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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.
21

Design and Synthesis of CB1 Receptor Ligands and Synthesis of Amphibian Alkaloids

Shu, Hong 20 December 2009 (has links)
Our project was aimed at the development of novel CB1 cannabinoid receptor antagonists that may have clinical applications for the treatment of cannabinoid and psychostimulant addiction. In this study, we designed, synthesized, and established the CB1 affinity for the 1,5-diaryl-1,2,3- triazole esters, a series of 4,5-diaryl-1-substituted-1,2,3-triazole analogues and a series of 4,5- diaryl-2-substituted-1,2,3-triazoles. Our research group has been interested in the synthesis of amphibian alkaloids due to their interesting biological activities. We have recently developed a general synthetic strategy which can rapidly prepare a few amphibian alkaloids simply from the abundant natural product (-)- cocaine This strategy was first successfully applied to the synthesis of (-)-monomorine. More recently, this strategy has also been utilized in the syntheses of both of the enantiomers of cispyrrolidine 225H and (+)-gephyrotoxin 287C.
22

Caractérisation des sous-types de récepteurs nicotiniques neuronaux d'insectes et étude de la modulation de leurs profils pharmacologiques par les insecticides néonicotinoïdes / Subtypes characterization and pharmacological profiles modulation study of insect nicotinic receptors by neonicotinoid insecticides

Cartereau, Alison 26 September 2018 (has links)
L’utilisation intensive des insecticides pour lutter contre les insectes ravageurs de culture et vecteurs demaladies, a conduit à des polémiques sur le mode d’action des insecticides. Ces polémiques sont liéesau fait que le mode d’action des insecticides, notamment des néonicotinoïdes est mal connu. Ils agissentprincipalement sur les récepteurs à l’acétylcholine (ACh) de type nicotinique (nAChR) qui jouent un rôlefondamental dans la transmission synaptique cholinergique. Bien que ces récepteurs soient bien décritschez les mammifères, très peu d’études ont évalué l’effet des néoniotinoïdes sur un récepteur natifd’insecte.Au cours de cette thèse, nous avons pour la première fois exprimé en ovocytes de xénope un récepteurhomomérique ⍺7 de blatte et étudié ces propriétés pharmacologiques vis-à-vis des néonicotinoïdes,comparativement au récepteur a7 de rat. Nos résultats révèlent un récepteur atypique qui est insensibleà l’⍺-bungarotoxine et qui n’est pas activé par les néonicotinoïdes. Ainsi, bien que les gènes codantpour les sous-unités α7 de blatte et de rat forment un groupe monophylétique distinct des autres sousunitésd’insectes et de mammifères, les récepteurs homomériques obtenus semblent avoir despropriétés pharmacologiques différentes. Parallèlement, nous avons étudié les propriétéspharmacologiques des nAChR natifs et notamment l’effet modulateur d’un pyréthrinoïde, la permethrine,sur les courants induits par le dinotefurane. Ce travail a permis d’évaluer le mode d’action d’unantiparasitaire, le Vectra 3D. Enfin, nous avons également entrepris de développer la techniqued’extraction membranaire afin de l’utiliser comme alternative pour étudier le mode d’action desinsecticides.Pour conclure, cette thèse a permis une avancée sur l’étude de la caractérisation des propriétéspharmacologiques des récepteurs nicotiniques neuronaux des insectes et sur l’étude du mode d’actiondes insecticides néonicotinoïdes. / The intensive use of insecticides against crop pests and vectors of human and animal leads to several polemics about their mode of action. All these controversies are related to the fact that the mode of action of insecticides in insects is poorly unknown, in particular neonicotinoids which act on nicotinic acetylcholine (ACh) receptors (nAChR).During this PhD thesis, we characterized for the first time the pharmacological properties of a cockroach ⍺7 homomeric receptor in a xenopus oocyte. Our results revealed that cockroach ⍺7 in an atypical receptor that is insensitive to ⍺-bungarotoxin and not activated by neonicotinoids. Cockroach and rat ⍺7 receptors which are included in the same cluster have distinct pharmacological properties. We then studied the pharmacological properties of native receptors, in particular, the modulatory effect of permethrin on dinotefuran-induced currents. This work was included in the study of Vectra 3D. We also evaluated the use of insect central nervous system membrane extraction as a strategy to study the pharmacological properties of insect native nAChRs.To conclude, this PhD contribute to the study of the pharmacological properties of insect nAChRs and the study of the mode of action of neonicotinoids insecticides.
23

