Poliane Chagas
Universidade Federal de Minas Gerais
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Featured researches published by Poliane Chagas.
Environmental Technology | 2018
Nádia S.V. Capanema; Alexandra A.P. Mansur; Herman S. Mansur; Anderson C. de Jesus; Sandhra M. Carvalho; Poliane Chagas; Luiz Cláudio Vieira de Oliveira
ABSTRACT In this study, new eco-friendly hydrogel adsorbents were synthesized based on carboxymethylcellulose (CMC, degree of substitution [DS] = 0.7) chemically cross-linked with citric acid (CA) using a green process in aqueous solution and applied for the adsorption of methylene blue (MB). Spectroscopic analyses demonstrated the mechanism of cross-linking through the reaction of hydroxyl functional groups from CMC with CA. These CMC hydrogels showed very distinct morphological features dependent on the extension of cross-linking and their nanomechanical properties were drastically increased by approximately 300% after cross-linking with 20% CA (e.g. elastic moduli from 80 ± 15 to 270 ± 50 MPa). Moreover, they were biocompatible using an in vitro cell viability assay in contact with human osteosarcoma-derived cells (SAOS) for 24 h. These CMC-based hydrogels exhibited adsorption efficiency above 90% (24 h) and maximum removal capacity of MB from 5 to 25 mg g−1 depending on the dye concentration (from 100 to 500 mg L−1), which was used as the model cationic organic pollutant. The adsorption of process of MB was well-fit to the pseudo-second-order kinetics model. The desorption of MB by immersion in KCl solution (3 mol L−1, 24 h) showed a typical recovery efficiency of over 60% with conceivable reuse of these CMC-based hydrogels. Conversely, CMC hydrogels repelled methyl orange dye used as model anionic pollutant, proving the mechanism of adsorption by the formation of charged polyelectrolyte/dye complexes. GRAPHICAL ABSTRACT
Environmental Technology | 2018
Leonardo S. Sousa; Poliane Chagas; Luiz C.A. Oliveira; Cínthia Soares de Castro
ABSTRACT Composite materials from PET and red mud (RM) wastes were used as catalysts for environmental application such as the wastewater treatment. The PET-RM catalysts were obtained by a mechanical mixture of the residues followed by thermal treatment under an N2 atmosphere (300°C/1 h). An additional activation of the composites with CO2 was investigated (at 800–900°C) to reduce the red mud basicity. The CO2 activation affected the composites surface area and reduced their carbon content. XRD revealed that the haematite (α-Fe2O3) and maghemite/magnetite are the main iron oxides present in the composites. Mössbauer characterization indicated the formation of reduced iron species (Fe2+), highly reactive, after the composites heat treatment. The materials were very active catalysts for methylene blue (MB) and paracetamol (PRC) removal from aqueous solution. The catalytic activity revealed to be dependent on the surface area and mainly of the presence of reduced iron species in the catalysts. The MB removal reached 97% for both PET-RM 800/2 h and PET-RM 800/5 h, after 1 h of reaction. In the case of PRC, the highest removal was also obtained for PET-RM 800/2 h and PET-RM 800/5 h, of ≈25% and 40%, respectively. The contaminants removal mechanism likely occurred through combined adsorption and Fenton-like oxidation processes. GRAPHICAL ABSTRACT
Carbohydrate Polymers | 2018
Nádia S.V. Capanema; Alexandra A.P. Mansur; Sandhra M. Carvalho; Isadora C. Carvalho; Poliane Chagas; Luiz C.A. Oliveira; Herman S. Mansur
Melanoma is the most aggressive type of skin cancer with high rates of mortality. Despite encouraging advances demonstrated by anticancer drug carriers in recent years, developing ideal drug delivery systems to target tumor microenvironment by overcoming physiological barriers and chemotherapy side effects still remain intimidating challenges. Herein, we designed and developed a novel carbohydrate-based prodrug composed of carboxymethylcellulose (CMC) polymer bioconjugated with anticancer drug doxorubicin hydrochloride (DOX) by covalent amide bonds and crosslinked with citric acid for producing advanced hydrogels. The results demonstrated the effect of CMC hydrogel network structure with distinct degree of substitution of carboxymethyl groups of the cellulose backbone regarding to the process of bioconjugation and on tailoring the DOX release kinetics in vitro and the cytotoxicity towards melanoma cancer cells in vitro. To this end, an innovative platform was developed based on polysaccharide-drug hydrogels offering promising perspectives for skin disease applications associated with topical chemotherapy of melanoma.
Reactive & Functional Polymers | 2015
Fernanda G.L. Medeiros Borsagli; Alexandra A.P. Mansur; Poliane Chagas; Luiz C.A. Oliveira; Herman S. Mansur
Applied Catalysis A-general | 2013
Poliane Chagas; Henrique S. Oliveira; Raquel V. Mambrini; Mireille Le Hyaric; Mauro V. de Almeida; Luiz C.A. Oliveira
Journal of Nanoparticle Research | 2013
Poliane Chagas; Adilson Cândido da Silva; E.C. Passamani; José D. Ardisson; Luiz C.A. Oliveira; José Domingos Fabris; R. Paniago; Douglas S. Monteiro; Márcio C. Pereira
Catalysis Today | 2015
Talita E. Souza; Izabela Padula; Mariana M.G. Teodoro; Poliane Chagas; Jarbas M. Resende; Patterson P. Souza; Luiz C.A. Oliveira
Chemical Engineering Journal | 2017
Luiza N. Andrade; Sandrine F. Araujo; Antonio Teixeira de Matos; Andreia B. Henriques; Luiz C.A. Oliveira; Patterson P. Souza; Poliane Chagas; Mônica Maria Diniz Leão; Camila C. Amorim
Journal of environmental chemical engineering | 2018
Thiago de Melo Augusto; Poliane Chagas; Daniel Lara Sangiorge; Tatiana Cristina de Oliveira Mac Leod; Luiz C.A. Oliveira; Cínthia S. Castro
Journal of Molecular Liquids | 2018
Sandhra M. Carvalho; Alexandra A.P. Mansur; Nádia S.V. Capanema; Isadora C. Carvalho; Poliane Chagas; Luiz C.A. Oliveira; Herman S. Mansur