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Biomedical subjects

D Metcalf

Publications and source records attributed to D Metcalf.

At least 109 records · Page 6Linked to original sources

Prefrontal cortex and schizophrenia. A quantitative magnetic resonance imaging study.

OBJECTIVE: To measure prefrontal cortical volume in a group of schizophrenic subjects who presented with mainly positive symptoms and who were previously shown to have volume reductions in left temporal lobe structures. METHOD: Fourteen men with chronic schizophrenia and 15 male control subjects were matched for age, IQ, handedness, and parental socioeconomic status. Magnetic resonance images were obtained by means of a 1.5-T magnet, and contiguous 1.5-mm slices of the entire brain were obtained. RESULTS: No significant differences were found between schizophrenic and control subjects in mean values for prefrontal white or gray matter on either the right or the left side. However, within the schizophrenic group, there was evidence of a relationship between the volumes of left prefrontal gray matter and left temporal lobe structures that was not present in the control group. CONCLUSIONS: At least in this group of schizophrenic subjects with mainly positive symptoms, temporal lobe abnormalities can exist in conjunction with no gross volumetric abnormalities of the prefrontal cortex.

Adult↗

Broad inter-individual variations in circulating progenitor cell numbers induced by granulocyte colony-stimulating factor therapy.

The elevated white cell counts (WCC) and myeloid progenitor cell levels in the blood induced by granulocyte colony-stimulating factor (G-CSF) treatment were studied in three settings: cancer patients previously treated with chemo/radiotherapy (n = 13), untreated cancer patients (n = 5) and normal volunteers (n = 9). The inter-individual variations in progenitor cell mobilization responses to G-CSF and the impact of previous chemo/radiotherapy were investigated. The absolute levels of circulating progenitor cells, but not total white cells, were reduced significantly in the pretreated cancer patients (median 961, range 289-3355 per ml blood) as compared to untreated cancer patients (median 9891, range 2219-16625 per ml blood). In each setting, wide ranges of circulating progenitor cell numbers were observed, and the variation in progenitor cell numbers was considerably greater than observed for the WCC. However, progenitor cell numbers in normal volunteers (942-25296 per ml blood) demonstrated as much variance as observed in pretreated cancer patients. This broad physiological variation in progenitor cell levels induced by G-CSF needs to be considered when designing strategies for allogeneic peripheral blood stem cell transplantation.

Cohort Studies↗

Differential alterations in plasma colony-stimulating factor concentrations in meningococcaemia.

To determine whether circulating levels of any of the colony-stimulating factors (CSF) might contribute to the host response in severe sepsis, plasma concentrations of granulocyte CSF (G-CSF), granulocyte-macrophage CSF (GM-CSF), and macrophage CSF (M-CSF) were measured by immunoassays in 20 subjects with meningococcaemia, a bloodstream infection caused by Neisseria meningitidis, that has proven to be a valuable model to study the responses of other inflammatory mediators during sepsis and septic shock in humans. Plasma G-CSF concentrations were transiently elevated in most subjects during the early phase of meningococcaemia, and were higher in subjects with septic shock (mean +/- s.d. = 165 +/- 142 ng/ml, n = 9) compared with those who remained normotensive (mean +/- s.d. = 7 +/- 2 ng/ml, n = 10) (P < 0.05). Peak plasma G-CSF concentrations > 10 ng/ml were associated with the development of septic shock (P < 0.01), disseminated intravascular coagulation (P < 0.01), fulminant infection (P < 0.05), and a fatal outcome (P < 0.01). Plasma GM-CSF concentrations > 1 ng/ml were briefly present in subjects with life-threatening septic shock (1-15 ng/ml, n = 5), and were strongly associated with fulminant meningococcaemia (P < 0.01). Plasma M-CSF concentrations were marginally elevated in all subjects, but were not associated with complications related to or arising from sepsis-induced organ injury. This study demonstrates that plasma levels of G-CSF, GM-CSF and M-CSF show very different responses during meningococcaemia, changes which presumably reflect the different roles played by these mediators in sepsis and, potentially, in septic shock.

Adolescent↗

Production of hematopoietic regulatory factors in cultures of adult and fetal mouse organs: measurement by specific bioassays.

