435 resultados para adénosine monophosphate cyclique, AMPc


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The evaluation of workers as potential reservoirs and disseminators of pathogenic bacteria has been described as a strategy for the prevention and control of healthcare-associated infections (HAIs). The aim of this study was to evaluate the presence of Enterobacteriaceae in the oral cavity of workers at an oncology hospital in the Midwest region of Brazil, as well as to characterize the phenotypic profile of the isolates. Saliva samples of 294 workers from the hospital’s healthcare and support teams were collected. Microbiological procedures were performed according to standard techniques. Among the participants, 55 (18.7%) were colonized by Enterobacteriaceae in the oral cavity. A total of 64 bacteria were isolated, including potentially pathogenic species. The most prevalent species was Enterobacter gergoviae (17.2%). The highest rates of resistance were observed for β-lactams, and 48.4% of the isolates were considered multiresistant. Regarding the enterobacteria isolated, the production of ESBL and KPC was negative. Nevertheless, among the 43 isolates of the CESP group, 51.2% were considered AmpC β-lactamase producers by induction, and 48.8% were hyper-producing mutants. The significant prevalence of carriers of Enterobacteriaceae and the phenotypic profile of the isolates represents a concern, especially due to the multiresistance and production of AmpC β-lactamases.

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This cross-sectional study, performed in an oncology hospital in Goiania, aimed to characterize the prevalence of oral colonization and antimicrobial susceptibility of Pseudomonas spp. isolated from the saliva of healthcare workers. Microorganisms were subjected to biochemical tests, susceptibility profile, and phenotypic detection. Of 76 participants colonized with Gram negative bacilli, 12 (15.8%) harbored Pseudomonas spp. Of all isolates, P. aeruginosa (75.0%), P. stutzeri (16.7%), and P. fluorescens (8.3%), were resistant to cefoxitin, and therefore likely to be AmpC producers. The results are clinically relevant and emphasize the importance of surveillance to minimize bacterial dissemination and multiresistance.

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BACKGROUND: Chromosomally encoded AmpC β-lactamases may be acquired by transmissible plasmids which consequently can disseminate into bacteria lacking or poorly expressing a chromosomal bla AmpC gene. Nowadays, these plasmid-mediated AmpC β-lactamases are found in different bacterial species, namely Enterobacteriaceae, which typically do not express these types of β-lactamase such as Klebsiella spp. or Escherichia coli. This study was performed to characterize two E. coli isolates collected in two different Portuguese hospitals, both carrying a novel CMY-2-type β-lactamase-encoding gene. FINDINGS: Both isolates, INSRA1169 and INSRA3413, and their respective transformants, were non-susceptible to amoxicillin, amoxicillin plus clavulanic acid, cephalothin, cefoxitin, ceftazidime and cefotaxime, but susceptible to cefepime and imipenem, and presented evidence of synergy between cloxacilin and cefoxitin and/or ceftazidime. The genetic characterization of both isolates revealed the presence of bla CMY-46 and bla CMY-50 genes, respectively, and the following three resistance-encoding regions: a Citrobacter freundii chromosome-type structure encompassing a blc-sugE-bla CMY-2-type -ampR platform; a sul1-type class 1 integron with two antibiotic resistance gene cassettes (dfrA1 and aadA1); and a truncated mercury resistance operon. CONCLUSIONS: This study describes two new bla CMY-2-type genes in E. coli isolates, located within a C. freundii-derived fragment, which may suggest their mobilization through mobile genetic elements. The presence of the three different resistance regions in these isolates, with diverse genetic determinants of resistance and mobile elements, may further contribute to the emergence and spread of these genes, both at a chromosomal or/and plasmid level.

