Navegação por autor "SABINO, CAETANO P."

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  • IPEN-DOC 27584

    ANJOS, CAROLINA dos; SELLERA, FABIO P.; RIBEIRO, MARTHA S. ; BAPTISTA, MAURICIO S.; POGLIANI, FABIO C.; LINCOPAN, NILTON; SABINO, CAETANO P.. Antimicrobial blue light and photodynamic therapy inhibit clinically relevant β-lactamases with extended-spectrum (ESBL) and carbapenemase activity. Photodiagnosis and Photodynamic Therapy, v. 32, p. 1-4, 2020. DOI: 10.1016/j.pdpdt.2020.102086

    Abstract: Introduction. The production of β-lactamases by Gram-negative bacteria is among the most important factors of resistance to antibiotics, which has contributed to therapeutic failures that currently threaten human and veterinary medicine worldwide. Antimicrobial photodynamic therapy and antimicrobial blue light have a broad-spectrum antibacterial activity against multidrug-resistant and hypervirulent pathogens. Objective. To investigate the ability of antimicrobial blue light to inhibit the hydrolytic activity of clinically relevant β-lactamase enzymes (i.e., KPC, IMP, OXA, CTX-M, and SHV), with further comparison of the inhibitory effects of antimicrobial blue light with methylene blue-mediated antimicrobial photodynamic therapy. Methods. Blue LED light (λ = 410 ± 10 nm) alone or red LED light (λ = 660 ± 10 nm) in combination with methylene blue were used to inactivate, in vitro, suspensions of Klebsiella pneumoniae strains producing clinically important β-lactamase enzymes assigned to the A, B and D Ambler molecular classes. Furthermore, β-lactamase activity inhibition mediated by antimicrobial blue light and methylene blue-mediated antimicrobial photodynamic therapy was measured by using the chromogenic β-lactam substrate nitrocefin. Results. β-lactamase activities were effectively inactivated by both visible light-based approaches. In this regard, antimicrobial blue light and methylene blue-antimicrobial photodynamic therapy led to a significant reduction in the hydrolysis of nitrocefin (81–98 %). Conclusion. Sublethal doses of antimicrobial blue light and methylene blue-mediated antimicrobial photodynamic therapy are equally effective to inhibit clinically significant β-lactamases, including extended-spectrum β-lactamases and carbapenemases.

    Palavras-Chave: antimicrobial agents; methylene blue; antibiotics; lactams; inactivation; enzymes

  • IPEN-DOC 19113

    KATO, ILKA T.; PRATES, RENATO A.; SABINO, CAETANO P.; FUCHS, BETH B.; TEGOS, GEORGE P.; MYLONAKIS, ELEFTHERIOS; HAMBLIN, MICHAEL R.; RIBEIRO, MARTHA S. . Antimicrobial photodynamic inactivation inhibits Candida albicans virulence factors and reduces In vivo pathogenicity. Antimicrobial Agents and Chemotherapy, v. 57, n. 1, p. 445-451, 2013.

    Palavras-Chave: candida; fungal diseases; antimicrobial agents; therapy; inactivation; photosensitivity; methylene blue; semiconductor lasers; semiconductor diodes; pathogens

  • IPEN-DOC 26536

    RIBEIRO, MARTHA S. ; SABINO, CAETANO P.; NUNEZ, SILVIA C.. Antimicrobial photodynamic therapy: from basis to clinical applications. In: HASAN, TAYYABA (Ed.) INTERNATIONAL PHOTODYNAMIC ASSOCIATION WORLD CONGRESS, 17th, June 28 - July 4, 2019, Cambridge, Massachusetts, USA. Proceedings... Bellingham, WA, USA: SPIE, 2019. p. 1107048-1 - 1107048-9. (Proceedings SPIE 11070). DOI: 10.1117/12.2527918