Flavonoids with Novel Nicotinic Activity as Potential Pharmacotherapies to Treat Ethanol-Induced Neurotoxicity

Lutz, Joseph A 01 January 2014 (has links)
Ethanol causes neurotoxicity via several mechanisms at different points in the cycle of dependence, including neuroinflammation and oxidative stress during ethanol exposure as well as excitotoxicity during ethanol withdrawal. The primary therapeutic implication is that ethanol-induced neurotoxicity requires multifunctional pharmacotherapies which reduce all mechanisms. Using an innovative pharmacological high throughput screening method on a large plant extract library we discovered flavonoids with alpha7 nicotinic acetylcholine receptor (nAChR) activity. In addition to their well-known anti-inflammatory and antioxidant properties, this novel activity means they can potentially reduce excitotoxicity and therefore makes them ideal for inhibition of ethanol-induced neurotoxicity. Rhamnetin, the candidate compound, was first found to inhibit lipopolysaccharide induced inflammation in immortalized BV2 microglia, in part, via alpha7 nAChRs. We then established an in vitro model of ethanol induced-neurotoxicity using organotypic hippocampal slice cultures which incorporated both neuroinflammatory and excitotoxic components. Neuroinflammation enhanced excitotoxicity under control conditions but the reverse was observed during ethanol withdrawal. Both mechanisms are important but their interaction is not simple. Finally, rhamnetin was evaluated in this model and found to reduce neuroinflammation and excitotoxicity associated with ethanol withdrawal. In conclusion, the studies herein provide strong evidence for alpha7 nAChRs selective flavonoids as potential pharmacotherapies for the treatment of ethanol-induced neurotoxicity and further implicate neuroinflammation, excitotoxicity, and their interaction as critical mechanisms in this pathology.
24

Toward Understanding the Mechanisms of of Lipid Sensitivity in Pentameric Ligand-Gated Ion Channels

Labriola, Jonathan 23 September 2013 (has links)
Pentameric ligand-gated ion channels (pLGICs) are membrane bound receptors found in the nervous system. They are responsible for detecting neurotransmitters released from neurons and subsequently mediating responses of the cells on which they are found. Thus, pLGICs play an invaluable role in communication between cells of the nervous system and understanding their function is pivotal to understanding how the nervous system works in general. One factor which is known to mediate pLGIC function is lipids found in the membrane environment in which pLGICs are embedded. This dissertation explores the various ways in which lipids interact with and modulate the function of pLGIC. Potential mechanisms and biological consequences of this modulation will be presented and discussed within the context of our current state of knowledge of pLGIC and nervous system function.
25

Toward Understanding the Mechanisms of of Lipid Sensitivity in Pentameric Ligand-Gated Ion Channels

Labriola, Jonathan January 2013 (has links)
Pentameric ligand-gated ion channels (pLGICs) are membrane bound receptors found in the nervous system. They are responsible for detecting neurotransmitters released from neurons and subsequently mediating responses of the cells on which they are found. Thus, pLGICs play an invaluable role in communication between cells of the nervous system and understanding their function is pivotal to understanding how the nervous system works in general. One factor which is known to mediate pLGIC function is lipids found in the membrane environment in which pLGICs are embedded. This dissertation explores the various ways in which lipids interact with and modulate the function of pLGIC. Potential mechanisms and biological consequences of this modulation will be presented and discussed within the context of our current state of knowledge of pLGIC and nervous system function.
26

Localization of α7 Nicotinic Acetylcholine Receptor mRNA and Protein Within the Cholinergic Anti-Inflammatory Pathway

