993 resultados para Trichinella spiralis antigens


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Like other helminths, Trichinella spiralis has evolved strategies to allow it to survive in the host organism, including the expression of epitopes similar to those present in either expressed or hidden host antigens. To identify T. spiralis-derived antigens that are evolutionarily conserved in the parasite and its host and that could be responsible for its evasion of the host immune response, we examined the reactivity of six different types of autoantibodies to T. spiralis larvae from muscle. T. spiralis antigens that share epitopes with human autoantigens were identified by assessing the cross-reactivity of autoantibody-containing serum samples with T. spiralis antigens in the absence of specific anti-parasite antibodies. Of the 55 autoantibody-containing human serum samples that we analysed by immunohistological screening, 24 (43.6%) recognised T. spiralis muscle larvae structures such as the subcuticular region, the genital primordium or the midgut. Using Western blots, we demonstrated that the same sera reacted with 24 protein components of T. spiralis muscle larvae excretory-secretory L1 antigens. We found that the human autoantibodies predominantly bound antigens belonging to the TSL1 group; more specifically, the autoantibody-containing sera reacted most frequently with the 53-kDa component. Thus, this protein is a good candidate for further studies of the mechanisms of T. spiralis-mediated immunomodulation.

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Electrophysiological studies were conducted to test the hypothesis that alterations in intestinal epithelial function are associated with immunological responses directed against the enteric parasite, Trichinella spirals. Trichinella antigens were used to challenge sensitized jejunum from infected guinea pigs while monitoring ion transport properties of the tissue in an Ussing-type chamber. The addition of antigen caused increases in transepithelial PD and I(,sc) that were rapidly induced, peaked at 1.5 to 2 min after antigen-challenge, and lasted 10 to 20 min thereafter. The increase in I(,sc) ((DELTA)I(,sc)) varied in a dose-dependent manner until a maximal increase of 40 (mu)A/cm('2) was obtained by the addition of 13 (mu)g of antigenic protein per ml of serosal fluid in the Ussing chamber. Trichinella antigen did not elicit alterations in either PD or I(,sc) of nonimmune tissue. Jejunal tissue from guinea pigs immunized with ovalbumin according to a protocol that stimulated homocytotropic antibody production responded electrically to challenge with ovalbumin but not trichinella antigen. Jejunal tissue which was passively sensitized with immune serum having a passive cutaneous anaphylaxis (PCA) titer of 32 for both IgE and IgG(,1) anti-trichinella anti-bodies responded electrically after exposure to trichinella antigen. Heat treatment of immune serum abolished the anti-trichinella IgE titer as determined by the PCA test but did not decrease either the electrical response of passively sensitized tissue to antigen or the anaphylactically mediated intestinal smooth muscle contractile response to antigen in the classical Schultz-Dale assay. These results strongly support the hypothesis that immunological responses directed against Trichinella Spiralis alter intestinal epithelial function and suggest that immediate hypersensitivity is the immunological basis of the response.^ Additional studies were performed to test the hypothesis that histamine and prostaglandins that are released from mucosal mast cells during IgE or IgG(,1) - antigen stimulated degranulation mediate electrophysiological changes in the intestinal epithelium that are reflective of Cl('-) secretion and mediated intracellularly by cAMP. Pharmacological and biochemical studies were performed to determine the physiological messengers and ionic basis of electrical alterations in small intestinal epithelium of the guinea pig during in vitro anaphylaxis. Results suggest that Cl('-) secretion mediated, in part, by cAMP contributes to antigen-induced jejunal ion transport changes and that histamine and prostaglandins are involved in eliciting epithelial responses. ^

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Examinaram-se 594 diafragmas de roedores capturados na zona portuária de Santos tendo em vista a procura de larvas de Trichinella spiralis. Todos os diafragmas examinados estavam negativos.

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A triquinelose é uma zoonose parasitária que é transmitida aos humanos e animais, através da ingestão de carne crua ou insuficientemente cozinhada, que contenha larvas infectantes de Trichinella spp., sendo actualmente considerada uma doença emergente e/ou re-emergente. O sucesso do parasitismo do nemátode Trichinella spiralis está intimamente ligado com o processo de angiogénese, ou seja, a formação de novos vasos a partir de vasos pré-existentes. Com o objectivo de estudar a actividade angiogénica na nurse cell de T. spiralis, realizaram-se técnicas imunohistoquímicas e imunofluorescentes para o factor de crescimento endotelial vascular (VEGF), molécula-1 de adesão celular endotelial a plaquetas (PECAM-1) e actina músculo liso (AML), em tecido muscular de Rattus rattus infectado com T. spiralis. Através destas técnicas observou-se marcação intensa no infiltrado inflamatório adjacente à nurse cell e também na larva. Já o citoplasma da nurse cell apresentou uma marcação moderada. Este padrão de marcação manteve-se desde os 45 até aos 120 dias após a infecção. A avaliação da densidade vascular (PECAM-1) e da densidade da expressão de células positivas para AML permitiu estabelecer uma correlação positiva entre o aumento da densidade vascular e o número de dias de infecção. Adicionalmente estabeleceu-se uma correlação negativa entre o aumento da densidade de células que expressam AML e o número de dias de infecção. Os resultados indicam uma produção constante de VEGF pela larva, pelo citoplasma da nurse cell e pelo hospedeiro (infiltrado inflamatório), durante todo período de infecção, levando à formação de uma rede vascular crescente (com um aumento médio de 79% face ao controlo), acompanhada de células murais que promovem a sua estabilização (com um aumento médio de 50% face ao controlo) com particular incidência no primeiro período estudado (45 a 55 dias).

