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941.
Spontaneous iron overload in alpha-thalassemic mice   总被引:1,自引:0,他引:1  
Van Wyck  DB; Popp  RA; Foxley  J; Witte  MH; Witte  CL; Crosby  WH 《Blood》1984,64(1):263-266
Because clinical disorders of spontaneous iron overload have no experimental counterpart, we studied iron distribution (atomic absorption analysis) and intestinal absorption (59Fe) in mice with hereditary alpha-thalassemia. Mice heterozygous for a radiation-induced alpha-Hb gene deletion exhibit a mild hemolytic anemia, like the human condition, with microcytosis, reticulocytosis, splenomegaly, and chemical evidence of defective alpha-chain synthesis. Quantitative iron determination showed that total iron content in spleen, liver, and kidney, but not heart or lung, of adult alpha-thalassemic mice was greater (P less than .05) than that in unaffected littermates. Iron concentration was also increased in liver (P less than .001), spleen (P = .025), kidney (P = .058), and heart (P = .010); in general, the greater the iron concentration in liver, the greater that in spleen (r = .39, P = .009), kidney (r = .70, P less than .001), and heart (r = .46, P less than .001). In mice examined 8 months postoperatively, splenectomy, as compared to sham operation, significantly raised iron content in extrasplenic tissues, but did not affect total body iron. At 10-11 weeks of age, but no longer at 12-14 weeks, thalassemic mice showed higher rates of iron absorption than age-matched controls. Thus, alpha-thalassemic mice display an early occurring iron absorption defect, leading to a modest, sustained, nonprogressive iron overload, and thereby represent a valuable model for exploring disorders of iron homeostasis.  相似文献   
942.
Phosphotyrosine phosphatases (PTPases) regulate cellular metabolic activation by reversing the effects of tyrosine kinases activated earlier in intracellular signaling pathways. We coupled fluorescence- activated cell sorter analysis using anti-CD45 monoclonal antibody with direct measurements of enzyme activity in resolved subcellular fractions to define mechanisms that potentially regulate the availability and activity of CD45-PTPase on neutrophil plasma membranes. Neutrophils in freshly obtained blood as well as neutrophils freshly isolated from blood were found to possess detectable levels of plasma membrane CD45 as assessed by immunofluorescence. However, plasma membranes from these cells were essentially devoid of PTPase catalytic activity, which was largely confined to the specific granules. Granulocyte-macrophage colony-stimulating factor (GM-CSF) upregulated both the catalytic and antigenic components of CD45-PTPase on the plasma membrane of these cells. Upregulation was associated with a shift in the particulate subcellular PTPase catalytic activity from the specific granule fraction to the plasma membrane fraction. The tyrosine kinase inhibitor genistein abrogated GM-CSF-promoted upregulation of plasma membrane CD45 PTPase but did not prevent the GM-CSF-dependent decrease in specific granule catalytic activity. Anti-CD45 antibody immunoprecipitated PTPase activity from both specific granules of resting cells and plasma membranes of GM-CSF-treated cells. However, antiphosphotyrosine immunoprecipitated only activity that had translocated to the plasma membrane, suggesting a role for CD45 phosphorylation in translocation. Western analysis confirmed the tyrosine phosphorylation of CD45 in plasma membranes of GM-CSF-treated neutrophils. Preincubation of plasma membranes of GM-CSF-stimulated neutrophils with cytosol from resting cells resulted in a time- and temperature-dependent loss in membrane PTPase as a consequence of the effects of a cytosolic inactivator. Cytosol obtained from stimulated neutrophils possessed substantially reduced levels of this PTPase inactivator. We conclude that activity of the catalytic component of membrane PTPase in circulating neutrophils is regulated by a cytosolic inactivator. Upon stimulation, intact CD45 PTPase is incorporated into the plasma membrane by a process that requires tyrosine phosphorylation. As a result of inhibition of the cytosolic inactivator, the translocated PTPase expresses full activity, thereby amplifying the potential regulatory influence of the enzyme on the cells' functional response.  相似文献   
943.
Surface markers of human eosinophils   总被引:7,自引:0,他引:7  
Gupta  S; Ross  GD; Good  RA; Siegal  FP 《Blood》1976,48(5):755-763
Peripheral blood eosinophils from patients with eosinophilia and from healthy subjects were studied for surface immunoglobulins, receptors for the Fc region of IgG, complement receptors, and spontaneous rosette formation with sheep and mouse erythrocytes. Eosinophils were found to have receptors for complement and for aggregated IgG, and to have the same two types of complement receptors as do lymphocytes and monocytes. Immune adherence type receptors were specific for C4 or C3b, while C3d receptors were specific for C3d but unreactive with C4. Eosinophils differed from fully mature neutrophils in that the former had C3d receptors and relatively weak immune adherence (C4 or C3b) receptors, while the later did not have the C3d receptors and had strong immune adherence receptors. Eosinophil phagocytosis of complement-receptor bound erythrocytes was dependent on the presence of IgG in the antibody coating the red blood cells; this requirement for IgG resembled that found in neutrophil phagocytosis. No surface Ig or spontaneous erythrocyte rosette formation was observed with eosinophils.  相似文献   
944.
