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1.
Antibiotics (Basel) ; 11(5)2022 May 04.
Artigo em Inglês | MEDLINE | ID: mdl-35625263

RESUMO

Antimicrobial photodynamic therapy (aPDT) is considered a promising alternative strategy to control Acinetobacter baumannii infections. In this study, we evaluated the action of aPDT mediated by a new photosensitizer derivative from chlorin e-6 (Fotoenticine-FTC) on A. baumannii, comparing its effects with methylene blue (MB). For this, aPDT was applied on A. baumannii in planktonic growth, biofilms, and burn infections in Galleria mellonella. The absorption of FTC and MB by bacterial cells was also evaluated using microscopic and spectrophotometric analysis. The results of planktonic cultures showed that aPDT reduced the number of viable cells compared to the non-treated group for the reference and multidrug-resistant A. baumannii strains. These reductions varied from 1.4 to 2 log10 CFU for FTC and from 2 log10 CFU to total inhibition for MB. In biofilms, aPDT with MB reduced 3.9 log10 CFU of A. baumannii, whereas FTC had no effect on the cell counts. In G. mellonella, only MB-mediated aPDT had antimicrobial activity on burn injuries, increasing the larvae survival by 35%. Both photosensitizers were internalized by bacterial cells, but MB showed a higher absorption compared to FTC. In conclusion, MB had greater efficacy than FTC as a photosensitizer in aPDT against A. baumannii.

2.
São José dos Campos; s.n; 2022. 110 p. tab, ilus, graf.
Tese em Português | LILACS, BBO - Odontologia | ID: biblio-1393105

RESUMO

Os biofilmes orais possuem grande relevância clínica por estarem associados com o desenvolvimento de cárie dentária e candidose bucal, que são doenças infecciosas frequentemente encontradas na população. O presente trabalho foi dividido em dois estudos: Estudo 1 que teve como objetivo analisar os efeitos da terapia fotodinâmica antimicrobiana (TFDa), mediada por Fotoenticine (FTC) e Azul de Metileno (AM), sobre biofilmes microcosmos de cárie dentária; e Estudo 2 cujo objetivo foi avaliar o gellan gum como biomaterial para carreador do antifúngico Ester fenetil do ácido caféico (CAPE) contra Candida albicans. No estudo 1, amostras de dentina cariada foram coletadas de diferentes pacientes para formar biofilmes microcosmos in vitro. Os biofilmes foram tratados com FTC ou AM associado à irradiação LED a 660 nm (28,5 J/cm²). Os dados foram analisados pela contagem de Unidades Formadoras de Colônias (UFC/mL). Além disso, a biomassa, estrutura do biofilme e produção de ácidos pelos microrganismos foram determinadas por análises microscópicas ou espectrofotométricas. Os biofilmes de diferentes pacientes apresentaram variações na composição microbiana, sendo formados por estreptococos, lactobacilos e leveduras. No geral, a TFDa diminuiu 3,7 Log10 do total de microrganismos, 2,8 Log10 de estreptococos, 3,2 Log10 de lactobacilos e 3,2 Log10 de leveduras, e atingiu a erradicação de estreptococos do grupo mutans. A TFDa também foi capaz de reduzir a biomassa, desagregar os biofilmes e diminuir a concentração de ácidos em 1,1 a 1,9 mmol de lactato/L. Em relação ao estudo 2, inicialmente, foram preparadas formulações do CAPE em diferentes concentrações de gellan gum (0,6 a 1%). As formulações foram avaliadas em relação ao sistema de liberação e ação antifúngica contra C. albicans. Verificou-se que concentrações mais altas de gellan (0,9 e 1%) levaram a uma liberação mais prolongada do CAPE em relação as concentrações mais baixas. Os valores de concentração inibitória mínima do CAPE sobre C. albicans foram aumentados quando esse composto foi incorporado no gellan. As formulações de CAPE em gellan apresentaram atividade antifúngica tanto em culturas planctônicas como em biofilmes de C. albicans, sendo esses efeitos dependentes do tempo de tratamento. O CAPE e suas formulações em gellan também levaram a uma diminuição da atividade proteolítica de C. albicans. Concluiu-se que a TFDa mediada por Fotoenticine e o sistema carreador de gellan gum podem ser estratégias terapêuticas promissoras para o controle dos biofilmes na cavidade bucal, podendo ser usadas respectivamente no tratamento da cárie e candidose. (AU)


