Dissertation/Thèse

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2023
Thèses
1
  • GABRIELLA OLIVEIRA ALVES MOREIRA DE CARVALHO
  • JUNCTIONAL COMMUNICATION IN MACROPHAGES IN THE INFLAMMATORY INFECTIOUS PROCESS WITH Toxoplasma gondii

  • Leader : FABIO DA SILVA DE AZEVEDO FORTES
  • MEMBRES DE LA BANQUE :
  • FABIO DA SILVA DE AZEVEDO FORTES
  • BRUNO GUIMARAES MARINHO
  • WELLINGTON DA SILVA CORTES
  • Regina Coeli dos Santos Goldenberg
  • SERGIO HENRIQUE SEABRA
  • Data: 24 avr. 2023


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  • Toxoplasma gondii (T. gondii) is the causative agent of toxoplasmosis. This protozoan has the characteristic of being obligate intracellular and having a high prevalence worldwide, where it is believed to have infected one third of the world's population, causing great morbidity and mortality. Given the complexity of this disease, several studies have been dedicated to the study of structures that are associated with parasitic diseases. Among these structures are the Communicating Junctions, which are responsible for the exchange of ions and small messengers that maintain tissue homeostasis. These transmembrane channels play an important role in intercellular communication in different tissues, as they allow communication in different cell types, including macrophages. With this, the morphological and functional characterization of gap junctions in macrophages, and in particular formed by connexin 43, has been the subject of study by several groups, but their regulatory mechanisms still deserve clarification, especially in the face of pathological changes, such as in infectiousinflammatory processes caused by T. gondii. In view of this, the main objective of this study was to evaluate the modulation of gap junctions in the macrophage lineage J774- G8, after infection with the parasite Toxoplasma gondii and subsequent activation with inflammatory pro-immune factors. As methodology, it was used: (1) Culture of J774-G8 cells; (3) Infection of the culture by the T. gondii strain RH; (4) Treatment with individual and conjugated pro-immunoinflammatory factors (IFN-γ, TNF-α, IFN-γ + TNF-α); (5) Immunoelectrophoretic assays (Western Blot); and (4) Immunofluorescence assays and analysis by confocal microscopy. The general results found were: (1) Improvement in the morphological profile of cultures of J774-G8 cells infected with T. gondii treated with proimmune-inflammatory factors; (2) Increased Cx43 protein expression in infected J774- G8 cells after treatment with pro-inflammatory immune factors for 24 and 48 hours; (3) Cell activation stimulated by treatment with conjugated factors; (4) The damage to the cellular cytoskeleton caused by the infection was irreversible, even after treatment with inflammatory pro-immune factors in infected cells; (5) Damage to the cytoskeleton prevented the transport and anchoring of Cx43 in the plasmatic membrane, however the factors provided an increase in the cytoplasmic levels of Cx43. With this, it was possible to conclude that: infection with T. gondii causes irreversible damage to macrophage cells, however treatment with pro-immune inflammatory factors stimulates the production of Cx43, which even though it fails to insert itself into the plasmatic membrane in infected cells due to damage to the cytoskeleton, may play important roles in the process of maintaining the infected cell structure.

2
  • LILIAN UCHOA CARNEIRO
  • PHARMACOLOGICAL EVALUATION OF THE ANTINOCICEPTIVE AND ANTI-INFLAMMATORY ACTIVITIES OF EXTRACTS AND FRACTIONS OF ANNONA DOLABRIPETALA RADDI

  • Leader : BRUNO GUIMARAES MARINHO
  • MEMBRES DE LA BANQUE :
  • ALBA CENELIA MATOS DA SILVA
  • BRUNO GUIMARAES MARINHO
  • CARLOS GIOVANI DE OLIVEIRA NASCIMENTO
  • FABRICIA VIANA FONSECA
  • RAQUEL DO NASCIMENTO DE SOUZA
  • Data: 28 avr. 2023


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  • Man has used natural products, particularly flora, for medicinal purposes, since the dawn of humanity. Drugs derived from plant species are used to treat pain and inflammation, such as opioids and non-steroidal anti-inflammatory drugs, but these have important adverse effects that lead to the search for new analgesic/anti-inflammatory drugs. Annona tomentosa is a species belonging to the genus Annona, of the family Annonaceae, and popularly known as “araticum de moita” or “araticum rasteiro”. Leaf tea is used in folk medicine to treat disorders of inflammatory origin. Because there is no scientific evidence for the effects of Annona tomentosa R.E.Fr, we intend to evaluate the antinociceptive and anti-inflammatory potential of extracts and fractions in hexane, ethyl acetate and chloroform of stem and leaves, under acute conditions. For this purpose, male Swiss mice weighing between 20-25g from the Animal Facility of the Department of Physiological Sciences – ICBS – UFRRJ were used. The protocol for this study was approved by CEUA/ICBS – UFRRJ, under number 013/2017. To evaluate the antinociceptive activity, models of abdominal writhing induced by acetic acid, formalin, tail withdrawal, induction of nociception by glutamate and cinnamaldehyde and open field were used. To evaluate the anti-inflammatory activity, models of paw edema induced by carrageenan, bradykinin, histamine and serotonin, subcutaneous air blister with quantification of total leukocytes and cytokines, COX activity, in addition to the acute toxicological evaluation were used. As a result, we observed the activity of the extracts and fractions with the highest dose in the model of abdominal writhing, formalin and tail flick, except for the fraction in ethyl acetate of leaves, which did not show effect in the 1st phase of formalin and in the model of tail withdrawal, demonstrating neurogenic antinociceptive activity. The hexanic fraction of the stem of A. dolabripetala, the most effective in the tail withdrawal model, did not have its antinociceptive effect reversed by any previously used antagonist, showing the absence of the participation of the opioid, nitrergic, adrenergic, cholinergic, serotonergic and channel systems of K+/ATP. The same fraction reduced the licking time induced by glutamate and cinnamaldehyde, showing possible activity on glutamatergic receptors and TRPA1. The extracts and fractions of A. dolabripetala did not show loss of mobility in the open field model, confirming the antinociceptive activity. The extracts and fractions of A. dolabripetala showed an effect on the paw edema model, with the exception of the hexane and stem ethyl acetate fractions. The flavonoids isolated from the ethyl acetate fraction of the leaves, the most effective in the antiedematogenic effect, were at their highest effective dose in reducing the paw edema induced by carrageenan in the last 2 hours of evaluation, reduced the migration of total leukocytes, reduced the production of pro-inflammatory cytokines TNF-α, IL-1β and IL-6, were not able to inhibit the edema induced by bradykinin, histamine and serotonin and also did not influence the production of IL-4, IL-10 and IFN -λ. Flavonoids demonstrated the ability to inhibit the enzymatic activity of COX. No extracts or fractions showed symptoms of toxicity at doses up to 1g/kg. Therefore, the extracts and fractions of A. dolabripetala showed to have antinociceptive and anti-inflammatory activities, suggesting the participation of glutamatergic receptors and TRPA1, inhibition in the production of pro-inflammatory cytokines and the enzyme cyclooxygenase.