Factor-specific cell line bioassays were used to monitor the production in vitro by adult and fetal mouse organs of GM-CSF, G-CSF, M-CSF, Multi-CSF (IL-3), IL-6 and leukemia inhibitory factor (LIF). No tissue was observed to produce Multi-CSF. Highest producers of the other regulators were lung, muscle, thymus, heart and bone shaft and all tissues producing detectable growth factors produced all five with the same rank order of activity. Adult tissues produced more GM-CSF than G-CSF and less M-CSF than either, no differences being observed between male, female and pregnant female tissues. In contrast, the pregnant uterus produced high levels of M-CSF as did the fetal membranes and tissues with only low GM-CSF and no G-CSF production. Pre-irradiation did not alter the pattern of regulator production by adult tissues. The intravenous injection of endotoxin elevated serum levels of GM-CSF, G-CSF, M-CSF and IL-6 but the dominant rise was in G-CSF levels. The data indicating that multiple organs produce the regulators monitored in a common rank order suggest some overall linkage in their production with major differences between adult and fetal tissues.

Animals↗

The cytokine receptor repertoire specifies autocrine growth factor production in factor-dependent cells.

Mechanisms of helper virus-induced growth factor-independence were examined in FDC-P1 cells and FDC-P1 cells expressing the erythropoietin receptor (FDER cells). Retroviral mutagenesis of FDC-P1 cells led to factor-independent (FI) colonies from which cell lines could readily be established; whereas control cells exhibited at least 20 to 40-fold lower rates of factor-independence. From 44 independent experiments using either FDC-P1 or FDER cells, 205 autonomous cell lines were obtained. Sixteen colonies displayed a novel ("satellite-inducing") appearance in agar and produced up to 4.1 x 10(5) U/mL granulocyte-macrophage colony-stimulating factor (GM-CSF) (some with altered GM-CSF transcript sizes) and/or interleukin-3 (IL-3). Retroviral mutagenesis of FDER cells increased the repertoire of autocrine growth factors now responsible for stimulating autocrine proliferation: 3% of FI cell lines produced erythropoietin (Epo) (0.5 U/mL). Unexpectedly, in every autonomous FDC-P1 cell line, reverse transcriptase-PCR demonstrated expression of a growth factor normally required for proliferation. Thus, a profound selection for cells able to produce growth factors as the mechanism for achieving autonomous proliferation was documented. The ectopic expression of a receptor lacking a cognate ligand ("orphan") followed by retroviral mutagenesis and selection for autocrine mutants may offer an effective method for identifying new ligands.

Animals↗

Overexpression of C-FMS in the myeloid cell line FDC-P1 induces transformation that dissociates M-CSF-induced proliferation and differentiation.

Hemopoietic growth factors have been implicated in the pathogenesis of some myeloid leukemias when the cells acquire the autocrine capacity to produce a relevant growth factor. We report transformation of the immortalized cell line FDC-P1 by overexpression of murine c-fms, the receptor for macrophage colony-stimulating factor (M-CSF). Three types of cell lines were obtained following expression of c-fms in FDC-P1 cells. The first type of cell line (FD-c-fms) was dependent on stimulation by M-CSF to induce cell proliferation and also underwent limited monocytic/macrophage differentiation in response to M-CSF. The second type of cell line (FD-c-fmsi) was able to proliferate in serum-containing cultures without stimulation by exogenous hemopoietic regulators. Stimulation of the FD-c-fmsi cell lines with M-CSF suppressed proliferation compared to cultures of unstimulated cells and induced monocytic/macrophage differentiation. The third type of cell line (FD-c-fms) was autonomous, failed to differentiate in response to M-CSF and secreted M-CSF into the culture medium, suggesting an autocrine mechanism of transformation. All three types of cell lines demonstrated varying degrees of suppression of cell proliferation when stimulated by the combination of M-CSF and GM-CSF. The data indicate that transformation of c-fms expressing cells results in a variety of phenotypes with dissociation of M-CSF induced proliferation and differentiation in different cell lines.

Cell Differentiation↗

The flt3/flk-2 ligand: receptor distribution and action on murine haemopoietic cell survival and proliferation.

In this study the distribution and quantitation of the flt3/flk-2 receptor was examined on bone marrow cells and defined haemopoietic subpopulations. Undifferentiated cells expressed the greatest numbers of flt3/flk-2 receptors: 19% of primitive lin-kit+sca-1+ bone marrow cells and 16% of fetal liver lin-aa4.1+ cells exhibited over 15 000 receptors per cell as determined by binding of the radiolabeled cognate ligand (flt3/flk-2 ligand, FL). Moderate binding was demonstrated on early B lymphocyte subsets (4400 receptors per cell) and very low levels were detected on monocytes. Binding was not detected on promyelocytes, myelocytes, promonocytes, metamyelocytes, polymorphonuclear cells, eosinophils or nucleated erythroid cells. FL enhanced the survival of primitive lin kit+sca-1+ cells with an efficacy s with an efficacy equivalent to stem cell factor (SCF). FL stimulated predominantly blast and granulocyte-macrophage colony formation in cultures of bone marrow cells by both direct and indirect mechanisms. Marked synergistic effects of FL with combinations of colony stimulating factors (CSFs) or interleukin-6 occurred in the proliferation of primitive lin-kit+sca-1+ cells, but not lin-kit+sca-1- progenitor cells. Surprisingly, recloning experiments revealed that FL plus IL-3 increased the generation of progenitor cells by lin-kit a-1- cells compared with SCF plus IL-3. Thus FL functions as a factor with both direct and indirect stimulatory activities directed to the expansion, maintenance of clonogenic potential, and possibly limited self-renewal, of early haemopoietic cells.

