9 resultados para Cu(II) complexes.


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Widely used in cancer treatment, chemotherapy still faces hindering challenges, ranging from severe induced toxicity to drug resistance acquisition. As means to overcome these setbacks, newly synthetized compounds have recently come into play with the basis of improved pharmacokinetic/pharmacodynamic properties. With this mind-set, this project aimed towards the antiproliferative potential characterization of a group of metallic compounds. Additionally the incorporation of the compounds within a nanoformulation and within new combination strategies with commercial chemotherapeutic drugs was also envisaged. Cell viability assays presented copper (II) compound (K4) as the most promising, presenting an IC50 of 6.10 μM and 19.09 μM for HCT116 and A549 cell line respectively. Exposure in fibroblasts revealed a 9.18 μM IC50. Hoechst staining assays further revealed the compound’s predisposition to induce chromatin condensation and nuclear fragmentation in HCT116 upon exposure to K4 which was later demonstrated by flow cytometry and annexin V-FITC/propidium iodide double staining analysis (under 50 % cell death induction). The compound further revealed the ability to interact with major macromolecules such as DNA (Kb = 2.17x105 M-1), inducing structural brakes and retardation, and further affecting cell cycle progression revealing delay in S-phase. Moreover BSA interactions were also visible however not conclusive. Proteome profiling revealed overexpression of proteins involved in metabolic activity and underexpression of proteins involved in apoptosis thus corroborating Hoechst and apoptosis flow cytometry data. K4 nanoformulation suffered from several hindrances and was ill succeeded in part due to K4’s poor solubility in aqueous buffers. Other approaches were considered in this regard. Combined chemotherapy assays revealed high cytotoxicity for afatinib and lapatinib strategies. Lapatinib and K4 proteome profiling further revealed high apoptosis rates, high metabolic activity and activation of redundant proteins as part of compensatory mechanisms.

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This work describes the synthesis and characterization of a series of new α-diimine and P,O, β-keto and acetamide phosphines ligands, and their complexation to Ni(II), Co(II),Co(III) and Pd(II) to obtain a series of new compounds aiming to study their structural characteristics and to test their catalytic activity. All the compounds synthesized were characterized by the usual spectroscopic and spectrometric techniques: Elemental Analysis, MALDI-TOF-MS spectrometry, IR, UV-vis, 1H, 13C and 31P NMR spectroscopies. Some of the paramagnetic compounds were also characterized by EPR. For the majority of the compounds it was possible to solve their solid state structure by single crystal X-ray diffraction. Tests for olefin polymerization were performed in order to determine the catalytic activity of the Co(II) complexes. Chapter I presents a brief introduction to homogenous catalysis, highlighting the reactions catalyzed by the type of compounds described in this thesis, namely olefin polymerization and oligomerization and reactions catalyzed by the complexes bearing α-diimines and P,O type ligands. Chapter II is dedicated to the description of the synthesis of new α-diimines cobalt (II) complexes, of general formula [CoX2(α-diimine)], where X = Cl or I and the α-diimines are bis(aryl)acenaphthenequinonediimine) (Ar-BIAN) and 1,4-diaryl-2,3-dimethyl-1,4-diaza-1,3-butadiene (Ar-DAB). Structures solved by single crystal X-ray diffraction were obtained for all the described complexes. For some of the compounds, X-band EPR measurements were performed on polycrystalline samples, showing a high-spin Co(II) (S = 3/2) ion, in a distorted axial environment. EPR single crystal experiments on two of the compounds allowed us to determine the g tensor orientation in the molecular structure. In Chapter III we continue with the synthesis and characterization of more cobalt (II)complexes bearing α-diimines of general formula [CoX2(α-diimine)], with X = Cl or I and α-diimines are bis(aryl)acenaphthenequinonediimine) (Ar-BIAN) and 1,4-diaryl-2,3-dimethyl- 1,4-diaza-1,3-butadiene (Ar-DAB). The structures of three of the new compounds synthesized were determined by single crystal X-ray diffraction. A NMR paramagnetic characterization of all the compounds described is presented. Ethylene polymerization tests were done to determine the catalytic activity of several of the Co(II) complexes described in Chapter II and III and their results are shown. In Chapter IV a new rigid bidentate ligand, bis(1-naphthylimino)acenaphthene, and its complexes with Zn(II) and Pd(II), were synthesized. Both the ligand and its complexes show syn and anti isomers. Structures of the ligand and the anti isomer of the Pd(II) complex were solved by single crystal X-ray diffraction. All the compounds were characterized by elemental analysis, MALDI-TOF-MS spectrometry, and by IR, UV-vis, 1H, 13C, 1H-1H COSY, 1H-13C HSQC, 1H-13C HSQC-TOCSY and 1H-1H NOESY NMR when necessary. DFT studies showed that both conformers of [PdCl2(BIAN)] are isoenergetics and can be obtain experimentally. However, we can predict that the isomerization process is not available in square-planar complex, but is possible for the free ligand. The molecular geometry is very similar in both isomers, and only different orientations for naphthyl groups can be expected. Chapter V describes the synthesis of new P, O type ligands, β-keto phosphine, R2PCH2C(O)Ph, and acetamide phosphine R2PNHC(O)Me, as well as a series of new cobalt(III) complexes namely [(η5-C5H5)CoI2{Ph2PCH2C(O)Ph}], and [(η5- C5H5)CoI2{Ph2PNHC(O)Me}]. Treating these Co(III) compounds with an excess of Et3N, resulted in complexes η2-phosphinoenolate [(η5-C5H5)CoI{Ph2PCH…C(…O)Ph}] and η2- acetamide phosphine [(η5-C5H5)CoI{Ph2PN…C(…O)Me}]. Nickel (II) complexes were also obtained: cis-[Ni(Ph2PN…C(…O)Me)2] and cis-[Ni((i-Pr)2PN…C(…O)Me)2]. Their geometry and isomerism were discussed. Seven structures of the compounds described in this chapter were determined by single crystal X-ray diffraction. The general conclusions of this work can be found in Chapter VI.