2022
Thèses
1
  • JOYCE MATTOS DE OLIVEIRA
  • Pharmacological evaluation of the antinociceptive and anti-inflammatory activities of the Diclofenac hybrid compound

  • Leader : BRUNO GUIMARAES MARINHO
  • MEMBRES DE LA BANQUE :
  • BRUNO GUIMARAES MARINHO
  • FABIO FAGUNDES DA ROCHA
  • WELLINGTON DA SILVA CORTES
  • THIAGO ROBERTO LIMA ROMERO
  • BEATRIZ FERREIRA DE CARVALHO PATRÍCIO
  • Data: 11 mars 2022


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  • Analgesics are among one of the most commonly used drug classes for the treatment or relief of painful and inflammatory conditions. However, due to the large number of side effects and often the ineffectiveness of these drugs, it is necessary to search for new drugs. When a new compound shows promising responses, the conjugation of specific bioactive structures in a single molecule can be performed through molecular hybridization. An effective way to rationally plan new drugs that have synergistic action and/or decrease adverse effects. The aim of this study was to evaluate the acute and chronic antinociceptive and anti-inflammatory activity of the new hybrid compound: (±-cis) (6-ethyl-tetrahydro-2H-pyran-2-yl)methyl 2-(2-(2, 6-dichlorophenylamino) phenyl acetate (LS26), synthesized from the hybridization of the compound [(±)-Cys)(6-ethyl-Tetrahydro-2H-Pyran-2-yl]Methanol (LS20) and the non-inflammatory anti-inflammatory steroid diclofenac sodium. The compound LS26 was administered orally in all animals and in all experimental models. According to the results, the compound has acute antinociceptive activity observed in the abdominal writhing models, formalin (both phases) and immersion of the tail in hot water. The mechanism of action of the compound involves the opioid system, considering that the application of selective opioid antagonists were able to reduce the antinociceptive effect of the hybrid compound. The NO/cGMP/K+ATP pathway is also one of the mechanisms of action of LS26 due to the reduction of the antinociceptive effect with the administration prior L-NAME, ODQ and glibenclamide. Acute and chronic antinociceptive activity on allodynia induced by chronic constriction of the sciatic nerve was also observed in the neuropathic pain model due to inhibition of IL-1β and IL-6 production in the sciatic nerve. The compound shows no relationship between the antinociceptive effect and a motor deficit, according to the results of the rota-rod test. As for anti-inflammatory activity, the LS26 compound showed anti-edematogenic activity, as it was able to reduce leukocyte migration and the production of pro-inflammatory cytokines such as IL-1β, TNF-α and IL-6 and increase cytokine synthesis anti-inflammatory IL-10 in the subcutaneous air bag model. The compound showed selectivity for COX-2 inhibition observed in in vitro evaluation. In the toxicological test, the compound did not present acute and subchronic alterations in the microscopic and macroscopic evaluations. These results indicate antinociceptive activity through opioid receptors and the NO/cGMP/K+ATP pathway, in addition to anti-inflammatory activity with inhibition of leukocyte migration, reduction of IL-1β, TNF-α and IL-6 levels, increase of IL-10 and selective inhibitory activity on COX-2.

2021
Thèses
1
  • LÍVIA DA ROCHA NATALINO MONTEIRO
  • ANALYSIS OF THE DORSAL RAFE NUCLEUS TRANSCRIPTOME AFTER CHALLENGES TO HYDROELECTROLYTIC AND ENERGY HOMEOSTASIS

  • Leader : ANDRE DE SOUZA MECAWI
  • MEMBRES DE LA BANQUE :
  • ANDRE DE SOUZA MECAWI
  • WELLINGTON DA SILVA CORTES
  • LAURIVAL ANTONIO DE LUCA JUNIOR
  • SILVIA GRACIELA RUGINSK LEITÃO
  • HÉLIO ZANGROSSI JÚNIOR
  • Data: 24 févr. 2021