Dental caries and oral candidiasis are infectious diseases frequently found in the population. The present work is divided into two studies, study 1 time as objective: To analyze the effects of antimicrobial photodynamic therapy (aPDT), mediated by Fotoenticine (FTC) and Methylene Blue (MB), on dental caries microcosm biofilms. In study 2, the objective was to evaluate gellan gum as a biomaterial to carry the antifungal caffeic acid phenethyl ester (CAPE) on Candida albicans. To conduct study 1, carious dentin samples were collected from different patients to form in vitro microcosm biofilms. The biofilms were treated with FTC or MB associated with 660 nm red LED irradiation, with energy dose of 28.5 J/cm² and power dose of 40 mW/cm². The data were analyzed by the count of Colony Forming Units (CFU/mL). In addition, the biomass, biofilm structure and acid production of the microorganisms were determined by microscopic or spectrophotometric analysis. The biofilms from different patients showed variations in microbial composition, being formed by streptococci, lactobacilli, and yeasts. Overall, aPDT decreased 3.7 Log10 of total microorganisms, 2.8 Log10 of streptococci, 3.2 Log10 of lactobacilli and 3.2 Log10 of yeasts, and achieved eradication of mutans group streptococci. PDTa was also able to reduce biomass, disaggregate biofilms, and decrease acid concentration by 1.1 to 1.9 mmol lactate/L. For study 2 of this, first the standards of CAPE were determined, such as minimum inhibitory concentration, and absorption peak, then CAPE was incorporated into gellan gum, and then the standard curve test and analysis of CAPE release was performed, finally the formulations were tested on planktonic culture and biofilm of different strains of C. albicans, it was also analyzed the action of this drug on the production of Sap. The MIC found varied from 32 to 64 µg/mL, the release tests showed a gradual release in the higher formulations, finally in the CFU/mL count both in planktonic culture and biofilm the formulations were able to inhibit the fungus. With this it is concluded that both aPDT for oral microcosm and gellan gum as caregiver of CAPE for Candida albicans inhibition are promising. (AU)


Assuntos
Humanos , Fotoquimioterapia , Candida albicans , Cárie Dentária , Placa Dentária , Azul de Metileno
3.
Pharmaceutics ; 13(11)2021 Nov 10.
Artigo em Inglês | MEDLINE | ID: mdl-34834321

RESUMO

Photodynamic therapy (PDT) mediated by Fotoenticine® (FTC), a new photosensitizer derived from chlorin e-6, has shown in vitro inhibitory activity against the cariogenic bacterium Streptococcus mutans. However, its antimicrobial effects must be investigated on biofilm models that represent the microbial complexity of caries. Thus, we evaluated the efficacy of FTC-mediated PDT on microcosm biofilms of dental caries. Decayed dentin samples were collected from different patients to form in vitro biofilms. Biofilms were treated with FTC associated with LED irradiation and analyzed by counting the colony forming units (log10 CFU) in selective and non-selective culture media. Furthermore, the biofilm structure and acid production by microorganisms were analyzed using microscopic and spectrophotometric analysis, respectively. The biofilms from different patients showed variations in microbial composition, being formed by streptococci, lactobacilli and yeasts. Altogether, PDT decreased up to 3.7 log10 CFU of total microorganisms, 2.8 log10 CFU of streptococci, 3.2 log10 CFU of lactobacilli and 3.2 log10 CFU of yeasts, and reached eradication of mutans streptococci. PDT was also capable of disaggregating the biofilms and reducing acid concentration in 1.1 to 1.9 mmol lactate/L. It was concluded that FTC was effective in PDT against the heterogeneous biofilms of dental caries.

4.
Photodiagnosis Photodyn Ther ; 30: 101685, 2020 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-32050104

RESUMO

Gliosarcoma is a highly aggressive malignant neoplasm and a histopathological variant of wild-type glioblastoma multiforme isocitrate dehydrogenase (HDI). The current standard treatment consists of chemotherapy, radiotherapy and surgical resection, however, despite advances in these techniques, the patient's prognosis remains unfavorable. Photodynamic therapy (PDT) is a noninvasive technique that has been highlighted as an alternative form of cancer treatment because it does not present the side effects associated with systemic treatments. The objective of this study was to evaluate the cell viability and the intracellular localization of photosensitizer (PS) chlorin e6 Fotoenticine in 9L/lacZ cells. Therefore, tests of cytotoxicity, morphology, and location of PS were performed. The viability test showed no cytotoxicity in the dark at all concentrations and 100 % cell death at the highest concentrations after PDT. The mitochondrial activity test showed a reduction in all groups after PDT. The production of reactive oxygen species (ROS) was higher in the PDT groups and dependent on the PS concentration. Morphological analysis after PDT showed apparent cytoplasmic destruction in all the tested concentrations, with the presence of rounded cells due to the loss of their extensions and absence of nuclear alterations. The PS accumulation in the mitochondria and cytoskeleton was observed by the confocal microscopy; however, there is no evidence of its internalization in the lysosomes. It was concluded that PDT with Fotoenticine is a promising alternative therapy showing decreased cell viability, increased ROS production and adequate localization to trigger cell death.


Assuntos
Glioblastoma , Gliossarcoma , Fotoquimioterapia , Apoptose , Linhagem Celular Tumoral , Glioblastoma/tratamento farmacológico , Gliossarcoma/tratamento farmacológico , Humanos , Fotoquimioterapia/métodos , Fármacos Fotossensibilizantes/farmacologia
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