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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
91

Toxicidade da polimixina B em células LLC-PK1 e a enzima heme oxigenase-1 / Polymyxin B toxicity in LLC-PK1 cells and the heme oxygenase-1 enzyme

Neiva, Luciana Barros de Moura 18 December 2008 (has links)
Na lesão renal aguda, os mecanismos de defesa atuam como genes protetores, como a proteína heat shock 32 (HSP 32), também conhecida como heme oxigenase-1 (HO-1). A polimixina B (PmxB) é um antimicrobiano nefrotóxico. O objetivo deste estudo foi caracterizar a participação da enzima HO-1 na toxicidade da PmxB em células LLC-PK1. As células foram submetidas aos seguintes tratamentos: Controle (CTL- 0µM); Hemin (indutor de HO-1, 25µM); Hemin II (250M), Protoporfirina de zinco (ZnPP - inibidor de HO-1, 10M,); Nitro-L-arginina-metilester (L-NAME - inibidor de iNOS, 0,1mM); PmxB (375µM); PmxB + Hemin (25µM de Hemin uma hora antes da PmxB); PmxB + ZnPP (10M de ZnPP uma hora antes da PmxB); PmxB + Hemin + L-NAME (25M de Hemin e 0,1mM de L-NAME uma hora antes da PmxB). Os grupos foram avaliados em 24 e 72 horas. Foram analisados os seguintes parâmetros: desidrogenase láctica (DHL), peroxidação lipídica (MDA), expressão gênica da HO-1 por RT-PCR, síntese protéica da HO-1 por imunofluorescência, óxido nítrico (NO) pelo método de Griess e expressão protéica da HO-1 e da iNOS por western blotting. Os resultados mostraram que a PmxB elevou o DHL com aumento dos níveis de MDA. O Hemin e a ZnPP elevaram as variáveis DHL, MDA e óxido nítrico (NO). O indutor de HO-1 incrementou a expressão protéica da HO-1 e da iNOS. A PmxB se confirmou como citotóxica e a HO-1 intensificou a lesão por mecanismos oxidativos. O efeito da HO-1 na lesão celular parece ser mediado pelo NO / In the acute kidney injury, the mechanisms of defense act as protector genes, as the protein heat shock 32 (HSP 32), also known as heme oxygenase-1 (HO-1). The polymyxin B (PmxB) is a nephrotoxic antimicrobial. The aim of this study was to distinguish the role of the HO-1 enzyme in the PmxB toxicity in LLC-PK1 cells. The cells were submitted to the following treatments: Control (CTL- 0µM); Hemin (inhibitor of HO-1, 25µM); Hemin II (250M), Zinc protoporphyrin (ZnPP - inhibitor of HO-1, 10M,); NG-nitro-L-arginine methyl ester (L-NAME - inhibitor of iNOS, 0,1mM); PmxB (375µM); PmxB + Hemin (25µM of Hemin one hour before the PmxB); PmxB + ZnPP (10M of ZnPP one hour before the PmxB); PmxB + Hemin + L-NAME (25M of Hemin and 0,1mM of L-NAME one hour before the PmxB). All groups were evaluated in 24 and 72 hours. The following parameters were analysed: lactate dehydrogenase (LDH), lipid peroxidation (MDA), genic expression of HO-1 by RT-PCR, protein syntesis of HO-1 by immunofluorescence, nitric oxide (NO) by Griess method and protein expression of HO-1 and of iNOS by western blotting. The results showed that PmxB increased the LDH and the levels of MDA. Hemin and ZnPP also increased the LDH variables, MDA and nitric oxide (NO). The inducer of HO-1 improved the protein expression of HO-1 and of iNOS. The PmxB was confirmed as a cytotoxic and the HO-1 intensified the failure by oxidative mechanisms. The effect of HO-1 in the cell injury seemed to be mediated by NO
92

Estudos dos mecanismos da associação entre níveis pressóricos e a via heme-heme oxigenase / Study of the mechanism between pressoric levels and heme-heme oxygenase pathway