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  • The sodium ion is as a key element in the regulation of the hydroelectrolytic balance, so that its levels must be kept in a narrow range compatible with life. For such regulation, a series of renal, endocrine, and behavioural mechanisms are activated. The dorsal raphe nucleus (DRN) has been implicated as an important brain nucleus involved in the modulation of food-intake behaviour, especially sodium-specific appetite. In this work we investigate the transcriptomic changes in the DRN after challenges to hydroelectrolytic and energy homeostasis. Male Wistar rats, approximately 60 days old, were randomly separated into five experimental groups: a) control (CTRL); b) low sodium diet (LS); c) furosemide (FURO); d) salt loading (SL); and (e) food deprivation for 48 hours. After the experimental period, euthanasia was performed to collect blood and brain. Animals submitted to treatment with furosemide and saline overload showed a significant increase in hematocrit (FURO 12.4%, SL 14,9%) and reduction (FURO 1.25%) and increase in plasma sodium (SL 13%), respectively. Animals subjected to food deprivation showed an increase in hematocrit (13%) and a reduction in body weight (12.9%). The DRN RNA sequencing resulted in approximately 18,600 genes mapped in total. Among the most expressed genes, tryptophan hydroxylase isoform 2 (Tph2), the gene encoding the serotonin transporter SERT (Slc6a4) and the vesicular monoamine transporter (Slc18a2) were found, confirming the prevalence of serotonergic neurons. The comparison of differentially expressed genes using the Venn diagram revealed a low altered number in the FURO group (6 genes), no altered genes in the DP group and 22 genes altered by saline overload. Based on the results, we performed the RT-qPCR validation only for the saline overload group. Among the 22 altered genes in the transcriptome, we selected 10 targets for RT-qPCR, among which, 7 genes were successfully validated. Finally, the sequencing of the group subjected to food deprivation revealed 108 altered genes, when comparing this result to that obtained in salt loading, we saw that the groups have 6 altered genes in common (C3, Etnppl, Gjb6, RT1-T24-4, Slc35d3 e Sult1a1). Despite the need to validate the results of food deprivation, they indicate a possible overlap in the level of DRN between mechanisms that regulate specific sodium appetite and eating behaviour.

2020
Thèses
1
  • VERÔNICA CRISTINA LOPES MENEZES
  • Evaluation of the skin sodium reservoir and hydromineral balance as a function of age and sexual dimorphism in Wistar normotensive and Spontaneously Hypertensive rats (SHR).

  • Leader : LUIS CARLOS REIS
  • MEMBRES DE LA BANQUE :
  • LUIS CARLOS REIS
  • EMERSON LOPES OLIVARES
  • WELLINGTON DA SILVA CORTES
  • RENATO RIZO VENTURA
  • CLAUDIO DA SILVA ALMEIDA
  • Data: 8 mai 2020


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  • Introduction: The present work was carried out with the support of the Higher Education Personnel Improvement Coordination – Brazil (CAPES) - Finacing code 001. The spontaneously hypertensive animal strain (SHR) is considered as a model of essencial hypertension, being the model that is closer to the hypertension of the human being. This strain up to 4 weeks of age does not present hypertention, which makes it interesting to study phenotipic changes that occur during this animals’ life span. Males and females are diferent in many physiological aspects. The body sodium reserve can be stored in several tissues, being the skin reserve, the interest of this study and in the SHR lineage this aspect has not been elucidated yet. Objectives: To evaluate the physiological status of active and inactive reserves; evaluate changes in the animals’s ingestive pattern making a relationship with blood pressure and sodium reserve; to evaluate diferences between males and females in relation to ingestive behavior; to evaluate changes in hormone concentrations before and after the establishment of hypertention in 4 weeks and 12 weeks old animals. Material and methods: Male and female SHR and Wistar animals, 4 weeks and 12 weeks old, were used. The animals were obtained from the Central Biottery of the Department of Physiological Sciences of UFRRJ. They were kept under standard conditions of light, temperature, and food. Experiments were performed in metabolic cages, radioimmunoassay, tail cuff for pressure assessments and skin sodium and water content analizes. Results: Protocol 1. At the age of 4 weeks SHR males take more sodium from 26 days of age and females from 30 days. Protocol 2: SHR lineage animals had lower weight indexes than Wistar animals. There were no lineage differences in the hormones AVP, OT and ANG II at 4 weeks and 12 weeks of age in females, males SHR and Wistar at 4 weeks of age were no different. Protocol 3: Spontaneously hypertensive animals (SHR) are not hypertensive at 4 weeks of age and become hypertensive at 5 weeks of life. Protocol 4. Accumulated active or inactive reserve does not change with lineage in adult males or offspring, but increases with advancing age in males and females. Discussion: Protocol 1: As expected SHR animals take more hypertonic saline than male or female Wistar animals. Protocol 2: Hormonal differences in AVP are due to physiological variations of gonadal hormones and increased plasma concentration of ANG II in SHR was expected as a trait of the strain. Protocol 3: The increase in the mean arterial pressure was observed in the 5th week of life for the male SHR rats and in the 6th week of life for the female SHR. Protocol 4. In males, hypertension does not make the accumulated sodium reserve different from normotensive animals. Conclusions: Protocol 1: Sodium and water intake are influenced by lineage and sexual dimorphism. Protocol 2: Most hormonal variations occurred due to lineage differences. Protocol 3: The essencial hypertension is related to the age of the animals. Protocol 4. Hypertension does not change osmotically active or inactive reserve under physiological conditions, but age and sexual dimorfism play importante roles.

2
  • SUELEN GUEDES ZÉCA
  • Studying inter- and transgenerational transmission of metabolic, behavioral, and heart phenotypes on mice offspring for two consecutive generations

  • Leader : NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • MEMBRES DE LA BANQUE :
  • NATÁLIA GALITO ROCHA AYRES
  • PATRÍCIA CRISTINA LISBOA DA SILVA
  • DAVID DO CARMO MALVAR
  • FABIO FAGUNDES DA ROCHA
  • NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • Data: 18 sept. 2020


