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Dive into the research topics where Marciana P. Uliana is active.

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Featured researches published by Marciana P. Uliana.


Chemistry: A European Journal | 2014

Synthesis of new chlorin e6 trimethyl and protoporphyrin IX dimethyl ester derivatives and their photophysical and electrochemical characterizations.

José C. J. M. D. S. Menezes; M. Amparo F. Faustino; Kleber T. de Oliveira; Marciana P. Uliana; Vitor F. Ferreira; Steffen Hackbarth; Beate Röder; Thiago Teixeira Tasso; Taniyuki Furuyama; Nagao Kobayashi; Artur M. S. Silva; M. Graça P. M. S. Neves; José A. S. Cavaleiro

In view of increasing demands for efficient photosensitizers for photodynamic therapy (PDT), we herein report the synthesis and photophysical characterizations of new chlorin e6 trimethyl ester and protoporphyrin IX dimethyl ester dyads as free bases and Zn(II) complexes. The synthesis of these molecules linked at the β-pyrrolic positions to pyrano[3,2-c]coumarin, pyrano[3,2-c]quinolinone, and pyrano[3,2-c]naphthoquinone moieties was performed by using the domino Knoevenagel hetero Diels-Alder reaction. The α-methylenechromanes, α-methylenequinoline, and ortho-quinone methides were generated in situ from a Knoevenagel reaction of 4-hydroxycoumarin, 4-hydroxy-6-methylcoumarin, 4-hydroxy-N-methylquinolinone, and 2-hydroxy-1,4-naphthoquinone, respectively, with paraformaldehyde in dioxane. All the dyads as free bases and as Zn(II) complexes were obtained in high yields. All new compounds were fully characterized by 1D and 2D NMR techniques, UV/Vis spectroscopy, and HRMS. Their photophysical properties were evaluated by measuring the fluorescence quantum yield, the singlet oxygen quantum yield by luminescence detection, and also the triplet lifetimes were correlated by flash photolysis and intersystem crossing (ISC) rates. The fluorescence lifetimes were measured by a time-correlated single photon count (TCSPC) method, fluorescence decay associated spectra (FDAS), and anisotropy measurements. Magnetic circular dichroism (MCD) and circular dichroism (CD) spectra were recorded for one Zn(II) complex in order to obtain information, respectively, on the electronic and conformational states, and interpretation of these spectra was enhanced by molecular orbital (MO) calculations. Electrochemical studies of the Zn(II) complexes were also carried out to gain insights into their behavior for such applications.


Journal of the Brazilian Chemical Society | 2008

Oxidation of mono-phenols to para-benzoquinones: a comparative study

Marciana P. Uliana; Ygor W. Vieira; Maria C. Donatoni; Arlene G. Corrêa; Ursula Brocksom; Timothy J. Brocksom

A oxidacao de mono-fenois a para-benzoquinonas e assunto de interesse continuo devido a existencia de inumeros produtos naturais contendo esta unidade estrutural. As para-benzoquinonas possuem reatividade quimica importante como agentes oxidantes e como dienofilos na reacao de Diels-Alder. Usualmente nos preparamos as para-benzoquinonas pela reacao de oxidacao dos respectivos mono-fenois com oxigenio molecular e catalisada por [CoII(salen)]. Porem, foi necessario estudar estas oxidacoes utilizando-se outros oxidantes. Nos apresentamos aqui nossos resultados sobre esta importante reacao de oxidacao com uma variedade de oxidantes, utilizando onze mono-fenois como substratos. Os oxidantes utilizados foram cobalto, niquel, cobre e vanadio derivados com alguns ligantes do tipo salen. Tambem foram estudados peroxido de hidrogenio, OXONE®, dimetil dioxirano e acido iodoxibenzoico.


Química Nova | 2010

A reação de Diels-Alder no início do século vinte um

Timothy J. Brocksom; Maria C. Donatoni; Marciana P. Uliana; Ygor William Vieira

The Diels-Alder reaction continues to be the premier method for the construction of complex organic molecules. In the last 10 years many developments have been introduced, and have led to increased utility of this reaction. In this review we present some of these novelties, which are of fundamental importance in organic synthesis.


Parasitology Research | 2010

Larvicidal activity of para-Benzoquinones

Damião Pergentino de Sousa; Ygor W. Vieira; Marciana P. Uliana; Manuela A. Melo; Timothy J. Brocksom; Sócrates Cabral de Holanda Cavalcanti

Plant products may be alternative sources of mosquito larval control agents, since they constitute a rich source of bioactive compounds that are biodegradable into nontoxic products. It has been reported that quinones and derivatives present toxic activity against mosquito larvae Aedes aegypti. Therefore, these facts led us to investigate the larvicidal potential of six structurally related para-benzoquinones against A. aegypti L. (Culicidae) larvae, the vector of dengue fever. All the para-benzoquinones were found to have larvicidal effect. The unsubstituted para-benzoquinone was the compound that exhibited the lowest potency, while 2-isopropyl-para-benzoquinone was the most bioactive. In general, the presence of alkyl groups results in more potent compounds. In addition, the number, position, and size of these groups modulate the potency of the compounds. The experimental results showed that by appropriate structural modification of para-benzoquinones, it may be possible to develop novel insecticidal compounds with potential use to control A. aegypti population.