    Abstract: Antimicrobial photodynamic therapy (APDT) combines the use of light with a photosensitizer (PS) and oxygen to kill microbial cells. Even though this technique was first reported in the beginning of the 20th century, APDT never took off as antimicrobial chemotherapy did. However, microbial resistance to chemotherapy is currently expanding in faster rates than drug discovery. Therefore, introduction of therapeutic alternatives that bypass mechanisms of drug resistance now presents an urgent status. Fortunately, the scientific and technological development related to APDT made it far more feasible for mainstream clinical applications. Our research group has been working on mechanisms and applications of APDT for almost 20 years. We have already reported that successful APDT results depend on a number of factors, such as PS and light parameters, cell type, and oxygen abundance, among others. We have also demonstrated that APDT is an effective adjuvant in endodontics and periodontics and can be a non-invasive treatment for caries, candidiasis and cutaneous leishmaniasis. In Veterinary Medicine, we have reported effective treatment for penguin pododermatitis, snake stomatitis and dog otitis. This presentation will give an integrated perspective from the basic APDT mechanisms, preclinical and clinical trials to protocol optimization and future perspectives.

  • IPEN-DOC 20840

    TENORIO, DENISE P.L.A.; ANDRADE, CAMILA G.; CABRAL FILHO, PAULO E.; SABINO, CAETANO P. ; KATO, ILKA T. ; CARVALHO JUNIOR, LUIZ B.; ALVES JUNIOR, SEVERINO; RIBEIRO, MARTHA S. ; FONTES, ADRIANA; SANTOS, BEATE S.. CdTe quantum dots conjugated to concanavalin A as potential fluorescent molecular probes for saccharides detection in Candida albicans. Journal of Photochemistry and Photobiology B: Biology, v. 142, p. 237-243, 2015.

    Palavras-Chave: candida; diagnosis; concanavalin a; fluorescence; cadmium tellurides; quantum dots; saccharides

  • IPEN-DOC 18506

    KATO, ILKA T.; SANTOS, CAMILA C.; BENETTI, ENDI; TENORIO, DENISE P.L.A.; CABRAL FILHO, PAULO E.; SABINO, CAETANO P.; FONTES, ADRIANA; SANTOS, BEATE S.; PRATES, RENATO A.; RIBEIRO, MARTHA S. . CdTe/CdS-MPA quantum dots as fluorescent probes to label yeast cells: synthesis, characterization and conjugation with concanavalin A. In: PARAK, WOLFGANG J. (Ed.); YAMAMOTO, KENJI (Ed.); OSINSKI, MAREK (Ed.) COLLOIDAL NANOCRYSTALS FOR BIOMEDICAL APPLICATIONS VII, 2012, Proceedings... Society of Photho-optical Instrumentation Engineers, 2012. p. 82320D-1 - 82320D-6.

    Palavras-Chave: candida; yeasts; diagnosis; fluorescence; microscopy; lectins; concanavalin a

  • IPEN-DOC 24458

    SABINO, CAETANO P. ; HAMBLIN, MICHAEL R.. Cellular damage. In: SELLERA, FABIO P. (Ed.); NASCIMENTO, CRISTIANE L. (Ed.); RIBEIRO, MARTHA S. (Ed.). Photodynamic therapy in veterinary medicine: from basics to clinical practice. Gewerbestrasse, Switzerland: Springer, 2016. p. 57-72, DOI: 10.1007/978-3-319-45007-0_5

    Observação: Livro na íntegra disponível. Consulte a biblioteca do IPEN.

    Abstract: Classical pharmacology is normally concerned with defined molecular structures that can bind to specific proteins and either inhibit or enhance the protein function to achieve some biological response with therapeutic benefit. In photodynamic therapy (PDT) context, we rarely rely on such target specificity to achieve therapeutic success. Although some recent photosensitizers have been functionalized with target-specific molecules, such as antibodies, to recognize specific cells and enhance therapy specificity, ROS produced inside the cell will damage all susceptible molecules within the diffusion radius. According to the previous chapter, both hydroxyl radicals and singlet oxygen are highly reactive toward most of the abundant biological molecules contained in cells. In this chapter we discuss how such capacity of PDT to provoke multiple sites of molecular damages in the cellular context is associated with the phototoxicity produced. Also, we discuss how cellular antioxidant and xenobiotic defenses can influence on cellular tolerance against photodynamic inactivation.