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  • Evidence has shown the effects of maternal obesity (MO) at the transmission of metabolic, behavioral, and cardiovascular dysfunction on the offspring, possible due to epigenetic changes on germline cells from one or both progenitors. In Drosophilas, paternal obesity (PO) leads to obesity and metabolic impairment through epigenetic sperm changes, but not much is known on mammals. This project aimed to understand if MO and PO shift metabolism, behavior and cardiac function in basal conditions, for two consecutive generations. Female and male C57BL/6J mice were fed normal chow (NC, 6% fat) or high-fat diets (HF45, 45% fat and HF60, 60% fat) ad libitum from 4 to 10 weeks old, when body composition (NMR), glucose metabolism (GTT) and behavioral (open field, OF) analysis were performed. After the testing, groups NC, HF45, and HF60 labeled F0 generation, were mated with NC animals in order to obtain F1. To increase the programming influence, the intercross of the F1 animals within their groups obtained the F2 generation. Except for F0, all mice were kept under the NC diet throughout the experiment. The experiments NMR and GTT (6, 10, 15, and 25 weeks old), OF (13 weeks old) and echocardiogram (25 weeks old) were performed on both F1 and F2 offspring. We observed that male and female F0-HF45 and F0-HF60 had a higher body weight and adiposity. F0-HF60 females, F0-HF45 and F0- HF60 males had impaired glucose metabolism. No significant changes were noted on the due percentage or number of pups per litter; however, F0-HF60 females had lower pup survival percentages after weaning. Regarding maternal obesity, only F1-MHF45 males showed increased body weight and adiposity. F1-MHF45 e F1-MHF60 male had also impaired glucose metabolism. Paradoxically, F2-MHF45 males had a lower body weight. The cardiac function was normal on F1-MHF45 and F1-MHF60 males, but a substantial decrease in the ejection fraction with increased left-ventricle (LF) end-systolic volume was observed in F2- MHF45 males. The only significant change observed on F1-MHF45 females were an increased center timer during the OF test. Regarding paternal obesity, we saw an increased body weight and adiposity on F1-PHF45 offspring (both sexes) and F1-PHF60 males. Paradoxically, F2-PHF45 had a decreased body weight, and female F2-PHF45 had lower adiposity, with no changes in glucose metabolism on both F1 and F2. Behavioral analysis showed conflicting results on rearing time between F1- and F2-PHF45 males, and increased center time on F1-PHF45 females. The heart function was normal on F1, but a substantially reduced ejection fraction and increased left-ventricle (LF) end-systolic volume were observed in F2-MHF45 offspring. In summary, the male lineage was more affected by maternal obesity, while most of the changes were observed regardless of the sex on the paternal obesity model. We can conclude that while the cardiac impairment through MO occurs only on the male lineage, on the PO, this phenomenon happens in a sex- and obesity-independent manner, showing how relevant it is to search for epigenetic markers that could maintain the phenotype on the offspring.

3
  • SELMA FARIAS DE OLIVEIRA
  • Evaluation of the effect of maternal consumption of a high-fat diet on hemodynamic parameters, hydromineral balance and skin sodium reservoir in the adult offspring of rats
  • Leader : NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • MEMBRES DE LA BANQUE :
  • DAVID DO CARMO MALVAR
  • NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • WELLINGTON DA SILVA CORTES
  • ANISSA DALIRY
  • LUCIANE CLÁUDIA BARCELLOS DOS SANTOS SOUZA
  • Data: 21 sept. 2020


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  • Inadequate maternal nutrition is related to the development of diseases and health problems, such as obesity and overweight, cardiovascular diseases and can cause metabolic programming in your offspring. Our research group previously demonstrated that maternal consumption of a high-fat diet promoted an increase in body mass, adiposity, hyperleptinemia in the offspring of rats at weaning, in addition to impaired systolic function at 30 days of age. This study aimed to investigate the effect of maternal consumption of a high-fat diet on the blood pressure of adult rats and the possible involvement of sodium ion in this process. For this, Wistar rats received a control diet (9% lipids, group C) or high-fat diet (29% lipids, group HFD ) for 8 weeks before mating, and during pregnancy and lactation. The progenitors C and DH gave rise to the control (C) and hyperlipidic (HFD) offspring, respectively. After weaning, part of the offspring was euthanized and the rest at 180 days of age. At weaning were evaluated: body weight, cardiac hypertrophy, weight of kidneys and white adipose tissues, sodium concentration in blood and skin and at 180 days were evaluated: body weight, food and water intake, kidney weight, indirect assessment of cardiac hypertrophy , white adipose tissues, sodium concentration in the blood, urine and skin. In urine in addition to urinary volume, creatinine, Na+, K+, Cl-, normalized were also analyzed. body weight, urine volume and water intake were measured and urine samples were collected. Upon weaning, the offspring showed greater body mass, cardiac hypertrophy, increased dry skin weight and total skin water content was reduced, as well as the relative sodium of the skin. At 180 days of age, there was no variation in body mass, white adipose tissue, water and food intake, kidney weight as well as in the indirect assessment of cardiac hypertrophy. The HFD males showed higher systolic pressure compared to the C males as well as an increase in plasma sodium, with no change in urinary sodium between the groups, in biochemical analyzes only in the HFD males a decrease in the Cl- electrolyte was observed. The total water content of the skin was reduced in HFD males. None of these changes were detected in the females of the groups. When assessing sodium concentrations in urine and epithelial samples, there was no difference. Our results demonstrate that maternal consumption of a high-fat diet promotes an increase in plasma sodium concentration and systolic pressure in adult offspring in a sex-specific way. These events may be related to the development of cardiovascular diseases, such as hypertension.

