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1.
Ciênc. rural ; 47(5): e20160675, 2017. tab, graf
Article in English | LILACS | ID: biblio-839798

ABSTRACT

ABSTRACT: Neuroblastic tumors can originate from the central neuraxis, olfactory epithelium, adrenal medullary region or autonomous system. Ganglioneuroblastoma are a type of neuroblastic tumor, with very few case descriptions in animals. Diagnosis of facial nerve ganglioneuroblastoma was made in a feline leukemia virus-positive 11-month-old cat. The cat had hyporexia, left head tilt, depressed mental state, horizontal nystagmus, inability to retract the pinched left lip, anisocoria, ptosis, and absence of the menace reflex. Gross necropsy showed a mass at the left facial nerve root region. Histological examination of this mass showed neoplastic proliferation of neuroblasts arranged in a cohesive pattern and mature ganglion cells. Ganglion cells were positive for neurofilament, neuron-specific enolase, S100, and glial fibrillary acidic protein by immunohistochemistry, while neuroblasts were positive for vimentin, S100, neuron-specific enolase and feline leukemia virus.


RESUMO: Tumores neuroblásticos podem se originar do neuraxis central, do epitélio olfativo, região medular da adrenal ou do sistema autônomo. O ganglioneuroblastoma é um tipo desses tumores, com raras descrições em animais. O diagnóstico de ganglioneuroblastoma de nervo facial foi feito em um gato de 11 meses de idade, sorologicamente positivo para o vírus da leucemia felina. O gato tinha hiporexia, inclinação de cabeça para o lado esquerdo, estado mental deprimido, nistagmo horizontal, incapacidade em retrair o lábio esquerdo quando pinçado, anisocoria, ptose e ausência do reflexo de ameaça. Na necropsia visualizou-se uma massa na região da raiz do nervo facial esquerdo. O exame histológico mostrou proliferação neoplásica de neuroblastos arranjados de maneira coesa, e células ganglionares maduras. As células ganglionares foram imunorreativas na imuno-histoquímica para neurofilamento, enolase neurônio específica, S-100 e proteína ácida glial fibrilar. Enquanto os neuroblastos foram positivos para vimentina, S-100, enolase neurônio específica e vírus da leucemia felina.

2.
PLoS Negl Trop Dis ; 10(12): e0005152, 2016 12.
Article in English | MEDLINE | ID: mdl-27911903

ABSTRACT

The Rhipicephalus microplus tick is a notorious blood-feeding ectoparasite of livestock, especially cattle, responsible for massive losses in animal production. It is the main vector for transmission of pathogenic bacteria and parasites, including Babesia bovis, an intraerythrocytic apicomplexan protozoan parasite responsible for bovine Babesiosis. This study describes the development and testing of a live B. bovis vaccine expressing the protective tick antigen glutathione-S-transferase from Haemaphysalis longicornis (HlGST). The B. bovis S74-T3B parasites were electroporated with a plasmid containing the bidirectional Ef-1α (elongation factor 1 alpha) promoter of B. bovis controlling expression of two independent genes, the selectable marker GFP-BSD (green fluorescent protein-blasticidin deaminase), and HlGST fused to the MSA-1 (merozoite surface antigen 1) signal peptide from B. bovis. Electroporation followed by blasticidin selection resulted in the emergence of a mixed B. bovis transfected line (termed HlGST) in in vitro cultures, containing parasites with distinct patterns of insertion of both exogenous genes, either in or outside the Ef-1α locus. A B. bovis clonal line termed HlGST-Cln expressing intracellular GFP and HlGST in the surface of merozoites was then derived from the mixed parasite line HlGST using a fluorescent activated cell sorter. Two independent calf immunization trials were performed via intravenous inoculation of the HlGST-Cln and a previously described control consisting of an irrelevant transfected clonal line of B. bovis designated GFP-Cln. The control GFP-Cln line contains a copy of the GFP-BSD gene inserted into the Ef-1α locus of B. bovis in an identical fashion as the HIGST-Cln parasites. All animals inoculated with the HlGST-Cln and GFP-Cln transfected parasites developed mild babesiosis. Tick egg fertility and fully engorged female tick weight was reduced significantly in R. microplus feeding on HlGST-Cln-immunized calves. Collectively, these data show the efficacy of a transfected HlGST-Cln B. bovis parasite to induce detectable anti-glutathione-S-transferase antibodies and a reduction in tick size and fecundity of R. microplus feeding in experimentally inoculated animals.


Subject(s)
Arthropod Proteins/genetics , Babesia bovis/genetics , Babesiosis/immunology , Cattle Diseases/prevention & control , Glutathione Transferase/genetics , Ixodidae/enzymology , Animals , Arthropod Proteins/immunology , Babesia bovis/immunology , Babesiosis/parasitology , Babesiosis/prevention & control , Babesiosis/transmission , Cattle , Cattle Diseases/immunology , Cattle Diseases/parasitology , Female , Glutathione Transferase/immunology , Green Fluorescent Proteins/genetics , Male , Rhipicephalus/parasitology , Transfection , Vaccines/genetics , Vaccines/immunology
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