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1.
Rev. toxicol ; 39(1): 16-18, ene.-jun. 2022.
Artigo em Espanhol | IBECS | ID: ibc-206826

RESUMO

Recientemente, el interés por el óxido de grafeno reducido (OGr) se ha visto incrementado debido a sus numerosas propiedades. Considerando que el uso de estos materiales ha aumentado en los últimos años, esto puede suponer un mayor riesgo para la salud humana. La vía oral es una de las principales rutas de exposición, por lo que es importante determinar cuáles son los principales efectos tóxicos sobre el sistema hepato-gastrointestinal. En este sentido, el objetivo de este estudio es revisar los posibles efectos tóxicos in vitro del OGr en las principales líneas celulares de los sistemas intestinal y hepático. Los resultados muestran que el OGr podría ser tóxico en modelos in vitro; sin embargo, son necesarios un mayor número de investigaciones para determinar los posibles mecanismos de toxicidad. (AU)


Recently, the interest in reduced graphene oxide (rGO) has increased due to its myriad of properties. Considering the higher use of this material in the last years, it is important to evaluate its potential risk on human health. The oral pathway is one of the main exposure routes, therefore, it is important to assess its toxic effects on the hepato-gastrointestinal system. In this sense, the aim of this study is to review the potential in vitro toxic effects of rGO on gastrointestinal and liver cell lines. The results obtained showed that rGO could be toxic in in vitro models; however, further toxicological studies are required to define its mechanisms of toxicity. (AU)


Assuntos
Humanos , Trato Gastrointestinal , Toxicidade , Técnicas In Vitro
2.
J. oral res. (Impresa) ; 10(2): 1-9, abr. 30, 2021. ilus, tab
Artigo em Inglês | LILACS | ID: biblio-1381731

RESUMO

Objective: To determine the cytotoxicity and effects of graphene oxide (GO) on cellular proliferation of gingival-fibroblasts, pulp-dental cells and human osteoblasts in culture, and to determine the physical, mechanical and biological properties of poly (methyl methacrylate) (PMMA) enriched with GO. Material and Methods: The GO was characterized with SEM. Cytotoxicity and cell proliferation were determined by the MTT bioassay. The physical mechanical tests (flexural strength and elastic modulus) were carried out with a universal testing machine. Sorption and solubility were determined by weighing before and after drying and immersion in water. Porosity was evaluated by visual inspection. Data were analyzed with Student's t-test and Tukey's posthoc ANOVA. Results: The GO has a heterogeneous morphology and a particle size of 66.67±64.76 µm. GO has a slight to no-cytotoxicity (>50-75% viability) at 1-30 days, and at 24 hours incubation of PMMA with GO significantly stimulates osteoblasts (45±8%, p<0.01). The physical and mechanical properties of PMMA with GO increase considerably without altering sorption, solubility and porosity. Conclusion: GO alone or with PMMA has an acceptable biocompatibility, could contribute to cell proliferation, cell regeneration and improve the physical mechanical properties of PMMA.


Objective: To determine the cytotoxicity and effects of graphene oxide (GO) on cellular proliferation of gingival-fibroblasts, pulpdental cells and human osteoblasts in culture, and to determine the physical, mechanical and biological properties of poly (methyl methacrylate) (PMMA) enriched with GO. Material and Methods: T he G O w as c haracterized with SEM. Cytotoxicity and cell proliferation were determined by the MTT bioassay. The physical-mechanical tests (flexural strength and elastic modulus) were carried out with a universal testing machine. Sorption and solubility were determined by weighing before and after drying and immersion in water. Porosity was evaluated by visual inspection. Data were analyzed with Student's t-test and Tukey's post-hoc ANOVA. Results: The GO has a heterogeneous morphology and a particle size of 66.67±64.76 ?m. GO has a slight to no-cytotoxicity (>50-75% viability) at 1-30 days, and at 24 hours incubation of PMMA with GO significantly stimulates osteoblasts (45±8%, p<0.01). The physical and mechanical properties of PMMA with GO increase considerably without altering sorption, solubility and porosity. Conclusion: GO alone or with PMMA has an acceptable biocompatibility, could contribute to cell proliferation, cell regeneration and improve the physical-mechanical properties of PMMA.


Assuntos
Humanos , Materiais Biocompatíveis , Polimetil Metacrilato/química , Grafite/química , Osteoblastos , Óxidos , Regeneração , Bioensaio , Proliferação de Células , Resistência à Flexão
3.
Braz. j. pharm. sci ; 51(2): 429-437, Apr.-June 2015. tab, ilus
Artigo em Inglês | LILACS | ID: lil-755057

RESUMO

In this approach, a new voltammetric method for determination of norfloxacin was proposed with high sensitivity and wider detection linear range. The used voltammetric sensor was fabricated simply by coating a layer of graphene oxide (GO) and Nafion composited film on glassy carbon electrode. The advantage of proposed method was sensitive electrochemical response for norfloxacin, which was attributed to the excellent electrical conductivity of GO and the accumulating function of Nafion under optimum experimental conditions, the present method revealed a good linear response for determination of norfloxacin in the range of 1×10-8mol/L-7×10-6 mol/L with a detection limit of 5×10-9 mol/L. The proposed method was successfully applied in the determination of norfloxacin in capsules with satisfactory results...


Propos-se, por essa abordagem, novo método voltamétrico, com alta sensibilidade e faixa linear de detecção mais ampla, para a determinação de norfloxacino. O sensor voltamétrico utilizado foi fabricado simplismente por cobertura de camada de óxido de grafeno (GO) e filme de Nafion em eletrodo de cabrono vítreo. A vantagem do método proposto foi a resposta eletroquímica sensível para o norfloxacino, atribuída à condutividade elétrica excelente do GO e à função acumulada do Nafion. Sob condições experimentais ótimas, o presente método revelou boa resposta linear para a determinação do norfloxacino na faixa de limite de detecção de 1×10-8mol/L-7×10-6 mol/L. O método proposto foi aplicado com sucesso na determinação de norfloxacino em cápsulas, com resultados satisfatórios...


Assuntos
Humanos , Norfloxacino/análise , Química Farmacêutica/métodos , Técnicas Eletroquímicas/instrumentação , Técnicas Eletroquímicas/métodos
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