Downs, A. M., Bond, C. E., Hoover, D. B. 25 April 2014 (has links)
Electrical stimulation of the vagus nerve attenuates tumor necrosis factor (TNF) synthesis by macrophages and reduces the systemic inflammatory response. Current evidence suggests that the α7 nicotinic acetylcholine receptor present in the celiac/superior mesenteric ganglia is a key component in vagus nerve signaling to the spleen; however, there is currently no direct anatomical evidence that the α7 receptor is present in the murine celiac/superior mesenteric ganglia. Our study addresses this deficiency by providing anatomical evidence that the α7 receptor is expressed within the celiac/superior mesenteric ganglia and splenic nerve fibers using immunohistochemistry and quantitative polymerase chain reaction (qPCR). α7 receptor mRNA is highly expressed in the celiac/superior mesenteric ganglia and at low levels in the spleen compared to the brain. Double-labeling for α7 and tyrosine hydroxylase shows that α7 receptor protein is present on noradrenergic neurons within the ganglia and prejunctionally on noradrenergic nerve fibers within the spleen. The α7 receptor in the ganglia provides a possible location for the action of α7-selective agonists, while prejunctional α7 receptor expressed on splenic nerves may induce an increase in norepinephrine release in a positive feedback system enhanced by lymphocyte-derived acetylcholine.
27

Catharanthine Modulates Mesolimbic Dopamine Transmission: A Potential Treatment for Alcohol Use Disorder

Williams, Benjamin M. 03 August 2022 (has links)
Catharanthine is derived from the Catharanthus roseus plant and is an analog to ibogaine, a drug that reduces opioid and alcohol withdrawal symptoms and decreases drug self-administration in both animals and humans. Catharanthine has promise to be an alternative pharmacological treatment for addiction without the adverse side effects associated with ibogaine. The objective of this study was to evaluate catharanthine’s effects on dopamine (DA) transmission in the mesolimbic DA system as well as determine its effects on both ethanol withdrawal induced anxiety and drug-seeking behaviors in mice. We hypothesized that catharanthine would inhibit evoked DA release in the nucleus accumbens (NAc) while also reducing anxiety and drug seeking behaviors in mice. We found that superfusion of catharanthine (1-100 µM) to mouse brain slices significantly inhibits evoked DA release in the NAc of the striatum in a dose dependent manner, while also slowing DA reuptake through inhibition of the dopamine transporter (DAT), measured using fast-scan cyclic voltammetry (FSCV). We also found that intraperitoneal administration of catharanthine in live mice significantly increases extracellular DA, measured via microdialysis with electrochemical detection. Catharanthine inhibition of evoked DA release was significantly reduced by the non-selective nAChR antagonist mecamylamine, the α4 nAChR antagonist dihydro-β-erythroidine hydrobromide (DhβE) and the α6 nAChR antagonist α-conotoxin MII, suggesting that catharanthine inhibits α4 and α6 nAChRs in the NAc. Iontophoresis and in-vivo data indicates that catharanthine slows DA reuptake and increases extracellular DA in the NAc through partial inhibition of DATs. Catharanthine also blocked increases in anxiety-like behavior during ethanol withdrawal in mice in the elevated plus maze. Lastly, preliminary data suggests that catharanthine increases both water and ethanol drinking in a 24-hour two-bottle choice drinking paradigm, which was contrary to our hypothesis.
28

Uso terapêutico de ultrassom abdominal diminui severidade de colite aguda induzida por DSS através da via anti-inflamatória colinérgica