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Foram estudados linfócitos T de pacientes portadores de pênfigo foliáceo em relação à sua capacidade de formar rosáceas "E'. diante de diferentes concentrações do imunopotenciador levamisol. O levamisol é uma substância que estimula formação de rosáceas de linfócitos T ativos em indivíduos normais. Os linfócitos de pacientes antes da corticoterapia sistêmica não responderam ao levamisol; já os linfócitos de pacientes em tratamento com corticóides tiveram inibida sua capacidade de formar rosáceas. Esses achados sugerem alteração no metabolismo celular dos linfócitos de pacientes penfigosos devido provavelmente a alguma falha no sistema enzimático dessas células envolvendo a fosfodiesterase do AMPc.

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We prospectively studied the effects of the ligation of the inferior thyroid artery (ITA) on postoperative hypoparathyroidism in 48 patients who underwent functional subtotal thyroidectomy. Patients were randomized into two groups: A, with bilateral ligation of the ITA and B, without ligation of the ITA. Parathyroid function was checked preoperatively and after surgery by clinical examination and measurement of total calcium, intact PTH, urinary calcium, and AMPc. RESULTS: A significant incidence of postoperative hypocalcemia occurred: 17% in group A and 13% in B on the 4th postoperative day. Six months later, the incidence was 5% in Group A and 0% in Group B. These differences were not statistically significant between the two groups, and neither were any of the other clinical and laboratory observations. CONCLUSION: The ligation of the ITA was not an important causal factor for the occurrence of postoperative hypocalcemia after subtotal thyroidectomy.

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En este pedido de subsidio se presenta una nueva línea de investigación que se propone analizar la función y mecanismo de acción de la hormona melanocito concentrante (MCH) y su interrelación con la alfa-MSH [Hormona melanocito estimulante] ya que ambos péptidos actúan en forma antagónica en peces. Para cumplimentar este objetivo se propone analizar la función del MCH en el comportamiento de aseo excesivo y si éste péptido bloquea el efecto de alfa-MSH en esta conducta al igual que se anulan en los peces. Además, hemos comprobado en trabajos anteriores que alfa-MSH disminuye la temperatura ante el aumento provocado por un pirógeno exógeno y también se han establecido los neurotransmisores (NT) involucrados. En este proyecto nos proponemos establecer el efecto de MCH y su interacción con MSH y los NT involucrados en el proceso de termoregulación, comportamiento de aseo excesivo y estudios de inmunidad. Además, siguiendo con nuestra línea de trabajo, continuamos indagando sobre los sistemas de segundos mensajeros involucrados en el mecanismo de alfa-MSH mediante estudios in vivo e in vitro, midiendo estos segundos mensajeros en zonas específicas del Sistema Nervioso Central (SNC). Investigaremos cómo están involucrados los receptores nicotínicos y muscarínicos en la inducción de las conductas y la medición de los segundos mensajeros AMPc e IP 3 en núcleo estriado. Con respecto a la participación de alfa-MSH en el comienzo de la pubertad se propone: A) Establecer si la estimulación de la liberación de esteroides ováricos de LH, FSH y alfa-MSH estaría mediada por AMPc. Para su cumplimiento se plantea realizar incubación de ovarios prepuberales en presencia de alfa-MSH y las gonadotrofinas hipofisarias a fin de determinar las variaciones de P, E2 y AMPc liberadas al medio. B) Corroborar si existe una unión directa de alfa-MSH a las células ováricas para interactuar con las gonadotrofinas y por su intermedio modificar la liberación de P. Para ello se propone determinar el porcentaje de unión del péptido marcado a células ováricas. C) Determinar por medio de autoradiografía, si la administración aguda del péptido a ratas prepúberes, modifica el contenido ovárico de receptores para FSH y/o LH. Se continuarán los estudios tendientes a establecer la interrelación entre hormonas esteroideas, catecolaminas y alfa-MSH en la regulación de la conducta sexual. Se analizará la actividad lordótica luego de la inyección de alfa-MSH en área preóptica y se tratará de establecer qué NT median la respuesta observada, midiendo además el contenido del péptido en diferentes áreas del SNC y liberación de LH.

