ANGELICA BUENO BARBEZAN
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Artigo IPEN-doc 30686 Synthesis and characterization of Au-198 nanoparticles for radiotherapy2024 - RIGO, M.; BARBEZAN, A.; TALACIMON, C.; TEODORO, L.; RODRIGUES, P.; ROSERO, W.; NOGUEIRA, T.; ROSTELATO, M.Artigo IPEN-doc 30568 Optimization of concentration and activity in the production of radioactive gold nanoparticles for cancer treatment2024 - ALEXANDER, A.R.W.; ANGELICA, B.B.; FERNANDO, A.L.; ELISA, C.M.R.M.Artigo IPEN-doc 30548 Evaluations of the possible mutagenic and genotoxic effects of 2-ACBs2024 - BARBEZAN, A.B.; BISPO, A.C.A.; MENDES, B.M.; VIEIRA, D.P.; CARVALHO, L.R.; MACHADO-SANTELLI, G.M.; VILLAVICENCIO, A.L.C.H.Artigo IPEN-doc 30547 In vivo distribution dynamics of gold nanoparticles2024 - BARBEZAN, A.B.; ROSERO, W.A.W.; ALMEIDA, L.F.; RIGO, M.E.Z.; SILVA, F.F.A.; ROSTELATO, M.E.C.M.Artigo IPEN-doc 26253 In vivo genotoxicity of 2-Alkylcyclobutanones in liver cells from rats fed with irradiated cocoa butter using flow citometry2019 - MARTINS, REGIANE; VIEIRA, DANIEL P.; CARVALHO, LUMA R. de; BARBEZAN, ANGELICA B.; VILLAVICENCIO, ANNA L.C.H.Food irradiation proves to be an effective technique of eliminating some pathogens from food and this has gained significant attention to its potential for food safety. Since 1990, studies on the toxicological safety of 2-Alkylcyclobutanones have been conducted extensively. 2- Alkylcyclobutanones are unique radiolytic products generated by the radiation-induced breakage of triglycerides in food, are exclusively found in irradiated lipid containing foods. 2-dodecylcyclobutanone (2-dDCB) and 2-tetradecylcyclobutanone (2-tDCB) are the predominant compounds detected in irradiated food. Despite studies showing non- genotoxicity of 2-ACBs (2-Alkylcyclobutanones), the results are conflicting and therefore we continue the studies in order to confirm the compounds safety for human health. In vivo micronucleus test were performed to verify the 2-ACBs genotoxic effects in hepatic cells using flow citometry. We used cocoa butter irradiated with 20 kGy at IPEN GAMACELL. A group with animals (IPEN Ethical Animal Experimentation Committee, process number 148/14) was treated with daily intake of irradiated cocoa butter, synthesized 2- Dodecylcyclobutanone and 2-Tetradecylcyclobutanone for two months. Hepatic cells were selected for genotoxicity analysis due to the liver importance in the compounds metabolization. Analyzes were made by micronucleus test with specific cells extracted from hepatic tissue using flow cytometry, which is an alternative to conventional techniques, allowing faster analysis and reduction in the animals number that is a subject much approached in research today. The improvement of the analytical techniques is important for the research future since the irradiation process is already consolidated. The results confirmed the safety of the food irradiation process, as they did not indicate the genotoxic potential of the samples.Artigo IPEN-doc 26242 Gold nanoparticles stabilized with gum arabic for cancer treatment2019 - ROSERO, WILMMER A.A.; NOGUEIRA, BEATRIZ R.; SOUZA, CARLA D. de; GONZALEZ, ANDREZA A.D.C.C.; BARBEZAN, ANGELICA B.; ZEITUNI, CARLOS A.; ROSTELATO, MARIA E.C.M.Cancer is a group of diseases characterized by uncontrolled growth and abnormal spread of cells. The number of deaths due to cancer is higher than the ones caused by AIDS, tuberculosis and malaria combined. Among the different options of cancer treatment radiotherapy (teletherapy and brachytherapy) sta nds out. The presence of gold nanoparticles (AuNPs) may enhance energy deposition for teletherapy treatment. The use of nanoparticles for brachytherapy have been studied, and AuNPs is a good option once they can easily permeate tumor vasculature and remain in tumors. However, the tumor uptake of AuNPs may be significantly reduced due the attenuation with the formation of the protein coronas. The objective of this work is present the functionalization of AuNPs with arabic gum (GA). GA is a biocompatible, non toxic, water soluble, natural gum obtained from Acacia senegal tree. In this study, a synthesis of gold nanoparticles (AuNPs), based on Turkevich method, using citrate (NaCit) solution as reducing agent and a HAuCl4 solution, under vigorously stirring and boiling temperature, going from a light yellow to a wine red in three minutes. The functionalization of the nanoparticles was performed with Arabic gum solutions, in three different concentrations , which were a dded under stirring to the AuNPs already obtai ned. Samples were characterized to measure the size of the samples. Lower concentrations o GA in the solution presented smaller coated particles (up to 45 nm).Artigo IPEN-doc 24270 In vivo evaluation of genotoxic potential of liver cells from rats fed with irradiated diet using flow cytometry2017 - MARTINS, R.; CARVALHO, L.R. de; VIEIRA, D.P.; BARBEZAN, A.B.; VILLAVICENCIO, A.L.C.H.Radiation sources became widely available since 1960’s, and between its main uses are the applications in food irradiation and research of effects of ionizing radiation on food products. Despite some public concern, the process is safe, free from chemical residues and presents advantages for preservation and storage. Nevertheless, safety dose parameters must be adopted in irradiation procedures to inhibit formation of undesirable and/or toxic products, for example, 2-ACB’s (2-alkylcyclobutanones) that are cyclic compounds containing four carbon rings that can be formed in food when its fat content is irradiated through breakdown of fatty acids. 