Irma Rojas-Oviedo
Universidad Autónoma Metropolitana
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Irma Rojas-Oviedo.
Bioinorganic Chemistry and Applications | 2013
Ariadna Garza-Ortiz; Carlos Camacho-Camacho; Teresita Sainz-Espuñes; Irma Rojas-Oviedo; Luis Raúl Gutiérrez-Lucas; Atilano Gutierrez Carrillo; Marco A. Vera Ramirez
Five novel tin Schiff base complexes with histidine analogues (derived from the condensation reaction between L-histidine and 3,5-di-tert-butyl-2-hydroxybenzaldehyde) have been synthesized and characterized. Characterization has been completed by IR and high-resolution mass spectroscopy, 1D and 2D solution NMR (1H, 13C and 119Sn), as well as solid state 119Sn NMR. The spectroscopic evidence shows two types of structures: a trigonal bipyramidal stereochemistry with the tin atom coordinated to five donating atoms (two oxygen atoms, one nitrogen atom, and two carbon atoms belonging to the alkyl moieties), where one molecule of ligand is coordinated in a three dentate fashion. The second structure is spectroscopically described as a tetrahedral tin complex with four donating atoms (one oxygen atom coordinated to the metal and three carbon atoms belonging to the alkyl or aryl substituents), with one molecule of ligand attached. The antimicrobial activity of the tin compounds has been tested against the growth of bacteria in vitro to assess their bactericidal properties. While pentacoordinated compounds 1, 2, and 3 are described as moderate effective to noneffective drugs against both Gram-positive and Gram-negative bacteria, tetracoordinated tin(IV) compounds 4 and 5 are considered as moderate effective and most effective compounds, respectively, against the methicillin-resistant Staphylococcus aureus strains (Gram-positive).
Indian Journal of Pharmaceutical Sciences | 2012
Irma Rojas-Oviedo; B Retchkiman-Corona; Ct Quirino-Barreda; Jorge Cárdenas; Ps Schabes-Retchkiman
Mechanochemical activation is a practical cogrinding operation used to obtain a solid dispersion of a poorly water soluble drug through changes in the solid state molecular aggregation of drug-carrier mixtures and the formation of noncovalent interactions (hydrogen bonds) between two crystalline solids such as a soluble carrier, lactose, and a poorly soluble drug, indomethacin, in order to improve its solubility and dissolution rate. Samples of indomethacin and a physical mixture with a weight ratio of 1:1 of indomethacin and lactose were ground using a high speed vibrating ball mill. Particle size was determined by electron microscopy, the reduction of crystallinity was determined by calorimetry and transmission electron microscopy, infrared spectroscopy was used to find evidence of any interactions between the drug and the carrier and the determination of apparent solubility allowed for the corroboration of changes in solubility. Before grinding, scanning electron microscopy showed the drug and lactose to have an average particle size of around 50 and 30 μm, respectively. After high speed grinding, indomethacin and the mixture had a reduced average particle size of around 5 and 2 μm, respectively, showing a morphological change. The ground mixture produced a solid dispersion that had a loss of crystallinity that reached 81% after 30 min of grinding while the drug solubility of indomethacin within the solid dispersion increased by 2.76 fold as compared to the pure drug. Drug activation due to hydrogen bonds between the carboxylic group of the drug and the hydroxyl group of lactose as well as the decrease in crystallinity of the solid dispersion and the reduction of the particle size led to a better water solubility of indomethacin.
European Journal of Pharmaceutical Sciences | 2007
Irma Rojas-Oviedo; Rodrigo A. Salazar-López; José Reyes-Gasga; Carlos Tomás Quirino-Barreda
Applied Organometallic Chemistry | 2008
Carlos Camacho-Camacho; Irma Rojas-Oviedo; M. Angeles Paz-Sandoval; Jorge Cárdenas; Alfredo Toscano; Marcel Gielen; Lidia Barrón Sosa; Francisco Sánchez Bártez; Isabel Gracia-Mora
Applied Organometallic Chemistry | 2016
Carlos Camacho-Camacho; Irma Rojas-Oviedo; Ariadna Garza-Ortiz; Rubén A. Toscano; Luis Sánchez-Sánchez; Jorge Cárdenas; Hugo López-Muñoz
Applied Organometallic Chemistry | 2013
Carlos Camacho-Camacho; Irma Rojas-Oviedo; Ariadna Garza-Ortiz; Jorge Cárdenas; Rubén A. Toscano; Rubén Gaviño
Journal of Porous Materials | 2016
Irma Rojas-Oviedo; Sandra Rodríguez-Hernández; Jorge Cárdenas; Juan Carlos Rivas-Ojeda; Rubén Gaviño
Revista de la Sociedad Química de Mexico | 2005
Irma Rojas-Oviedo; Jorge Cárdenas; Carmen Márquez; Lance J. Twyman
Applied Organometallic Chemistry | 2014
Irma Rojas-Oviedo; Carlos Camacho-Camacho; Luis Sánchez-Sánchez; Jorge Cárdenas; Hugo López-Muñoz; Hugo Eugenio-Robledo; Israel Velázquez; Rubén A. Toscano
Revista mexicana de ciencias farmacéuticas | 2012
Irma Rojas-Oviedo; Adriana López Torres; Carlos Quirino Barreda; Hilda Cárdenas Rodríguez; Ramiro García García