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Dive into the research topics where Luciano Aparecido Meireles Grillo is active.

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Featured researches published by Luciano Aparecido Meireles Grillo.


Revista do Colégio Brasileiro de Cirurgiões | 2012

Estudo comparativo do uso tópico de própolis verde e vermelha na reparação de feridas em ratos

Lara Lívia Valença Batista; Eliane Aparecida Campesatto; Maria Lysete Bastos de Assis; Ana Paula Fernandes Barbosa; Luciano Aparecido Meireles Grillo; Camila Braga Dornelas

OBJECTIVE To evaluate the healing action of green and red propolis, correlating it with the content of flavonoids. METHODS We performed quantification of total flavonoids of green and red propolis ethanol extracts for subsequent incorporation in ointment base to 20%. We used 20 Wistar rats divided into four groups: 0.9% saline (S), ointment base (B), green propolis ointment (G) and red propolis ointment (R). All animals were submitted to excisional lesions in the midian back region. The rats were treated daily for 15 days. During this period we observed weight, body temperature and diameters of the wounds. For histological analysis, samples were collected from wounds. At the end of the experiment we performed blood collection and removal of the kidney and liver for biochemical and histological analyzes. RESULTS The levels of total flavonoids of green (4.50%) and red (5.92%) propolis were high (> 2%), but, while the latter showed a content larger than the former, the evolution of green propolis was better in the repair of wounds, both macroscopically and histologically. There were no nephrotoxicity or hepatotoxicity, a result confirmed by biochemical tests (ALT and albumin). Propolis influenced the reduction of total cholesterol, triglycerides and glucose. CONCLUSION There was no correlation between total flavonoid contents and the healing action of propolis. This reveals the need for elucidation of the flavonoids found in each class of propolis to unravel which one(s) would be important for the healing process.


International Journal of Biological Macromolecules | 2017

Interaction between bioactive compound 11a-N-tosyl-5-deoxi-pterocarpan (LQB-223) and Calf thymus DNA: Spectroscopic approach, electrophoresis and theoretical studies

Marina de M. Silva; Eduarda de O. O. Nascimento; Edeíldo F. Silva; João Xavier de Araújo; Camilla Camerino Santana; Luciano Aparecido Meireles Grillo; Rafaela S. de Oliveira; Paulo R. R. Costa; Camilla D. Buarque; Josué Carinhanha Caldas Santos; Isis M. Figueiredo

The interaction of small molecules with DNA has been quite important, since this biomolecule is currently the major target for a wide range of drugs in clinical use or advanced clinical research phase. Thus, the present work aimed to assess the interaction process between the bioactive compound 11a-N-tosyl-5-carba-pterocarpan, (LQB-223), that presents antitumor activity, with DNA, employing spectroscopic techniques, electrophoresis, viscosity and theoretical studies. Through UV-vis and molecular fluorescence spectroscopy, it was possible to infer that the preferential quenching mechanism was static, characterized by non-fluorescent supramolecular complex formation between the LQB-223 and DNA. The binding constant was 1.94∙103Lmol-1 (30°C) and, according to the thermodynamic parameters, the main forces involved in the interaction process are hydrophobic. Potassium iodide assay, competition with ethidium bromide, fluorescence contact energy transfer and melting temperature profile of DNA were employed to evaluate the binding mode. Except for KI assay, all results obtained indicated minor groove as the preferential binding mode of LQB-223 to DNA. These observations were supported by ionic strength assay, viscosity and molecular dynamics and docking studies. Finally, electrophoresis analysis demonstrated that the interaction does not promote DNA fragmentation, but it leads to variation in the migration profile after increasing the ligand concentration.


Journal of Insect Science | 2014

Embryonic development of Rhynchophorus palmarum (Coleoptera: Curculionidae): dynamics of energy source utilization.

