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L Filgueira

Publications and source records attributed to L Filgueira.

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Binding and internalization of gold-labeled IFN-gamma by human Raji cells.

Binding and internalization of gold-labeled IFN-gamma (IFN-gamma/Au) by human Raji cells was examined by scanning and transmission electron microscopy. For SEM, visualization of gold particles was enhanced by the silver enhancement technique and by backscattered electron imaging. Binding studies revealed distinct labeling of microvilli-bearing cells after incubation with at least 10 U/ml IFN-gamma/Au, whereas cells with a smooth surface showed substantially lower labeling. After application of higher IFN-gamma (greater than 200 U/ml) concentrations, labeling intensity remained constant, which is consistent with the concentration of radiolabeled IFN-gamma required for saturating receptors on Raji cells. The specificity of IFN-gamma/Au binding was demonstrated by complete displacement with unlabeled IFN-gamma and by partial inhibition of labeling with a monoclonal anti-IFN-gamma R antibody. Thus, colloidal gold represents a valuable tag for visualizing the interaction of IFN-gamma with its receptor. Internalization of IFN-gamma/Au was initiated by accumulation of gold particles in coated pits which occurred within 10 min after warming of Raji cells. Additional incubation at 37 degrees C (up to 2 h) led to the appearance of gold particles in endocytic vesicles and lysosomes. Thus, our studies indicate that IFN-gamma/Au enters the Raji cells via the typical endocytotic pathway.

Biomarkers

Effects of platelet activating factor (PAF) on human citrated whole blood.

Effects of PAF on citrated whole blood (C-WB) from 38 healthy donors have been studied by impedance aggregometry and by morphologic examination of blood cells using scanning and transmission electron microscopy. In the aggregometer, the C-WB samples showed distinct differences in PAF sensitivity. C-WB specimens from high responders (= 15 donors) displayed a dose-related response to PAF stimulation but those from low responders (= 23 donors) did not indicate an impedance alteration even after the addition of high PAF doses (greater than or equal to 10(-6) mol/l). Morphologic studies revealed shape-changed platelets and primary aggregates in all C-WB samples, whereas secondary aggregates occurred only in C-WB specimens from high responders. Monocytes and neutrophil PMNs showed typical morphologic alterations which were observed in PAF-stimulated C-WB samples from all donors. Both cell types appeared polarized in shape and exhibited large vacuoles in the cytoplasm after PAF activation. In addition, monocytes came into close contact with shape-changed platelets as well as primary and secondary aggregates, whereas PMNs had no special relationship to single or aggregated platelets. In summary, our study indicates that PAF acts on different cell types in C-WB including platelets, monocytes and PMNs. The sensitivity of platelets against PAF stimulation appears to vary between different donors and in certain cases seems to be limited to the formation of primary aggregates.

Blood

[Thymic cysts].

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Adult