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Los tejidos en general, presentan al menos dos clases de sistemas transductores de la información a través de una membrana. Uno de ellos esta relacionado al AMPc, mientras que el otro induce a un rápido recambio de los fosfolípidos del inositol, así como una movilización del ión Ca2+. (...) Se tratará de optimizar las condiciones para estudiar la actividad de lípido quinasas en raíces de tomate ( Lycopersicum esculentum L.) cvs Pera y otras, para dilucidar si las mismas están de algún modo comprometidas en las respuestas fisiológicas de ese vegetal al estrés salino. (...) La existencia de vías de señales interconectadas en plantas, podría ayudar a explicar la manera por la que un pequeño grupo de fitohormonas determinarían una amplia variedad de respuestas celulares. Ahí estas podrían desempeñar un papel importante como sustancia señal en la cadena de transducción entre el estrés salino y las respuestas moleculares induciendo expresión génica y/o la acumulación de proteínas específicas u otros compuestos relacionados. Objetivo general: * Estudiar la actividad de lípido quinasas de raíz de tomate para dilucidar si son enzimas claves en el camino de transducción de señales que involucra fosfoinosítidos en plantas bajo condiciones de estrés salino. Objetivos específicos: * Estudiar la capacidad de las quinasas lipídas y diacilglicerol quinasa de raíz de tomate para transferir el fosfato del ATP a de los sustratos lipídicos endógenos. * Analizar la actividad de estas enzimas en raíces de tomate sometidas a estrés salino durante diferentes períodos de tiempo. * Iniciar la caracterización de la actividades de PI-k , y DG-k y estudias su posible relación con la respuesta celular a un estímulo externo, tanto en raíces controles como en raíces sometidas a estrés salino.

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Giardia lamblia (también conocido como Giardia intestinalis o Giardia duodenalis) es un protozoario parásito que habita en el intestino delgado de seres humanos y otros vertebrados, y es una de las principales causas en el mundo de enfermedad intestinal en humanos, la causa más frecuente de diarrea transmitida por agua en los países desarrollados y así como una causa común de diarrea en los centros de atención ambulatoria. Aunque el ciclo de vida de G. lamblia y las condiciones fisiológicas que provocan los procesos de enquistamiento, desenquistamiento y variación antigénica se han estudiado durante años, las vías de transducción de señales involucradas en estos procesos siguen siendo poco conocidos y serán el foco de la presente investigación. ¿Cómo un estímulo desencadena una expresión diferencial de genes durante la adaptación de G. lamblia mediante un sistema minimalista? es atractivo a la luz de la biología sintética. Por lo tanto, la realización de este proyecto responderá alguna de estas cuestiones biológicas, centrándose en los mecanismos moleculares esenciales que intervienen en los procesos de transducción de señales implicadas en la diferenciación y la variación antigénica. Los estímulos que disparan los procesos de enquistamiento, desenquistamiento ya han sido descritos en el pasado y a su vez hemos desarrollado un nuevo sistema para acelerar la tasa de variación antigénica. Por lo tanto, después de haber creado la mayor parte de las condiciones para el estudio de estos procesos, vamos a intentar contestar las siguientes preguntas generales y específicos: (A) ¿Cuáles son las vías de transducción implicadas en la diferenciación de G. lamblia y la variación antigénica? (B) Dado que G. lamblia aparentemente carece de proteínas G heterotrimericas y de receptores de membrana acoplados a estas proteínas (GPCR), ¿cómo G. lamblia transduce algunos estímulos particularmente conocidos por estar asociados a estas moléculas?. (C) ¿Cuál es la participación de la proteínas G monomericas tipo Ras en las vías de transducción de señales de G. lamblia? (D) ¿De qué manera este organismo regula sus niveles citoplasmáticos de AMP cíclico (AMPc) y cuáles son los procesos que se valen de este importante segundo mensajero?. La respuesta de estas preguntas permitirá una mejor comprensión de la fisiología de este importante agente patógeno y facilitará el control de su crecimiento y difusión. Por otra parte, la información obtenida en este proyecto pueden ser de relevancia para el control de otros patógenos y proporcionará nuevos conocimientos sobre la evolución de estos sistemas en eucariotas superiores.