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Dissertação apresentada para a obtenção do Grau de Doutor em Química Sustentável, especialidade de Química-Física Inorgânica, pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia

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O objectivo desta tese é a caracterização global de algumas famílias de compostos poliamínicos com grupos aromáticos fluorescentes. Estes têm potencial deaplicação como dispositivos moleculares, incluindo quimiossensores, interruptores moleculares,máquinas moleculares ou sistemas de processamento de informação moleculares. Estes compostos possuem poliaminas que podem actuar como unidades receptoras de várias espécies químicas, como protões, iões metálicos ou aniões, e os tornam solúveis em água. Contêm também grupos aromáticos fluorescentes (naftaleno, antraceno, pireno), que actuam como unidades sinalizadoras do estado do receptor. No Capítulo 1 são apresentados métodos de síntese e purificação de compostos poliamínicos, juntamente com descrições pormenorizadas das sínteses. Nos Capítulos 2 a 8 são caracterizados diversos compostos, quando livres em solução aquosa, e na presença de iões de metais de transição e de ATP. São usadas técnicas de espectrofotometria no UV-visível, espectrofluorimetria no estado estacionário e de contagem de fotão único correlacionada no tempo, complementadas com dados potenciométricos e de RMN fornecidos pelo grupo do Prof. Enrique García-España da Universidade de Valência, Espanha. No Capítulo 2 estudam-se compostos com grupos antraceno. Verifica-se supressão de emissão a pH básico, comum a todos os compostos poliamínicos, e caracterizam-se factores que influenciam nesse fenómeno. No Capítulo 3 analisam-se compostos de naftaleno. Verificam-se excímeros intramoleculares em compostos com dois grupos naftaleno. Para os formar ocorre um movimento fotoinduzido de flexão, pelo que esses compostos podem ser considerados máquinas moleculares. No Capítulo 4 estudam-se compostos com grupos pireno. Observam-se excímeros intramoleculares nos compostos com dois fluoróforos. No Capítulo 5 caracterizam-se compostos com dois grupos aromáticos diferentes(vários compostos com naftaleno e antraceno, um com pireno e antraceno e um com pireno e naftaleno). Verifica-se transferência de energia do grupo naftaleno para o antraceno (que parece evoluir de acordo com a teoria de Förster), de pireno para antraceno e de naftaleno para pireno. No Capítulo 6 examinam-se dois compostos de antraceno na presença de iões metálicos. Verifica-se aumento de emissão presença de Zn(II) e Cd(II), e supressão de emissão na presença de Cu(II) e Ni(II). Caracteriza-se o comportamento de um deles do ponto de vista de operações lógicas ao nível molecular. No Capítulo 7 caracteriza-se um composto de naftaleno na presença de vários iões metálicos. Verifica-se supressão de emissão com iões de metais de transição do 3ºperíodo com níveis na presença de Zn(II), Cd(II) e Al(III). Não se verifica efeito na presença de iões alcalinos, alcalino-terrosos, lantanídeos, Sn(II) e Pb(II). No Capítulo 8 estuda-se a interacção de compostos poliamínicos com ATP. Verifica-se em qualquer pH a ocorrência de empilhamento aromáticos do ATP e composto poliamínico, e ancoragem do grupo polifosfato do ATP com a poliamina. Verifica-se supressão de emissão do composto poliamínico a pH ácido, principalmente por transferência electrónica fotoinduzida do seu grupo aromático para o grupo adenina protonado do ATP. Num composto com antraceno e naftaleno, continua-se a verificar transferência de energia d incompletamente preenchidos, e com Hg(II), e aumento de emissãoπ-π entre os grupos

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Dissertação apresentada para obtenção do Grau de Doutor em Engenharia Química Pela Universidade Nova de Lisboa,Faculdade de Ciências e Tecn

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Dissertation presented to obtain the Ph.D degree in Chemistry

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Dissertação para obtenção do Grau de Mestre em Biotecnologia

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Dissertação para obtenção do Grau de Mestre em Bioquímica

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