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Tesis (Maestro en Ciencias con orientación en Microbiología Médica) UANL, 2014.

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Tesis (Doctor en Ciencias con especialidad en Microbiología) U.A.N.L. Facultad de Ciencias Biológicas, 2007.

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Examinaram-se 594 diafragmas de roedores capturados na zona portuária de Santos tendo em vista a procura de larvas de Trichinella spiralis. Todos os diafragmas examinados estavam negativos.

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In 1948 much interest in trichinosis in arctic regions was aroused, particularly by the findings of Thorborg et al. (1948), who investigated serious outbreaks occurring among the Eskimo of West Greenland during 1947. Consequently, with the founding of the Arctic Health Research Center in the autumn of 1948, a study of trichinosis in Alaska was the first project to be initiated by the Zoonotic Disease Section (formerly Animal-borne Disease Section) of this Center. Field work was begun in January, 1949, and a preliminary note on trichinosis in Alaskan mammals was published by Brandly and Rausch (1950). The subject of trichinosis in arctic regions was reviewed by Connell (1949). The survey to determine the prevalence of T. spiralis in mammals in Alaska was terminated in the spring of 1953; this paper reports the results of this work.

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The hypothesis tested was that rapid rejection of Trichinella spiralis infective larvae from immunized rats following a challenge infection is associated with a local anaphylactic reaction, and this response should be reflected in altered small intestinal motility. The objective was to determine if altered gut smooth muscle function accompanies worm rejection based on the assumption that anaphylaxis in vivo could be detected by changes in intestinal smooth muscle contractile activity (ie. an equivalent of the Schultz-Dale reaction or in vitro anaphylaxis). The aims were to (1) characterize motility changes by monitoring intestinal myoelectric activity in conscious rats during the enteric phase of T. spiralis infection in immunized hosts, (2) detect the onset and magnitude of myoelectric changes caused by challenge infection in immunized rats, (3) determine the parasite stimulus causing changes, and (4) determine the specificity of host response to stimulation. Electrical slow wave frequency, spiking activity, normal interdigestive migrating myoelectric complexes and abnormal migrating action potential complexes were measured. Changes in myoelectric parameters induced by larvae inoculated into the duodenum of immune hosts differed from those associated with primary infection with respect to time of onset, magnitude and duration. Myoelectric changes elicited by live larvae could not be reproduced by inoculation of hosts with dead larvae, larval excretory-secretory products, or by challenge with a heterologous parasite, Eimeria nieschulzi. These results indicate that (1) local anaphylaxis is a component of the initial response to T. spiralis in immune hosts, since the rapid onset of altered smooth muscle function parallels in time the expression of rapid rejection of infective larvae, and (2) an active mucosal penetration attempt by the worm is necessary to elicit this host response. These findings provide evidence that worm rejection is a consequence of, or sequel to, an immediate hypersensitivity reaction elicited when parasites attempt to invade the gut mucosa of immunized hosts. ^

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En el marco de nuestra investigación: “Evaluación cuantitativa de riesgo para la salud pública por trichinelosis debido al consumo de productos elaborados con carne porcina en la provincia de Santa Fe y Córdoba”, financiada por la Universidad Católica de Córdoba, que se encuentra en su último año de ejecución; hemos observando que los establecimientos productores no cuentan con un correcto sistema de Buenas prácticas de manufacturas, diseñado e implementado para prevenir la presencia del parásito Trichinella spiralis. Por ello, surgió la inquietud de realizar un guía con los contenidos apropiados obligatorios por la Legislación Vigente (Ley 18.284, Código Alimentario Argentino, y el Decreto 4238/68, Ley Federal de Carnes), sumado a la experiencia propia de los integrantes en cuanto a la temática y a la idea de transmitir dicha experiencia en forma de contenidos sencillos, didácticos y gráficos, de fácil aplicación, prácticos y accesibles a todos los sectores de la cadena de producción y comercialización (tanto a grandes como a pequeños productores, incluidos los productores familiares) y a la comunidad en general. La enfermedad es endémica en la provincia de Córdoba y el último año se han presentado numerosos casos que alertan sobre su presentación, ya que la misma tiene impacto en salud pública y en la economía de la provincia ya que se trata de un producto con fuerte desarrollo en regiones bien definidas y sensible al turismo.

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Mode of access: Internet.