Santos, Elisabete Alcantara dos 13 March 2001 (has links)
A heme oxigenase (HEOX) é uma enzima que converte o anel heme em quantidades equimolares de biliverdina, monóxido de carbono (CO) e Fe3+. Esta enzima tem um importante papel fisiológico, regulando os níveis de hemeproteínas e protegendo as células da agressão oxidativa do heme livre. A biliverdina é, subseqüentemente, transformada em bilirrubina que apresenta propriedades antioxidativas e o Fe3+ é seqüestrado pela ferritina. O CO ativa a guanilil ciclase, com resultante produção de 3?,5?-monofosfato de guanosina cíclico provocando relaxamento da musculatura lisa vascular. Em trabalho anterior, nós verificamos o efeito da inibição aguda da heme oxigenase com zinco protoporfirina (ZnPP IX) sobre a pressão arterial de ratos Wistar machos recebendo dietas hipossódica (0,15% de NaCl), normossódica (1,3% de NaCl) ou hipersódica (8% de NaCl) desde o desmame. Nos animais sob dieta hipersódica houve diminuição nos níveis pressóricos, enquanto que nos animais que recebiam dieta hipo e normossódica, ocorreu um aumento dos níveis pressóricos. A análise destes resultados mostrou a existência de uma correlação negativa entre a pressão arterial basal medida antes da injeção de ZnPP IX e o efeito deste tratamento sobre os níveis pressóricos. Esta correlação independeu do conteúdo de sal na dieta consumida pelos animais. Concluímos assim, que a resposta à inibição da HEOX é modulada pela pressão arterial basal. Recentemente, foi mostrado que a heme oxigenase é induzida por incrementos da pressão obtidos de maneiras diversas e que ao retornar os níveis pressóricos a valores basais esta indução da enzima é revertida. A estimulação da HEOX promove consumo de anel heme. O heme integra a estrutura molecular de enzimas importantes na regulação da pressão arterial, como por exemplo, guanilato ciclase, óxido nítrico sintase, hidroxilase e epóxigenase (enzimas pertencentes à família do citocromo P-450). Permitimo-nos conjecturar que a falta de heme repercute sobre a atuação destas enzimas, uma vez que o turnover destas enzimas é dependente de heme. O objetivo deste estudo foi confirmar em outros modelos de hipertensão arterial os achados anteriores e verificar se a enzima epoxigenase que metaboliza o ácido araquidônico formando compostos vasodilatadores, tais como EET e DiHTE, está envolvida na queda da pressão arterial dos animais sob dieta hipersódica. Neste estudo foi induzida hipertensão arterial crônica com angiotensina II (AII - 0,7 mg.kg-1.d-1, via minibomba osmótica durante 7 dias) ou com L?-nitro L-arginina metil ester (L-NAME ? 50 mg/L fornecido na água de beber ao longo de duas semanas) e hipertensão arterial aguda com fenilefrina (FE - 1 mg.kg-1.h-1 iv ). Hidralazina (15 mg.kg-1.dia-1 fornecido na água de beber durante 9 dias) e nitroprussiato de sódio (SNP - 7,7?g.kg-1.min-1 iv) foram utilizados para induzir diminuição crônica e aguda, respectivamente, da pressão arterial. A participação da via do citocromo P-450 no mecanismo de queda pressórica em resposta ao ZnPP IX nos animais sob dieta hipersódica (descrita no trabalho anterior), foi avaliada através da inibição desta via com clotrimazole (80 mg/kg/24 horas) em animais na vigência de sobrecarga de sal ou consumindo dieta normossódica. Grupos de ratos submetidos ao tratamento com AII, L-NAME, FE, SNP, hidralazina e clotrimazole foram submetidos ao teste de inibição da HEOX. A pressão arterial direta (artéria carótida) foi avaliada antes e após a administração de zinco protoporfirina IX (ZnPP IX ? 90 ?mol/kg ip) ou veículo (carbonato de sódio ? 0,15mmol/kg ip). Nós verificamos nos modelos de hipertensão arterial crônicos ou no modelo agudo um resultado similar ao encontrado no estudo anterior, ou seja, em resposta à inibição da heme oxigenase houve uma queda importante da pressão arterial. Nos animais submetidos a hipotensão arterial não houve modificação da pressão arterial em resposta à administração de ZnPP IX. Nos grupos de animais submetidos ao tratamento com clotrimazole não houve modificação da pressão arterial após administração de ZnPP IX. Em conclusão, pressão basal elevada modifica o efeito da inibição da heme oxigenase sobre os níveis pressóricos em comparação com pressão arterial