EMERSON SOARES BERNARDES

Resumo

Bachelor's at Farmácia from Universidade Federal de Ouro Preto (1998) and doctorate at Applied Imunology from Universidade de São Paulo (2004). Has experience in Medicine, acting on the following subjects: galectina-3, carboidratos, trypanosoma cruzi, carcinogênesis and macrophage. (Text obtained from the Currículo Lattes on October 8th 2021)


Possui graduação em Farmácia pela Universidade Federal de Ouro Preto (1998), mestrado e doutorado em Imunologia Básica e Aplicada pela Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo (2004), com período de Doutorado Sanduíche pela Universidade da California, Davis, USA. Realizou pós-doutoramento durante o período de 2004 a 2008 pela Faculdade de Medicina da USP-Ribeirão Preto. Trabalhou como pesquisador contratado pelo Instituto de Patologia e Imunologia Molecular da Universidade do Porto - IPATIMUP em Portugal no período de 2008 a 2011. Retornou ao Brasil como pesquisador visitante na Faculdade de Medicina da USP - São Paulo (2011-2012) e foi posteriormente contratado como pesquisador no Instituto do Câncer do Estado de São Paulo (2012-2013). Coordenou um projeto Jovem Pesquisador financiado pela FAPESP (2012-2016 - Desenvolvimento e Produção de Radiofármacos Emissores de Pósitrons com Aplicações Diagnósticas em Oncologia) e está integrado como pesquisador Colaborador no Instituto de Pesquisas Energéticas e Nucleares (IPEN). Tem atuado na área da Glicobiologia, com ênfase na participação de proteínas ligantes de carboidratos em processos inflamatórios e no Câncer. Atualmente é professor do Programa de Pós-Graduação do IPEN-USP Tecnologia Nuclear - Aplicações, tem experiência na área de Radiofarmácia, com ênfase no desenvolvimento de Radiofármacos inéditos para diagnóstico e terapia em Oncologia. (Texto extraído do Currículo Lattes em 08 out. 2021)

Projetos de Pesquisa
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Resultados de Busca