4
  • GABRIELA MASTRANGELO GONÇALVES
  • Antinociceptive  and anti-inflammatory profile of hybrid compound: 4-chloro-6- (naphthalen-1-yl) -tetrahydro-2H-pyran-2-yl cis - (±) ) methyl 2- (2- (2,6-dichlorophenylamino) phenyl

  • Leader : BRUNO GUIMARAES MARINHO
  • MEMBRES DE LA BANQUE :
  • CARLOS GIOVANI DE OLIVEIRA NASCIMENTO
  • GIOVANE GALDINO DE SOUZA
  • BRUNO GUIMARAES MARINHO
  • DAVID DO CARMO MALVAR
  • WELLINGTON DA SILVA CORTES
  • Data: 2 oct. 2020


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  • Several drugs currently used have been discovered during experimental and animal observation. Molecular hybridization is a classic strategy of conjugating structures of distinct bioactive compounds into a single molecule, being an effective alternative to rationally architect molecular structures of new compounds. This process is performed in the sense of achieving one of the following objectives: synergism of pharmacological action, dual pharmacological action or modulation of adverse effects. The aim of this study is to evaluate the antinociceptive and anti-inflammatory activities of a new hybrid compound: 4-chloro-6- (naphthalen-1-yl) -tetrahydro-2H-pyran-2-yl cis - (±) ) methyl 2- (2- (2,6-dichlorophenylamino) phenyl) (LS19), obtained by hybridizing the compound [(±) - (2,4,6-cis) -4-chloro-6- (naphthalene-1 2-yl] methanol (CAPIM et al., 2012) with the non-steroidal anti-inflammatory diclofenac. Oral administration of the compound was able to induce antinociceptive activity in models of writhing induced by acetic acid, formalin (both stages) and hot water tail immersion test. To elucidate the mechanism of action of the compound, hot water tail immersion test was used. This model was perform by prior administration of other substances, such as L-NAME (non-selective inhibitor of nitric oxide synthase), 1H- [1,2,4 ] oxadiazolo [4,3-a] quinoxalin-1-one (ODQ) (inhibitor of guanylate cyclase sensitive to nitric oxide), and glibenclamide (blocker of the ATP-regulated potassium channels), atropine (muscarinic antagonist), naloxone (selective non-opioid inhibitor), methylnaltrexone, naltrindol and nor-binaltorfimine (selective opioid receptor antagonists of type μ, δ and κ, respectively). The capsaicin-induced nociception model was performed to investigate the role of the mechanism of action of the compound on the TRPV1 receptors, the compound inhibited the nociception induced by capsaicin, which is a TRPV1 receptor agonist, demonstrating involvement of this receptor. The rotarod model was used to evaluate the possibility of interference of the motor performance on the antinociceptive effect, it was demonstrated absence of this interference. As for the anti-inflammatory activity, the result in the paw edema test indicates anti-oedematogenic effect of the compound. There was a decrease in the amount of total leukocytes, indicating that the compound was able to reduce leukocyte migration in the inflammation observed through the air pouch model. In vitro tests will be performed for a more specific analysis of the anti-inflammatory activity of the compound: the quantification of several cytokines IL-1β, TNF-α, IL-6,  IL-4,IL-10 and IFN-γ; determination of nitric oxide concentrations; evaluation of the enzymatic activity of COX-1 and COX-2, showing a selective inhibitory activity of COX-2. The compound was also evaluated for acute and subchronic toxicity, and according to the results, exhibits therapeutic safety.

2019
Thèses
1
  • SAMANTHA COSTA AMORIM MUNIZ
  • Study of the anxiolytic and antidepressant actions of essential oil of Schinus molle L.

  • Leader : FABIO FAGUNDES DA ROCHA
  • MEMBRES DE LA BANQUE :
  • FABIO FAGUNDES DA ROCHA
  • WELLINGTON DA SILVA CORTES
  • ELSON ALVES COSTA
  • Data: 26 févr. 2019


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  • Anxiety disorders and depression are among the most prevalent mental disorders in the population, affecting thousands of people around the world. Folk medicine, a very old practice, makes use of several plants for the purpose of treating diseases that affect man. Over the years there has been a great advance in the studies of medicinal plants to obtain new compounds with therapeutic properties. Schinus molle L., plant belonging to the family Anacardiaceae, is popularly known as aroeira. In addition to presenting a wide range of biological activities, its ethanolic and hexanic extract showed to have antidepressant effect. The objective of this project was to evaluate the anxiolytic and antidepressant actions of the essential oil of the leaves of Schinus molle L. (OEFS) in animal models. In the open field  test (AC), OEFS at a concentration of 100 mg/kg reduced the number of quadrants traveled (OES100 = 19.1 ± 6.2 vs. CT = 71.4 ± 3.3) as well as the number of rearings (OES100 = 1 ± 0.5 vs. CT = 22.5 ± 10.5). In the test of the rotating bar, the OESF did not present significant difference in the time of permanence in the bar and number of falls. In the test of sleep induced by etomidate, OESF100 showed an increase in total sleep recovery time in relation to the control group (OES100 = 162.2 ± 14.9 vs. CT = 97.4 ± 7.3 s). To evaluate the possible anxiolytic effect, the doses of 25 and 50 mg / kg OEFS were used in the elevated plus maze (LCE) and in the MARBLE BURYING test (TEE). In LCE, OEFS did not present significant difference in any of the parameters analyzed (percentage of time in open arms and percentage of open arms entries). In the TEE, OEFS did not reduce the number of Glass marbles burying in relation to the control group. For the evaluation of a possible like-antidepressant effect of OEFS, the forced swimming test (NF) was performed. OEFS did not reduce the immobility time at any of the doses tested (25, and 50mg/kg). Pretreatment with flumazenil was not able to reverse the reduction of locomotor and exploratory activity of the animal in CA caused by OEFS100, showing that the depressant effect is not mediated by the benzodiazepine site of the GABAA receptor. Further studies are needed for further investigation of its sedative effect, as well as better exploration of the pharmacological profile of this plant.

