105 resultados para entamoeba histolytica


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Tesis (Maestría en Ciencias) UANL, 2010.

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Tesis (Maestro en Ciencias) UANL, 2012.

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Tesis (Maestría en Ciencias con Orientación en Farmacia) UANL, 2012.

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

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Tesis (Doctorado en Ciencias con Especialidad en Microbiología) UANL

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Tesis ( Doctorado en Ciencias en el Área de Microbiología) UANL

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Tesis ( Doctorado en Ciencias con Especialidad en Biotecnología) UANL

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Tesis ( Doctorado en Ciencias con Especialidad en Microbiología) UANL

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Tesis (Doctorado en Ciencias con Especialidad en Microbiología Médica) UANL

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

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Tesis (Doctor en Ciencias con acentuación en Química de Productos Naturales) UANL, 2014.

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Amebíase é a infecção no homem causada pelo protozoário Entamoeba histolytica, apresentam quadros sem manifestações clínicas até graves de elevada morbimortalidade e sendo responsável por milhões de casos de disenteria e abscessos hepáticos a cada ano. Os dados epidemiológicos da amebíase no Brasil estão sendo reavaliados desde que a Entamoeba histolytica (patogênica) foi considerada espécie distinta da Entamoeba dispar (não patogênica). Neste estudo, realizou- se o diagnóstico da amebíase por meio de métodos parasitológicos, pesquisa de antígenos e método molecular em amostras fecais de pacientes residentes no município de Juruti, Pará, Brasil. Foram analisadas 188 amostras, com positividade em 28 (14,89 %) no método imunológico, que foi considerado como padrão ouro. A infecção por E. histolytica foi maior no grupo etário acima de 14 anos (8,51%) que no grupo de 0-14 anos (6,38%), porém sem significância estatística (p > 0,05). Houve discordância nos resultados dos métodos ELISA e coproscópico em 41 amostras (21,81%), com maior número de positivos no teste imunoenzimático. O diagnóstico pelo método de PCR apresentou positividade de 5,88% (3/51), resultado inferior ao observado na microscopia (7,84% - 4/51) e teste de ELISA (11,76% - 6/51). Assim, nossos resultados sugerem que a amebíase intestinal é um problema de saúde pública no município de Juruti.

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Introduction: Entamoeba histolytica infections were investigated in residents of the Ariquemes and Monte Negro municipalities in Rondônia State, Brazil. Methods: Stool samples of 216 individuals were processed by the spontaneous sedimentation method and analyzed by microscopy for detection of the E. histolytica/E. dispar complex, followed by the immunoassay method using an enzyme-linked immunosorbent assay-based kit for the E. histolytica stool antigen. Results: E. histolytica/E. dispar cysts were present in 61% (50/82) and 44% (59/134) of the samples from Ariquemes and Monte Negro respectively, with a significant difference in the occurrence of infection between the two populations [p < 0.05; χ2 = 5.2; odds ratio = 2.0 (1.1 - 3.6)]. The E. histolytica antigen detection rate was 36.6% (30/82) for stool samples from Ariquemes, and 19.4% (26/134) for stool taken from the residents of Monte Negro. The rate of the occurrence of amoebiasis was significantly higher in the population from Ariquemes [p < 0.05; χ2= 7.8; odds ratio = 2.4 (1.2 - 4.7)]. Discussion: Due to the high occurrence of E. histolytica infected residents diagnosed in the region and the unavailability in local clinics of a test to distinguish between the two Entamoeba species, physicians should consider treating E. histolytica/E.dispar infections. Conclusion: The results indicate that E. histolytica infection is highly endemic in the studied areas.

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Entamoeba histolytica is a single cell eukaryote that is the etiologic agent of amoebic colitis. Core promoter elements of E. histolytica protein encoding genes include a TATA-like sequence (GTATTTAAAG/C) at −30, a novel element designated GAAC (GAACT) that has a variable location between TATA and the site of transcription initiation, and a putative initiator (Inr) element (AAAAATTCA) overlying the site of transcription initiation. The presence of three separate conserved sequences in a eukaryotic core promoter is unprecedented and prompted examination of their roles in regulating transcription initiation. Alterations of all three regions in the hgl5 gene decreased reporter gene activity with the greatest effect seen by mutation of the GAAC element. Positional analysis of the TATA box demonstrated that transcription initiated consistently 30–31 bases downstream of the TATA region. Mutation of either the TATA or GAAC elements resulted in the appearance of new transcription start sites upstream of +1 in the promoter of the hgl5 gene. Mutation of the Inr element resulted in no change in the site of transcription initiation; however, in the presence of a mutated TATA and GAAC regions, the Inr element controlled the site of transcription initiation. We conclude that all three elements play a role in determining the site of transcription initiation. The variable position of the GAAC element relative to the site of transcription initiation, and the multiple transcription initiations that resulted from its mutation, indicate that the GAAC element has an important and apparently novel role in transcriptional control in E. histolytica.

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Several changes in cell morphology take place during the capping of surface receptors in Entamoeba histolytica. The amoebae develop the uroid, an appendage formed by membrane invaginations, which accumulates ligand–receptor complexes resulting from the capping process. Membrane shedding is particularly active in the uroid region and leads to the elimination of accumulated ligands. This appendage has been postulated to participate in parasitic defense mechanisms against the host immune response, because it eliminates complement and specific antibodies bound to the amoeba surface. The involvement of myosin II in the capping process of surface receptors has been suggested by experiments showing that drugs that affect myosin II heavy-chain phosphorylation prevent this activity. To understand the role of this mechanoenzyme in surface receptor capping, a myosin II dominant negative strain was constructed. This mutant is the first genetically engineered cytoskeleton-deficient strain of E. histolytica. It was obtained by overexpressing the light meromyosin domain, which is essential for myosin II filament formation. E. histolytica overexpressing light meromyosin domain displayed a myosin II null phenotype characterized by abnormal movement, failure to form the uroid, and failure to undergo the capping process after treatment with concanavalin A. In addition, the amoebic cytotoxic capacities of the transfectants on human colon cells was dramatically reduced, indicating a role for cytoskeleton in parasite pathogenicity.