Chronic granulomatous disease (CGD) is an inherited hematologic disorder involving failure of phagocytic cell oxidase to produce superoxide (O2-.), resulting in recurrent infections. The success of retrovirus gene therapy for hematopoietic diseases will be limited both by the efficiency of ex vivo transduction of target cells and by the ability of corrected cells to replace uncorrected cells in vivo. Using MFG-based retrovirus vectors containing oxidase genes, we have previously demonstrated in vitro correction of CGD, but transduction rates were low. In the present study we explore a strategy for providing a selective growth advantage to transduced cells, while retaining the single promoter feature of MFG responsible for high virus titer and enhanced protein production. We constructed a bicistronic retrovirus producing a single mRNA encoding both the therapeutic gene for the X-linked form of CGD (X-CGD), gp91phox, and the selectable human multidrug resistance gene, MDR1 linked together by the encephalomyocarditis virus internal ribosome entry site (IRES). As a control we constructed a bicistronic vector with the polio virus IRES element and using the bacterial neomycin resistance gene (neor) as the selective element. In Epstein-Barr virus transformed B (EBV-B) cells from an X-CGD patient, a tissue culture model of CGD, we show correction of the CGD defect and complete normalization of the cell population using either of these vectors and appropriate selection (vincristine for MDR1 and G418 for neor). Using a chemiluminescence assay of O2-. production, populations of cells transduced with either vector demonstrated initial correction levels of from less than 0.1% up to 2.7% of normal EBV-B cell oxidase activity. With either construct, cell growth under appropriate selection enriched the population of transduced cells, resulting in correction of X-CGD EBV-B cells to a level of O2-. production equalling or exceeding that of normal EBV-B cells. These studies show that a therapeutic gene can be linked to a resistance gene by an IRES element, allowing for selective enrichment of cells expressing the therapeutic gene. Furthermore, the use of MDR1 as a selective element in our studies validates an important approach to gene therapy that could allow in vivo selection and is generalizable to a number of therapeutic settings.  相似文献   
945.
Monoclonal antibody OKT11 was found to compete with sheep red blood cells for binding sites on human lymphocytes. Preincubation of lymphocytes with OKT11 eliminated E-rosette formation. In a study of 142 peripheral blood samples ranging from 1% to over 90% E-rosette- positive cells, comparison to the percent OKT11-positive cells yielded a correlation coefficient of 0.93. In normal donors, subsets of OKT11+ cells were identified using two-color immunofluorescent staining methods with OKT3, OKT4, and OKT8. On the average, approximately 13% of OKT11+ lymphocytes were OKT3- and 13% of OKT11+ lymphocytes were OKT4- and OKT8-. Based on our double antibody fluorescence intensity data, low antigen density OKT11+ lymphocytes were OKT3-. OKT4+ and OKT8+ lymphocytes in normal peripheral lymphocytes have similar OKT11 antigen density.  相似文献   
946.
Hopper  KE; Semler  AD; Chapman  GV; Davey  RA 《Blood》1986,68(1):167-172
We show that human monocytes and platelets release considerable amounts of galactosyltransferase (GT) in serum-free culture as measured by the amount of incorporation of 3H-galactose into ovalbumin. Enzyme production was the greatest among medium-sized mononuclear cells separated by counter-current elutriation. The cells were adherent and positive for the monocyte-specific monoclonal antibody FMC-32. The activity in the monocyte fractions was not due to platelet contamination as shown from experiments in which platelets or platelet antigens were eliminated. Cell viability decreased by less than 3% during the overnight culture, and results from cell disruption experiments showed that the enzyme was not released from dead or dying cells. Cycloheximide inhibited release during 20 hours culture. Approximately 50% of the enzyme in the cell culture supernatant was pelletable at 105,000 g. Platelets released the enzyme more rapidly than did monocytes and were readily stimulated by thrombin to release more GT. Thrombin also increased monocyte GT activity after overnight incubation, but other stimulants, zymosan and lipopolysaccharide (LPS), decreased release. We conclude that GT is released into culture supernatants by platelets and by a subset of peripheral blood monocytes. These sources may account for a significant proportion of the serum enzyme and may be important in modification of extracellular carbohydrates during inflammation and coagulation.  相似文献   
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950.
We studied, in healthy elderly subjects (aged from 63 to 83 years) and adults (aged from 20 to 32 years), ocular saccades in two conditions: one the one hand, the gap condition, where the central target disappears; then follows a period of 200 ms during which the fixation and attention were disengaged; finally, a visual target appears in the periphery. On the other hand, the overlap condition, in which the peripheral target appears when the central target is still present, the subject should voluntarily disengage his attention and fixation to orient them toward the peripheral target. These paradigms stimulate automatic versus controlled triggering of saccades. The average saccade latency (measured by video-oculography) was longer in the elderly, and irrespectively of the condition. However, the elderly as the young subjects produced shorter latencies in the gap condition than in the overlap condition. Moreover, in the gap condition, we observed the emergence of a considerable number of reflex saccades with very short latency (between 80 and 120 ms, minimal conduction time) called "express saccades". The occurrence rate of such saccades was similar in the young and the elderly subjects. These results suggest the existence of separate circuits, one non-being sensitive to age (express saccades), the other suffering the effects of aging (controlled saccades). In another ongoing study, this methodology has been applied to patients with Lewy body dementia. The preliminary results from three patients showed an abnormal slowness of latencies, even in the gap condition expected to promote automatic and reflex saccades. Furthermore, we observed a total absence of saccades with express latency. These promising results suggest a deficit even for automatic and express saccades in these patients.  相似文献   
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