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Background: The activation of the beta-adrenergic system promotes G protein stimulation that, via cyclic adenosine monophosphate (cAMP), alters the structure of protein kinase A (PKA) and leads to phospholamban (PLB) phosphorylation. This protein participates in the system that controls intracellular calcium in muscle cells, and it is the primary regulator of sarcoplasmic reticulum calcium pump activity. In obesity, the beta-adrenergic system is activated by the influence of increased leptin, therefore, resulting in higher myocardial phospholamban phosphorylation via cAMP-PKA. Objective: To investigate the involvement of proteins which regulate the degree of PLB phosphorylation due to beta-adrenergic activation in obesity. In the present study, we hypothesized that there is an imbalance between phospholamban phosphorylation and dephosphorylation, with prevalence of protein phosphorylation. Methods: Male Wistar rats were randomly distributed into two groups: control (n = 14), fed with normocaloric diet; and obese (n = 13), fed with a cycle of four unsaturated high-fat diets. Obesity was determined by the adiposity index, and protein expressions of phosphatase 1 (PP-1), PKA, PLB, phosphorylated phospholamban at serine16 (PPLB-Ser16) were assessed by Western blot. Results: Obesity caused glucose intolerance, hyperinsulinemia, hypertriglyceridemia, hyperleptinemia and did not alter the protein expression of PKA, PP-1, PLB, PPLB-Ser16. Conclusion: Obesity does not promote an imbalance between myocardial PLB phosphorylation and dephosphorylation via beta-adrenergic system.

