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1.
Tsitologiia ; 56(2): 142-51, 2014.
Artigo em Russo | MEDLINE | ID: mdl-25509154

RESUMO

In the hemolymph of surgical maggots Lucilia sericata seven types of hemocytes were revealed. These are prohemocytes, stable and unstable hyaline cells, thrombocytoids, spindle cells, larval plasmatocytes and plasmatocytes I-IV, which represent sequential stages of one cell line differentiation. In contrast to Calliphora hyaline cells, this type of hemocytes in cropemptying larvae of Lucilia is elongated or vermiform in shape. Hyaline cells may be transformed to both prothrombocytoids and unstable prophenoloxydase-producing cells. Appearance and differentiation of each hemocyte type is rigidly linked with a definite stage of development. In cellular defense the main role play juvenile plasmatocytes, plasmatocytes II and III and trombocytoides. Juvenile plasmatocytes are the most active ones. After charcoal particles injection they were instantly surrounded by the thick envelope of adhered alien particles and form uniform morules aggregations or conglomerates together with thrombocytoidal agglutinates. Plasmatocytes II and III during the early stages of differentiation may be involved in adhesion and phagocytosis of alien particles and during the last stages in the engulfing of apoptose desintegrated tissues. Thus the cellular defense reaction is assisted by 4 hemocyte types--prophenoloxydase-unstable hyaline cells, thrombocytoids, juvenile plasmatocytes and plasmatocytes I-IV.


Assuntos
Dípteros/imunologia , Hemócitos/imunologia , Hemolinfa/citologia , Sistema Imunitário/citologia , Animais , Catecol Oxidase/imunologia , Catecol Oxidase/metabolismo , Carvão Vegetal , Dípteros/citologia , Dípteros/crescimento & desenvolvimento , Precursores Enzimáticos/imunologia , Precursores Enzimáticos/metabolismo , Hemócitos/ultraestrutura , Hemolinfa/imunologia , Humanos , Sistema Imunitário/fisiologia , Larva/citologia , Larva/crescimento & desenvolvimento , Larva/imunologia , Procedimentos Cirúrgicos Minimamente Invasivos , Fagocitose
2.
Tsitologiia ; 56(2): 152-64, 2014.
Artigo em Russo | MEDLINE | ID: mdl-25509155

RESUMO

The hemocytic count and defense reaction within 4 families of higher Diptera: Tabanidae, Syrphidae, Muscidae and Sarcophagidae, whose larvae inhabit bacterially aggressive environment, were investigated. The least hemocytes types (3) were revealed in Tabanidae and Syrphidae larvae--prohemocytes, plasmatocytes and prophenoloxydase-containing unstable hyaline cells (oenocytoids). In Sarcophaga crassipalpis and Musca domestica stable hyaline cells and thrombocytoids or podocytoid-like cells can be added to this set. At the time of pupariation in Sarcophaga, new generation of prohemocytes is segregated into the hemolymph, which form small round or spindle-shaped hyaline cells. So, the number of plasmatocyte types in Sarcophaga increase to six. Typical to Calliphoridae juvenile plasmatocytes in the members of investigated families are absent. Among the one hemocyte type morphology also can vary, especially in unstable prophenoloxydase hyaline cells. In Drosophila there are crystal cells containing in the cytoplasm paracrystalloidal inclusions. In Calliphoridae there are big hyaline cells with homogenous cytoplasm producing circumferential bubbles. Both in Sarcophaga and Tabanidae they contain in their cytoplasm big globules. However in Sarcophaga they rapidly disintegrate, while in Tabanidae are maintained unchanged during hours. In Muscidae and Syrphidae prophenoloxydase extrusion occurs very early and these cells obtain pycnotic nuclei and very liquid cytoplasm with strings of granules. Thrombocytoids in Musca larvae are represented by big flattened anucleated irregular cytoplasm and "naked" nuclei and cytoplasmic fragments often with fan-like projections. Plasmatocytes in all species studied are the cells with pronounced phylopodies. In larvae they contain cytoplasmic catabolic inclusions and in pupa--ragments of apoptotic tissues. Clearance of hemolymph from alien particles in Sarcophagidae and Muscidae occur by thrombocytoides, while in Tabanidae by plasmatocyte nodulation. A differing case is Syrphidae whe-e charcoal injection produce depletion of hemolymph both from particles and all types of hemocytes. So the specimen of different higher Diptera families can use different schemes of cellular defense reaction.


Assuntos
Dípteros/imunologia , Hemócitos/imunologia , Hemolinfa/citologia , Sistema Imunitário/citologia , Animais , Catecol Oxidase/imunologia , Catecol Oxidase/metabolismo , Núcleo Celular/ultraestrutura , Carvão Vegetal , Citoplasma/ultraestrutura , Dípteros/citologia , Dípteros/crescimento & desenvolvimento , Precursores Enzimáticos/imunologia , Precursores Enzimáticos/metabolismo , Hemócitos/ultraestrutura , Hemolinfa/imunologia , Sistema Imunitário/fisiologia , Larva/citologia , Larva/crescimento & desenvolvimento , Larva/imunologia , Fagocitose , Especificidade da Espécie
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