basal normal ou reduzida. A via do citocromo P-450 parece estar envolvida na queda pressórica após inibição da heme oxigenase nos animais submetidos a tratamento crônico com dieta hipersódica, uma vez que nos animais tratados com clotrimazole não houve modificação pressórica após a inibição da heme oxigenase. / Heme oxygenase (HEOX) is the rate-limiting enzyme that opens the heme ring, resulting in equimolar quantities of biliverdin, carbon monoxide (CO) and Fe3+. HEOX plays an important physiological role in the degradation of heme, regulating hemoprotein levels and therefore protecting cells from the deleterious effects of free heme. Biliverdin is subsequently reduced by biliverdin reductase to bilirubin that has antioxidant properties. Iron is sequestered by ferritin. CO activates soluble guanylate cyclase with resultant production of 3?,5?-cyclic guanosine monophosphate (cGMP) which produces relaxation of the vascular smooth muscle cells. Previously we demonstrated the effect of acute HEOX inhibition by zinc protoporphyrin IX (ZnPP IX) on blood pressure in male Wistar rats that were fed with low (LSD ? 0.15% NaCl), normal (NSD ? 1.3%) or high salt diet (HSD - 8% NaCl) from weaning (21 days-old animals). The blood pressure decreased in rats on HSD, and increased in the animals on NSD and LSD after ZnPP IX administration. A negative correlation was obtained between blood pressure measured before ZnPP IX and the area under the curve of the percentage of blood pressure changes induced by ZnPP IX. This correlation seems to be independent of the salt content in the diet. Our conclusion is that the response to heme oxygenase inhibition is modulated by basal arterial blood pressure. Recently it was showed that heme oxygenase is induced by high blood pressure and the levels of the enzyme returns to normal with blood pressure control. It is known that heme oxygenase stimulation provokes breakdown of heme ring. The heme integrates the molecular structure of several important enzymes that are involved in the regulation of blood pressure, such as, soluble guanylate cyclase, nitric oxide synthase, hydroxylase and epoxygenase (cytochrome P-450 family). We postulate that the deficiency in heme rings due to heme oxigenase induction might lead to disturbances in the activities of some of these enzymes and hence hypertension. The objective of this study was 1) to confirm the results observed previously in others models f hypertension and 2) to the role of epoxygenase in the regulation of blood pressure in response to HEOX inhibition in hypertensive animals. The chronic hypertension was induced by angiotensin II (AII - 0.7 mg.kg-1.d-1, by osmotic mini pumps during 7 days) or with L?-nitro L-arginine metyl ester (L-NAME ? 50 mg/L in the tap water was given during two weeks ) and acute hypertension with phenylephrine (FE - 1 mg.kg-1.h-1 iv ). Hidralazine (15 mg.kg-1.d-1 in the tap water was given during 9 days) and sodium nitropruside (SNP - 7.7?g.kg-1.min-1 iv) were used, respectively, to induce chronic and acute decreases of the blood pressure. The participation of the cytochrome P-450 pathway in the mechanism of blood pressure reduction in response to ZnPP IX was evaluated through the inhibition of this pathway by clorimazole (80 mg/kg/24 hours) in animals on high salt diet or nornal salt diet. Groups of rats treated with AII, L-NAME, FE, SNP, hidralazine and clotrimazole were submitted to HEOX inhibition. Direct blood pressure (carotid artery) measurements were undertaken before and after zinc protoprphyrin IX administration (ZnPP IX ? 90 ?mol/kg ip) or vehicle (sodium carbonate ? 0,15mmol/kg ip). In the chronic or acute hypertension models heme oxygenase inhibition induced a decrease of blood pressure. In the hypotension group there was no modification on blood pressure of these animals in response to ZnPP IX. Animals on high salt diet submitted to the clotrimazole treatment did not modify the blood pressure after ZnPP IX administration. Thus; the cytochrome P-450 pathway seems to be involved in the blood pressure decreases after HEOX inhibition in the animals under long term of high salt diet since there was no change in blood pressure in the clotrimazole-treated groups after heme oxygenase inhibition.
93