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Schwann cells synthesize a large amount of membrane that form a specialized structure called myelin that surrounds axons and facilitate the transmission of electrical signal along neurons in peripheral nervous system (PNS). Previous studies demonstrated that both Schwann cell differentiation and de-differentiation (in the situation of a nerve injury or demyelinating disease) are regulated by cell-intrinsic regulators including several transcription factors. In particular, the de-differentiation of mature Schwann cells is driven by the activation of multiple negative regulators of myelination including Sox2, c-Jun, Notch and Pax3, all usually expressed in immature Schwann cells and suppressed at the onset of myelination. In order to identify new regulators of myelination involved in the development of the PNS, we analyzed the gene-expression profiling data from developing PNS and from three models of demyelinating neuropathies. This analysis led to the identification of Sox4, a member of the Sox family of transcription factors, as a potential candidate. To characterize the molecular function of Sox4 in PNS, we generated two transgenic lines of mice, which overexpress Sox4 specifically in Schwann cells. Detailed analysis of these mice showed that the overexpression of Sox4 in Schwann cells causes a delay in progression of myelination between post-natal day 2 (P2) and P5. Our in vitro analysis suggested that Sox4 cDNA can be overexpressed while the protein translation is tightly regulated. Interestingly, we observed that Sox4 protein is stabilized in nerves of the CMT4C mouse, a model of the human neuropathy. We therefore crossed Sox4 transgenic mice with CMT4C mice and we observed that Sox4 overexpression exacerbated the neuropathy phenotype in these mice. While recognized as being crucial for the normal function of both neurons and myelinating glial cells, the processes that regulate the beginning of myelination and the nature of the neuro-glial cross-talk remains mostly unknown. In order to gain insight into the molecular pathways involved in the interactions between neurons and associated glial cells, we developed a neuron-glia co-culture system based on microfluidic chambers and successfully induced myelination in this system by ascorbic acid. Importantly, we observed that in addition to acting on Schwann cells, ascorbic acid also modulate neuronal/axonal NRG1/ErbB2-B3 signalling. The experimental setting used in our study thus allowed us to discover a novel phenomena of propagation for myelination in vitro. The further characterization of this event brought us to identify other compounds able to induce myelination: ADAMs secretases inhibitor GM6001 and cyclic-AMP. The results generated during my thesis project are therefore not only important for the advancement of our understanding of how the PNS works, but may also potentially help to develop new therapies aiming at improvement of PNS myelination under disease conditions. - Les cellules de Schwann synthétisent une grande quantité de membrane formant une structure spécialisée appelée myéline qui entoure les axones et facilite la transmission du signal électrique le long des neurones du système nerveux périphérique (SNP). Des études antérieures ont démontré que la différenciation et la dédifférenciation des cellules de Schwann (dans la situation d'une lésion nerveuse ou d'une maladie démyélinisante) sont régulées par des régulateurs cellulaires intrinsèques, incluant plusieurs facteurs de transcription. En particulier, la dédifférenciation des cellules de Schwann matures est contrôlée par l'activation de plusieurs régulateurs négatifs de la myélinisation dont Sox2, c-Jun, Notch et Pax3, tous habituellement exprimés dans des cellules de Schwann immatures et supprimés au début de la myélinisation. Afin d'identifier de nouveaux régulateurs de myélinisation impliqués dans le développement du SNP, nous avons analysé le profil d'expression génique durant le développement du SNP ainsi que dans trois modèles de neuropathies démyélinisantes. Cette analyse a mené à l'identification de Sox4, un membre de la famille des facteurs de transcription Sox, comme étant un candidat potentiel. Dans le but de caractériser la fonction moléculaire de Sox4 dans le SNP, nous avons généré deux lignées transgéniques de souris qui surexpriment Sox4 spécifiquement dans les cellules de Schwann. L'analyse détaillée de ces souris a montré que la surexpression de Sox4 dans les cellules de Schwann provoque un retard dans la progression de la myélinisation entre le jour postnatal 2 (P2) et P5. Notre analyse in vitro a suggéré que l'ADNc de Sox4 peut être surexprimé alors que la traduction des protéines est quand à elle étroitement régulée. De façon intéressante, nous avons observé que la protéine Sox4 est stabilisée dans les nerfs des souris CMT4C, un modèle de neuropathie humaine. Nous avons donc croisé les souris transgéniques Sox4 avec des souris CMT4C et avons observé que la surexpression de Sox4 exacerbe le phénotype de neuropathie chez ces souris. Bien que reconnus comme étant cruciaux pour le fonctionnement normal des neurones et des cellules gliales myélinisantes, les processus qui régulent le début de la myélinisation ainsi que la nature des interactions neurone-glie restent largement méconnus. Afin de mieux comprendre les mécanismes moléculaires impliqués dans les interactions entre les neurones et les cellules gliales leur étant associés, nous avons développé un système de co-culture neurone-glie basé sur des chambres microfluidiques et y avons induit avec succès la myélinisation avec de l'acide ascorbique. Étonnamment, nous avons remarqué que, en plus d'agir sur les cellules de Schwann, l'acide ascorbique module également la voie de signalisation neuronale/axonale NRG1/ErbB2-B3. Le protocole expérimental utilisé dans notre étude a ainsi permis de découvrir un nouveau phénomène de propagation de la myélinisation in vitro. La caractérisation plus poussée de ce phénomène nous a menés à identifier d'autres composés capables d'induire la myélinisation: L'inhibiteur de sécrétases ADAMs GM6001 et l'AMP cyclique. Les résultats obtenus au cours de mon projet de thèse ne sont donc pas seulement importants pour l'avancement de notre compréhension sur la façon dont le SNP fonctionne, mais peuvent aussi potentiellement aider à développer de nouvelles thérapies visant à l'amélioration de la myélinisation du SNP dans des conditions pathologiques.