Animals↗

Conversion of the biological specificity of murine to human leukemia inhibitory factor by replacing 6 amino acid residues.

Mouse and human leukemia inhibitory factor (mLIF and hLIF) have approximately 80% amino acid identity, but mLIF cannot bind to the hLIF receptor (hLIF-R), while hLIF binds to the alpha-chain of the mLIF receptor (mLIF-R) with a much higher affinity than does mLIF. We have previously shown that the same regions confer both these properties of hLIF and map to an area within the predicted third alpha-helix and two of the loops of hLIF (Owczarek, C. M., Layton, M. J., Metcalf, D., Lock, P., Wilson, T. A., Gough, N. M., and Nicola, N. A. (1993) EMBO J. 12, 3487-3495). The present studies, using interspecies chimeras of mLIF and hLIF, have defined 6 residues (Asp57, Ser107, His112, Ser113, Val155, and Lys158) that contribute most of the binding energy involved in the interaction of hLIF and the hLIF-R alpha-chain, and form a surface at one end of the predicted four alpha-helical bundle of the hLIF molecule. Mouse LIF is unable to bind to the hLIF-R alpha-chain or activate the cellular hLIF-R, but when these 6 residues were substituted onto an mLIF framework, they were able to reconstitute both the binding and biological activities specific to hLIF.

Amino Acid Sequence↗

Cloning of a murine IL-11 receptor alpha-chain; requirement for gp130 for high affinity binding and signal transduction.

An adult mouse liver cDNA library was screened with oligonucleotides corresponding to the conserved WSXWS motif of the haemopoietin receptor family. Using this method, cDNA clones encoding a novel receptor were isolated. The new receptor, named NR1, was most similar in sequence and predicted structure to the alpha-chain of the IL-6 receptor and mRNA was expressed in the 3T3-L1 pre-adipocytic cell line and in a range of primary tissues. Expression of NR1 in the factor-dependent haemopoietic cell line Ba/F3 resulted in the generation of low affinity receptors for IL-11 (Kd approximately 10 nM). The capacity to bind IL-11 with high affinity (Kd = 300-800 pM) appeared to require coexpression of both NR1 and gp130, the common subunit of the IL-6, leukaemia inhibitory factor (LIF), oncostatin M (OSM) and ciliary neurotrophic factor (CNTF) receptors. The expression of both NR1 and gp130 was also necessary for Ba/F3 cells to proliferate and M1 cells to undergo macrophage differentiation in response to IL-11.

3T3 Cells↗

Mice lacking granulocyte colony-stimulating factor have chronic neutropenia, granulocyte and macrophage progenitor cell deficiency, and impaired neutrophil mobilization.

Mice lacking granulocyte colony-stimulating factor (G-CSF) were generated by targeted disruption of the G-CSF gene in embryonal stem cells. G-CSF-deficient mice (genotype G-CSF-/-) are viable, fertile, and superficially healthy, but have a chronic neutropenia. Peripheral blood neutrophil levels were 20% to 30% of wild-type mice (genotype G-CSF+/+) and mice heterozygous for the null mutation had intermediate neutrophil levels, suggesting a gene-dosage effect. In the marrow of G-CSF-/- mice, granulopoietic precursor cells were reduced by 50% and there were reduced levels of granulocyte, macrophage, and blast progenitor cells. Despite G-CSF deficiency, mature neutrophils were still present in the blood and marrow, indicating that other factors can support neutrophil production in vivo. G-CSF-/- mice had reduced numbers of neutrophils available for rapid mobilization into the circulation by a single dose of G-CSF. G-CSF administration reversed the granulopoietic defect of G-CSF-/- mice. One day of G-CSF administration to G-CSF-/- mice elevated circulating neutrophil levels to normal, and after 4 days of G-CSF administration, G-CSF+/+ and G-CSF-/- marrows were morphologically indistinguishable. G-CSF-/- mice had a markedly impaired ability to control infection with Listeria monocytogenes, with diminished neutrophil and delayed monocyte increases in the blood and reduced infection-driven granulopoiesis. Collectively, these observations indicate that G-CSF is indispensible for maintaining the normal quantitative balance of neutrophil production during "steady-state" granulopoiesis in vivo and also implicate G-CSF in "emergency" granulopoiesis during infections.