    Palavras-Chave: hydroxyl radicals; animal cells; molecules; molecular structure; damage

  • IPEN-DOC 29090

    SELLERA, FABIO P.; SABINO, CAETANO P.; NUNEZ, SILVIA C.; RIBEIRO, MARTHA S. . Clinical acceptance of antimicrobial photodynamic therapy in the age of WHO global priority pathogens: so what we need to move forward?. Photodiagnosis and Photodynamic Therapy, v. 40, p. 1-3, 2022. DOI: 10.1016/j.pdpdt.2022.103158

  • IPEN-DOC 24799

    RIBEIRO, MARTHA S. ; GARGANO, RONALDO G.; SABINO, CAETANO P.; ANJOS, CAROLINA dos; POGLIANI, FABIO C.; SELLERA, FABIO P.. Clinical challenges of antimicrobial photodynamic therapy for bovine mastitis. Photodiagnosis and Photodynamic Therapy, v. 21, p. 327-327, 2018. DOI: 10.1016/j.pdpdt.2018.01.007

    Abstract: Sir, Antimicrobial photodynamic therapy (aPDT) is emerging as a new promising tool to treat local infections in Veterinary Medicine [1]. In 2016, our group was the pioneer to investigate its use to inactivate pathogens related to bovine mastitis [2]. In this regard, in a recent report published in this journal, Moreira et al. [3] explored the use of toluidine blue (TBO)-mediated aPDT to treat subclinical bovine mastitis. Remarkably, bovine mastitis still remains as the most economically relevant disease for dairy industry worldwide, resulting in substantial economic losses for milk producers due to extensive antibiotic use and product losses. In this sense, antibiotic misuse or overuse to treat bovine mastitis is worrisome because it can simultaneously lead to antibiotic residues in dairy products and increase multidrug-resistant foodborne pathogens. Unfavorably, there is still no consensus on the ideal approach for bovine mastitis treatment; therefore, aPDT represents a viable option to reduce the use of antibiotics in dairy farms. The preliminary results of Moreira et al. [3] are exciting and deserve discussion on some points. In this letter, we intend to highlight other relevant aspects to be addressed in order to consolidate the use of aPDT for management of bovine mastitis. The concentration of the photosensitizer (PS) diluted in the milk plays a pivotal role. In the study by Moreira et al. [3], the authors designed a clinical assay using a 2.5% TBO solution, which promoted a significant reduction of bacterial load. It is noteworthy that clinical mastitis represents a more complex challenge for aPDT than subclinical mastitis since the alterations in the milk composition could influence the PS absorption properties. Additionally, we believe that intermolecular interactions between PS and milk components should be considered to optimize clinical protocols because it could induce aggregation of phenothiazine dyes and leads to lower photodynamic inactivation efficiency [[4], [5]]. Another important point is in respect to the light diffusion within mammary parenchyma. Appropriated light delivery systems need to reach deeper mammary tissue since pathogens normally colonize the entire mammary gland [6]. Therefore, the use of diffuser fibers should be considered to deliver homogeneous light intensities inside the gland parenchyma. Hence, investigations regarding different light delivery systems could optimize clinical protocols and facilitate the establishment of aPDT into the dairy industry. Finally, we encourage the development of innovative strategies to improve selective PS delivery to pathogens using targeted molecular and nanoparticle systems. In summary, we hope that this letter motivates further studies to develop safe and effective protocols for bovine mastitis and promote aPDT applications in Veterinary Medicine.

    Palavras-Chave: veterinary medicine; cattle; mammary glands; infectious diseases; bacterial diseases; therapy; photosensitivity

  • IPEN-DOC 20928

    SELLERA, FABIO P.; BARBOSA, BRUNA S.; GARGANO, RONALDO G.; SABINO, CAETANO P. ; RIBEIRO, MARTHA S. ; AZEVEDO, MILTON R.; BENESI, FERNANDO J.; POGLIANI, FABIO C.. Cutaneous streptococcal abscess treated by photodynamic therapy. African Journal of Traditional Complementary and Alternative Medicines, v. 12, n. 2, p. 65-67, 2015.