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In the present study, we have performed a comparative analysis of the effect of selective inhibitors of phosphodiesterase (PDE) type III, IV and V on eosinophil chemotaxis triggered by platelet activating factor (PAF) and leukotriene B4 (LTB4) in vitro. The effect of the analogues N6-2'-O-dibutyryladenosine 3':5' cyclic monophosphate (Bt2 cyclic AMP) and N2-2'-O- dibutyrylguanosine 3':5' cyclic monophosphate (Bt2 cyclic GMP) has also been determined. The eosinophils were obtained from the peritoneal cavity of naive Wistar rats and purified in discontinuous Percoll gradients to 85-95% purity. We observed that pre-incubation of eosinophils with the PDE type IV inhibitor rolipram suppressed the chemotactic response triggered by PAF and LTB4, in association with an increase in the intracellular levels of cyclic AMP. In contrast, neither zaprinast (type V inhibitor) nor type III inhibitors milrinone and SK&F 94836 affected the eosinophil migration. Only at the highest concentration tested did the analogue Bt2 cyclic AMP suppress the eosinophil chemotaxis, under conditions where Bt2 cyclic GMP was ineffective. We have concluded that inhibition of PDE IV, but not PDE III or V, was able to block the eosinophil chemotaxis in vitro, suggesting that the suppressive activity of selective PDE IV inhibitors on tissue eosinophil accumulation may, at least, be partially dependent on their ability to directly inhibit the eosinophil migration.

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The description more than 30 years ago of the role of de novo purine synthesis in T and B lymphocytes clonal proliferation opened the possibility for selective immunosuppression by targeting specific enzymatic pathways. Mycophenolic acid (MPA) blocks the key enzyme inosine monophosphate dehydrogenase and the production of guanosine nucleotides required for DNA synthesis. Two MPA formulations are currently used in clinical transplantation as part of the maintenance immunosuppressive regimen. Mycophenolate mofetil (MMF) was the first MPA agent to be approved for the prevention of acute rejection following renal transplantation, in combination with cyclosporine and steroids. Enteric-coated mycophenolate sodium (EC-MPS) is an alternative MPA formulation available in clinical transplantation. In this review, we will discuss the clinical trials that have evaluated the efficacy and safety of MPA in adult kidney transplantation for the prevention of acute rejection and their use in new combination regimens aiming at minimizing calcineurin inhibitor toxicity and chronic allograft nephropathy. We will also discuss MPA pharmacokinetics and the rationale for therapeutic drug monitoring in optimizing the balance between efficacy and safety in individual patients.

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We have described previously a transcription-dependent induction of glycogen resynthesis by the vasoactive intestinal peptide (VIP) or noradrenaline (NA) in astrocytes, which is mediated by cAMP. Because it has been postulated that the cAMP-mediated regulation of energy balance in hepatocytes and adipocytes is channeled at least in part through the CCAAT/enhancer binding protein (C/EBP) family of transcription factors, we tested the hypothesis that C/EBP isoforms could be expressed in mouse cortical astrocytes and that their level of expression could be regulated by VIP, by the VIP-related neuropeptide pituitary adenylate cyclase-activating peptide (PACAP), or by NA. We report in this study that in these cells, C/EBP beta and C/EBP delta are induced by VIP, PACAP, or NA via the cAMP second-messenger pathway. Induction of C/EBP beta and -delta mRNA by VIP occurs in the presence of a protein synthesis inhibitor. Thus, c/ebp beta and c/ebp delta behave as cAMP-inducible immediate-early genes in astrocytes. Moreover, transfection of astrocytes with expression vectors selectively producing the transcriptionally active form of C/EBP beta, termed liver-enriched transcriptional activator protein, or C/EBP delta enhance the glycogen resynthesis elicited by NA, whereas an expression vector producing the transcriptionally inactive form of C/EBP beta, termed liver-enriched transcriptional inhibitory protein, reduces this resynthesis. These results support the idea that C/EBP beta and -delta regulate gene expression of energy metabolism-related enzymes in astrocytes.