Agora exibindo 1 - 4 de 4
  • Artigo IPEN-doc 29045
    Highlight selection of radiochemistry and radiopharmacy developments by editorial board
    2022 - TOYOHARA, JUN; AL-QAHTANI, MOHAMMED; HUANG, YA-YAO; CAZZOLA, EMILIANO; TODDE, SERGIO; FURUMOTO, SHOZO; MIKOLAJCZAK, RENATA; DECRISTOFORO, CLEMENS; GILLINGS, NIC; YANG, MIN; REILLY, RAYMOND; DUATTI, ADRIANO; DENKOVA, ANTONIA; SCHIRRMACHER, RALF; CARLUCCI, GIUSEPPE; SEIMBILLE, YANN; LIU, ZHAOFEI; ELLIS, BEVERLEY; T. CORNELISSEN, BART; KOPKA, KLAUS; BERNARDES, EMERSON
    Background: The Editorial Board of EJNMMI Radiopharmacy and Chemistry releases a biannual highlight commentary to update the readership on trends in the field of radiopharmaceutical development. Main Body: This commentary of highlights has resulted in 21 different topics selected by each coauthoring Editorial Board member addressing a variety of aspects ranging from novel radiochemistry to first in man application of novel radiopharmaceuticals. Conclusion: Trends in radiochemistry and radiopharmacy are highlighted demonstrating the progress in the research field in various topics including new PET-labelling methods, FAPI-tracers and imaging, and radionuclide therapy being the scope of EJNMMI Radiopharmacy and Chemistry.
  • Artigo IPEN-doc 29044
    A closer look at the synthesis of 2‑[18F] fluoroethyl tosylate to minimize the formation of volatile side‑products
    2022 - PIJEIRA, MARTHA S.O.; SANTOS, SOFIA N. dos; ARAUJO, YASNIEL B.; LAPOLLI, ANDRE L.; WANDERMUREN, MARCIO N.; RIERA, ZALUA R.; CARVALHO, IVONE; ELSINGA, PHILIP H.; BERNARDES, EMERSON S.
    Background: 2-[18F]Fluoroethyltosylate ([18F]FEtOTs) is a well-known 18F-fluoroalkylating agent widely used to synthesize radiotracers for positron emission tomography. The widespread use of [18F]FEtOTs is due in part to its low volatility when compared to other halide and sulfonate building blocks. In this work, the radioactive volatile side-products formed during the synthesis of [18F]FEtOTs were identified and characterized for the first time, and an optimization of the reaction conditions to minimize their formation was proposed. Results: In order to characterize the volatiles produced during [18F]FEtOTs synthesis, the reaction mixtures of both cold FEtOTs and [18F]FEtOTs were co-injected onto the HPLC system. The radioactive peaks corresponding to the volatile compounds were collected, analyzed through headspace gas chromatography mass spectrometry sampler (HS-GC–MS) and identified as vinyl fluoride ([19F]VF) and 2-fluoroethanol ([19F]FEOH). By using a rotatable central composite design with a two-level full factorial core of two factors (22), it was determined that temperature and time are independent variables which affect the generation of [18F]VF and [18F]FEOH during the radiosynthesis of [18F]FEtOTs. In addition, in order to reduce the formation of the volatiles ([18F]VF and [18F]FEOH) and increase the yield of [18F]FEtOTs, it was demonstrated that the molar ratio of base to precursor must also be considered. Conclusion: [18F]VF and [18F]FEOH are volatile side-products formed during the radiosynthesis of [18F]FEtOTs, whose yields depend on the reaction time, temperature, and the molar ratio of base to precursor. Therefore, special care should be taken during the radiosynthesis and subsequent reactions using [18F]FEOTs in order to avoid environmental contamination and to improve the yield of the desired products.
  • Artigo IPEN-doc 28825
    Synthesis of a 2‑nitroimidazole derivative N‑(4‑[18F]fluorobenzyl)‑2‑(2‑nitro‑1H‑imidazol‑1‑yl)‑acetamide ([18F]FBNA) as PET radiotracer for imaging tumor hypoxia
    2022 - NARIO, ARIAN P.; WOODFIELD, JENILEE; SANTOS, SOFIA N. dos; BERGMAN, CODY; WUEST, MELINDA; ARAUJO, YASNIEL B.; LAPOLLI, ANDRE L.; WEST, FREDERICK G.; WUEST, FRANK; BERNARDES, EMERSON S.
    Background: Tissue hypoxia is a pathological condition characterized by reducing oxygen supply. Hypoxia is a hallmark of tumor environment and is commonly observed in many solid tumors. Non-invasive imaging techniques like positron emission tomography (PET) are at the forefront of detecting and monitoring tissue hypoxia changes in vivo. Results: We have developed a novel 18F-labeled radiotracer for hypoxia PET imaging based on cytotoxic agent benznidazole. Radiotracer N-(4-[18F]fluorobenzyl)-2-(2-nitro-1H-imidazol-1-yl)acetamide ([18F]FBNA) was synthesized through acylation chemistry with readily available 4-[18F]fluorobenzyl amine. Radiotracer [18F]FBNA was obtained in good radiochemical yields (47.4 ± 5.3%) and high radiochemical purity (> 95%). The total synthesis time was 100 min, including HPLC purification and the molar activity was greater than 40 GBq/µmol. Radiotracer [18F]FBNA was stable in saline and mouse serum for 6 h. [18F]FBNA partition coefficient (logP = 1.05) was found to be more lipophilic than [18F]EF-5 (logP = 0.75), [18F]FMISO (logP = 0.4) and [18F]FAZA (logP =  − 0.4). In vitro studies showed that [18F]FBNA accumulates in gastric cancer cell lines AGS and MKN45 under hypoxic conditions. Conclusions: Hence, [18F]FBNA represents a novel and easy-to-prepare PET radioligand for imaging hypoxia.
  • Artigo IPEN-doc 28824
    Highlight selection of radiochemistry and radiopharmacy developments by editorial board
    2022 - BERNARDES, EMERSON; CARAVAN, PETER; DAM, R.M. van; DEUTHER-CONRAD, WINNIE; ELLIS, BEVERLEY; FURUMOTO, SHOZO; GUILLET, BENJAMIN; HUANG, YA-YAO; JIA, HONGMEI; LAVERMAN, PETER; LI, ZIJING; LIU, ZHAOFEI; LODI, FILIPPO; MIAO, YUBIN; PERK, LARS; SCHIRRMACHER, RALF; VERCOULLIE, JOHNNY; YANG, HUA; YANG, MIN; YANG, XING; ZHANG, JUNBO; ZHANG, MING-RONG; ZHU, HUA
    Background: The Editorial Board of EJNMMI Radiopharmacy and Chemistry releases a biyearly highlight commentary to update the readership on trends in the field of radiopharmaceutical development. Results: This commentary of highlights has resulted in 23 different topics selected by each member of the Editorial Board addressing a variety of aspects ranging from novel radiochemistry to first in man application of novel radiopharmaceuticals and also a contribution in relation to MRI-agents is included. Conclusion: Trends in (radio)chemistry and radiopharmacy are highlighted demonstrating the progress in the research field being the scope of EJNMMI Radiopharmacy and Chemistry.