Giovanni Birarda
University of Trieste
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Featured researches published by Giovanni Birarda.
Dalton Transactions | 2007
Ioannis Bratsos; Giovanni Birarda; Stephanie Jedner; Ennio Zangrando; Enzo Alessio
With the aim of further developing the structure-activity relationship in biologically active half-sandwich Ru(ii)-[9]aneS(3) complexes ([9]aneS(3)=1,4,7-trithiacyclononane), a series of new mono- and dinuclear complexes bearing the chelating dicarboxylate ligands oxalate (ox), malonate (mal) and methylmalonate (mmal), have been synthesized and studied. Treatment of the precursor [Ru([9]aneS(3))(dmso)(3)][CF(3)SO(3)](2) (7) with equivalent amounts of K(2)(dicarb) afforded the corresponding neutral complexes with the general formula [Ru([9]aneS(3))(dmso-S)(eta(2)-dicarb)] (where dicarb=ox (1), mal (2) and mmal (3)), while using half an equivalent of K(2)(ox), the symmetric dimer [{Ru([9]aneS(3))(dmso-S)}(2)(mu-eta(4)-ox)][CF(3)SO(3)](2) (4) was isolated. The reaction of with the oxalato complex fac-[Ru(dmso-S)(3)(dmso-O)(eta(2)-ox)] (9) yielded two asymmetric dimers, namely [{Ru([9]aneS(3))(dmso-S)}(mu-eta(4)-ox){fac-Ru(dmso-S)(3)(CF(3)SO(3))}][CF(3)SO(3)] (5) and [{Ru([9]aneS(3))(dmso-S)}(mu-eta(4)-ox){fac-Ru(dmso-S)(3)(dmso-O)}][CF(3)SO(3)](2) (6), depending on the reaction conditions. All new complexes were structurally characterized, both in solution (by NMR spectroscopy) and in the solid state (by X-ray crystallography). The chemical behavior of the complexes in aqueous solution was studied by UV-Vis and NMR spectroscopy in view of their potential antitumor activity: the monomers partially release a dmso ligand to yield the monofunctional aqua adduct [Ru([9]aneS(3))(eta(2)-dicarb)(H(2)O)], while the dimers rapidly open up the oxalato bridge to give two mononuclear fragments. Splitting of the asymmetric dimers 5 and 6 occurs selectively and the ox moiety remains bonded to the fac-Ru(dmso-S)(3) fragment. A detailed comparison of the structural and chemical features of 1-6 with those of similar dicarboxylate complexes possessing the fac-Ru(dmso-S)(3) fragment in place of Ru([9]aneS(3)) allows us to draw a number of general conclusions on the binding preferences of dicarb ligands on the octahedral Ru(II) center.
Environmental Science & Technology | 2013
Sara Novak; Damjana Drobne; Lisa Vaccari; M. Kiskinova; Paolo Ferraris; Giovanni Birarda; Maja Remskar; Matej Hočevar
Tungsten nanofibers are recognized as biologically potent. We study deviations in molecular composition between normal and digestive gland tissue of WOx nanofibers (nano-WOx) fed invertebrate Porcellio scaber (Iosopda, Crustacea) and revealed mechanisms of nano-WOx effect in vivo. Fourier Transform Infrared (FTIR) imaging performed on digestive gland epithelium was supplemented by toxicity and cytotoxicity analyses as well as scanning electron microscopy (SEM) of the surface of the epithelium. The difference in the spectra of the Nano-WOx treated and control cells showed up in the central region of the cells and were related to lipid peroxidation, and structural changes of nucleic acids. The conventional toxicity parameters failed to show toxic effects of nano-WOx, whereas the cytotoxicity biomarkers and SEM investigation of digestive gland epithelium indicated sporadic effects of nanofibers. Since toxicological and cytological measurements did not highlight severe effects, the biochemical alterations evidenced by FTIR imaging have been explained as the result of cell protection (acclimation) mechanisms to unfavorable conditions and indication of a nonhomeostatic state, which can lead to toxic effects.
Vibrational Spectroscopy | 2010
Giovanni Birarda; Gianluca Grenci; Luca Businaro; Benedetta Marmiroli; Sabrina Pacor; Federica Piccirilli; Lisa Vaccari
Microelectronic Engineering | 2010
Giovanni Birarda; Gianluca Grenci; Luca Businaro; Benedetta Marmiroli; Sabrina Pacor; Lisa Vaccari
Analyst | 2010
Giuseppe Bellisola; Marco Della Peruta; Marzia Vezzalini; Elisabetta Moratti; Lisa Vaccari; Giovanni Birarda; M. Piccinini; Gianfelice Cinque; Claudio Sorio
Polyhedron | 2008
Tanmay Chattopadhyay; Arpita Banerjee; Kazi Sabnam Banu; Eringathodi Suresh; Munirathinam Netahji; Giovanni Birarda; Ennio Zangrando; Debasis Das
Microelectronic Engineering | 2012
Gianluca Grenci; Giovanni Birarda; E. Mitri; Luca Businaro; Sabrina Pacor; Lisa Vaccari; Massimo Tormen
Infrared Physics & Technology | 2018
Nirmeen Elmadany; Enam Khalil; Lisa Vaccari; Giovanni Birarda; Ibraheem Yousef; Rana Abu-Dahab
Analyst | 2018
Sara Novak; Tea Romih; Barbara Drašler; Giovanni Birarda; Lisa Vaccari; Paolo Ferraris; Stéphanie Sorieul; Maciej Zieba; Victor Sebastian; Manuel Arruebo; Samo B. Hočevar; Anita Jemec Kokalj; Damjana Drobne
Archive | 2011
Giovanni Birarda; Gianluca Grenci; Luca Businaro; Elisa Mitri; Massimo Tormen; Sabrina Pacor; Lisa Vaccari