2-ACBs are considered a unique class of compounds due to divergences between results of its mutagenicity potential collected from different studies. In this study, a cell population collected from rat livers were chosen for in vivo genotoxicity analysis because the importance of the liver in the metabolization of compounds. Analysis was performed using the micronuclei test using flow cytometry, allowing faster analysis, use of few materials and reduction in the number of animals, what is a subject much addressed currently in research. Irradiated rat diet did not show any genotoxic effect on liver cell populations. The improvement of the techniques is important for the future of the research since the irradiation process is already consolidated.Artigo IPEN-doc 24153 Information on the presence of 2- Alkylcyclobutanones in animal feed after ionizing radiation treatment2017 - CAMPOS, A.M.; BARBEZAN, A.B.; VILLAVICENCIO, A.L.C.H.In agribusiness, it is related to the development of the activities of creation, production and commercialization of pets in the Pet segment. This market grew 7.6% between 2014/2015, generated R$ 18 million in Brazil and 67.3% of this value refers to products for animal feed, commonly called pet food. In animal feed, the raw materials are chosen according to the method (s) of processing (s) in which the product is submitted, its stability in the process and its nutritional source during the validity of the product. In food preservation, the irradiation process is a treatment that seeks to reduce the microbial load of foods, however, it can also alter the composition of the present ingredients and form radiolytic products in the formulation that are still under study. In products containing the presence of fat, the main concern is 2-Alkylciclobutanones (2-ACBs), which are radiolytic products formed exclusively post-processing with ionizing radiation. The formation of 2-ACBs is directly related to the lipid concentration and the dose of irradiation. The objective of this work is to describe the possible radiolytic by-products formed in canine rations containing extruded fat after irradiation and to determine if the formation of 2-ACBs depends on the increase of the radiation dose and, as a consequence, verify their cytotoxicity and genotoxicity.Artigo IPEN-doc 24045 Flow cytometry based micronucleus assay for evaluation of genotoxic potential of 2-ACBs in hepatic cells HepG22017 - BARBEZAN, ANGELICA B.; SANTOS, CARLA J.B.; CARVALHO, LUMA R.; VIEIRA, DANIEL P.; SANTELLI, GLAUCIA M.M.; VILLAVICENCIO, ANNA L.C.H.Food irradiation is approved for use in more than 60 countries for applications and purposes in a wide variety of foods, being an effective and safe method for preservation and long-term storage. 2-Alkylcyclobutanones (2-ACBs) are the only known radiolytic products generated from foods that contain fatty acids (Triglycerides) when irradiated. The acids analyzed in this study are palmitic and stearic, which when irradiated form 2-Dodecylcyclobutanones (2-dDCB) and 2-Tetradecylcyclobutanone (2-tDCB). Part of the 2-ACBs ingested is excreted through feces and part is deposited in adipose tissues. In vitro studies so far have been only in colon cells. The work used a human hepatoma cell line (HepG2) since the accumulation of fat in this organ is quite common. Micronucleus test was selected to evaluate possible genotoxic effects of 2-dDCB and 2-tDCB compounds when exposed to high concentrations (447, 1422 and 2235 μM) for 4 and 24 hours. Tests were performed in quadriplicates using flow cytometric analysis. None detectable genotoxic damage was observed after 4 hours of exposure to the compounds, and cytotoxic effects were only significant at the highest concentration (2235 μM) of 2-dDCB. After 24 hours of exposure, slight genotoxic damage was observed at all concentrations evaluated, and cytotoxic effects were only present when exposed to compound 2-tDCB. Although there is a genotoxic and cytotoxic effect in some of the situations tested, the two compounds predominantly induced proliferation reduction effects of this hepatic tumor cell line.Artigo IPEN-doc 16987 Labeling of MDP with sup(188)Re for bone tumour therapy2011 - BARBEZAN, ANGELICA B.; OSSO JUNIOR, JOAO A.