Use of computational fluid dynamics to assess air distribution patterns in animal rooms.
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Biomedical subjects
Publications and source records attributed to A J Salvado.
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Thrombocytopenia contributes significantly to morbidity in the sick term or preterm infant. However, few data exist on newborn's megakaryocytes and megakaryocyte progenitor cells (CFU-MK). We therefore studied CFU-MK in term and preterm infant cord blood and compared the results with data on CFU-MK from adult bone marrow and adult peripheral blood in a plasma clot culture with postirradiated aplastic canine serum (PIACS) as a source of megakaryocyte colony-stimulating activity. The number of CFU-MK and the number of cells per CFU-MK were counted with an immunofluorescent method at day 12. The effect of T-lymphocyte depletion on cord blood cultures for CFU-MK was studied with PIACS and a partially purified product of PIACS. We also studied individual megakaryocytes from newborns. The number and sizes of circulating megakaryocytes, isolated from adult peripheral blood and term venous cord blood by elutriation, were compared. Term and preterm cord blood contained more CFU-MK than adult peripheral blood. The numbers of CFU-MK in preterm cord blood were comparable to those in adult bone marrow. When the number of cells per colony were compared, cord blood contained significantly more cells than adult marrow CFU-MK. The depletion of T lymphocytes did not significantly change the growth of CFU-MK compared to nondepleted cultures. A substantial number of circulating megakaryocytes were obtained from venous cord blood, though they were significantly smaller than adult peripheral blood megakaryocytes. Since cord blood is easily obtained and contains large numbers of megakaryocytes and CFU-MK, it may provide a convenient model for studying the regulation of fetal megakaryocytopoiesis.
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Pure red cell aplasia (PRCA) rarely occurs in nonthymic lymphoproliferative disorders. This report describes the clinical course and therapy of a patient with a history of Sjogren syndrome who developed well-differentiated lymphocytic lymphoma associated with PRCA and severe hemolytic anemia. Life-threatening hemolytic anemia combined with the presence of multiple antibodies and lack of erythroid precursors was treated successfully with a single dose of intravenous gammaglobulin. A sustained, complete remission and normalization of the bone marrow was achieved following six courses of an aggressive chemotherapy regimen. Thus, occasionally low-grade lymphomas can produce life-threatening complications, requiring a more aggressive therapeutic intervention than those routinely applied.
Granulocyte-macrophage progenitors (CFU-GM) from four patients with childhood onset cyclic neutropenia demonstrated abnormal in vitro proliferative responses to purified, recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) when examined in detailed dose-response studies. Marrow aspirate specimens were obtained for these studies from cyclic neutropenia patients (both during neutropenic nadirs and during recovery phases of cycles), from leukemia patients in remission who had received myelosuppressive chemotherapy, and from healthy normal volunteers. Nucleated marrow cells were then isolated by density-gradient centrifugation and cryopreserved to permit studies of CFU-GM from patients and controls to be carried out at the same time and in replicate. Maximum clonal growth of CFU-GM from normal subjects and from individuals recovering from drug-induced myelosuppression was elicited by 20-100 pmol/liter rhGM-CSF, and the CSF concentrations that induced half-maximal responses (ED50) were between 1.0 and 3.0 pmol/liter. In contrast, maximum growth of CFU-GM from the cyclic neutropenia patients required greater than or equal to 1.0 nmol/liter rhGM-CSF and ED50's were greater than 30.0 pmol/liter. These abnormalities in the GM-CSF responsive growth of myeloid progenitors were independent of cycle time and were most apparent with the predominantly neutrophilic 7-d CFU-GM. Moreover, differences in the growth of 14-d CFU-GM could be attributed mostly if not entirely to differences in the generation of neutrophilic colonies. These findings indicate that childhood onset cyclic neutropenia is associated with an underlying disturbance in the GM-CSF responsive growth of myeloid progenitors committed to neutrophilic differentiation.
To better understand the limited hematopoietic life span of human marrow "Dexter" cultures, we developed a miniaturized, two-stage culture system with which in vitro production of hematopoietic progenitors could be reproducibly detected and quantified. Light-density, gradient-separated human marrow cells were inoculated into Leighton slide tubes, and adherent ("stromal") cell layers were allowed to develop on the removable coverslips within these tubes during an initial 4 weeks of culture. Once stromal cell layers were established, cultures were irradiated (800 cGy) to eliminate all residual hematopoietic progenitors. The cultures were then recharged with autologous, cryopreserved marrow cells (enriched for BFU-E and CFU-GM) to reconstitute stem cell populations and to initiate in vitro hematopoiesis. Most progenitor cells added to irradiated cultures were no longer detectable by clonal assays within one to four days after recharge. Nonetheless, stable populations of adherent BFU-E and CFU-GM became established in these cultures within 24 to 48 hours, and when the total numbers of progenitors (adherent and nonadherent) were measured at weekly intervals thereafter, it was evident that both BFU-E and CFU-GM were generated in vitro. However, progenitor cell production declined as neutrophils and macrophages accumulated in the cultures. Moreover, with this accumulation of mature myeloid cells, increasing levels of O2- and H2O2 could be detected in the cultures, and it was found that the addition of oxidant scavengers (catalase and mannitol) to culture media enhanced the weekly expansions of progenitor cell numbers that could be measured. These findings support the conclusion that reactive O2 intermediates generated by mature myeloid cells have a role in limiting the duration and extent of hematopoietic progenitor cell self-renewal in long-term "Dexter" cultures of human marrow.
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We have examined the characteristics of erythroid progenitors from rabbit marrow and assessed the potential of this species as a source from which substantial quantities of erythroid progenitors could be obtained. Plasma clot cultures of rabbit marrow demonstrate colonies consistent with erythroid colony forming units (CFUE) by day 2 and colonies resulting from two types of burst forming units (BFUE) seen on days 3 and 8-9, respectively. Characteristic colony morphologies were noted from each cell type as well as differential sensitivity to erythropoietin (Ep) with discrete maximum responses for each progenitor. Distinct buoyant density characteristics were noted when the precursors were subjected to isopyknic separation on linear density gradients of polyvinylpyrrolidone-coated silica. The total nucleated marrow cells obtained from each animal ranged from 1.7-4.7 X 10(9). The average yields for each progenitor wee 1.71(+/-0.43) X 10(7) for CFUE, 1.99(+/-0.36) X 10(6) for 3 day BFUE and 1.24(+/-0.11) X 10(6) for 8-9 day BFUE.
Clonal lines of Rauscher erythroleukemia cells exhibited selective responses to two inducers of differentiation, erythropoietin and dimethyl sulfoxide. There were substantial quantitiative differences between clones that reponded to both inducers. Several clones differentiated only in response to erythropoietin. Erythropoietin stimulated cell proliferation and differentiation whereas dimethyl sulfoxide inhibited proliferation, suggesting dissimilar modes of action.
The elucidation of the mechanism of action of erythropoietin depends upon a detailed assessment of its effects at the molecular level. We have now begun to examine the effects of human erythropoietin and other inducers on clonal lines of Rauscher murine erythroleukemia cells. Over 100 clonal lines have been examined by assessing the hemglobinization of colonies grown in plasma clot culture in response to erythropoietin and dimethylsulfoxide. Many of the clones respond to both inducers. However, some clones respond only to erythropoietin. The cells also differentiate in suspension culture, exhibiting striking morphological changes characteristic of erythroid development. This system should serve as an excellent model for the study of control mechanisms in erythropoiesis.