Effets des immunoglobulines intraveineuses sur les cellules de l'immunité innée / Effects of intravenous immunoglobulin on innate immune cells

Galeotti, Caroline 12 March 2018 (has links)
Les IgIV, une préparation thérapeutique d'IgG normales, sont utilisées dans le traitement de diverses maladies auto-immunes et inflammatoires. Les mécanismes par lesquels les IgIV exercent une activité anti-inflammatoire ne sont pas complètement compris. Elles interagissent avec de nombreux composants du système immunitaire et modulent leurs fonctions. Des études récentes ont rapporté que l'hème oxygénase-1 (HO-1) joue un rôle important dans la régulation de la réponse inflammatoire dans un certain nombre de pathologies. Plusieurs agents thérapeutiques exercent des effets anti-inflammatoires grâce à l'induction de l'HO-1. Etant donné le rôle commun anti-inflammatoire de l'HO-1 et des IgIV, j'ai étudié l'implication de l'HO-1 dans les mécanismes d'action des IgIV. J'ai montré que les effets des IgIV ne sont pas associés à l'induction de l'HO-1, que ce soit dans des cellules de l'immunité innée comme les monocytes, cellules dendritiques ou macrophages, ou dans les reins et foie de souris avec une encéphalomyélite auto-immune expérimentale traitées par les IgIV. Des données récentes dans des modèles expérimentaux suggèrent que les IgIV induisent la sécrétion d’IL-4 des basophiles en augmentant l’IL-33 des cellules innées SIGN-R1+. J’ai rapporté que les IgIV induisent directement l’activation de basophiles pré-stimulés avec l’IL-3 alors que contrairement au modèle murin, l’IL-33 n’est pas indispensable. L’activation des basophiles par les IgIV est associée à l’expression augmentée de CD69 et la sécrétion d’IL-4, d’IL-6 et d’IL-8. Ces fonctions sont médiées par les fragments F(ab’)2 qui se lient à des IgE membranaires et activent la voie Syk. / Intravenous immunoglobulin (IVIG), a therapeutic normal immunoglobulin G preparation, is used in the therapy of various autoimmune and inflammatory conditions. The mechanisms by which IVIG exerts anti-inflammatory effects are not completely understood. It interacts with numerous components of the immune system including dendritic cells, macrophages, T and B cells and modulates their functions. Recent studies have reported that heme oxygenase-1 (HO-1) pathway plays an important role in the regulation of inflammatory response in several pathologies. Several therapeutic agents exert anti-inflammatory effects via induction of HO-1. Therefore, in view of common anti-inflammatory role exerted by both HO-1 and IVIG, I investigated if mechanisms of IVIG implicate HO-1. I show that anti-inflammatory effects of IVIG were not associated with an induction of HO-1 either in innate cells such as monocytes, dendritic cells and macrophages or in the kidneys or liver of experimental autoimmune encephalomyelitis. Recent data in experimental models suggest that IVIG induces IL-4 in basophils by enhancing IL-33 in SIGN-R1+ innate cells. I reported that IVIG directly induces activation of IL-3-primed basophils while unlike mice IL-33 was dispensable. The activation of basophils by IVIG was associated with enhanced expression of CD69 and secretion of IL-4, IL-6 and IL-8. These functions of IVIG are mediated via F(ab’)2 fragments that bind to basophil surface IgE and activate Syk pathway.
94

Role of MAP Kinases in the Induction of Heme Oxygenase-1 by Arsenite: Studies in Chicken Hepatoma Cells: A Dissertation

Elbirt, Kimberly Kirstin 04 May 1998 (has links)
The chicken hepatoma cell line, LMH, was evaluated with respect to its usefulness for studies of the regulation of heme metabolism. Levels of δ-aminolevulinate synthase mRNA arid accumulation of porphyrins were used to evaluate the heme biosynthetic pathway. Regulation of heme oxygenase-1 by known inducers was used as a measure of heme degradation. The induction of heme oxygenase-1 by sodium arsenite was characterized. AP-1 transcription factor elements and MAP kinase signal transduction pathways that modulate expression of endogenous heme oxygenase-1 and transfected heme oxygenase-1 reporter gene constructs in response to arsenite were delineated. In initial studies, the drug glutethimide was used alone or in combination with ferric nitrilotriacetate to induce δ-aminolevulinate synthase mRNA. Levels of porphyrins, intermediates in the heme biosynthetic pathway, and levels of δ-aminolevulinate synthase mRNA were increased by these treatments in a manner similar to those previously observed in the widely used model system, primary chick embryo liver cells. The iron chelator, deferoxamine, gave a characteristic shift in the glutethimide induced porphyrin accumulation in primary hepatocytes, but was found to have no, effect on LMH cells. Heme mediated repression of δ-aminolevulinate synthase mRNA levels was similar among primary hepatocytes and LMH cells. Heme oxygenase-1 was regulated by heme, metals, heat shock, and oxidative stress-inducing chemicals in LMH cells. Heat shock induction of heme oxygenase-1 mRNA levels was observed for the first time in primary chick embryo liver cells. These data supported the further use of LMH cells to elucidate mechanisms responsible for modulating heme oxygenase-1 gene expression in response to inducers. The remainder of the studies focused on the role of heme oxygenase-1 as a stress response protein. The oxidative stress inducer, sodium arsenite was used to probe the cellular mechanisms that control the expression of heme oxygenase-1. A series of promoter-reporter constructs were used to search the heme oxygenase-1 promoter for arsenite responsive elements. Several activator protein-1 (AP-1) transcription factor binding elements were identified by computer sequence analysis. Three of these sites, located at -1578, -3656, and -4597 base pairs upstream of the transcription start site, were mutated. The arsenite responsiveness of the reporter constructs containing mutated AP-1 elements was less than that of the same constructs containing wild type AP-1 elements. At least part of the arsenite-mediated induction of heme oxygenase-1 required the activity of AP-1 transcriptional elements. The MAP kinase signal transduction pathways and heme oxygenase-1 are activated by similar stimuli, including cellular stress. MAP kinases have been shown to exert control over gene expression through effects on the AP-1 family of transcription factors. The MAP kinases ERK, JNK, and p38 were activated by arsenite in LMH cells. Constitutively activated components of the ERK and p38 pathways increased expression of heme oxygenase-1 promoter-luciferase reporter constructs. Arsenite-mediated induction of heme oxygenase-1 was blocked by dominant negative ERK or p38 pathway components, and by specific inhibitors of MEK (upstream ERK kinase) or p38. In contrast, reporter gene expression was unchanged in the presence of constitutively activated JNK pathway components. Dominant negative JNK pathway components had no effect on arsenite induced heme oxygenase-1 gene activity. In summary, LMH cells were characterized as a new model system for the study of heme metabolism. This cell line was then used to delineate promoter elements and signaling pathways involved in the arsenite responsiveness of heme oxygenase-1 gene expression. Three AP-1 transcription factor binding sites in the heme oxygenase-1 promoter region were required for responsiveness to arsenite. The MAP kinases ERK and p38 were shown to play an integral role in arsenite-mediated induction of heme oxygenase-1. These studies elucidate one facet of heme oxygenase-1 regulation, and provide tools that will be useful in delineating additional regulatory mechanisms.
95

