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Dive into the research topics where Bruna Antunes Más is active.

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Featured researches published by Bruna Antunes Más.


Journal of The Mechanical Behavior of Biomedical Materials | 2016

Influence of purified multiwalled carbon nanotubes on the mechanical and morphological behavior in poly (L-lactic acid) matrix

Claudenete Vieira Leal; Diego Stéfani T. Martinez; Bruna Antunes Más; Oswaldo Luiz Alves; Eliana Aparecida Rezende Duek

Poly (L-latic acid) (PLLA) is a bioresorbable polymer widely used as a biomaterial, but its fragility can limit its use. An alternative is to produce polymer nanocomposites, which can enhance the mechanical properties of polymeric matrix, resulting in a material with differentiated properties. In this work, PLLA based nanocomposites containing 0.25, 0.5 and 1.0wt% of purified multiwalled carbon nanotubes (p-MWCNTs) were prepared by the solvent casting method. The morphology and mechanical properties results show an improvement in strain at break for 0.25 and 0.5wt% p-MWCNTs and an increase in stiffness and elastic modulus for all compositions. Nanocomposites presented a p-MWCNTs agglomeration; however, there was a good stress transfer between PLLA and p-MWCNTs, which was confirmed by the increase in the hardness and elastic modulus. Atomic force microscopy analysis indicated an increase in roughness after nanotube addition. The in vitro biological study showed that PLLA/p-MWCNTs nanocomposites are cytocompatible with osteoblasts cells. The capacity of PLLA nanocomposites to stimulate osteogenesis was investigated by alkaline phosphatase (ALP) activity assay. Higher ALP activity was found on osteoblasts cultured on nanocomposites with 0.25 and 0.5wt% p-MWCNT compared to neat PLLA, confirming that PLLA cytocompatibility was improved on these compositions. Finally, our results showed that by a simple and inexpensive solvent casting method, it is possible to manufacture biofunctional nanocomposites devices with potential for orthopedic applications.


Materials Research-ibero-american Journal of Materials | 2014

Surface characterization and osteoblast-like Cells culture on collagen modified PLDLA scaffolds

Bruna Antunes Más; Silvia Mara de Mello Cattani; Rita de Cássia Cipriano Rangel; Gabrielle de Almeida Ribeiro; Nilson Cristino da Cruz; Fabio L. Leite; P.A.P. Nascente; Eliana Aparecida de Rezende Duek

Surface modification techniques based on the grafting of chemical functional groups and immobilization of bioactive molecules have been used to improve biocompatibility and clinical performance of bioabsorbable scaffolds in tissue engineering and medicine regenerative applications. This study aimed at developing and characterizing a biomimetic surface to stimulate bone regeneration by a simple and low-cost method of surface biofunctionalization of the poly (L-co-D,L lactic acid)-PLDLA scaffolds. The method was obtained by grafting reaction of carboxyl groups (-COOH) on their surface via acrylic acid (AAc) polymerization process, followed by immobilization of collagen type I (Col). Such approach resulted in a surface morphology markedly modified after treatment, with increase of pores and roughness on PLDLA-AAc surfaces and a network of fibrillar collagen deposition in non-specific areas of PLDLA-Col surfaces. The cytocompatibility of collagen-immobilized scaffolds was significantly improved in terms of cellular adhesion, proliferation, collagen synthesis and maintenance of osteoblast-like phenotype, indicating, therefore, the fundamental role of collagen protein over the biological interactions that occur by bio-recognition mimetic mechanisms at biomaterials interface. These results indicate that the surface modification method used here may be useful as a strategy to develop biofunctional scaffolds, which provide a more successful clinical application of biomaterials in the tissue engineering field.


Química Nova | 2015

Caracterização e avaliação in vitro de nanocompósitos de poli (L-ácido lático) e nanotubos de carbono de paredes múltiplas purificados

Claudenete Vieira Leal; Diego Stéfani T. Martinez; Andrea Rodrigues Esposito; Bruna Antunes Más; Ana Carolina Mazarin de Moraes; Oswaldo Luiz Alves; Eliana Aparecida Rezende Duek

Carbon nanotubes (CNT) have been studied for biomedical applications due to their unique properties. However, pristine CNT have structural features and impurities that can cause toxicity to biological systems. In this work, we describe a method to purify multiwalled carbon nanotubes (MWCNT) by chemical modification and subsequent attachment of hydroxyl and carboxyl groups to improve dispersion and to decrease toxic effects. Nanocomposites from poly (L-lactic acid) (PLLA) and nanotubes were produced by the solvent casting method and characterized and evaluated for cytocompatibility with Vero cells. The nanocomposite interactions with Vero cells demonstrated that the cells were able to adhere and sustain proliferation and showed favorable cytocompatibility. In vitro studies also revealed an increase in fibroblast cell viability in the nanocomposites, compared with neat PLLA.