    Palavras-Chave: therapy; skin diseases; sheep; streptococcus; infectivity; photosensitivity

  • IPEN-DOC 21964

    SABINO, CAETANO P. ; RIBEIRO, MARTHA S. . Desenvolvimento de um modelo in vivo para o estudo do efeito fotodinâmico com infecção fúngica. In: PROGRAMA INSTITUCIONAL DE BOLSAS DE INICIAÇÃO CIENTÍFICA, 20.; PROGRAMA DE BOLSAS E INICIAÇÃO CIENTÍFICA CNEN, 11.; PROGRAMA INSTITUCIONAL DE BOLSAS DE INICIAÇÃO DESENVOLVIMENTO TECNOLÓGICO E INOVAÇÃO, 4., 22-23 de outubro, 2014, São Paulo, SP. Resumo expandido... 2014. p. 100-101.

    Palavras-Chave: in vivo; therapy; lasers; fungal diseases; candida; animals; mice; female genitals; antimicrobial agents

  • IPEN-DOC 19981

    SABINO, CAETANO P.; RIBEIRO, MARTHA S. . Dosimetria na terapia fotodinâmica antimicrobiana. In: NUNEZ, SILVIA C. (Ed.); RIBEIRO, MARTHA S. (Ed.); GARCEZ, AGUINALDO S. (Ed.). PDT - Terapia Fotodinâmica na Odontologia. Elsevier Brasil: Rio de Janeiro, RJ, 2013. p. 27-37,

    Notas de conteúdo: Capitulo 3

    Palavras-Chave: therapy; dosimetry; antimicrobial agents; photosensitivity

  • IPEN-DOC 26706

    SABINO, CAETANO P.; RIBEIRO, MARTHA S. . Dosimetria na terapia fotodinâmica antimicrobiana. In: NUNEZ, SILVIA C. (Ed.); RIBEIRO, MARTHA S. (Ed.); GARCEZ, AGUINALDO S. (Ed.). PDT - Terapia Fotodinâmica Antimicrobiana na Odontologia. 2 ed.. Rio de Janeiro: Elsevier, 2019. p. 23-32, cap. 3.

    Palavras-Chave: therapy; dosimetry; antimicrobial agents; photosensitivity; photodynamic therapy

  • IPEN-DOC 25764

    SELLERA, FABIO P.; FERNANDES, MIRIAM R.; SABINO, CAETANO P.; FREITAS, LAURA M. de; SILVA, LUCIANO C.B.A. da; POGLIANI, FABIO C.; RIBEIRO, MARTHA S. ; HAMBLIN, MICHAEL R.; LINCOPAN, NILTON. Effective treatment and decolonization of a dog infected with carbapenemase (VIM-2)-producing Pseudomonas aeruginosa using probiotic and photodynamic therapies. Veterinary Dermatology, v. 30, n. 2, p. 170-e52, 2019. DOI: 10.1111/vde.12714

    Abstract: Background – Carbapenem-resistant bacterial infections are a critical problem in veterinary medicine with limited treatment options. Objective – To describe effective probiotic and photodynamic therapy of a dog with gut colonization and ear infection caused by a hospital-associated lineage of carbapenemase (VIM-2)-producing Pseudomonas aeruginosa. Animals – A 5-year-old Lhasa apso dog presented with otitis externa. Methods and materials – Unilateral otitis externa caused by carbapenem-resistant P. aeruginosa was treated with antimicrobial photodynamic therapy (aPDT) using methylene blue as photosensitizer [wavelength 660 nm, fluence 140 J/cm2, 8 J and 80 s per point (six equidistant points), 100 mW, spot size 0.028 cm2 and fluence rate 3.5 W/cm2]. The isolated bacterial strain also was tested for susceptibility to in vitro aPDT where the survival fraction was quantified by colony forming unit counts after exposure to increasing light doses. For decolonization, probiotic supplements were orally administered (once daily) for 14 days. Effectiveness of probiotics and photodynamic therapy was evaluated by clinical and microbiological culture assays. Results – Complete resolution of clinical signs was achieved by Day 7 after aPDT. Samples collected immediately and after seven and 14 days following aPDT were negative for VIM-2-producing P. aeruginosa. Oral and rectal swabs collected on days 7, 14 and 21 after probiotic therapy, confirmed effective gastrointestinal decolonization. Conclusions and clinical importance – Combined use of aPDT and probiotics could be a promising therapeutic strategy for treatment of superficial infections produced by carbapenem-resistant bacteria, while avoiding recurrent infection due to intestinal bacterial carriage of these multidrug-resistant pathogens.