Nunes, Natália Schneider January 2018 (has links)
Introdução: Colite Ulcerativa (UC) é uma Doença Inflamatória Intestinal (DII) caracterizada por uma resposta imune exacerbada, com sintomas como diarreia, perda de peso e sangue nas fezes. Apesar dos medicamentos disponíveis, a remissão da doença nem sempre consegue ser alcançada e há a necessidade de terapias alternativas. A colite induzida por DSS (Dextran Sulfate Sodium) é um modelo animal utilizado na investigação de novas terapias por sua semelhança à UC humana. DSS provoca dano à barreira epitelial do cólon, induzindo uma resposta imune exacerbada; entretanto, o exato mecanismo não está totalmente esclarecido. O Ultrassom Terapêutico (TUS) foi utilizado para tratamento de injúria renal em modelo experimental, sua ação se dá através da estimulação do nervo vago (VN) e consequente ativação da via antiinflamatória colinérgica (CAIP). Uma vez que pacientes com DII podem exibir atividade disfuncional do VN, TUS pode ser investigado como terapia alternativa. Objetivos: Investigar temporalmente o perfil clínico, proteômico, histológico e imunológico da colite aguda induzida por DSS; e determinar os efeitos de TUS na colite induzida por DSS. Métodos: No primeiro estudo, a severidade da colite foi avaliada pela administração de DSS 1-3%, observando a resposta clínica e histológica. A análise temporal de DSS 3% incluiu uma avaliação proteômica e histológica do cólon, e a resposta imune celular no baço, linfonodo mesentérico (MLN) e cólon. No segundo estudo, utilizando o modelo de DSS 2%, TUS foi aplicado no abdômen dos animais e foram observados os sintomas clínicos, dano histológico, proteômica do cólon e respostas imunes celulares no baço, MLN e cólon. Animais esplenectomizados ou knockout para a7nAChR (marcador clássico para ativação de CAIP) foram utilizados. Resultados: No primeiro estudo, observou-se que a severidade da doença foi aumentada seguindo concentrações de 1-3% DSS. A análise temporal de DSS 3% demonstrou que os macrófagos (F4/80+) se apresentam como a primeira resposta celular, seguidos por células T CD25+, CD4+ e CD8+. A piora clínica da doença correspondeu ao aumento progressivo de fatores pró-inflamatórios e dano tecidual no cólon, exceto no dia 8. Foram observados menores níveis dos marcadores de células T CD25+, CD4+ e CD8+ no MLN e/ou baço, sugerindo a ocorrência de tropismo destas células para o intestino. No segundo estudo, a aplicação de TUS diminuiu a severidade da doença através da melhora de sintomas clínicos, danos teciduais e encurtamento do cólon. A proteômica do cólon demonstrou uma resposta anti-inflamatória durante a fase de injúria (D0-7), induzindo uma resolução acelerada da doença na fase de recuperação (D8-14). TUS diminuiu os níveis de células T CD8+ e normalizou os níveis de células T CD25+ no cólon. Animais esplenectomizados não demonstraram melhora clínica ou histológica, enquanto animais a7nAChR KO apresentaram piora da colite experimental. Além disso, TUS aumentou os níveis de células F4/80+a7nAChR+ no intestino de animais WT DSS 2%. Conclusão: Nossos resultados demonstram que a severidade da doença depende da concentração de DSS, relacionada com as respostas clínica, proteômica e imune no modelo animal de DSS 3%; e TUS diminuiu a severidade da colite induzida por DSS presumidamente pela da estimulação do VN e consequente ativação de CAIP através do baço. / Introduction: Ulcerative Colitis (UC) is an Inflammatory Bowel Disease (IBD) characterized by uncontrolled immune response, presenting with symptoms of diarrhea, weight loss and bloody stools. Despite available treatments, UC sustained remission is not achievable and there is still the need for alternative therapies. Dextran Sulfate Sodium (DSS)-induced colitis is a mouse model used to investigate novel therapies, since it closely mimics human UC. DSS damages the colonic epithelial barrier, leading to an exacerbated immune response. However, the exact mechanism is not totally understood. Previous studies showed the use of Therapeutic Ultrasound (TUS) to prevent kidney injury in mice through stimulation of the vagus nerve (VN) and activation of the cholinergic anti-inflammatory pathway (CAIP). Since IBD patients can present with dysfunctional VN activity, TUS could be studied as an alternative therapy. Objectives: To investigate the temporal clinical, proteomic, histological and cellular immune profiles of DSS-induced acute colitis; and to determine the effects of TUS directed toward the VN and spleen in the course of DSS-induced colitis. Methods: First, we analyzed DSS-induced colitis severity by administration of 1-3% DSS, observing the clinical course and histological damage. A time course analysis was performed at 3% DSS, including colon proteomics, colon histology and immune cell responses in the spleen, MLN (mesenteric lymph node) and colon. Next, utilizing 2% DSS in drinking water, we applied TUS over the mice abdomen and analyzed clinical symptoms, histological damage, colon proteomics and immune cell responses in the spleen, MLN and colon. Splenectomized and a7nAChR (key indicator of CAIP activation) KO animals were also used. Results: In the first study, we observed worsening of the disease when increasing DSS concentrations from 1 to 3%. Time course analysis of 3% DSS revealed macrophages to be the first responders, followed by CD25+, CD4+ and CD8+ T cells. Worsening of the disease corresponded to a progressive increase in pro-inflammatory colonic factors and histological damage, except at day 8. Lower levels of CD25+, CD4+ and CD8+ T cells in MLN and/or spleen suggest an immune cell tropism to the gut. In the second study, TUS attenuated DSS induced colitis through amelioration of clinical symptoms, histological damage and colon shortening. Proteomic colon analysis demonstrated an antiinflammatory profile during the injury phase (D0-7), whilst inducing an early resolution of the disease during the recovery phase (D8-14). TUS decreased CD8+ and normalized CD25+ T cell levels in the gut. Splenectomized animals demonstrated no improved clinical and pathological outcomes, and a7nAChR KO mice presented with worsening of the disease. Furthermore, there were increased levels of F4/80+a7nAChR+ cells in the colon of 2% DSS WT mice under TUS treatment. Conclusion: Our results demonstrate that the severity of colitis is dependent on DSS concentration, correlated with clinical, proteomic and cellular immune responses on 3% DSS; and TUS significantly improved DSS-induced acute colitis presumably through stimulation of the VN and consequent activation of CAIP through the spleen.
29

