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Summary The in vitro influence of interferon (IFN) on various functions of human neutrophilic granulocytes was investigated. It was observed that the attachment and engulfment of opsonized yeast particles by human neutrophilic granulocytes were enhanced after preincubation in vitro with IFN for 30 min. The same result was obtained whether the particles were opsonized with fresh normal serum (complement) or with specific antibodies. However, after incubation of the granulocytes with IFN for 3 h the phagocytosis rate was somewhat decreased. Nitroblue tetrazolium (NBT) reduction by resting granulocytes was slightly, although not significantly, increased by preincubation with IFN for 30 min, but their NBT reduction during phagocytosis of E. coli was significantly increased. No major effects of preincubation with IFN were observed on spontaneous or random migration of granulocytes.  相似文献   

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Effect of interferon on human neutrophilic granulocytes   总被引:1,自引:0,他引:1  
The in vitro influence of interferon (IFN) on various functions of human neutrophilic granulocytes was investigated. It was observed that the attachment and engulfment of opsonized yeast particles by human neutrophilic granulocytes were enhanced after preincubation in vitro with IFN for 30 min. The same result was obtained whether the particles were opsonized with fresh normal serum (complement) or with specific antibodies. However, after incubation of the granulocytes with IFN for 3 h the phagocytosis rate was somewhat decreased. Nitroblue tetrazolium (NBT) reduction by resting granulocytes was slightly, although not significantly, increased by preincubation with IFN for 30 min, but their NBT reduction during phagocytosis of E. coli was significantly increased. No major effects of preincubation with IFN were observed on spontaneous or random migration of granulocytes.  相似文献   

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Kinetics of neutrophilic granulocytes in the blood of rats   总被引:1,自引:0,他引:1  
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Ultrastructural and morphometric characteristics of neutrophilic granulocytes (NG) of blood were investigated. It was found that every cell size fraction distinguished by its own morphologic type of NG and its specified quantitative and qualitative characteristic of primary granules. There is a close interrelation between morphometric and ultrastructural characteristics, and such parameters as perimeter, area of NG, and area of primary granules can be considered as criteria of the NG functional state.  相似文献   

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Confocal Raman micro-spectroscopy has been applied to investigate the activation process of single, living neutrophilic granulocytes. Both resting cells as well as activated cells were measured. The activation of cells was performed with phorbol-12-myristate-13-acetate activator and Escherichia Coli bacteria. Raman microspectroscopy combines a high spatial resolution inside a single, living cell with detailed material information. Using this approach it can be concluded that activation of the cells with phorbol-12-myristate-13-acetate causes a change in the redox state of cytochrome b558. This protein is a part of the NADPH-oxidase complex that neutrophilic granulocytes employ to generate O2 , superoxide anion. Additionally a change in the redox state of myeloperoxidase can be observed. Myeloperoxidase is known to react with O2 . Activation of the cells with bacteria gives rise to corresponding changes in the Raman spectra. From this single cell study it can be concluded that the enzymes cytochrome b558 and myeloperoxidase are present inside the cytoplasm of the living cell, while participating in the redox processes. Activation causes an intra-cellular release of oxygen metabolites. Activation with bacteria of neutrophilic granulocytes from a patient with chronic granulomatous disease, that contain no cytochrome b558, led to typical changes in the redox state of myeloperoxidase. This indicates that in the bacterium/neutrophilic granulocyte system oxygen metabolites are generated that are capable of reacting with MPO. Received: 1 September 1998 / Revised version: 20 February 1998 / Accepted: 22 February 1998  相似文献   

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With (resonance) Raman microscospectroscopy, it is possible to investigate the chemical constitution of a very small volume (0.5 fl) in a living cell. We have measured resonance Raman spectra in the cytoplasm of living normal, myeloperoxidase (MPO)-deficient, and cytochrome b558-deficient neutrophils and in isolated specific and azurophilic granule fractions, using an excitation wavelength of 413.1 nm. Similar experiments were performed after reduction of the redox centers by the addition of sodium dithionite. The specific and azurophilic granules in both redox states appeared to have clearly distinguishable Raman spectra when exciting at a wavelength of 413.1 nm. The azurophilic granules and the cytochrome b558-deficient neutrophils showed Raman spectra similar to that of the isolated MPO. The spectra of the specific granules and the MPO-deficient neutrophils corresponded very well to published cytochrome b558 spectra. The resonance Raman spectrum of the cytoplasmic region of normal neutrophilic granulocytes could be fitted with a combination of the spectra of the specific and azurophilic granules, which shows that the Raman signal of neutrophilic granulocytes mainly originates from MPO and cytochrome b558, at an excitation wavelength of 413.1 nm.  相似文献   

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Some physico-chemical properties of human and pig lactoferrins from milk and neutrophilic granulocytes were compared. It was shown that the lactoferrins from different cell and tissue sources of the same species (humans or pigs) are identical in terms of electrophoretic mobility, molecular weight, iron-binding capacity, absorbance spectra, amino acid and sugar compositions and peptide maps. Human and pig lactoferrins show a high degree of structural homology (approximately 50%), but are immunochemically different.  相似文献   

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The five principal components of human hemoglobin (Ala, Alb, Alc, Ao, and A2) have been isolated by column chromatography and by preparative isoelectric focusing in gels. The isoelectric points and a number of kinetic parameters have been determined for each hemoglobin. The greatest kinetic differences are found in the binding of CO to the deoxy conformation. At pH 7, A0 and A2 are nearly identical in their overall reaction with CO, whereas the initial lag phase characteristic of crude hemolysate and A0 is greatly reduced in Ala and Alc and is essentially absent in Alb. The general effect of p-mercuribenzoate bindind on CO association is to magnify kinetic differences among the hemoglobins, diminish the initial lag phase, and increase the overall rate of CO binding. Hemoglobin Ala is anomalous in that the overall CO binding rate actually decreases after reaction with the mercurial. In terms of an Adair model with four association constants the rate constant for the binding of the first molecule of CO (1l') showed the greatest variation among the five hemoglobins, with A0 having the smallest constant, and Alb the largest. For the native hemoglobins, 1l' for Alb was more than twice that for A0; for the mercurated hemoglobins, the difference was greater than threefold. Raising the pH form 7 to 8 increases 1l' for all hemoglobins, but Ala is anomalous in having a slower overall rate for CO binding at the higher pH. At pH 9, the time course of CO binding is biphasic for all hemoglobins, with A0, the fastest, and Ala, the slowest, differing by nearly threefold in rate. The equilibrium constant for the tetramer-dimer equilibrium was determined by flash photolysis. The largest dissociation constant occurs for Ala and is 4.4 times that for A0, and 5.6 times that for Alc, the least dissociated of the hemoglobins. The overall oxygen dissociation reaction is biphasic for Ala and Alb, with the two phases differing by a factor of 5; the dissociation reactions for the other three hemoglobins appear essentially monophasic. The kinetics of dissociation of the first oxygen molecule from oxyhemoglobin are very similar for all five hemoglobins, as are the association kinetics for CN-minus and N3-minus binding to the five methemoglobins.  相似文献   

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