    Palavras-Chave: dogs; veterinary medicine; domestic animals; microorganisms; therapy; methylene blue; antimicrobial agents; bacterial diseases; photosensitivity

  • IPEN-DOC 17309

    SABINO, CAETANO P.; RIBEIRO, MARTHA S. . Estudo da atenuação da luz em tecidos biológicos: influência da cor e processo inflamatório. In: PROGRAMA INSTITUCIONAL DE BOLSAS DE INICIAÇÃO CIENTÍFICA, 17.; PROGRAMA DE BOLSAS E INICIAÇÃO CIENTÍFICA CNEN, 8.; PROGRAMA INSTITUCIONAL DE BOLSAS DE INICIAÇÃO DESENVOLVIMENTO TECNOLÓGICO E INOVAÇÃO, 1., 17-18 de novembro, 2011, São Paulo, SP. Resumo expandido... 2011.

    Palavras-Chave: animal tissues; rats; inflammation; biological radiation effects; laser radiation; low dose irradiation; light sources; attenuation; skin effect; minority groups

  • IPEN-DOC 21672

    RIBEIRO, MARTHA S. ; NUNEZ, SILVIA C. ; SABINO, CAETANO P.; YOSHIMURA, TANIA M. ; SILVA, CAMILA R. ; NOGUEIRA, GESSE E.C. ; SUZUKI, HIDEO; GARCEZ, AGUINALDO S.. Exploring light-based technology for wound healing and appliance distribution. Journal of the Brazilian Chemical Society, v. 26, n. 12, p. 2583-2589, 2015.

    Palavras-Chave: comparative evaluations; therapy; methylene blue; healing; light emitting diodes; sterilization; mice; in vivo; lasers

  • IPEN-DOC 24497

    SELLERA, FABIO P.; NASCIMENTO, CRISTIANE L.; POGLIANI, FABIO C.; SABINO, CAETANO P. ; RIBEIRO, MARTHA S. . Future perspectives. In: SELLERA, FABIO P. (Ed.); NASCIMENTO, CRISTIANE L. (Ed.); RIBEIRO, MARTHA S. (Ed.). Photodynamic therapy in veterinary medicine: from basics to clinical practice. Gewerbestrasse, Switzerland: Springer, 2016. p. 209-222, DOI: 10.1007/978-3-319-45007-0_14

    Observação: Livro impresso disponível para consulta na biblioteca do IPEN.

    Abstract: Nowadays, it is clear that the activity of different photosensitizers (PSs) has a strong potential for moving photodynamic therapy (PDT) to clinical practice. Present technologies as dedicated light sources, new PSs, and nanotechnology are emerging strategies to promote PDT as a reliable, cost-effective, and safe approach to veterinary medicine. This chapter addresses an overview of emerging clinical applications and recent technologies to encourage veterinarians toward PDT.

    Palavras-Chave: veterinary medicine; photodynamic therapy; photosensitivity; diseases; therapeutic uses

  • IPEN-DOC 27154

    SABINO, CAETANO P.; WAINWRIGHT, MARK; RIBEIRO, MARTHA S. ; SELLERA, FABIO P.; ANJOS, CAROLINA dos; BAPTISTA, MAURICIO da S.; LINCOPAN, NILTON. Global priority multidrug-resistant pathogens do not resist photodynamic therapy. Journal of Photochemistry and Photobiology B: Biology, v. 208, p. 1-9, 2020. DOI: 10.1016/j.jphotobiol.2020.111893