Efeito do tratamento com PNU-282987, agonista do receptor colinérgico nicotínico alfa7, na resposta inflamatória e de remodelamento brônquico em modelo experimental de asma / Effects of PNU-282987 treatment, an agonist of ?7 nicotinic receptor, in inflammatory response and airway remodeling in an experimental model of asthma

Miranda, Claúdia Jeane Claudino de Pontes 17 November 2016 (has links)
Introdução: A inflamação constitui um dos fatores mais importantes da fisiopatologia da asma brônquica, caracterizada por uma resposta eosinofílica com produção de citocinas de perfil Th2. A persistência desta inflamação induz no pulmão um processo de reparo associado à redução progressiva da função pulmonar, que nem sempre é revertida pelos tratamentos disponíveis. O sistema colinérgico anti-inflamatório é descrito como um mecanismo neural que suprime a resposta imune e controla a inflamação principalmente pelo efeito da acetilcolina em receptores nicotínicos do tipo alfa7 (alfa7nAChR) encontrados em células do sistema imune. A acetilcolina (ACh) exerce um importante efeito na asma e recentemente demonstramos que a redução parcial da liberação da acetilcolina induz per se a inflamação pulmonar. Embora se saiba que os receptores muscarínicos (mAChRs) exercem um efeito pró-inflamatório e broncoconstritor na asma, a ativação de receptores nicotínicos (nAChRs) poderia ter um efeito benéfico reduzindo a inflamação pulmonar, fato demonstrado em modelos de inflamação sistêmica e aguda. O efeito da ativação do alfa7nAChR na fisiopatologia da asma ainda não está claramente elucidado. Objetivo: Investigar o efeito do tratamento com PNU-282987 (PNU), um agonista específico do alfa7nAChR, em um modelo murino de inflamação alérgica crônica das vias aéreas. Metodologia: Camundongos BALB/c foram submetidos ao protocolo de indução alérgica crônica das vias aéreas com ovoalbumina (OVA) ou salina intraperitoneal (i.p.) e posterior desafios inalatórios. A partir do 22° dia, os animais receberam diariamente tratamento com PNU ou veículo (Ve) até o 28° dia. Foram testadas três doses de PNU (0,5, 1,0 e 2,0 mg/Kg). A fim de evidenciar se o efeito obtido no tratamento com PNU era dependente do receptor alfa7nAChR, um grupo de animais foi tratado com MLA (antagonista do alfa7nAChR), previamente ao tratamento com PNU. No 29° dia do protocolo, os animais foram eutanasiados e foram avaliados o número de células inflamatórias no lavado broncoalveolar (LBA) e no sangue, os níveis de citocinas no LBA, a expressão do alfa7nAChR e mAchRs do tipo 3 (M3) e a ativação do fator de transcrição nuclear kB (NF-kB) no pulmão. O remodelamento brônquico foi avaliado por morfometria. As análises estatísticas foram realizadas por meio do programa SigmaStat (Jandel Scientific, San Rafael, CA), onde um P < 0,05 foi considerado estatisticamente significativo. Resultados: Houve expressão do alfa7nAChR e M3 no homogenato de pulmão de animais controle e sensibilizados. Determinamos por meio da redução de eosinófilos que a dose de 0,5 mg/Kg do tratamento com PNU foi a mais efetiva. Assim, observamos que o tratamento com PNU0,5 nos animais sensibilizados reduziu o número de células totais, eosinófilos, neutrófilos, macrófagos e linfócitos no LBA, assim como número de eosinófilos no sangue periférico e ao redor das vias aéreas. O tratamento com PNU reduziu os níveis de IgE no sangue e as citocinas IL-4, IL-13 e IL-17 no LBA. Todos estes efeitos foram revertido com o pré-tratamento com MLA, exceto para a citocina IL-17. Alem disso, o tratamento com PNU reduziu o remodelamento brônquico (área de edema, de epitélio e de músculo liso e deposição de fibras colágenas) assim como o número de células positivas para MMP-9 e TIMP-1 ao redor das vias aéreas. No pulmão a expressão do p-65-NF-kB, STAT3 fosforilado e o SOCS3 foram inibidas pelo PNU. Conclusão: Estes dados claramente