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S?ntese e imobiliza??o de nanopart?culas de ouro em fibras regeneradas via exaust?o para potencial aplica??o biom?dicaSilva, Iris Oliveira da 20 February 2015 (has links)
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Previous issue date: 2015-02-20 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior - CAPES / O avan?o nanotecnol?gico na s?ntese e caracteriza??o de nanopart?culas (NP?s) tem
protagonizado o desenvolvimento de novas tecnologias para diversas aplica??es de materiais
em escala nanom?trica que apresentam propriedades especificas. O desenvolvimento
cient?fico nas ?ltimas d?cadas na ?rea de nanotecnologia tem protagonizado a descoberta de
novos materiais para as mais diversas aplica??es, em ?reas como: biom?dicas, qu?mica,
?ptica, mec?nica e t?xtil. A alta efici?ncia bactericida de nanopart?culas met?licas (Au e Ag),
dentre outros metais ? bastante conhecida, devido a sua capacidade de agir no DNA de
fungos, v?rus e bact?rias, interrompendo o processo de respira??o celular, tornando-os
importantes meios de estudo, al?m de sua capacidade de prote??o UVA e UVB. Este trabalho
tem como objetivo principal a aplica??o de um m?todo inovador na impregna??o de
nanopart?culas de ouro em substrato t?xtil, funcionalizado com quitosana, pelo processo de
tingimento via exaust?o, com controle de temperatura, tempo e velocidade e obten??o de
caracter?sticas antimicrobianas e prote??o UV. Os substratos esgotados com solu??es
coloidais de NPAu?s apresentaram colora??o lil?s e avermelhada (em malha de soja) devido
a sua superf?cie de plasmon no pico em torno de 520-540 nm. As NPAu?s foram sintetizadas
via s?ntese qu?mica, usando o citrato de s?dio como agente redutor e estabilizador. O material
foi previamente cationizado com quitosana, um polieletr?lito natural, com a finalidade de
funcionaliz?-lo para potencializar a adsor??o das NPAu, sendo usadas concentra??es de 5,
7, 10 e 20 % de ligante sobre o peso do material (SPM). Verificou-se tamb?m, atrav?s de um
planejamento experimental 23
, com 3 pontos centrais, qual era o melhor processo de
esgotamento dos substratos, utilizando os fatores: tempo (min.), temperatura (?C) e
concentra??o do coloide (%), tendo como resposta a vari?vel for?a color?stica - K/S (KubelkaMunk)
das fibras. Foram evidenciadas como melhores respostas os par?metros: concentra??o
e temperatura. O substrato com NPAu foi caracterizado por DRX; An?lise t?rmica, via TGA;
microestrutural via MEV/EDS evidenciando as NP na superf?cie do substrato e presen?a de
ouro (Au). Observou-se tamb?m que os substratos funcionalizados com NPAu possuem boa
solidez a lavagem, fator de classifica??o UPF de +50, considerado excelente e propriedade
bactericida de 98,22% para staphylococcus aureus e 96,45% para klebsiella pneumoniae,
comprovando que o tecido multifuncional desenvolvido, possui grande potencial de aplica??o
na ?rea biom?dica / The advancement of nanotechnology in the synthesis and characterisation of nanoparticles
(NP's) has played an important role in the development of new technologies for various
applications of nano-scale materials that have unique properties. The scientific development
in the last decades in the field of nanotechnology has sought ceaselessly, the discovery of new
materials for the most diverse applications, such as biomedical areas, chemical, optical,
mechanical and textiles. The high bactericidal efficiency of metallic nanoparticles (Au and Ag),
among other metals is well known, due to its ability to act in the DNA of fungi, viruses and
bacteria, interrupting the process of cellular respiration, making them important means of
study, in addition to its ability to protect UVA and UVB. The present work has as its main
objective the implementation of an innovative method in the impregnation of nanoparticles of
gold in textile substrate, functionalized with chitosan, by a dyeing process by exhaustion, with
the control of temperature, time and velocity, thus obtaining microbial characteristics and UV
protection. The exhausted substrates with colloidal solutions of NPAu's presented the colours,
lilac and red (soybean knits) due to their surface plasmon peak around 520-540 nm. The
NPAu's were synthesized chemically, using sodium citrate as a reducing agent and stabilizer.
The material was previously cationised with chitosan, a natural polyelectrolyte, with the
purpose of functionalising it to enhance the adsorption of colloid, at concentrations of 5, 7, 10
and 20 % of the bonding agent on the weight of the material (OWM). It was also observed,
through an experimental design 23
, with 3 central points, which was the best process of
exhaustion of the substrates, using the following factors: Time (min.), temperature (OC) and
concentration of the colloid (%), having as a response to variable K/S (ABSORB?NCIA/
Kubelka-Munk) of the fibres. Furthermore, it was evidenced as the best response, the following
parameters: concentration 100%, temperature 70 ?C and time 30 minutes. The substrate with
NPAu was characterised by XRD; thermal analysis using TGA; microstructural study using
SEM/EDS and STEM, thus showing the NP on the surface of the substrate confirming the
presence of the metal. The substrates showed higher washing fastness, antibacterial
properties and UV radiation protection.