    Abstract: Microbial drug-resistance demands immediate implementation of novel therapeutic strategies. Antimicrobial photodynamic therapy (aPDT) combines the administration of a photosensitizer (PS) compound with low-irradiance light to induce photochemical reactions that yield reactive oxygen species (ROS). Since ROS react with nearly all biomolecules, aPDT offers a powerful multitarget method to avoid selection of drug-resistant strains. In this study, we assayed photodynamic inactivation under a standardized method, combining methylene blue (MB) as PS and red light, against global priority pathogens. The species tested include Acinetobacter baumannii, Klebsiella aerogenes, Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, Enterococcus faecium, Enterococcus faecalis, Staphylococcus aureus, Candida albicans and Cryptococcus neoformans. Our strain collection presents resistance to all tested antimicrobials (> 50). All drug-resistant strains were compared to their drugsensitive counterparts. Regardless of resistance phenotype, MB-aPDT presented species-specific dose-response kinetics. More than 5log10 reduction was observed within less than 75 s of illumination for A. baumannii, E. coli, E. faecium, E. faecalis and S. aureus and within less than 7 min for K. aerogenes, K. pneumoniae, P. aeruginosa, C. albicans and C. neoformans. No signs of correlations in between drug-resistance profiles and aPDT sensitivity were observed. Therefore, MB-aPDT can provide effective therapeutic protocols for a very broad spectrum of pathogens. Hence, we believe that this study represents a very important step to bring aPDT closer to implementation into mainstream medical practices.

    Palavras-Chave: microbial drug resistance; photosensitivity; therapy; bacteria; antimicrobial agents; radiant flux density; light sources; inactivation

  • IPEN-DOC 23521

    SUZUKI, LUIS C. ; KATO, ILKA T.; PRATES, RENATO A.; SABINO, CAETANO P. ; YOSHIMURA, TANIA M. ; SILVA, TAMIRES O.; RIBEIRO, MARTHA S. . Glucose modulates antimicrobial photodynamic inactivation ofCandida albicans in biofilms. Photodiagnosis and Photodynamic Therapy, v. 17, p. 173-179, 2017. DOI: 10.1016/j.pdpdt.2016.12.003

    Abstract: Candida albicans biofilm is a main cause of infections associated with medical devices such as catheters,contact lens and artificial joint prosthesis. The current treatment comprises antifungal chemotherapy thatpresents low success rates. Photodynamic inactivation (PDI) involves the combination of a photosensitiz-ing compound (PS) and light to generate oxidative stress that has demonstrated effective antimicrobialactivity against a broad-spectrum of pathogens, including C. albicans. This fungus senses glucose induc-ing an upregulation of membrane transporters that can facilitate PS uptake into the cell. The aim ofthis study was to evaluate the effects of glucose on methylene blue (MB) uptake and its influence onPDI efficiency when combined to a red LED with central wavelength at = 660 nm. C. albicans biofilmswere grown on hydrogel disks. Prior to PDI assays, MB uptake tests were performed with and withoutglucose-sensitization. In this system, the optimum PS administration was determined as 500 M of MBin contact with the biofilm during 30 min before irradiation. Irradiation was performed during 3, 6, 9, 12,15 and 18 min with irradiance of 127.3 mW/cm2. Our results showed that glucose was able to increaseMB uptake in C. albicans cells. In addition, PDI without glucose showed a higher viability reduction until6 min; after 9 min, glucose group demonstrated a significant decrease in cell viability when compared toglucose-free group. Taken together, our data suggest that glucose is capable to enhance MB uptake andmodulate photodynamic inactivation of C. albicans biofilm.

    Palavras-Chave: glucose; methylene blue; infectious diseases; inactivation; photosensitivity; yeasts

  • IPEN-DOC 24448

    SELLERA, FABIO P.; SABINO, CAETANO P. ; HAMBLIN, MICHAEL R.. History of PDT. In: SELLERA, FABIO P. (Ed.); NASCIMENTO, CRISTIANE L. (Ed.); RIBEIRO, MARTHA S. (Ed.). Photodynamic therapy in veterinary medicine: from basics to clinical practice. Gewerbestrasse, Switzerland: Springer, 2016. p. 1-10, DOI: 10.1007/978-3-319-45007-0_1

    Observação: Livro na íntegra disponível. Consulte a biblioteca do IPEN.