Caracterização estrutural preliminar e efeitos na inflamação da lectina da alga marinha verde Caulerpa cupressoides / Structural characterization and preliminary effects on inflammation of the lectin of the green seaweed Caulerpa cupressoides

Queiroz, Ismael Nilo Lino de January 2013 (has links)
QUEIROZ, Ismael Nilo Lino de. Caracterização estrutural preliminar e efeitos na inflamação da lectina da alga marinha verde Caulerpa cupressoides. 115 f. : Dissertação (Mestrado em Bioquímica) - Departamento de Bioquímica e Biologia Molecular, Universidade Federal do Ceará Fortaleza-CE, 2013. / Submitted by Eric Santiago (erichhcl@gmail.com) on 2016-05-23T13:42:40Z No. of bitstreams: 1 2013_dis_inlqueiroz.pdf: 2778929 bytes, checksum: 1ecf927693bc8e91aabb5a746c3dfbce (MD5) / Approved for entry into archive by José Jairo Viana de Sousa (jairo@ufc.br) on 2016-07-05T19:19:39Z (GMT) No. of bitstreams: 1 2013_dis_inlqueiroz.pdf: 2778929 bytes, checksum: 1ecf927693bc8e91aabb5a746c3dfbce (MD5) / Made available in DSpace on 2016-07-05T19:19:39Z (GMT). No. of bitstreams: 1 2013_dis_inlqueiroz.pdf: 2778929 bytes, checksum: 1ecf927693bc8e91aabb5a746c3dfbce (MD5) Previous issue date: 2013 / Lectins seaweed have various pharmacological applications. This work was partially characterize the structure and evaluate the effects on classical models of inflammation lectin of the green seaweed Caulerpa cupressoides. The Caulerpa cupressoides lectin (CcL) was extracted with Tris-HCl 25 mM, pH 7.5 and isolated by ion exchange chromatography on DEAE-cellulose. Structural characterization showed a partial aminoterminal sequence with 31 amino acid residues, obtained according to the method of Edman degradation, while in nuclear magnetic resonance spectroscopy to the CcL 1H-NMR purified by Sephadex G-100 and DEAE-cellulose obtained by was demonstrated similarity between signals obtained in both spectra. The anti-inflammatory activity was evaluated in male Wistar rats (n = 6), using the model of paw edema induced by carrageenan (700 μg/paw), dextran (500 μg/paw), histamine (100 μg/paw), serotonin (20 μg/paw) or bradykinin (30 μg/paw). Groups of animals were treated with CcL (0.1, 1.0 or 10.0 mg/kg, i.v.) 30 min before the inflammatory stimulus. Was evaluated the involvement of CcL (1.0 mg/kg) towards heme oxygenase-1. Groups were used that were treated with inhibitor CcL linked mucin (8.0 mg/kg, i.v.) or only mucin (8.0 mg/kg, i.v.) and dexamethasone (1.0 mg/kg, s.c.) were used as controls. The effect edematogenic CcL was evaluated by applying the doses of 0.1, 1.0 or 10 mg/kg (i.pl.). In the trial of paw edema induced by carrageenan, CcL reduced edema formation was confirmed by determining tissue levels of myeloperoxidase. CcL (1.0 mg/kg) showed no mucin linked to anti-inflammatory effect on the paw edema induced by carrageenan, except in the first hour after stimulation. In dextran-induced edema, CcL also inhibited the osmotic swelling. Only the dose of 1.0 mg/kg was used in reducing histamine-induced edema by 40% the edema within 30 min CcL (1.0 mg/kg), however, did not reduce the edema induced by serotonin or bradykinin. Besides, in the histological analysis of tissue subplantar, CcL (1.0 and 10.0 mg/kg) was able to reduce cell migration. In the presence of ZnPP IX (3.0 mg/kg, s.c.), CcL has lost its ability to inhibit the carrageenan-induced edema, exerting its mechanism of action anti-inflammatory pathway through the involvement of HO-1. While in immunohistochemistry, CcL (10 mg/kg) reduced the expression of IL-1β, but intense staining occurred cytokines TNF-α and IL-6, and expression of HO-1 in the groups treated with the same dose of CcL. In relation the effect edematogenic, CcL was able to induce intense inflammatory process with dose-dependent effect. However, the induced edema at a dose of 10 mg/kg was CcL was inhibited by indomethacin, meclizine, pentoxifylline and dexamethasone. Therefore, when the CcL partially characterized presented in its aminoterminal sequence of 43% identity with the protein from unicellular green alga Chlamydomonas reinhardtii and showed anti-and pro-inflammatory therapeutic agent is considered a potential for future studies in inflammatory processes. / As lectinas de algas marinhas possuem várias aplicações farmacológicas. O objetivo deste trabalho foi caracterizar parcialmente a estrutura e avaliar os efeitos em modelos clássicos de inflamação da lectina da alga marinha verde Caulerpa cupressoides. A lectina de Caulerpa cupressoides (LCc) foi extraída com tampão Tris-HCl 25 mM, pH 7,5 e isolada por cromatografia de troca iônica em coluna de DEAE-celulose. A caracterização estrutural parcial apresentou uma sequência aminoterminal com 31 resíduos de aminoácidos, obtida de acordo com o método de degradação de Edman, enquanto que na espectroscopia de ressonância magnética nuclear unidimensional 1H para a LCc purificada por Sephadex G-100 e obtida por DEAE-celulose, foi demostrado uma similaridade entre os sinais obtidos em ambos os espectros. A atividade anti-inflamatória foi avaliada em ratos Wistar machos (n=6), utilizando o modelo de edema de pata induzidos por carragenana (700 μg/pata), dextrana (500 μg/pata), histamina (100 μg/pata), serotonina (20 μg/pata) ou bradicinina (30 μg/pata). Grupos de animais foram submetidos ao tratamento com LCc (0,1; 1,0 ou 10,0 mg/kg; i.v.), 30 min antes do estímulo inflamatório. Foi avaliado o envolvimento da LCc (1,0 mg/kg) na via da Heme oxigenase-1. Foram utilizados grupos que receberam tratamento com LCc ligada ao inibidor mucina (8,0 mg/kg; i.v.) ou somente mucina (8,0 mg/kg; i.v.) e dexametasona (1,0 mg/kg; s.c.) foram utilizados como controles. O efeito edematogênico de LCc foi avaliado aplicando as doses de 0,1; 1,0 ou 10 mg/kg (i.pl.). No ensaio de edema de pata induzido por carragenana, LCc reduziu a formação de edema sendo confirmado pela determinação dos níveis teciduais de mieloperoxidase. A LCc (1,0 mg/kg) ligada a mucina não apresentou efeito anti-inflamatório no edema de pata induzido por carragenana, exceto na primeira hora após o estímulo. No edema induzido por dextrana, LCc também inibiu o edema osmótico. Apenas a dose de 1,0 mg/kg foi utilizada no edema induzido por histamina reduzindo em 40% o edema no intervalo de 30 min LCc (1,0 mg/kg), entretanto, não reduziu a formação de edema induzido por serotonina ou bradicinina. Além disso, na análise histológica do tecido subplantar, LCc (1,0 e 10,0 mg/kg) foi capaz de reduzir a migração celular. Na presença de ZnPP IX (3,0 mg/kg; s.c.), LCc perdeu sua capacidade inibir o edema induzido por carragenana, exercendo seu mecanismo de ação anti-inflamatório através do envolvimento da via da HO-1. Enquanto que na imunohistoquímica, LCc (10 mg/kg) reduziu a expressão de IL-1β, porém ocorreu intensa marcação das citocinas TNF-α e IL-6, além da expressão de HO-1, nos grupos tratados com a mesma dose de LCc. Com relação ao efeito edematogênico, LCc foi capaz de induzir intenso processo inflamatório com efeito dose-dependente. No entanto, o edema induzido com a dose de 10 mg/kg de LCc foi foi inibido por indometacina, meclizina, pentoxifilina e dexametasona. Portanto, a LCc quando parcialmente caracterizada apresentou na sua sequência aminoterminal uma identidade de 43% com a proteína da alga verde unicelular Chlamydomonas reinhardtii e apresentou propriedades anti- e pró-inflamatórias, sendo considerada um agente terapêutico em potencial para estudos futuros nos processos inflamatórios.
96