Materials Research-ibero-american Journal of Materials | 2014

Hydroxyapatite coating deposited on grade 4 Titanium by Plasma Electrolytic Oxidation

César Augusto Antônio; Nilson Cristino da Cruz; Elidiane Cipriano Rangel; Rita de Cássia Cipriano Rangel; Tamires do Espirito Santo Araujo; Steven F. Durrant; Bruna Antunes Más; Eliana Aparecida Rezende Duek

Titanium is widely-used as a biomaterial because it is biocompatible, chemically inert, and possesses good mechanical properties. It is not an ideal material from a medical standpoint as it does not present good bioactivity, i.e. bone does not grow spontaneously around it when implanted in the human body


Polimeros-ciencia E Tecnologia | 2017

In vitro and in vivo cell tracking of PKH26-labeled osteoblasts cultured on PLDLA scaffolds

Alice Rezende Duek; Gabriel Ciambelli Dias da Costa; Bruna Antunes Más; Maria Lourdes Peris Barbo; Adriana Cristina Motta; Eliana Aparecida de Rezende Duek

The importance of monitoring in vivo interaction that occurs between cells /bio/tissue recipient in the understanding of tissue regeneration processes becomes ever greater. This study aims to monitor and evaluate the influence of scaffold implants of poly (L-co-D, L lactic acid) PLDLA synthesized in the laboratory, previously cultured with primary osteoblastic cells heterologously stained with the fluorescent vital dye, PKH26, on the tissue regeneration process in 8 mm central critical defects of the Wistar rat calvaria. The results obtained by MTT assay and monitoring of cells stained with PKH26 dye over 14 days of culture showed that the dye was cytocompatible with osteoblastic cells and did not exert a negative influence on the growth of unstained cells. In the in vivo study, macroscopic observations made during deployment times corroborate the results in vitro, as no apparent signs of toxicity were observed in the implanted bone defect area. The use of mobile monitoring with the dye, PKH26 in vivo is an effective strategy for the understanding of cell behaviour in the presence of PLDLA polymer.


Langmuir | 2017

Amphiphilic Nucleating Agents to Enhance Calcium Phosphate Growth on Polymeric Surfaces

Laura C. E. da Silva; Bruna Antunes Más; Eliana A. R. Duek; Richard Landers; Celso A. Bertran; Maria do Carmo Gonçalves

Poly(ε-caprolactone) (PCL) is an aliphatic polyester widely explored in the preparation of guided bone regeneration (GBR) membranes because of its interesting mechanical properties and biodegradability. However, PCL high hydrophobicity often impairs cell adhesion and proliferation as well as calcium phosphate growth, all of which are crucial to achieving suitable bone-tissue integration. In this work, aimed at achieving less-hydrophobic surfaces, amphiphilic molecules were added at low concentrations to the polymeric dope solutions that generated the GBR membranes. During membrane formation, these molecules migrate to the solution/air interface in such a way that, upon liquid-solid phase transition, the negatively charged heads are exposed while the apolar tails are anchored to the polymer bulk. As a consequence, these molecules became nucleating agents for subsequent calcium phosphate growth using an alternating soaking process. Herein, PCL porous membranes containing different amphiphilic molecules, such as stearic acid and bis(2-ethylhexyl) phosphate, were investigated. This new, simple, and atoxic method to superficially treat polymeric membranes could be extended to a wide range of polymers and applications.


European Polymer Journal | 2015

Amphiphilic multiblock copolymers of PLLA, PEO and PPO blocks: Synthesis, properties and cell affinity

Lívia M. D. Loiola; Bruna Antunes Más; Eliana A. R. Duek; Maria Isabel Felisberti


Archive | 2011

Imobilização de colágeno em arcabouços de poli (L-co-D,L ácido lático)

Bruna Antunes Más; Eliana Aparecida de Rezende Duek


Surface & Coatings Technology | 2018

Growth of hydroxyapatite coatings on tantalum by plasma electrolytic oxidation in a single step

Rosana F. Antonio; Elidiane Cipriano Rangel; Bruna Antunes Más; Eliana A. R. Duek; Nilson Cristino da Cruz


Archive | 2016

Biofuncionalização de scaffolds de PLDLA imobilizados com o peptídeo RGDfK cíclico e epítopo knuckle (73-92) da BMP-2

Bruna Antunes Más; Eliana Aparecida de Rezende Duek

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Eliana Aparecida de Rezende Duek

Pontifícia Universidade Católica de São Paulo

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Eliana A. R. Duek

Pontifícia Universidade Católica de São Paulo

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Eliana Aparecida Rezende Duek

Pontifícia Universidade Católica de São Paulo

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Maria Lourdes Peris Barbo

Pontifícia Universidade Católica de São Paulo

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Oswaldo Luiz Alves

State University of Campinas

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Alice Rezende Duek

Pontifícia Universidade Católica de São Paulo

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