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1.
Mem. Inst. Oswaldo Cruz ; 107(5): 598-603, Aug. 2012. ilus
Article in English | LILACS | ID: lil-643744

ABSTRACT

In molluscs, internal defence against microorganisms is performed by a single cell type, i.e., the haemocyte or amoebocyte. The origin of these cells in Biomphalaria glabrata was initially thought to be localised within the vasculo-connective tissue. More recently, origin from a single organ, termed the amoebocyte-producing organ (APO), has been postulated based on the occurrence of hyperplasia and mitoses during Schistosoma mansoni infection. The present investigation represents a histological, immuno-histochemical and ultra-structural study of the B. glabrata APO, whereby histological identification was facilitated by means of collecting epithelial basophilic cells. These cells were comprised of single-cell layers that cover a portion of the stroma, which contains many small, round cells and haemolymph sinuses, as well as a small area of the pericardial surface of the reno-pericardial region. On occasion, this epithelial component vaguely resembled the vertebrate juxtaglomerular apparatus, which reinforces its presumed relationship to the kidney. Both in normal and infected molluscs, mitoses were only occasionally found. The present quantitative studies failed to demonstrate the presence of APO cellular hyperplasia, either in normal or schistosome-infected B. glabrata. Conversely, several structural details from the APO region in B. glabrata were found to be consistent with the hypothesis that the APO is a filtration organ, i.e., it is more closely related to the kidney rather than the bone marrow, as has been suggested in the literature.


Subject(s)
Animals , Biomphalaria/cytology , Hemocytes/cytology , Biomphalaria/parasitology , Biomphalaria/ultrastructure , Host-Parasite Interactions/physiology , Immunohistochemistry , Microscopy, Electron , Schistosoma mansoni
2.
Rev. Soc. Bras. Med. Trop ; 42(1): 5-8, Jan.-Feb. 2009. ilus
Article in English | LILACS | ID: lil-507356

ABSTRACT

Dry cough, dyspnea and manifestations of bronchial asthma have recently been observed in patients with acute schistosomiasis. To investigate the type and pathogenesis of these conditions, an experimental mouse model for acute schistosomiasis was used. Forty mice were divided into four groups of ten each: three infected groups and a non-infected control group. The animals were examined 7, 28-35 and 40 days after exposure to cercariae. During the acute phase of the infection (28-35 days), a process of multifocal interstitial pneumonitis involving the peribronchial, peribronchiolar and subpleural tissues was found. This process was not seen during the other phases of the infection. Indirect immunofluorescence failed to demonstrate the presence of schistosomal antigens in the acute-phase lesions. The pneumonitis was attributed to products (inflammatory mediators) from acute-phase periovular necrotic-inflammatory lesions in the liver that were transported to the lungs by the bloodstream.


Recentemente tem sido observada a presença de tosse seca, dispnéia, e manifestações de asma brônquica em pacientes com esquistossomose aguda. Para se investigar sobre o tipo e patogenia de tais lesões foi utilizado um modelo experimental de esquistossomose aguda no camundongo. Quarenta animais foram divididos em quatro grupos de 10 animais cada, 3 infectados e um grupo controle não-infectados. Os exames foram feitos após 7, 28-35, e 40 dias após a exposição cercariana. Na fase aguda da infecção (28-35 dias), encontrou-se um processo de pneumonite intersticial multifocal, envolvendo os tecidos peribrônquicos, peribronquiolares e subpleural, processo que esteve ausente nas outras fases examinadas. Não foi possível a demonstração de antígenos do Schistosoma. mansoni nas lesões da fase aguda, através da técnica de imuno-fluorescência indireta. A pneumonite foi atribuída a produtos (mediadores inflamatórios) gerados nas lesões hepáticas necro-inflamatórias periovulares da fase aguda, e transportados para os pulmões pela circulação sanguínea.


Subject(s)
Animals , Female , Male , Mice , Lung Diseases, Interstitial/parasitology , Schistosomiasis mansoni , Acute Disease , Disease Models, Animal
3.
Mem. Inst. Oswaldo Cruz ; 102(5): 651-653, Aug. 2007. ilus
Article in English | LILACS | ID: lil-458632

ABSTRACT

Ki-67 is a protein expressed in the nucleus of several species during cell-division, being absent during the GO resting phase of the cellular cycle. During attempts to disclose mitosis in the so-called " amebocyte-producing organ " in Biomphalaria glabrata infected with Schistosoma mansoni, the parasite multiplying forms appeared strongly marked for Ki-67, while the snail tissues were completely negative. These data are worth registering to complement general data on Ki-67, and to help future studies on the relationship of the parasite and of its intermediate host.


Subject(s)
Animals , Mice , Biomphalaria/cytology , /metabolism , Schistosoma mansoni/physiology , Biomphalaria/parasitology , Hemocytes/chemistry , Host-Parasite Interactions/physiology , Immunohistochemistry , Mitotic Index , Staining and Labeling
4.
Mem. Inst. Oswaldo Cruz ; 101(supl.1): 213-218, Oct. 2006. ilus, tab
Article in English | LILACS | ID: lil-441249

ABSTRACT

A histologic, morphometric and ultrastructural study performed on Biomphalaria glabrata submitted to infection with Schistosoma mansoni miracidia failed to provide significant evidences that the so-called amebocyte-producing organ (APO) is really the central organ for hemocyte production. In infected snails no general reactive changes appeared in the APO, the mitoses were seen only occasionally, and the possibility of cellular hyperplasia was ruled out by morphometric measurements. Under the electron microscope the APO cells presented an essentially epithelial structure, without features indicative of transition toward hemocytes. On the other hand, the present findings pointed to a multicentric origin for the mollusck hemocytes, as earlier studies had indicated. Dense foci of hemocyte collections appeared sometimes around disintegrating sporocysts and cercariae in several organs and tissues of the infected snails, including a curious accumulation of such cells inside the ventricular cavity of the heart. In the heart and other sites, features suggestive of transformation of vascular space endothelial lining cells into hemocytes were apparent. To some extent, the postulated multicentric origin for B. glabrata hemocytes recapitulates earlier embryologic findings in vertebrates, when mesenchymal vascular spaces generate the circulating and phagocytic blood cells.


Subject(s)
Animals , Biomphalaria/parasitology , Hemocytes/cytology , Schistosoma mansoni/physiology , Blood Cell Count , Biomphalaria/ultrastructure , Cell Movement , Hemocytes/physiology , Host-Parasite Interactions/physiology , Microscopy, Electron , Phagocytosis
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