2
  • JOSÉ EDGARD DE OLIVEIRA ALVES
  • Evaluation of hydroeletrolitic balance in normotensive Wistar rats and spontantaneous hypertensive rats

     

  • Leader : ANDRE DE SOUZA MECAWI
  • MEMBRES DE LA BANQUE :
  • ANDRE DE SOUZA MECAWI
  • DANIEL BADAUE PASSOS JUNIOR
  • EMERSON LOPES OLIVARES
  • Data: 23 août 2019


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  • Given the close relationship between body fluid volume, sodium load and blood pressure, the present study aimed to demonstrate that SHR rats show differences in hydromineral balance compared to normotensive rats and are reflected in lower efficiency. in controlling the balance of water and osmols in the body. Male Wistar and SHR rats, aged between 90 and 120 days old, were submitted to four experimental protocols: (1) blood pressure evaluation and SHR model validation; (2) basal assessment and 24-hour water deprivation in metabolic cages; (3) plasma evaluations; and (4) assessment of 24-hour deprivation and water resubmission in metabolic cage. Our results showed significant differences in several studied parameters, among which we can highlight discrepancies in daily basal water intake (Wistar 15.35 ± 0.522 mL/100g vs. SHR 10.90 ± 0.228 mL/100g; p<0.0001); basal urinary excretion (Wistar 6.153 ± 0.227 mL/100g vs. SHR 4.773 ± 0.122 mL/100g; p<0.0001); urinary sodium load (SHR 0.6547 ± 0.019 mEq/100g/24h vs. 0.4866 ± 0.017 mEq/100g/24h Wistar; p<0.0001) and the urinary potassium load (SHR 1.381 ± 0.085 mEq/100g/24h vs. Wistar 1.146 ± 0.038 mEq/100g/24h; p=0.0137). The AVP and ANP levels were influenced by the water deprivation factor (F(1,56) =13,20, p=0,0006; and F(1,37) = 10,54; p=0,0025, respectively). whereas ANG II is influenced by water deprivation (F(1,53) = 8,173; p=0,0061), without influence of strain factor (F(1,53) = 0,3370; p=0,5640), but with interaction between them (F(1,53) = 4,367; p=0,0415) and OT showed significance for the deprivation factor (F(1,54) = 20,75; p<0,0001) and strain factor (F(1.54) = 14.20; p=0.0004), and interaction between them occurred (F(1,54) = 9.826; p=0.0028). In addition, during water resubmission the SHR rats presented lower water intake, whose two-way analysis of variance showed influence of the time factor (F(7, 245) = 98.03; p<0.0001), of the strain factor (F(1, 35) = 31.90; p<0.0001) and interaction (F(7, 245) = 10.19; p<0.0001); and higher urinary volume, with influence of time and strain factors (F(7, 245) = 10.19, p<0.0001; F(1, 70) = 26.69, p<0.0001; respectively), although no interaction occurs. Thus, these results show discrepancies in the hydromineral balance between normotensive rats and SHR and reiterate the importance of integrating osmoregulatory and cardiovascular systems for body fluid homeostasis.

3
  • MAYRA DIAS SILVEIRA
  • Behavioral Evaluation of Water Intake and Neuroendocrine Mechanisms Involved in Hydroelectrolytic Balance Control in Japanese Quails (Coturnix coturnix japonica).

  • Leader : LUIS CARLOS REIS
  • MEMBRES DE LA BANQUE :
  • LUIS CARLOS REIS
  • PEDRO LEONARDO CEDRAZ MERCEZ
  • WELLINGTON DA SILVA CORTES
  • Data: 30 août 2019


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  • The decrease of the body fluids can be caused by water deprivation and, therefore, control and regulation mechanisms are activated in order to ensure the maintenance of hydroelectrolytic balance, among them the secretion of neurohypophyseal hormones. Water deprivation in birds is an important stress stimulus that causes an increase in the activity of NPV and NSO neurons, called magnocellular cells, and consequently an increase in water intake behavior in birds. Thus, water deprivation becomes a convenient experimental model for studies of vasotocinergic and mesotocinergic activity, as well as studies of the interaction of these peptides with their respective receptors and their central and systemic action. Thus, the present study investigated the possible correlations between vasotocinergic and mesotocinergic activity in birds with behavioral changes between thirst mechanism and water intake, through an experimental model developed with Japanese quails (Coturnix coturnix japonica), submitting the experimental groups an water deprivation. Male quails of approximately 50 days were used, maintained at a controlled temperature of 26 ± 2ºC, under a photoperiod of 12/12 hours, subdivided into 3 distinct groups (n = 6): Control Group (CTRL), Water Deprivation for 36 hours (PvH) and Water Deprivation for 36 hours with 2 hours of water presentation (IH-2h). We found that water deprivation was able to increase the water intake of the IH-2h group for all observed time intervals when compared to the CTRL group and the IH-2 group before deprivation (IH-2h after deprivation vs CTRL, p IH-2h after deprivation vs IH-2h before deprivation, p <0.0001). The PvH group showed a statistically significant difference when compared to the CTRL group in basal water intake at 120 minutes (PvH 3.56 ± 3.32 vs CTRL 0.79 ± 0.70; p = 0.002). There was a significant reduction in body weight in the PvH and IH-2h groups when considering the variation in weight gain before and after deprivation (PvH after deprivation vs CTRL, p <0.0001 and IH-2h after deprivation vs CTRL, p <0.0001). Thus, the present study was able to demonstrate positive results regarding water ingestive behavior and its possible influences on species body weight gain after water deprivation. Although the results of the plasma parameters evaluated in this study do not allow us to confirm that the vasotocinergic and mesotocinergic neuroendocrine control mechanisms are involved in water deprivation, but we suggest that the action of the hormones AVT and MT is extremely important in the body fluids control. Further studies are needed to elucidate the role of these and other hormones involved in the osmoregulation of Japanese quails.

Thèses
1
  • RAONI DA CONCEICAO DOS SANTOS
  • THE INFLUENCE OF GHRELIN ON BEHAVIOR AND THE ACTIVITY OF PARAVENTRICULAR HYPOTHALAMIC NUCLEUS AND BASOLATERAL AMYGDALA NEURONS.