Possível envolvimento do monóxido de carbono na modulação do comportamento emocional em ratos: o papel do locus coeruleus / Involvement of carbono monoxide in the emotional behavior in rats: role of the locus coeruleus.

Rafael Alves Cazuza 03 March 2017 (has links)
O gás monóxido de carbono (CO) possui diversas funções no sistema nervoso central (SNC) funcionando como neuromodulador, como por exemplo da regulação da temperatura corporal, da nocicepção e mais recentemente, do comportamento emocional. Este neuromodulador gasoso é produzido pela ação da enzima heme oxigenase (HO), a qual é encontrada em diferentes áreas do SNC. Com destaque, esta enzima tem alta expressão no locus coeruleus (LC), o que sugere o envolvimento do CO na modulação de funções desempenhadas por esta estrutura. O LC localiza-se na ponte, sendo a maior origem da inervação noradrenérgica do SNC. Esta estrutura tem participação ativa na modulação das respostas relacionadas ao estresse, em particular, na modulação do comportamento emocional, desde que integra o Sistema de Inibição Comportamental (SIC), o qual inclui ainda o sistema septo-hipocampal e os núcleos da rafe. O SIC é responsável por comandar respostas defensivas de avaliação de risco, alerta e atenção, as quais podem ser eliciadas pela ansiedade. Dentro desta perspectiva, o presente estudo teve como objetivo avaliar se a ativação sistêmica da via HO-CO pode modular o comportamento emocional de ratos, e se há participação do LC. Assim, este trabalho avaliou se o tratamento sistêmico via intraperitoneal (i.p.) agudo (3 h antes) ou crônico (10 dias/2 vezes ao dia) com um liberador de monóxido de carbono (CORM-2), ou com indutor da enzima HO (CoPP), altera as respostas comportamentais no teste do labirinto em cruz elevado (LCE) e no teste claro-escuro (TCE) em ratos, bem como a expressão da enzima HO no LC. Em uma segunda etapa foi avaliado se a administração aguda de CORM-2 ou CoPP altera o comportamento avaliado no LCE e no TCE de ratos submetidos ao estresse crônico variado (ECV) por 10 dias. Os resultados mostraram que o CO induzido pela administração aguda ou crônica de CORM-2 ou CoPP possui efeito ansiolítico. Ainda, o tratamento com CORM-2 ou CoPP aumentou a expressão da enzima HO-1 em células localizadas no LC, sem alterar a imunorreatividade à enzima HO-2. Considerando os grupos submetidos ao estresse ECV, nem a ativação da via HO-CO ou o ECV apresentaram efeitos significativos nos comportamentos avaliados nos testes LCE e TCE. Os resultados do presente estudo sugerem que o tratamento sistêmico com drogas que modulam a liberação de CO possui claro efeito ansiolítico. Assim, é possível que o CO possa ser uma droga com potencial terapêutico para o tratamento de desordens neuropsiquiátricas. / The carbon monoxide gas (CO) has several functions in the central nervous system acting as a neuromodulator, such as in the body temperature regulation, nociception and more recently, in the emotional behavior modulation. This gas is produced by the action of the heme oxigenase enzyme (HO), which is found in different areas of the central nervous system (CNS). It is important to note that this enzyme has high expression in the locus coeruleus (LC), suggesting the involvement of CO in the modulation functions performed by this midbrain structure. LC is located in the pons, being the source of majority of the noradrenergic innervation of the CNS. This structure is intimately involved in the stress modulation responses, particularly in the emotional behavior regulation, since it integrates the Behavioral Inhibition System (BIS), which also includes septum-hippocampal system and raphe nucleus. The BIS is responsible for defensive responses like the risk assessment and alertness trigged by anxiety. Within this perspective, the present study was designed to evaluate whether the systemic HO-CO pathway can modulate emotional behavior of rats, and if the HO enzyme of the neurons located into LC is involved in this response. Thus, this study evaluated whether the acute systemic i.p. treatment (3 hours before) or chronic (10 days / 2 times a day) with a carbon monoxide releaser (CORM-2) or inducer of heme enzyme oxygenase (CoPP), is able to alter the behavioral responses in the elevated plus maze (EPM) and in the light-dark box test (LDB) in rats, and the HO enzyme expression in the LC. Furthermore, the effect of the acute administration of CORM-2 or CoPP was evaluated in the emotional behavior assessed in the EPM and LDB by rats submitted to unpredictable chronic stress (during 10 days). The results showed that the CO induced by acute or chronic administration of CORM-2 or CoPP has an anxiolytic-like effect. Furthermore, treatment with CORM-2 or CoPP promoted an increase of HO-1 enzyme expression in cells located in the LC without altering the immunoreactivity of HO-2 enzyme. Still, considering the rats subjected to stress UCS neither the activation of HO-CO pathway nor the UCS protocol altered the emotional behavior evaluated in the EPM and LDB tests. The results of this study suggest that systemic treatment with drugs that modulate the CO release has anxiolytic effect. Thus, it is possible that CO can be a potential drug therapeutic target for neuropsychiatric disorders.
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Anorexia nervosa - vybrané genetické determinanty a endofenotypy / Anorexia nervosa - selected genetic determinants and endophenotypes

Kaminská, Deborah January 2013 (has links)
Anorexia Nervosa (AN) and Bulimia Nervosa (BN) are diseases with considerable individual variation. Genetic background plays an important role in disease susceptibility and severity. To evaluate the relationship between certain genetic loci and diseases subtypes we genotyped and analysed evolution of selected clinical parameters. We investigated a group of 75 pacients with AN (1. study), 127 DSM-4 and ICD-10 diagnosed patients with AN and BN (2. study), and contributed to sample of 2907 AN patients in large GWAS study. Results from the 1st study support association of polymorphism -1438G/A in serotonine receptor 5-HT2A with AN and compare the results from other studies with metaanalyses. In next, polymorphism responsible for the serotonine neurotransmission (serotonine transporter 5-HTT, polymorphisms LPR and VNTR) the study shows different association trend of LPR with AN in Czech population compared to other studies. 5-HTT VNTR polymorphism had no observed association. The second study investigated the role of hemeoxygenase 1 (plays a pivotal role in metabolic stress protecting cells) in eating disorders, in interaction with enviromental stress. We investigated the usefulness of an aggregate measure of the risks of AN and BN that is based on genetic susceptibility loci and the added effect of...
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Molekulární podklady endotelové dysfunkce: genetické varianty endotelové syntázy oxidu dusnatého a hemoxygenázy 1. / Molecular basis of endothelial sysfunction: endothelial nitric oxide synthase and heme oxygenase 1 genetic variations

Král, Aleš January 2015 (has links)
Endothelial dysfunction is a pathologic state characterized by an altered equilibrium among vasodilatory and antithrombotic mediators and vasoconstrictive and prothrombotic mediators produced by the vascular endothelium. Multiple factors induce impaired production or increased consumption nitric oxide (NO), the key mediator of vascular homeostasis, produced by the nitric oxide synthase enzymes (NOS). Endothelial dysfunction represents one of the initial steps in the development of atherosclerosis, a chronic inflammatory disease of the vascular wall. The inducible enzyme heme oxygenase 1 (HO-1) represents one of the main cellular defense mechanisms against increased oxidative stress and decreased NO bioavailability accompanying endothelial dysfunction and atherosclerosis. We studied the genetic determinants of endothelial dysfunction and atherosclerosis by evaluating the association of the G894T endothelial NOS (eNOS) polymorphism and the HO-1 (GT)n promoter polymorphism with coronary artery atherosclerosis severity and risk profile and their evolution during hypolipidaemic treatment. In addition, we searched for genetic variations in exons 25 and 26 of eNOS gene, encoding the C-terminal part of the protein, deemed crucial for proper enzyme function and the 3'- untranslated region crucial for eNOS...
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Toxicidade da polimixina B em células LLC-PK1 e a enzima heme oxigenase-1 / Polymyxin B toxicity in LLC-PK1 cells and the heme oxygenase-1 enzyme

