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1.
Biocell ; 31(2): 205-211, ago. 2007. ilus
Article in English | LILACS | ID: lil-491563

ABSTRACT

Although insects lack the adaptive immune response of the mammalians, they manifest effective innate immune responses, which include both cellular and humoral components. Cellular responses are mediated by hemocytes, and humoral responses include the activation of proteolytic cascades that initiate many events, including NO production. In mammals, nitric oxide synthases (NOSs) are also present in the endothelium, the brain, the adrenal glands, and the platelets. Studies on the distribution of NO-producing systems in invertebrates have revealed functional similarities between NOS in this group and vertebrates. We attempted to localize NOS activity in tissues of naïve (UIL), yeast-injected (YIL), and saline-injected (SIL) larvae of the blowfly Chrysomya megacephala, using the NADPH diaphorase technique. Our findings revealed similar levels of NOS activity in muscle, fat body, Malpighian tubule, gut, and brain, suggesting that NO synthesis may not be involved in the immune response of these larval systems. These results were compared to many studies that recorded the involvement of NO in various physiological functions of insects.


Subject(s)
Animals , Diptera/enzymology , Diptera/immunology , Diptera/metabolism , Nitric Oxide Synthase/metabolism , Saccharomyces cerevisiae/immunology , Larva/enzymology , Larva/immunology , Larva/metabolism , Tissue Distribution
2.
Biocell ; 27(2): 197-203, Aug. 2003.
Article in English | LILACS | ID: lil-384243

ABSTRACT

The defense reactions against biological (Histoplasma capsulatum and Escherichia coli) and non-biological materials (China ink and nylon thread) were tested in vivo in third instar larvae of Dermatobia hominis. The cellular defense performed by larval hemocytes was observed under electron microscopy. China ink particles were phagocytosed by granular cells 5 h after injection. E. coli cells were internalized by granular cells as early as 5 min after injection and totally cleared 180 min post-injection, when many hemocytes appeared disintegrated and others in process of recovering. H. capsulatum yeasts provoked, 24 h after being injected, the beginning of nodule formation. Nylon thread was encapsulated 24 h after the introduction into the hemocoel. Our results suggest that granular cells were the phagocytic cells and also the responsible for the triggering of nodule and capsule formation. In the presence of yeasts cells and nylon thread, they released their granules that chemotactically attracted the plasmatocytes that on their turn, flattened to surround and isolate the foreign material.


Subject(s)
Diptera/immunology , Phagocytes/immunology , Hemocytes/immunology , Immunity, Cellular/physiology , Larva/immunology , Diptera/microbiology , Escherichia coli/immunology , Phagocytes/ultrastructure , Phagocytosis/immunology , Hemocytes/ultrastructure , Histoplasma/immunology , Ink , Larva/microbiology , Microscopy, Electron , Chemotaxis/immunology , Reaction Time/immunology
3.
Mem. Inst. Oswaldo Cruz ; 87(3): 375-80, jul.-set. 1992. ilus
Article in English | LILACS | ID: lil-116337

ABSTRACT

We studied the ultrastructural aspects of pre-pupae and pupae ovaries of Dermatobia hominis. Physiological degeneration of gonial cells was observed: (a) after the ovarioles differentiation, in the oogonia residing in the apical region of the ovary; (b) at the beginning of vitellogenesis, in the cystoblasts close to the terminal filament. The significance of gonial cell degeneration was correlated with the physiological changes wich occur in the ovary during development


Subject(s)
Animals , Diptera , Ovary/ultrastructure
4.
Mem. Inst. Oswaldo Cruz ; 85(3): 305-13, jul.-set. 1990. ilus
Article in English | LILACS | ID: lil-93593

ABSTRACT

The ultrastructure and distribution of gonial and somatic cells in the ovary of Dermatobia hominis was studied during the 3rd larval instar. In larvae weighing between 400 and 500 mg, the ovary is partially divided into basal and apical regions by oblong somatic cells that penetrate from the periphery; these cells show ovoid nucleus and cytoplasm full of microtubules. In both regions, gonial cells with regular outlines, large nucleus and low electron-density cytoplasm are scattered among the interstitial somatic cells. These later cells have small nucleus and electrodense cytoplasm. Clear somatic cells with small nucleus and cytoplasm of very low electron-density are restrict to the apical region of the gonad. Degenerating interstitial somatic cells are seen in the basal portion close to the ovary peduncle. During all this larval period the morphological features of the ovary remain almost the same. At the end of the period there is a gradual deposition of glycogen in the cytoplasm of the somatic cells, increase in the number and density of their mitochondria plus nuclear modification as membrane wrinkling and chromatin condensation in masses


Subject(s)
Animals , Female , Diptera/ultrastructure , Ovary/ultrastructure , Brazil , Diptera/growth & development , Larva/ultrastructure
5.
Mem. Inst. Oswaldo Cruz ; 85(3): 315-20, jul.-set. 1990. ilus
Article in English | LILACS | ID: lil-93594

ABSTRACT

Ovaries up to the 8th day pupae of Dermatobia hominis were studied by transmission electron microscopy. Ovarioles were recognized in ovaries of 4-day old pre-pupae, surrounded by a thin tunica propria of acellular fibrilar material similar in structure to the internal portion of the external tunica of the ovary. There is continuity of the tunica propria and the ovarian tunica, indicating that the former structure originates from the tunica externa. In 5 to 7-day pupae the interstitial somatic cells from the apical region of the ovary, close to the ovarioles, show delicate filamentous material inside of their rough endoplasmic reticulum cisternae; similar material is seem among these cells. Our observations suggest that interstitial somatic cells do not originate the tunica propria but contribute to its final composition


Subject(s)
Animals , Female , Diptera/ultrastructure , Ovary/ultrastructure , Endoplasmic Reticulum/ultrastructure
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