  • Leader : LUIS CARLOS REIS
  • MEMBRES DE LA BANQUE :
  • DANILO LUSTRINO BORGES
  • DAVID DO CARMO MALVAR
  • ISIS HARA TREVENZOLI
  • LUIS CARLOS REIS
  • WELLINGTON DA SILVA CORTES
  • Data: 15 févr. 2019


  • Afficher le Résumé
  • Dos-Santos, Raoni da Conceição.THE INFLUENCE OF GHRELIN ON BEHAVIOR AND THE ACTIVITY OF PARAVENTRICULAR HYPOTHALAMIC NUCLEUS AND BASOLATERAL AMYGDALA NEURONS. 2018.70pThesis (Doctorate in Physiological Sciences). Institute of Biological and Health Sciences, Department of Physiological Sciences, Federal Rural University of Rio de Janeiro, Seropédica, Rj, 2019.

    Ghrelin is an orexigenic hormone produced by the stomach. Additional to its effects on food intake, ghrelin also affects a series of physiological variables, such as the neuroendocrine control, autonomic and cardiovascular function, the response to stress, and anxiety-like and depression-like behaviors. The paraventricular hypothalamic nucleus (PVN) and the basolateral amygdala (BLA) are brain nuclei involved in the integration of several of ghrelin’s effects. To elucidate the effects of ghrelin on the activity of PVN neurons we used extracellular and intracellular electrophysiological recordings in ex vivo brain slices and observed that ghrelin may increase or decrease the spike frequency of PVN neurons; however, the excitatory effects are direct while the inhibitory effects are indirect. We also observed that ghrelin affects the majority of neurons in this nucleus, whether they are pre-autonomic, neuroendocrine parvocellular or neuroendocrine magnocellular; and that the most TRH, CRH and OT PVN neurons are hyperpolarized in response to ghrelin. Similarly, we performed intracelular recordings in BLA neurons and showed that ghrelin increases or decreases the membrane potential in neurons in this nucleus. Next, we analyzed the behavioral alterations caused by food deprivation, a physiological stimulus that increases plasma ghrelin, and the exogenous administration of ghrelin on anxiety-like behaviors and exploratory activity. In these experiments we showed that food deprivation decreases anxiety-like behavior in the elevated plus maze and does not change exploratory activity on the open field and modified open field. However, ghrelin did not affect anxiety-like behavior in the elevated plus maze. Taken together the results described in this thesis showed that ghrelin affects brain nuclei involved in the control of several physiological functions, thus providing a neurobiological substrate for ghrelin’s effects for some functions of this hormone. However, we did not observe behavioral alterations caused by ghrelin, which suggests that future studies are necessary to elucidate the participation of ghrelin on the behavioral responses that mediate the response to situations of caloric deficits, such as food deprivation.

2
  • BRUNO PAES LEME FERREIRA
  • Role of AT1 receptors at the subfornical organ, in the integration of hydroelectrolytic and energetic balance

  • Leader : ANDRE DE SOUZA MECAWI
  • MEMBRES DE LA BANQUE :
  • ANDRE DE SOUZA MECAWI
  • EMERSON LOPES OLIVARES
  • NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • RODRIGO CESAR RORATO
  • EDUARDO REBELATO L. DE OLIVEIRA
  • Data: 30 juil. 2019


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  • Although classically involved in cardiovascular control and hydromineral balance, the renin-angiotensin system (SRA) has been implicated in energy balance control. Angiotensin II (ANG II) stimulating its type 1 receptor (AT1) may change body weight and food ingestion in some experimental models of obesity. One of the main sites of action of circulating ANG II is the subfornical organ (SFO), a circumventricular organ related to the control of several autonomic functions, motivated behaviors, and energetic metabolism. Thus, our hypothesis is that ANG II may act on AT1 receptors to promote an integrate control of metabolic and hydroelectrolytic balance during challenges of energetic homeostasis. This thesis aims three main goals: a) investigate if a same SFO neuron is sensitive to ANG II and glucose, and if glucose concentration may influence this cell’s response to ANG II; b) evaluate if food deprivation, as a hypoglycemic stimulus, may alter systemic SRA activity and AT1 expression at SFO; c) and evaluate if ANG II through AT1 may influence food and/or water ingestion after food deprivation. Male Wistar and Sprague-Dawley male rats were used and all procedures have been approved by ethics committees in experimental animal use, respectively: Queen’s University 2017-1735 and FMRP-USP 229/18. SFO neurons that responded to ANG II may be found in different phenotype populations of glucosensing, either non-glucosensitive (43%), glucoexcited (52%) or glucoinhibited (71%). Cultures of SFO cells grown at different glucose concentrations for 1, 6 or 24h did not change expression of AT1 receptors. Nevertheless, electrophysiological studies, shows that approximately 31% (n=4/13) of tested SFO neurons didn’t responded to ANG II at 5mM glucose medium but depolarized to ANG II at 10mM. It suggests that metabolic state of the organism may change the way the central nervous system respond to ANG II. Food deprivation lead to and increased plasmatic concentration of ANG II and of mRNA for AT1a receptors at SFO. Treatment with losartan (an AT1 blocker) at low doses in drinking water, for 48h fasting attenuated the glycemic drop. After access to food was reestablished, there’s only a tendency of decrease of food ingestion at 60 min in the group treated with losartan. By that same one-hour period, this same group exhibited a significative reduction in water intake. Yet, after 12 hours of intracerebroventricular (i.c.v.) microinjections of losartan lead to food and water ingestion decrease in basal condition, while after a 48h fasting, only water ingestion was significantly decreased 12h after losartan i.c.v. Though we might conclude that SRA is activated in fasting conditions, followed to an increase in AT1 expression at SFO, which is related to water ingestion during feeding, as an important mechanism of maintenance of volume and osmolality of extracellular fluid during food ingestion.