Camilla Camerino Santana; Josiel Santos Nascimento; Mariana M. Costa; Antônio T. da Silva; Camila Braga Dornelas; Luciano Aparecido Meireles Grillo

Abstract Energy homeostasis is an essential process during oogenesis, nutrients are required for suitable embryonic development, and recently, studies have investigated metabolic activity during this process. This work aims the investigation of dynamics of energy source utilization of Rhynchophorus palmarum during embryogenesis. For this, we first evaluated the mobilization kinetics of the lipids and glycogen. Thereafter, the synthesis of RNA, protein, and the involvement of enzyme of the glycolytic and pentose-phosphate pathways. Results showed that lipid content decreased in contrast with the lipase activity. The total glycogen amounts it was partly consumed and the glucose content increased, but then values remained stable until hatching. Total RNA content increased, and no significant changes in total protein content were observed. A study of the glycolytic pathway data showed activity of hexokinase and pyruvate kinase at the beginning of embryogenesis. Furthermore, glucose-6-phosphate formed is driven into the pentose-phosphate pathway viewed the high activity of glucose-6-phosphate dehydrogenase. Finally, these results showed that mobilization of different energy sources together with different enzymatic activities has an important role in embryonic development of R. palmarum .


Polimeros-ciencia E Tecnologia | 2010

Estudo do processo de intercalação via solução PVP-bentonita: a avaliação da influência do tempo reacional, da proporção de polímero-argila e da massa molar média

Camila Braga Dornelas; Luciano Aparecido Meireles Grillo; Irinaldo Diniz Basílio Júnior; Ticiano Gomes do Nascimento; Daniel K. Resende; Maria Inês Bruno Tavares; Ailton S. Gomes; Arídio M. Junior; Lucio Mendes Cabral

In this paper were produced reactions by solution PVP-bentonite, natural and modified, where we studied the influence of reaction time (15, 30, 45 minutes, 1, 24, 48, 72 hours), polymer-clay ratio (2:1, 1:1, 1:2) and molar mass (PVP K-30, PVP K-90). Techniques such as XRD, FTIR and TGA were used to explain the formation of intercalated nanocomposites and their reaction process.


RSC Advances | 2017

Encapsulation and release of Beauveria bassiana from alginate–bentonite nanocomposite

D. P. C. Batista; I. N. de Oliveira; A. R. B. Ribeiro; Eduardo J. S. Fonseca; Nereide S. Santos-Magalhães; J. G. de Sena-Filho; Adenir Vieira Teodoro; Luciano Aparecido Meireles Grillo; R. S. de Almeida; Camila Braga Dornelas

The present work is devoted to the study of polymer/layered silicate nanocomposite (PLN) of alginate–bentonite as a bead matrix for the entomopathogenic fungus Beauveria bassiana strain CPATC032. In particular, we investigate the encapsulation efficiency and surface morphology of beads presenting different concentrations of bentonite, where the effects associated with the drying method of the samples were analyzed. The internal structure of alginate–bentonite beads are studied by means of X-ray diffraction and Fourier transform infrared spectroscopy, determining the impact of the drying process on the crystalline structure of bentonite domains inside the polymeric matrix. By using Scanning Electron Microscopy (SEM) and fluorescence microscopy techniques, we identify a monolithic distribution profile for beads inside the PLN matrix, which is independent of the concentration of bentonite and of the drying method employed. However, our results demonstrated that the in vitro release of the fungus is sensitive to the bead preparation method due to the emergence of a barrier phenomenon as the concentration of silicate is increased. Swelling degree and release kinetics were also investigated, where a strong dependence on the drying method was observed.