Luciana Barros de Moura Neiva 18 December 2008 (has links)
Na lesão renal aguda, os mecanismos de defesa atuam como genes protetores, como a proteína heat shock 32 (HSP 32), também conhecida como heme oxigenase-1 (HO-1). A polimixina B (PmxB) é um antimicrobiano nefrotóxico. O objetivo deste estudo foi caracterizar a participação da enzima HO-1 na toxicidade da PmxB em células LLC-PK1. As células foram submetidas aos seguintes tratamentos: Controle (CTL- 0µM); Hemin (indutor de HO-1, 25µM); Hemin II (250M), Protoporfirina de zinco (ZnPP - inibidor de HO-1, 10M,); Nitro-L-arginina-metilester (L-NAME - inibidor de iNOS, 0,1mM); PmxB (375µM); PmxB + Hemin (25µM de Hemin uma hora antes da PmxB); PmxB + ZnPP (10M de ZnPP uma hora antes da PmxB); PmxB + Hemin + L-NAME (25M de Hemin e 0,1mM de L-NAME uma hora antes da PmxB). Os grupos foram avaliados em 24 e 72 horas. Foram analisados os seguintes parâmetros: desidrogenase láctica (DHL), peroxidação lipídica (MDA), expressão gênica da HO-1 por RT-PCR, síntese protéica da HO-1 por imunofluorescência, óxido nítrico (NO) pelo método de Griess e expressão protéica da HO-1 e da iNOS por western blotting. Os resultados mostraram que a PmxB elevou o DHL com aumento dos níveis de MDA. O Hemin e a ZnPP elevaram as variáveis DHL, MDA e óxido nítrico (NO). O indutor de HO-1 incrementou a expressão protéica da HO-1 e da iNOS. A PmxB se confirmou como citotóxica e a HO-1 intensificou a lesão por mecanismos oxidativos. O efeito da HO-1 na lesão celular parece ser mediado pelo NO / In the acute kidney injury, the mechanisms of defense act as protector genes, as the protein heat shock 32 (HSP 32), also known as heme oxygenase-1 (HO-1). The polymyxin B (PmxB) is a nephrotoxic antimicrobial. The aim of this study was to distinguish the role of the HO-1 enzyme in the PmxB toxicity in LLC-PK1 cells. The cells were submitted to the following treatments: Control (CTL- 0µM); Hemin (inhibitor of HO-1, 25µM); Hemin II (250M), Zinc protoporphyrin (ZnPP - inhibitor of HO-1, 10M,); NG-nitro-L-arginine methyl ester (L-NAME - inhibitor of iNOS, 0,1mM); PmxB (375µM); PmxB + Hemin (25µM of Hemin one hour before the PmxB); PmxB + ZnPP (10M of ZnPP one hour before the PmxB); PmxB + Hemin + L-NAME (25M of Hemin and 0,1mM of L-NAME one hour before the PmxB). All groups were evaluated in 24 and 72 hours. The following parameters were analysed: lactate dehydrogenase (LDH), lipid peroxidation (MDA), genic expression of HO-1 by RT-PCR, protein syntesis of HO-1 by immunofluorescence, nitric oxide (NO) by Griess method and protein expression of HO-1 and of iNOS by western blotting. The results showed that PmxB increased the LDH and the levels of MDA. Hemin and ZnPP also increased the LDH variables, MDA and nitric oxide (NO). The inducer of HO-1 improved the protein expression of HO-1 and of iNOS. The PmxB was confirmed as a cytotoxic and the HO-1 intensified the failure by oxidative mechanisms. The effect of HO-1 in the cell injury seemed to be mediated by NO
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Estudos dos mecanismos da associação entre níveis pressóricos e a via heme-heme oxigenase / Study of the mechanism between pressoric levels and heme-heme oxygenase pathway