2018
Thèses
1
  • NATÁLIA D' ASSUMPÇÃO LIMA RANGEL
  • Maternal high fat diet consumption: change in the angiotensina II receptor expression (AT1) and left ventricular hypertrophy in the offspring at weaning.

  • Leader : NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • MEMBRES DE LA BANQUE :
  • ANDERSON LUIZ BEZERRA DA SILVEIRA
  • LUCIANE CLÁUDIA BARCELLOS DOS SANTOS SOUZA
  • NORMA APARECIDA ALMEIDA FIGUEIREDO DE OLIVEIRA
  • Data: 8 mars 2018


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  • Obesity has become a public health problem in the world. Overweight pregnant women can cause metabolic programming in the lineage, with the emergence of type 2 diabetes, dyslipidemias and cardiovascular diseases in the adult progeny. Our research group has previously shown that maternal consumption of a high fat diet promoted increased body mass, adiposity, hyperleptinemia in the offspring of rats at weaning, as well as impairment of systolic function at 30 days of age. The renin angiotensin system (RAS) expressed in the heart appears to trigger cardiac hypertrophy (CH), through the overexpression of Angiotensin II (Ang II) and activation of it’s receptor, AT1. This study aimed to investigate whether the maternal consumption of a high fat diet promotes CH, alter the gene expression of components involved in the contraction of the heart and correlate such changes to the cardiac RAS system in male and female offspring. For this, Wistar rats received control diet (9% lipids, group C) or high fat (29% lipids, HF group) for 8 weeks before mating, and during gestation and lactation. At weaning, 21 days of life, the offspring were weighed and euthanized. The heart and adipose white tissue (retroperitoneal, inguinal and perigonadal) were weighed. Histological analyzes (sections stained with HE and picrosirius) were realized using samples from the ventricles and biochemical and molecular analyzes (RIA and qPCR) were performed using left ventricular (LV) samples and AT1 receptor expression was assessed by Western blotting (Protocol: 017/2014-CEUA/IB/UFRRJ). Females and males of the HF progeny presented higher body mass, adiposity, LV hypertrophy, but did not present fibrosis; higher mRNA expression of Nppn; and less expression of β-MHC, SERCA2a and Ryr2. mRNA expression of α-MHC was reduced only in males of the DH offspring. There was no difference in Ang II dosage among the offspring. Protein expression of AT1 was higher in females of the HF progeny, but was not altered in males. These results suggest that the maternal consumption of high fat diet promotes LV hypertrophy in females and males of the HF offspring, however we verified alteration in the AT1 protein expression only in females of HF progeny, which suggests that the RAS system may be involved with HC observed in the females and not in the male animals of the HF offspring.

2
  • VIVIANE FELINTRO DE SOUZA
  • Effect of intracellular thirst on behavioral responses in rats
    submitted to water deprivation and salt loading: Possible role of AVPR1a and
    OTR receptors.

  • Leader : ANDRE DE SOUZA MECAWI
  • MEMBRES DE LA BANQUE :
  • ANDRE DE SOUZA MECAWI
  • FABIO FAGUNDES DA ROCHA
  • DANILO LUSTRINO BORGES
  • Data: 9 mars 2018


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  • Thirst is an essential sensation for the development behavioral changes that driving the
    motivation for drink water, a vital response for the maintenance of hydrosaline
    homeostasis. Animals that are submitted to water or food deprivation in general are
    more willing to take risks for their survival, in this sense, water deprivation and salt
    loading were stimuli used to trigger intracellular thirst. Under these conditions
    vasopressin (AVP) and oxytocin (OT) are secreted by magnocellular neurons through
    the neurohypophysis and release for the systemic circulation. Namely, recent studies
    have demonstrated that vasopressinergic magnocellular neurons project to
    extrahypothalamic regions, which include the habenula and amygdala. Thus, the present
    study aimed to analyze the effect of increased plasma osmolality on exploratory and
    anxiety-like behaviors in rats subjected to water deprivation and salt loading, as well as
    evaluating the gene expression of type 1a AVP (AVPR1a) and OT (OTR) receptors in
    the basolateral amygdala, central amygdala and habenula, as well as the enzyme
    synthesizing GABA (GAD67) and the glutamate vesicular transporter (VGLUT2) in
    both nuclei. Male Wistar rats were randomly divided into five experimental groups:
    Control (CT), 24 hour water deprivation (PH24h) and 48 hours (PH48h) and salt
    loading with 1.8% NaCl for 24 hours (SS24h) and 48 hours (SS48h). All groups were
    submitted to plasma analysis, behavioral tests and analysis of gene expression through
    RT-qPCR. All data are described as mean ± standard error of the meanand the
    differences were considered significant when p < 0.05. Plasma osmolality increased
    significantly in the PH48h (p = 0.0039) and SS48h (p = 0.0176) groups. In the elevated
    plus maze, there was increase in the percentage of open arm entries in groups PH48 (p =
    0.0079) and SS48h (p = 0.0015), as well as the time spent in open arms in PH48h (p =
    0.0029) and SS48h (p <0.0001), indicating an anxiolytic response. In addition, linear
    regression was significant between plasma osmolality vs time spent in the open arms (p
    = 0.0004, r = 0,259). In the open field no difference was observed, indicating that the
    animals did not increase the spontaneous locomotor activity. In the light and dark box,
    only the PH48h group (p = 0.0424) showed an increase in time spent in the light area. In
    relation to gene expression, we observed a significant increase in the expression of
    AVPR1a (p = 0.0345) and OTR (p = 0.0103) in the PH48h group in the central
    amygdala. Our results indicate that plasma hyperosmolarity induced by 48 hours of
    water deprivation or salt loading is capable of eliciting anxiolytic behaviors in rats and
    it’s possible that AVPR1a and OTR receptors mediate this response in the central
    amygdala.

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