Insects | 2017

Lipase Activity in the Larval Midgut of Rhynchophorus palmarum: Biochemical Characterization and the Effects of Reducing Agents

Camilla Camerino Santana; Leandro Augusto Barbosa; Irinaldo Diniz Basílio Júnior; Ticiano Gomes do Nascimento; Camila Braga Dornelas; Luciano Aparecido Meireles Grillo

Lipases have key roles in insect lipid acquisition, storage, and mobilization and are also fundamental to many physiological processes in insects. Lipids are an important component of insect diets, where they are hydrolyzed in the midgut lumen, absorbed, and used for the synthesis of complex lipids. The South American palm weevil Rhynchophorus palmarum is one of the most important pests on commercial palm plantations. However, there are few studies about lipid digestion for this insect. In this work, we have described the biochemical characterization of the lipase activity in the posterior midgut of the R. palmarum palm weevil. Lipase activity was highest between the temperatures of 37 °C and 45 °C and at pH 6.5. Lipase activity was also sensitive to variations in salt and calcium concentrations. Lipases have been described structurally as enzymes with the Ser-His-Asp Catalytic Triad, containing an active serine. The serine protease inhibitor PMSF (phenylmethane sulfonyl fluoride) inhibited the lipases from R. palmarum, demonstrating the importance of a serine residue for this activity. The ability of the lipases to hydrolyze p-Nitrophenyl esters with different chain lengths has revealed the activities of a broad range of substrates. The lipase activities of R. palmarum increased in the presence of reduced glutathione (GSH) and dithiothreitol (DTT), while in the presence of oxidized glutathione (GSSG), activities were drastically reduced. To our knowledge, this study has provided the first information about lipase activity in the R. palmarum palm weevil.


Nanoscale Research Letters | 2016

Polymeric Nanoparticles of Brazilian Red Propolis Extract: Preparation, Characterization, Antioxidant and Leishmanicidal Activity

Ticiano Gomes do Nascimento; Priscilla Fonseca da Silva; Lais Farias Azevedo; Louisianny Guerra da Rocha; Isabel Cristina Celerino de Moraes Porto; Túlio Flávio Accioly de Lima e Moura; Irinaldo Diniz Basílio-Júnior; Luciano Aparecido Meireles Grillo; Camila Braga Dornelas; Eduardo J. S. Fonseca; Eduardo de Jesus Oliveira; Alex Tong Zhang; David G. Watson


Applied Clay Science | 2014

Layered double hydroxides (LDHs) as carrier of antimony aimed for improving leishmaniasis chemotherapy

Janaína Menezes; Tamires Gomes da Silva; Jailma Barros dos Santos; Edgar Catari; Mario R. Meneghetti; Carolina Barbosa Brito da Matta; Magna Suzana Alexandre-Moreira; Nereide S. Santos-Magalhães; Luciano Aparecido Meireles Grillo; Camila Braga Dornelas


Insect Biochemistry and Molecular Biology | 2016

The ACBP gene family in Rhodnius prolixus: Expression, characterization and function of RpACBP-1

David Majerowicz; Hans Kristian Hannibal-Bach; Rodolfo S.C. Castro; Bruno L. Bozaquel-Morais; Michele Alves-Bezerra; Luciano Aparecido Meireles Grillo; Claudio A. Masuda; Nils J. Færgeman; Jens Knudsen; Katia C. Gondim


The Journal of Membrane Biology | 2016

The Influence of Fatty Acid Methyl Esters (FAMEs) in the Biochemistry and the Na+/K+-ATPase Activity of Culex quinquefasciatus Larvae

Lilian N. D. Silva; José A. Ribeiro-Neto; Jéssica M. M. Valadares; Mariana M. Costa; Luciana Alves Rodrigues dos Santos Lima; Luciano Aparecido Meireles Grillo; Vanessa Faria Cortes; H. Santos; Stênio Nunes Alves; Leandro Augusto Barbosa

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Camila Braga Dornelas

Federal University of Alagoas

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Leandro Augusto Barbosa

Universidade Federal de São João del-Rei

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Mariana M. Costa

Federal University of Alagoas

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Antônio T. da Silva

Federal University of Alagoas

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Vanessa Faria Cortes

Universidade Federal de São João del-Rei

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