Elisabete Alcantara dos Santos 13 March 2001 (has links)
A heme oxigenase (HEOX) é uma enzima que converte o anel heme em quantidades equimolares de biliverdina, monóxido de carbono (CO) e Fe3+. Esta enzima tem um importante papel fisiológico, regulando os níveis de hemeproteínas e protegendo as células da agressão oxidativa do heme livre. A biliverdina é, subseqüentemente, transformada em bilirrubina que apresenta propriedades antioxidativas e o Fe3+ é seqüestrado pela ferritina. O CO ativa a guanilil ciclase, com resultante produção de 3?,5?-monofosfato de guanosina cíclico provocando relaxamento da musculatura lisa vascular. Em trabalho anterior, nós verificamos o efeito da inibição aguda da heme oxigenase com zinco protoporfirina (ZnPP IX) sobre a pressão arterial de ratos Wistar machos recebendo dietas hipossódica (0,15% de NaCl), normossódica (1,3% de NaCl) ou hipersódica (8% de NaCl) desde o desmame. Nos animais sob dieta hipersódica houve diminuição nos níveis pressóricos, enquanto que nos animais que recebiam dieta hipo e normossódica, ocorreu um aumento dos níveis pressóricos. A análise destes resultados mostrou a existência de uma correlação negativa entre a pressão arterial basal medida antes da injeção de ZnPP IX e o efeito deste tratamento sobre os níveis pressóricos. Esta correlação independeu do conteúdo de sal na dieta consumida pelos animais. Concluímos assim, que a resposta à inibição da HEOX é modulada pela pressão arterial basal. Recentemente, foi mostrado que a heme oxigenase é induzida por incrementos da pressão obtidos de maneiras diversas e que ao retornar os níveis pressóricos a valores basais esta indução da enzima é revertida. A estimulação da HEOX promove consumo de anel heme. O heme integra a estrutura molecular de enzimas importantes na regulação da pressão arterial, como por exemplo, guanilato ciclase, óxido nítrico sintase, hidroxilase e epóxigenase (enzimas pertencentes à família do citocromo P-450). Permitimo-nos conjecturar que a falta de heme repercute sobre a atuação destas enzimas, uma vez que o turnover destas enzimas é dependente de heme. O objetivo deste estudo foi confirmar em outros modelos de hipertensão arterial os achados anteriores e verificar se a enzima epoxigenase que metaboliza o ácido araquidônico formando compostos vasodilatadores, tais como EET e DiHTE, está envolvida na queda da pressão arterial dos animais sob dieta hipersódica. Neste estudo foi induzida hipertensão arterial crônica com angiotensina II (AII - 0,7 mg.kg-1.d-1, via minibomba osmótica durante 7 dias) ou com L?-nitro L-arginina metil ester (L-NAME ? 50 mg/L fornecido na água de beber ao longo de duas semanas) e hipertensão arterial aguda com fenilefrina (FE - 1 mg.kg-1.h-1 iv ). Hidralazina (15 mg.kg-1.dia-1 fornecido na água de beber durante 9 dias) e nitroprussiato de sódio (SNP - 7,7?g.kg-1.min-1 iv) foram utilizados para induzir diminuição crônica e aguda, respectivamente, da pressão arterial. A participação da via do citocromo P-450 no mecanismo de queda pressórica em resposta ao ZnPP IX nos animais sob dieta hipersódica (descrita no trabalho anterior), foi avaliada através da inibição desta via com clotrimazole (80 mg/kg/24 horas) em animais na vigência de sobrecarga de sal ou consumindo dieta normossódica. Grupos de ratos submetidos ao tratamento com AII, L-NAME, FE, SNP, hidralazina e clotrimazole foram submetidos ao teste de inibição da HEOX. A pressão arterial direta (artéria carótida) foi avaliada antes e após a administração de zinco protoporfirina IX (ZnPP IX ? 90 ?mol/kg ip) ou veículo (carbonato de sódio ? 0,15mmol/kg ip). Nós verificamos nos modelos de hipertensão arterial crônicos ou no modelo agudo um resultado similar ao encontrado no estudo anterior, ou seja, em resposta à inibição da heme oxigenase houve uma queda importante da pressão arterial. Nos animais submetidos a hipotensão arterial não houve modificação da pressão arterial em resposta à administração de ZnPP IX. Nos grupos de animais submetidos ao tratamento com clotrimazole não houve modificação da pressão arterial após administração de ZnPP IX. Em conclusão, pressão basal elevada modifica o efeito da inibição da heme oxigenase sobre os níveis pressóricos em comparação com pressão arterial basal normal ou reduzida. A via do citocromo P-450 parece estar envolvida na queda pressórica após inibição da heme oxigenase nos animais submetidos a tratamento crônico com dieta hipersódica, uma vez que nos animais tratados com clotrimazole não houve modificação pressórica após a inibição da heme oxigenase. / Heme oxygenase (HEOX) is the rate-limiting enzyme that opens the heme ring, resulting in equimolar quantities of biliverdin, carbon monoxide (CO) and Fe3+. HEOX plays an important physiological role in the degradation of heme, regulating hemoprotein levels and therefore protecting cells from the deleterious effects of free heme. Biliverdin is subsequently reduced by biliverdin reductase to bilirubin that has antioxidant properties. Iron is sequestered by ferritin. CO activates soluble guanylate cyclase with resultant production of 3?,5?-cyclic guanosine monophosphate (cGMP) which produces relaxation of the vascular smooth muscle cells. Previously we demonstrated the effect of acute HEOX inhibition by zinc protoporphyrin IX (ZnPP IX) on blood pressure in male Wistar rats that were fed with low (LSD ? 0.15% NaCl), normal (NSD ? 1.3%) or high salt diet (HSD - 8% NaCl) from weaning (21 days-old animals). The blood pressure decreased in rats on HSD, and increased in the animals on NSD and LSD after ZnPP IX administration. A negative correlation was obtained between blood pressure measured before ZnPP IX and the area under the curve of the percentage of blood pressure changes induced by ZnPP IX. This correlation seems to be independent of the salt content in the diet. Our conclusion is that the response to heme oxygenase inhibition is modulated by basal arterial blood pressure. Recently it was showed that heme oxygenase is induced by high blood pressure and the levels of the enzyme returns to normal with blood pressure control. It is known that heme oxygenase stimulation provokes breakdown of heme ring. The heme integrates the molecular structure of several important enzymes that are involved in the regulation of blood pressure, such as, soluble guanylate cyclase, nitric oxide synthase, hydroxylase and epoxygenase (cytochrome P-450 family). We postulate that the deficiency in heme rings due to heme oxigenase induction might lead to disturbances in the activities of some of these enzymes and hence hypertension. The objective of this study was 1) to confirm the results observed previously in others models f hypertension and 2) to the role of epoxygenase in the regulation of blood pressure in response to HEOX inhibition in hypertensive animals. The chronic hypertension was induced by angiotensin II (AII - 0.7 mg.kg-1.d-1, by osmotic mini pumps during 7 days) or with L?-nitro L-arginine metyl ester (L-NAME ? 50 mg/L in the tap water was given during two weeks ) and acute hypertension with phenylephrine (FE - 1 mg.kg-1.h-1 iv ). Hidralazine (15 mg.kg-1.d-1 in the tap water was given during 9 days) and sodium nitropruside (SNP - 7.7?g.kg-1.min-1 iv) were used, respectively, to induce chronic and acute decreases of the blood pressure. The participation of the cytochrome P-450 pathway in the mechanism of blood pressure reduction in response to ZnPP IX was evaluated through the inhibition of this pathway by clorimazole (80 mg/kg/24 hours) in animals on high salt diet or nornal salt diet. Groups of rats treated with AII, L-NAME, FE, SNP, hidralazine and clotrimazole were submitted to HEOX inhibition. Direct blood pressure (carotid artery) measurements were undertaken before and after zinc protoprphyrin IX administration (ZnPP IX ? 90 ?mol/kg ip) or vehicle (sodium carbonate ? 0,15mmol/kg ip). In the chronic or acute hypertension models heme oxygenase inhibition induced a decrease of blood pressure. In the hypotension group there was no modification on blood pressure of these animals in response to ZnPP IX. Animals on high salt diet submitted to the clotrimazole treatment did not modify the blood pressure after ZnPP IX administration. Thus; the cytochrome P-450 pathway seems to be involved in the blood pressure decreases after HEOX inhibition in the animals under long term of high salt diet since there was no change in blood pressure in the clotrimazole-treated groups after heme oxygenase inhibition.

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