Frontiers in Microbiology | 2017

Antimicrobial Photodynamic Therapy against Endodontic Enterococcus faecalis and Candida albicans Mono and Mixed Biofilms in the Presence of Photosensitizers: A Comparative Study with Classical Endodontic Irrigants

Patrícia Diogo; Chantal Fernandes; Francisco Caramelo; Marta Mota; Isabel M. Miranda; Maria A. F. Faustino; M. G. P. M. S. Neves; Marciana P. Uliana; Kleber T. de Oliveira; João Santos; Teresa Gonçalves

Endodontic biofilms eradication from the infected root canal system remains as the primary focus in endodontic field. In this study, it was assessed the efficacy of antimicrobial Photodynamic Therapy (aPDT) with the Zn(II)chlorin e6 methyl ester (Zn(II)e6Me) activated by red light against monospecies and mixed biofilms of Enterococcus faecalis and Candida albicans. The results were compared with the ones obtained with Rose Bengal (RB), Toluidine Blue-O (TBO), the synthetic tetracationic porphyrin (TMPyP) as well as classical endodontic irrigants (3% NaOCl, 17% EDTA and 2% CHX). The antimicrobial efficacy of aPDT toward monospecies and mixed biofilms was quantified resorting to safranin red method. The changes of biofilm organization and of cellular ultrastructure were evaluated through several microscopy techniques (light, laser confocal and transmission electron microscopy). Zn(II)e6Me once activated with light for 60 or 90 s was able to remove around 60% of the biofilm’s biomass. It was more efficient than TBO and RB and showed similar efficiency to TMPyP and classical irrigants, CHX and EDTA. As desirable in a PS, Zn(II)e6Me in the dark showed smaller activity than TMPyP. Only NaOCl revealed higher efficiency, with 70–90% of the biofilm’s biomass removal. The organization of biofilms and the normal microbial cell ultrastructure were extensively damaged by the presence of Zn(II)e6Me. aPDT with Zn(II)e6Me showed to be an efficient antimicrobial strategy deserving further studies leading to a future clinical usage in endodontic disinfection.


Scientific Reports | 2018

Antimicrobial Photodynamic therapy enhanced by the peptide aurein 1.2

Laura Marise de Freitas; E. N. Lorenzon; Norival A. Santos-Filho; Lucas Henrique de Paula Zago; Marciana P. Uliana; Kleber T. de Oliveira; Eduardo Maffud Cilli; Carla Raquel Fontana

In the past few years, the World Health Organization has been warning that the post-antibiotic era is an increasingly real threat. The rising and disseminated resistance to antibiotics made mandatory the search for new drugs and/or alternative therapies that are able to eliminate resistant microorganisms and impair the development of new forms of resistance. In this context, antimicrobial photodynamic therapy (aPDT) and helical cationic antimicrobial peptides (AMP) are highlighted for the treatment of localized infections. This study aimed to combine the AMP aurein 1.2 to aPDT using Enterococcus faecalis as a model strain. Our results demonstrate that the combination of aPDT with aurein 1.2 proved to be a feasible alternative capable of completely eliminating E. faecalis employing low concentrations of both PS and AMP, in comparison with the individual therapies. Aurein 1.2 is capable of enhancing the aPDT activity whenever mediated by methylene blue or chlorin-e6, but not by curcumin, revealing a PS-dependent mechanism. The combined treatment was also effective against different strains; noteworthy, it completely eliminated a vancomycin-resistant strain of Enterococcus faecium. Our results suggest that this combined protocol must be exploited for clinical applications in localized infections as an alternative to antibiotics.


Revista Brasileira De Farmacognosia-brazilian Journal of Pharmacognosy | 2011

Anticonvulsant activity of thymoquinone and its structural analogues

Damião Pergentino de Sousa; Franklin F. F. Nóbrega; Camila Carolina de Menezes Patrício Santos; Rubens Batista Benedito; Ygor W. Vieira; Marciana P. Uliana; Timothy J. Brocksom; Reinaldo Nóbrega de Almeida

It has been widely reported that the crude oil of Nigella sativa L., Ranunculaceae, seeds and its major chemical component thymoquinone present anticonvulsant activity. These facts led us to verify the pharmacological potential of five structurally related para-benzoquinones on the pentylenotetrazol-induced seizures model, and establish the structural characteristics that influence the anticonvulsant activity of thymoquinone. The unsubstituted para-benzoquinone was the compound that exhibited the highest potency, while 2-methyl-p-benzoquinone was inactive. It was found that the presence of alkyl groups attached to the ring influence the pharmacological activity of the para-benzoquinones. In addition, the number, position, and size of these groups change the anticonvulsant potency of the compounds.


