Publications

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dos Santos, Margarida Moreira, Margarida João Queiroz, and Pedro V. Baptista. "Enhancement of antibiotic effect via gold:silver alloy nanoparticles." J. Nanopar. Res. 14 (2012): 859.
Santos, Miguel M., Luís R. Raposo, Gonçalo V. S. M. Carrera, Alexandra Costa, Madalena Dionísio, Pedro V. Baptista, Alexandra R. Fernandes, and Luís C. Branco. "Ionic Liquids and Salts from Ibuprofen as Promising Innovative Formulations of an Old Drug." ChemMedChem 14 (2019): 907-911. AbstractWebsite

Abstract Herein we report the synthesis of novel ionic liquids (ILs) and organic salts by combining ibuprofen as anion with ammonium, imidazolium, or pyridinium cations. The methodology consists of an acid–base reaction of neutral ibuprofen with cation hydroxides, which were previously prepared by anion exchange from the corresponding halide salts with Amberlyst A-26(OH). In comparison with the parent drug, these organic salts display higher solubility in water and biological fluids and a smaller degree of polymorphism, which in some cases was completely eliminated. With the exception of [C16Pyr][Ibu] and [N1,1,2,2OH1][Ibu], the prepared salts did not affect the viability of normal human dermal fibroblasts or ovarian carcinoma (A2780) cells. Therefore, these ibuprofen-based ionic liquids may be very promising lead candidates for the development of effective formulations of this drug.

Sanz, Vanesa, Joao Conde, Alfredo Ambrosone, Yulan Hernandez, Valentina Marchesasno, Giovani G. Estrada, Manuel R. Ibarra, Pedro V. Baptista, Furong Tian, Claudia Tortiglione, and Jesus M. de la Fuente. "Multifunctional gold nanoparticles for gene silencing." Abstracts of Papers of the American Chemical Society 243 (2012). Abstract

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Sanz, Vanesa, João Conde, Yulán Hernández, Pedro V. Baptista, M. R. Ibarra, and Jesús M. de la Fuente. "Effect of PEG biofunctional spacers and TAT peptide on dsRNA loading on gold nanoparticles." J. Nanoparticles Res. 14 (2012): 917.
Silva, LB, B. Veigas, G. Doria, P. Costa, J. Inácio, R. Martins, E. Fortunato, and P. V. Baptista. "Portable optoelectronic biosensing platform for identification of mycobacteria from the Mycobacterium tuberculosis complex." Biosens Bioelectron 26 (2011): 2012-7. AbstractWebsite

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Silva, LB, P. Baptista, L. Raniero, G. Doria, R. Franco, R. Martins, E. Fortunato, and IEEE. "Novel optoelectronic platform using an amorphous/nanocrystalline silicon biosensor for the specific identification of unamplified nucleic acid sequences based on gold nanoparticle probes." Transducers '07 & Eurosensors Xxi, Digest of Technical Papers, Vols 1 and 2 (2007): U472-U473. Abstract

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Sutradhar, M., E. C. B. A. Alegria, F. Ferretti, L. R. Raposo, M. F. C. Guedes da Silva, P. V. Baptista, A. R. Fernandes, and A. J. L. Pombeiro. "Antiproliferative activity of heterometallic sodium and potassium-dioxidovanadium(V) polymers." J Inorg Biochem 200 (2019): 110811. AbstractWebsite

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Svahn, Noora, Artur J. Moro, Catarina Roma-Rodrigues, Rakesh Puttreddy, Kari Rissanen, Pedro V. Baptista, Alexandra R. Fernandes, João Carlos Lima, and Laura Rodríguez. "The Important Role of the Nuclearity, Rigidity, and Solubility of Phosphane Ligands in the Biological Activity of Gold(I) Complexes." Chemistry – A European Journal 24 (2018): 14654-14667. AbstractWebsite

Abstract A series of 4-ethynylaniline gold(I) complexes containing monophosphane (1,3,5-triaza-7-phosphaadamantane (pta; 2), 3,7-diacetyl-1,3,7-triaza-5-phosphabicyclo[3.3.1]nonane (3), and PR3, with R=naphthyl (4), phenyl (5), and ethyl (6)) and diphosphane (bis(diphenylphosphino)acetylene (dppa; 7), trans-1,2-bis(diphenylphosphino)ethene (dppet; 8), 1,2-bis(diphenylphosphino)ethane (dppe; 9), and 1,3-bis(diphenylphosphino)propane (dppp; 10)) ligands have been synthesized and their efficiency against tumor cells evaluated. The cytotoxicity of complexes 2–10 was evaluated in human colorectal (HCT116) and ovarian (A2780) carcinoma as well as in normal human fibroblasts. All the complexes showed a higher antiproliferative effect in A2780 cells, with the cytotoxicity decreasing in the following order 5>6=9=10>8>2>4>7>3. Complex 4 stands out for its very high selectivity towards ovarian carcinoma cells (IC50=2.3 μm) compared with colorectal carcinoma and normal human fibroblasts (IC50>100 μm), which makes this complex very attractive for ovarian cancer therapy. Its cytotoxicity in these cells correlates with the induction of the apoptotic process and an increase of intracellular reactive oxygen species (ROS). The effects of the nuclearity, rigidity, and solubility of these complexes on their biological activity were also analyzed. X-ray crystal structure determination allowed the identification of short N−H⋅⋅⋅π contacts as the main driving forces for the three-dimensional packing in these molecules.