• JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
 
  Bookmark and Share
 
 
Doctoral Thesis
DOI
https://doi.org/10.11606/T.75.2015.tde-07052015-114035
Document
Author
Full name
Rafaela Bernardo Provazi Pesci
Institute/School/College
Knowledge Area
Date of Defense
Published
São Carlos, 2015
Supervisor
Committee
Deflon, Victor Marcelo (President)
Frem, Regina Célia Galvao
Corbi, Pedro Paulo
Pavan, Fernando Rogério
Scarpellini, Marciela
Title in Portuguese
Síntese e caracterização de ligantes bioativos e seus complexos de molibdênio de interesse farmacológico e de índio e gálio como modelos para medicina nuclear
Keywords in Portuguese
Gálio
índio
Ligante bioativo
Medicina Nuclear
Molibdênio
Abstract in Portuguese

Este trabalho consiste na síntese e na caracterização de complexos inéditos de gálio, índio, cobalto, cobre e molibdênio.Baseando-se na potencial aplicação na terapia dos complexos de gálio e índio, dois novos complexos, um de gálio e um de índio, foram sintetizados utilizando como ligante o ânion monovalente da 2,3-dihidroxipiridina e um de gálio foi sintetizado utilizando como ligante o mono ânion da 2-hidroxipiridina-N-óxido. Um ligante macrocíclico derivado do cyclam foi sintetizado. Posteriormente, foi preparado um complexo de cobre e um de cobalto com o macrociclo, visando a potencial aplicação de complexos desse tipo na medicina nuclear. Cinco complexos de molibdênio foram sintetizados, sendo dois utilizando ligantes hidrazonas e três com ligantes ditiocarbazatos, visando sua potencial aplicação na terapia da doença de Chagas. Os compostos foram caracterizados por espectroscopia de absorção na região do infravermelho, análise elementar (C, H, N e S), espectroscopia de ressonância magnética nuclear (1H e no caso do ligante macrociclo 13C), espectrometria de massas (MS-ESI) e difração de raios X.Após completa caracterização, os complexos de gálio e índio tiveram sua atividade antitumoral in vitro avaliada em linhagens de células derivadas de tumores e, como estudo pioneiro, os complexos também tiveram sua atividade tripanocida avaliada, assim como os complexos de molibdênio.

Title in English
Synthesis and Characterization of Bioactive Ligands and their Molybdenum Complexes of Pharmacological Interest and Indian and Gallium as models for Nuclear Medicine
Keywords in English
bioactive ligand
gallium
índium
molybdenum
Nuclear Medicine
Abstract in English

This work consists on the synthesis and characterization of novel complexes of gallium, indium, cobalt, copper and molybdenum.Based on the potential therapeutic application of gallium and indium complexes, two new complexes with the monovalent anion of 2,3-dihydroxypyridine were synthesized, one of gallium and one of indium. In addition, one gallium complex was prepared with the mono anion of 2-hydroxypyridine N-oxide as ligand. A cyclam derivative macrocycle ligand was synthesized. Subsequently, a copper and a cobalt complex were synthesized with the new macrocycle, aiming their potential application in nuclear medicine. Five molybdenum complexes were synthesized, two with hydrazones and three with dithiocarbazates as ligands, focusing their potential application in Chagas disease therapy. The compounds were characterized by infrared absorption spectroscopy, elemental analysis (C, H, N and O), nuclear magnetic resonance (1H and, in the case of the macrocycle ligand, 13C), mass spectrometry (ESI-MS), and single crystal X-ray diffraction. After complete characterization, the complexes of gallium and indium had their in vitro antitumor activity assessed front tumor-derived cell lines and as a first study the complexes were also evaluated regarding their trypanocidal activity, as well as the molybdenum complexes.

 
WARNING - Viewing this document is conditioned on your acceptance of the following terms of use:
This document is only for private use for research and teaching activities. Reproduction for commercial use is forbidden. This rights cover the whole data about this document as well as its contents. Any uses or copies of this document in whole or in part must include the author's name.
Publishing Date
2015-05-15
 
WARNING: Learn what derived works are clicking here.
All rights of the thesis/dissertation are from the authors
CeTI-SC/STI
Digital Library of Theses and Dissertations of USP. Copyright © 2001-2024. All rights reserved.