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Cytometric, morphologic and enzymatic characterisation of haemocytes in Anodonta cygnea

Title
Cytometric, morphologic and enzymatic characterisation of haemocytes in Anodonta cygnea
Type
Article in International Scientific Journal
Year
2002
Authors
Soares da Silva, IM
(Author)
Other
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Ribeiro, J
(Author)
Other
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Valongo, C
(Author)
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Pinto, R
(Author)
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Vilanova, M
(Author)
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Bleher, R
(Author)
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Machado, J
(Author)
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Journal
Vol. 132
Pages: 541-553
ISSN: 1095-6433
Publisher: Elsevier
Scientific classification
FOS: Medical and Health sciences > Basic medicine
Other information
Authenticus ID: P-000-NSB
Abstract (EN): The haemocytes in bivalve mussels are involved in many processes such as lesion repair, shell repair, elimination of small particles and toxic substances. In Anodonta cygnea there are two categories of haemolymph cells, the granulocytes and hyalinocytes. Two groups of cells were identified by flow cytometry and morphological studies: one with larger size and granularity representing 75%, and another group of cells (25%) which were approximately half the size. The cytochemical reactions showed peroxidase activity in the larger cells and a weak prophenoloxidase activity in the smaller cells. These characteristics suggest that the most common haemocytes are granulocytes and hyalinocytes are less common. Enzymatic studies showed clear activities of few enzymes in different compartments of the mantle. Both haemocytes presented significant variations for alpha-manosidase and beta-glucurosidase activities depending on the acid or alkaline pH. Almost all were sensitive to the pH changes, mainly the beta-galactosidase in the haemolymph plasma. On the contrary, the same enzymatic analysis in the extrapallial elements showed more stabilised activities. The simulation of acidic and alkaline condition with the observation of significant morphological and enzymatic activity changes, allow us to speculate some functional role, mainly in the haemolymph elements. The granulocytes may be speculated to have intense involvement in the digestion of small residues with the formation of calcareous stores while the hyalinocytes are more responsible for the elimination of soluble cytotoxic compounds.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 13
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