demonstram que o alfa7nAChR está envolvido no controle da resposta inflamatória pulmonar alérgica e de remodelamento brônquico em modelo experimental de asma alérgica e portanto é um novo alvo com potencial terapêutico a ser explorado na fisiopatologia da asma brônquica / Background: Inflammation is one of the most important features in asthma pathophysiology, characterized by eosinophilic response with production of Th2 cytokine profile. The persistence of this inflammation can induce a lung repair process associated with a progressive reduction in lung function, which is not always reversed by available treatments. The anti-inflammatory cholinergic system was described as a neural mechanism that suppresses the immune response and controls inflammation mainly by the activaction of acetylcholine alfa7 nicotinic receptors (alfa7nAChR) found on immune cells. Acetylcholine (ACh) is an important mediator in asthma and we recently demonstrated that partial reduction on ACh release induced lung inflammation per se. Although it is known that muscarinic receptors (mAChRs) has a pro-inflammatory action and causes bronchoconstriction in asthma, the activation of nicotinic receptors (nAChRs) could have a beneficial effect reducing pulmonary inflammation as demonstrated in models of acute and systemic inflammation. The effects of alfa7nAChR activation in the pathophysiology of asthma have not been clearly elucidated. Aim: To investigate the effects of PNU- 282987 (PNU) treatment, a specific alfa7nAChR agonist, in a murine model of chronic allergic airway inflammation. Methods: BALB/c mice were subjected to a protocol of chronic allergic inflammation induced by intraperitoneal ovalbumin (OVA) or saline and subsequent challenges with inhalation. From the 22th day, the animals daily received PNU or vehicle (Ve) until the 28th day. PNU were tested in three differents doses (0.5, 1.0 and 2.0 mg/kg). In order to demonstrate that the effects obtained by PNU treatment was dependent on alfa7nAChR, a group of animals was treated with MLA (antagonist of alfa7nAChR) prior to the PNU treatment. On the 29th day of the protocol, the animals were euthanised and the number of inflammatory cells in the bronchoalveolar lavage fluid(BALF) fluid and blood, cytokine levels in BALF, the expression of alfa7nAChR and mAChRs type 3 (M3), and activation of nuclear transcription factor kB (NF-kB) in the lung were evaluated. Bronchial remodeling was assessed by morfometric methods. Statistical analyses were performed using the SigmaStat (Jandel Scientific, San Rafael, CA) and P < 0.05 is considered statistically significant. Results: ?7nAChR and M3 expression was detected in control and sensitized lung homogenate. The most effective dose of PNU treatment was 0.5 mg/kg evaluated by the effects on eosinophil reduction. Thus, we observed that treatment with PNU0,5 reduced the number of total cells, eosinophils, neutrophils, macrophages and lymphocytes in BALF, as well as number of eosinophils in peripheral blood and around the airways of sensitized animals. The treatment with PNU also reduced IgE levels in the blood, and cytokines IL-4, IL-13 and IL-17 in BALF. All these effects were reversed by pretreatment with MLA, except for IL-17 cytokine. Furthermore, treatment with PNU reduced bronchial remodeling (edema, epithelium and smooth muscle area and airway collagen deposition) as well as the number of positive cells for MMP-9 and TIMP-1 around the airways. The lung p-65-NF-kB, phosphorylated STAT3 and the SOCS3 expression were inhibited by PNU-282987. Conclusion: These data clearly demonstrate that the alfa7nAChR is involved in the control of allergic pulmonary inflammatory response and in bronchial remodeling in an experimental model of allergic asthma and it can be a new target with therapeutic potential to be explored in the pathophysiology of asthma
30