    Abstract: This chapter presents the brightest historical milestones behind the development of photodynamic therapy (PDT). We initially present how photodynamic reactions were first observed by scientists from three different countries in the beginning of the twentieth century. Oskar Raab, from Germany, observed by accident that protozoan cells stained with fluorescent dyes were killed upon illumination, while Prime, in France, reported that human subjects who ingested also fluorescent dyes for an experimental treatment of neurological diseases developed severe erythema after short exposure to sunlight. Niels Finsen, from Denmark, was awarded with the third Nobel Prize of Medicine in the history for the development of light-based treatments for skin infections. Following, we describe how PDT slowly evolved until the 1960–1970s when new generations of less toxic photosensitizers were developed for diagnosis and treatment of solid tumors. Only then PDT really became a hot scientific area that began to attract many researchers to the field. We also describe the first huge medical and economic impact that PDT as the first effective treatment for age-related macular degeneration, the leading cause of adult blindness in the world. Finally, we go through the main discoveries in veterinary medicine over the past years for the treatment of localized tumors and infections in diverse animal species.

    Palavras-Chave: photodynamic therapy; historical aspects; ultraviolet radiation; therapeutic uses

  • IPEN-DOC 22388

    SELLERA, FABIO P.; SABINO, CAETANO P. ; RIBEIRO, MARTHA S. ; GARGANO, RONALDO G.; BENITES, NILSON R.; MELVILLE, PRISCILLA A.; POGLIANI, FABIO C.. In vitro photoinactivation of bovine mastitis related pathogens. Photodiagnosis and Photodynamic Therapy, v. 13, p. 276-281, 2016.

    Palavras-Chave: in vitro; cows; therapy; veterinary medicine; diagnosis; antibiotics; pathogens; cattle; methylene blue

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1. Portaria IPEN-CNEN/SP nº 387, que estabeleceu os princípios que nortearam a criação do RDI, clique aqui.


2. A experiência do Instituto de Pesquisas Energéticas e Nucleares (IPEN-CNEN/SP) na criação de um Repositório Digital Institucional – RDI, clique aqui.

O Repositório Digital do IPEN é um equipamento institucional de acesso aberto, criado com o objetivo de reunir, preservar, disponibilizar e conferir maior visibilidade à Produção Científica publicada pelo Instituto, desde sua criação em 1956.

Operando, inicialmente como uma base de dados referencial o Repositório foi disponibilizado na atual plataforma, em junho de 2015. No Repositório está disponível o acesso ao conteúdo digital de artigos de periódicos, eventos, nacionais e internacionais, livros, capítulos, dissertações, teses e relatórios técnicos.

A elaboração do projeto do RI do IPEN foi iniciado em novembro de 2013, colocado em operação interna em julho de 2014 e disponibilizado na Internet em junho de 2015. Utiliza o software livre Dspace, desenvolvido pelo Massachusetts Institute of Technology (MIT). Para descrição dos metadados adota o padrão Dublin Core. É compatível com o Protocolo de Arquivos Abertos (OAI) permitindo interoperabilidade com repositórios de âmbito nacional e internacional.

O gerenciamento do Repositório está a cargo da Biblioteca do IPEN. Constam neste RI, até o presente momento 20.950 itens que tanto podem ser artigos de periódicos ou de eventos nacionais e internacionais, dissertações e teses, livros, capítulo de livros e relatórios técnicos. Para participar do RI-IPEN é necessário que pelo menos um dos autores tenha vínculo acadêmico ou funcional com o Instituto. Nesta primeira etapa de funcionamento do RI, a coleta das publicações é realizada periodicamente pela equipe da Biblioteca do IPEN, extraindo os dados das bases internacionais tais como a Web of Science, Scopus, INIS, SciElo além de verificar o Currículo Lattes. O RI-IPEN apresenta também um aspecto inovador no seu funcionamento. Por meio de metadados específicos ele está vinculado ao sistema de gerenciamento das atividades do Plano Diretor anual do IPEN (SIGEPI). Com o objetivo de fornecer dados numéricos para a elaboração dos indicadores da Produção Cientifica Institucional, disponibiliza uma tabela estatística registrando em tempo real a inserção de novos itens. Foi criado um metadado que contém um número único para cada integrante da comunidade científica do IPEN. Esse metadado se transformou em um filtro que ao ser acionado apresenta todos os trabalhos de um determinado autor independente das variáveis na forma de citação do seu nome.