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S?ntese de nanopart?culas de ouro estabilizadas por derivados quinoxal?nicos bioativosSilva, Janine de Ara?jo 31 October 2016 (has links)
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Previous issue date: 2016-10-31 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior (CAPES) / O estudo para a obten??o de nanopart?culas de ouro (AuNPs) funcionalizadas por mol?culas bioativas tem se mostrado relevante no desenvolvimento de novas alternativas para tratamento do c?ncer. O presente trabalho descreve a s?ntese de AuNPs estabilizadas por dois derivados quinoxal?nicos, 2,3-dietanolaminaquinoxalina (DEQX) e 2-(2,3-di-idro-[1,4]oxazino[2,3-b]quinoxalin-4-il)etanol (OAQX), sintetizados por nosso grupo de pesquisa, verificados por possu?rem atividade antic?ncer em estudos envolvendo c?lulas. Para obten??o das AuNPs funcionalizadas com DEQX e OAQX, o glicerol foi utilizado como principal agente redutor. As AuNPs foram caracterizadas por espectroscopia ultravioleta-vis?vel (UV-Vis), infravermelho (FTIR-ATR) e microscopia eletr?nica de transmiss?o (TEM). Os resultados de UV-Vis indicaram que a melhor condi??o de s?ntese das AuNPs foi quando as propor??es de Au3+ em rela??o aos ligantes org?nicos foi de 1:0,2 e 1:1 para DEQX e OAQX, respectivamente. Nestas condi??es, foram obtidas AuNPs esf?ricas e monodispersas, com dimens?es m?dias de 9,7 e 11,5 nm quando nas estabiliza??es por DEQX e OAQX, respectivamente. O mecanismo de forma??o das part?culas foi proposto com base nos resultados experimentais, e parece envolver uma complexa??o entre Au3+ e os ligantes previamente ? forma??o das AuNPs. O fato das bandas em torno de 525 nm do espectro de UV-Vis, caracter?sticas das AuNPs, tornarem-se mais intensas e com melhor defini??o com o passar do tempo corroboram para essa hip?tese. Foi realizado um estudo relacionado ? estabilidade das AuNPs em fun??o do pH, onde foi verificado que as mesmas se mostraram relativamente est?veis em pH pr?ximo a 7,4. O ligante DEQX foi mais eficiente na estabiliza??o das AuNPs quando comparado ao OAQX. Os resultados obtidos no presente trabalho indicaram que foram obtidas AuNPs esf?ricas monodispersas funcionalizadas com duas esp?cies org?nicas bioativas, abrindo a possibilidade de explora??o destes sistemas para fins medicinais, em especial para o tratamento do c?ncer. / The study on obtainment of gold nanoparticles (AuNPs) functionalized with bioactive molecules have been shown to be relevant in the development of new alternatives for cancer treatment. This study describes the synthesis of AuNPs stabilized by two quinoxaline derivatives, 2,3- diethanolaminequinoxaline (DEQX) and 2-(2,3-di-hydro-[1,4]oxazine[2,3-b]quinoxaline-4-yl) ethanol (OAQX), synthetized by our research group, verified as possessing anticancer activity in studies involving cells. For the obtainment of AuNPs functionalized with DEQX and OAQX, glycerol was used as main reducing agent. The AuNPs were characterized by ultraviolet-visible spectroscopy (UV-Vis), by infrared (FTIR-ATR), and by transmission electronic microscopy (TEM). The results from the UV-Vis showed that the best synthesis condition of AuNPs happened when the proportions of Au3+ in relation to organic ligands were 1:0,2 and 1:1 for DEQX and OAQX, respectively. In those given conditions, monodispersed spherical AuNPs were obtained, with average size of 9.7 and 11.5 nm when stabilized by DEQX and OAQX, respectively. The particles formation mechanism proposed was based on the experimental results, and it appears to involve a complexation between Au3+ and the referred ligands previously to the formation of the AuNPs. The fact that the bands at around 525 nm from the UV-Vis spectrum - characteristics of AuNPs - have become more intense and with better definition over time corroborate to this assumption. A study related to the stability of AuNPs according to the pH was carried out, being thus possible to verify that they showed to be relatively stable at pH near 7,4. The DEQX ligand was more efficient on the stabilization of AuNPs when compared to the OAQX ligand. The results obtained in this work indicated the formation of spherical monodisperse AuNPs functionalized with two bioactive organic species. This leads to the possibility of exploitation of these systems for medical purposes, especially for cancer treatment.
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