Efeito do tratamento com PNU-282987, agonista do receptor colinérgico nicotínico alfa7, na resposta inflamatória e de remodelamento brônquico em modelo experimental de asma / Effects of PNU-282987 treatment, an agonist of ?7 nicotinic receptor, in inflammatory response and airway remodeling in an experimental model of asthma

Claúdia Jeane Claudino de Pontes Miranda 17 November 2016 (has links)
Introdução: A inflamação constitui um dos fatores mais importantes da fisiopatologia da asma brônquica, caracterizada por uma resposta eosinofílica com produção de citocinas de perfil Th2. A persistência desta inflamação induz no pulmão um processo de reparo associado à redução progressiva da função pulmonar, que nem sempre é revertida pelos tratamentos disponíveis. O sistema colinérgico anti-inflamatório é descrito como um mecanismo neural que suprime a resposta imune e controla a inflamação principalmente pelo efeito da acetilcolina em receptores nicotínicos do tipo alfa7 (alfa7nAChR) encontrados em células do sistema imune. A acetilcolina (ACh) exerce um importante efeito na asma e recentemente demonstramos que a redução parcial da liberação da acetilcolina induz per se a inflamação pulmonar. Embora se saiba que os receptores muscarínicos (mAChRs) exercem um efeito pró-inflamatório e broncoconstritor na asma, a ativação de receptores nicotínicos (nAChRs) poderia ter um efeito benéfico reduzindo a inflamação pulmonar, fato demonstrado em modelos de inflamação sistêmica e aguda. O efeito da ativação do alfa7nAChR na fisiopatologia da asma ainda não está claramente elucidado. Objetivo: Investigar o efeito do tratamento com PNU-282987 (PNU), um agonista específico do alfa7nAChR, em um modelo murino de inflamação alérgica crônica das vias aéreas. Metodologia: Camundongos BALB/c foram submetidos ao protocolo de indução alérgica crônica das vias aéreas com ovoalbumina (OVA) ou salina intraperitoneal (i.p.) e posterior desafios inalatórios. A partir do 22° dia, os animais receberam diariamente tratamento com PNU ou veículo (Ve) até o 28° dia. Foram testadas três doses de PNU (0,5, 1,0 e 2,0 mg/Kg). A fim de evidenciar se o efeito obtido no tratamento com PNU era dependente do receptor alfa7nAChR, um grupo de animais foi tratado com MLA (antagonista do alfa7nAChR), previamente ao tratamento com PNU. No 29° dia do protocolo, os animais foram eutanasiados e foram avaliados o número de células inflamatórias no lavado broncoalveolar (LBA) e no sangue, os níveis de citocinas no LBA, a expressão do alfa7nAChR e mAchRs do tipo 3 (M3) e a ativação do fator de transcrição nuclear kB (NF-kB) no pulmão. O remodelamento brônquico foi avaliado por morfometria. As análises estatísticas foram realizadas por meio do programa SigmaStat (Jandel Scientific, San Rafael, CA), onde um P < 0,05 foi considerado estatisticamente significativo. Resultados: Houve expressão do alfa7nAChR e M3 no homogenato de pulmão de animais controle e sensibilizados. Determinamos por meio da redução de eosinófilos que a dose de 0,5 mg/Kg do tratamento com PNU foi a mais efetiva. Assim, observamos que o tratamento com PNU0,5 nos animais sensibilizados reduziu o número de células totais, eosinófilos, neutrófilos, macrófagos e linfócitos no LBA, assim como número de eosinófilos no sangue periférico e ao redor das vias aéreas. O tratamento com PNU reduziu os níveis de IgE no sangue e as citocinas IL-4, IL-13 e IL-17 no LBA. Todos estes efeitos foram revertido com o pré-tratamento com MLA, exceto para a citocina IL-17. Alem disso, o tratamento com PNU reduziu o remodelamento brônquico (área de edema, de epitélio e de músculo liso e deposição de fibras colágenas) assim como o número de células positivas para MMP-9 e TIMP-1 ao redor das vias aéreas. No pulmão a expressão do p-65-NF-kB, STAT3 fosforilado e o SOCS3 foram inibidas pelo PNU. Conclusão: Estes dados claramente demonstram que o alfa7nAChR