Optical Methods for Tumor Treatment and Detection: Mechanisms and Techniques in Photodynamic Therapy XXVII | 2018

Photodynamic inactivation of Staphylococcus aureus and Escherichia coli using a new bacteriochlorin as photosensitizer

Diego Barboza; Laura C. A. Martins; Kleber T. de Oliveira; Sebastião Pratavieira; Clovis Wesley Oliveira de Souza; Thaila Quatrini Corrêa; Mariana C. Geralde; Marciana P. Uliana

In this study, we used bacteriochlorin as a photosensitizer, characterized by their low toxicity in the absence of light, presenting absorption around 780 nm, with the objective of evaluating their photodynamic inactivation potential on Staphylococcus aureus and Escherichia coli. Bacteriochlorins were synthesized from the extraction of bacteriochlorophylls from non-sulfurous purple bacteria and were then converted to bacteriochlorins. S. aureus and E. coli microorganisms were used in the planktonic and biofilm forms. For the formation of biofilms on glass coverslips, suspensions of the microorganisms at the concentration of 106 CFU/mL were inoculated into each well of a microplate. There was an exchange of culture medium (Tryptic Soy Broth - TSB) every 24 hours for 7 days, pre-washing the coverslips with a phosphate-buffered saline (PBS), to ensure that only adhered microorganisms were grown and then incubated at (36 ± 1)°C between the middle exchanges. After 7 days of induction, the biofilm was mature, like those normally found in nature, and then it was applied different treatments (light doses associated with FS concentrations). At the end of the treatment, the coverslips underwent an ultrasonic disintegration, and the quantitative evaluation of viable cells was performed by plate counting using the plate method in Tryptic Soy Agar (TSA), incubating at (36 ± 1)°C for 24 hours. The results showed that the PDI for E. coli was not successful even when it was more susceptible to the planktonic form, whereas for S. aureus the results showed a reduction in cell viability 6 logs for the planktonic forms, but lower to 1 log in biofilms. Therefore, novel studies using bacteriochlorins and surfactants will be performed to verify the potential of this alternative treatment method.


Photodiagnosis and Photodynamic Therapy | 2017

Phototoxicity in a laryngeal cancer cell line enhanced by a targeting amphiphilic chlorin photosensitizer

Milene N.O. Moritz; Carlos Rossa Junior; Kleber T. de Oliveira; Marciana P. Uliana; Janice R. Perussi

BACKGROUND Photodynamic therapy (PDT) has been established in several countries as an alternative therapy for the treatment of various malignancies. This therapy involves the incorporation of a photosensitizer (PS) that is activated by visible light and form reactive oxygen species leading to target cell death by apoptosis or necrosis. Previously, our group has demonstrated that CHL-T (semi-synthesized from chlorophyll a and containing a linked solubilizing group TRISMA®) presented a pronounced potential to induce death in HeLa cell line after PDT. In the present study, besides confirm the high cytotoxicity in another cell line, we have further investigated the cell death mechanisms caused by CHL-T as a photosensitizer in laryngeal carcinoma cells. METHODS Cells were exposed to different concentrations of three photosensitizers, namely, hypericin (HY), unmodified chlorin (CHL) and a synthesized amphiphilic chlorin derivative (CHL-T). PSs accumulation and localization were accessed by fluorescence assays. Photosensitization was induced at 6Jcm-2 using red LEDs (630±10nm). Viability was assessed by mitochondrial function (MTT); whereas apoptosis/necrosis was evaluated by fluorescence microscopy and flow cytometry. Expression of pro-apoptotic p53 protein was studied by Western blot. RESULTS AND CONCLUSIONS All PS showed similar localization profile in the HEp-2 cells. The use of CHL-T increased the percentage of apoptotic cells and also p53 expression in comparison with the use of HY and CHL as photosensitizers. This study shows a significant effect of CHLT associated with red light (630±10nm and 18mWcm-2) irradiation on a cancer cell line, indicating the potential of this amphiphilic chlorin in enhancing the therapeutic effectiveness of Photodynamic Therapy (PDT).


Tetrahedron | 2014

The Diels–Alder reactions of para-benzoquinone nitrogen-derivatives: an experimental and theoretical study

Marciana P. Uliana; Bruno M. Servilha; Olga Alexopoulos; Kleber T. de Oliveira; Cláudio F. Tormena; Marco A. B. Ferreira; Timothy J. Brocksom

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Timothy J. Brocksom

Federal University of São Carlos

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Kleber T. de Oliveira

Federal University of São Carlos

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Maria C. Donatoni

Federal University of São Carlos

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Ygor W. Vieira

Federal University of São Carlos

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Rubens Batista Benedito

Federal University of Paraíba

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Arlene G. Corrêa

Federal University of São Carlos

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Bruno M. Servilha

Federal University of São Carlos

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