsorption isotherm and a pseudosecond order kinetic model, respectively. The anchoring mechanism of the rosamine to the MO2 matrix has been revealed by specular reflectance Fourier transform infrared spectroscopy and infiltration from aqueous solutions at different pH values. Finally, the sensing performance towards NO2 gas of optimized films has been assessed by following the changes of its fluorescence intensity revealing that the so-selected device exhibited improved sensing response compared to similar hybrid films reported in the literature.


Journal of Sensors | 2018

Fluorescent Rosamine/TiO2 Composite Films for the Optical Detection of NO2

María G. Guillén; Belén Suárez; Javier Roales; Francisco Gámez; Alejandro P. Vargas; Francisco G. Moscoso; Tânia Lopes-Costa; Carla Queirós; Ana M. G. Silva; José M. Pedrosa

Two rosamine derivatives were used as fluorescent sensors for the detection of NO2, a toxic and oxidant gas whose presence in populated areas needs to be controlled. Both compounds shared the same molecular structure but had different peripheral substituents: a carboxylic acid and an amino group. Transparent nanocrystalline TiO2 films were prepared by screen printing and used as substrates, where the rosamines were incorporated by simple immersion into their respective solutions to form composite films. According to the molecular structures of the rosamines, the anchoring to the substrates was proposed to be by either covalent bonding and electrostatic interaction, or only electrostatic interaction, and was determined by the different substituents in each rosamine. Upon their exposure to increasing concentrations of NO2, both types of composite films showed intense and fast spectral changes, and the speed of response was related to the concentration of the gas. The anchoring mode and the electrophilic effect of the substituents determined the better sensing capability and the faster response shown by the carboxylic derivative in all cases.


Dyes and Pigments | 2012

A novel fluorescein-based dye containing a catechol chelating unit to sense iron(III)

Carla Queirós; Ana M. G. Silva; Sílvia C. Lopes; Galya Ivanova; Paula Gameiro; Maria Rangel


European Journal of Organic Chemistry | 2012

Microwave-Assisted Synthesis and Spectroscopic Properties of 4′-Substituted Rosamine Fluorophores and Naphthyl Analogues

Inês Cardoso; Ana L. Amorim; Carla Queirós; Sílvia C. Lopes; Paula Gameiro; Baltazar de Castro; Maria Rangel; Ana M. G. Silva


Journal of Inorganic Biochemistry | 2014

Fluoroquinolone–metal complexes: A route to counteract bacterial resistance?

Maria J. Feio; Isabel Sousa; Mariana Ferreira; Luís Cunha-Silva; Raúl G. Saraiva; Carla Queirós; José G. Alexandre; Vasco Claro; Adélia Mendes; R. Ortiz; Sandra Lopes; Ana Luísa Amaral; João Lino; Patrícia Fernandes; Ana Silva; Lisete Moutinho; Baltazar de Castro; Eulália Pereira; L. Perelló; Paula Gameiro


European Journal of Inorganic Chemistry | 2011

Nickel(II) and Cobalt(II) 3-Hydroxy-4-pyridinone Complexes: Synthesis, Characterization and Speciation Studies in Aqueous Solution

Carla Queirós; M. João Amorim; Andreia Leite; Monica Ferreira; Paula Gameiro; Baltazar de Castro; Krzysztof Biernacki; Alexandre L. Magalhães; John Burgess; Maria Rangel


Dyes and Pigments | 2013

Design of a water soluble 1,8-naphthalimide/3-hydroxy-4-pyridinone conjugate: Investigation of its spectroscopic properties at variable pH and in the presence of Fe3+, Cu2+ and Zn2+

Tânia Moniz; Carla Queirós; Rita Ferreira; Andreia Leite; Paula Gameiro; Ana M. G. Silva; Maria Rangel

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Francisco Gámez

Pablo de Olavide University

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Tânia Lopes-Costa

Pablo de Olavide University

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