está envolvido no controle da resposta inflamatória pulmonar alérgica e de remodelamento brônquico em modelo experimental de asma alérgica e portanto é um novo alvo com potencial terapêutico a ser explorado na fisiopatologia da asma brônquica / Background: Inflammation is one of the most important features in asthma pathophysiology, characterized by eosinophilic response with production of Th2 cytokine profile. The persistence of this inflammation can induce a lung repair process associated with a progressive reduction in lung function, which is not always reversed by available treatments. The anti-inflammatory cholinergic system was described as a neural mechanism that suppresses the immune response and controls inflammation mainly by the activaction of acetylcholine alfa7 nicotinic receptors (alfa7nAChR) found on immune cells. Acetylcholine (ACh) is an important mediator in asthma and we recently demonstrated that partial reduction on ACh release induced lung inflammation per se. Although it is known that muscarinic receptors (mAChRs) has a pro-inflammatory action and causes bronchoconstriction in asthma, the activation of nicotinic receptors (nAChRs) could have a beneficial effect reducing pulmonary inflammation as demonstrated in models of acute and systemic inflammation. The effects of alfa7nAChR activation in the pathophysiology of asthma have not been clearly elucidated. Aim: To investigate the effects of PNU- 282987 (PNU) treatment, a specific alfa7nAChR agonist, in a murine model of chronic allergic airway inflammation. Methods: BALB/c mice were subjected to a protocol of chronic allergic inflammation induced by intraperitoneal ovalbumin (OVA) or saline and subsequent challenges with inhalation. From the 22th day, the animals daily received PNU or vehicle (Ve) until the 28th day. PNU were tested in three differents doses (0.5, 1.0 and 2.0 mg/kg). In order to demonstrate that the effects obtained by PNU treatment was dependent on alfa7nAChR, a group of animals was treated with MLA (antagonist of alfa7nAChR) prior to the PNU treatment. On the 29th day of the protocol, the animals were euthanised and the number of inflammatory cells in the bronchoalveolar lavage fluid(BALF) fluid and blood, cytokine levels in BALF, the expression of alfa7nAChR and mAChRs type 3 (M3), and activation of nuclear transcription factor kB (NF-kB) in the lung were evaluated. Bronchial remodeling was assessed by morfometric methods. Statistical analyses were performed using the SigmaStat (Jandel Scientific, San Rafael, CA) and P < 0.05 is considered statistically significant. Results: ?7nAChR and M3 expression was detected in control and sensitized lung homogenate. The most effective dose of PNU treatment was 0.5 mg/kg evaluated by the effects on eosinophil reduction. Thus, we observed that treatment with PNU0,5 reduced the number of total cells, eosinophils, neutrophils, macrophages and lymphocytes in BALF, as well as number of eosinophils in peripheral blood and around the airways of sensitized animals. The treatment with PNU also reduced IgE levels in the blood, and cytokines IL-4, IL-13 and IL-17 in BALF. All these effects were reversed by pretreatment with MLA, except for IL-17 cytokine. Furthermore, treatment with PNU reduced bronchial remodeling (edema, epithelium and smooth muscle area and airway collagen deposition) as well as the number of positive cells for MMP-9 and TIMP-1 around the airways. The lung p-65-NF-kB, phosphorylated STAT3 and the SOCS3 expression were inhibited by PNU-282987. Conclusion: These data clearly demonstrate that the alfa7nAChR is involved in the control of allergic pulmonary inflammatory response and in bronchial remodeling in an experimental model of allergic asthma and it can be a new target with therapeutic potential to be explored in the pathophysiology of asthma

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