Animals↗

Cross-species receptor binding characteristics of human and mouse leukemia inhibitory factor suggest a complex binding interaction.

Leukemia inhibitory factor (LIF) is a pleiotropic cytokine whose activities appear to be mediated through a single heterodimeric receptor complex. Human LIF (hLIF) can bind to and activate mouse LIF (mLIF) receptors but mLIF is unable to bind to hLIF receptors. Cross-species competition of mLIF and hLIF for binding to the mLIF receptor was found to be dependent on which ligand was used as the radioactive tracer (Layton, M. J., Cross, B. A., Metcalf, D., Ward, L. D., Simpson, R. J., and Nicola, N. A. (1992) Proc. Natl. Acad. Sci. U. S. A. 89, 8616-8620), and this phenomenon was investigated in the present study. We found that hLIF bound to the low affinity mLIF receptor with a 100-500-fold higher primary affinity and lower kinetic dissociation rate than mLIF, but both ligands displayed a single rate of ligand dissociation. In contrast, the binding of hLIF to low and high affinity hLIF receptors revealed two classes of binding site. The observed tracer-dependent phenomena suggested that both mLIF and hLIF interfere with the binding of each other to the mLIF receptor. A model is presented in which hLIF binds to two sites on mLIF and hLIF receptors, one of which interferes with the common site for mLIF. This model may reconcile some of the observed complexities of LIF/LIF receptor interactions.

Animals↗

Granulocyte/macrophage colony-stimulating factor-deficient mice show no major perturbation of hematopoiesis but develop a characteristic pulmonary pathology.

Mice homozygous for a disrupted granulocyte/macrophage colony-stimulating factor (GM-CSF) gene develop normally and show no major perturbation of hematopoiesis up to 12 weeks of age. While most GM-CSF-deficient mice are superficially healthy and fertile, all develop abnormal lungs. There is extensive peribronchovascular infiltration with lymphocytes, predominantly B cells. Alveoli contain granular eosinophilic material and lamellar bodies, indicative of surfactant accumulation. There are numerous large intraalveolar phagocytic macrophages. Some mice have subclinical lung infections involving bacterial or fungal organisms, occasionally with focal areas of acute purulent inflammation or lobar pneumonia. Some features of this pathology resemble the human disorder alveolar proteinosis. These observations indicate that GM-CSF is not essential for the maintenance of normal levels of the major types of mature hematopoietic cells and their precursors in blood, marrow, and spleen. However, they implicate GM-CSF as essential for normal pulmonary physiology and resistance to local infection.

Animals↗

Assessment of CD4 expression by early T precursor cells and by dendritic cells in the human thymus.

The adult mouse thymus contains a minute population of early lymphoid precursor cells that express moderate levels of CD4. We searched for a corresponding population of early T precursors in the infant human thymus, by first depleting the majority of more mature thymocytes, then using immunofluorescence and flow cytometry to analyze cells bearing a range of early T lineage markers. No discrete population of early T precursors expressing CD4 was observed, in contrast to the murine thymus. Most putative very early human thymocytes were CD4-8-3-1-2lo44+34+7hi class I MHChi class II MHC-. However, a distinct population of human thymic dendritic cells expressing high levels of CD4 was isolated. These were CD4hi8-3-1-2-44+34-7- class I MHChi class II MHChi, and lacked markers of B cells, NK cells, or myeloid cells. They were large cells that exhibited dendritic morphology after brief periods of culture, and they were efficient stimulators of allogeneic T cells. The biologic implications of CD4 expression by thymic dendritic cells are discussed.

Adolescent↗

Histidine-367 of the human common beta chain of the receptor is critical for high-affinity binding of human granulocyte-macrophage colony-stimulating factor.

High-affinity receptors for granulocyte-macrophage colony-stimulating factor (GM-CSF), interleukin 3, and interleukin 5 consist of ligand-specific alpha chains (low-affinity subunits) and a common beta chain (beta c) that converts each complex to a high-affinity form. Although beta c alone has no detectable cytokine-binding activity, amino acid substitutions for Glu-21 of human GM-CSF significantly reduce high-affinity but not low-affinity binding, implying that beta c interacts directly with GM-CSF during formation of the high-affinity receptor but only in the presence of the alpha chain. A potential GM-CSF-binding determinant was identified in the second hemopoietin domain of beta c, and the role of individual residues within this region was investigated by determining the ability of mutated beta c chains to confer high-affinity binding when coexpressed with the alpha subunit of the GM-CSF receptor in COS cells. Substitutions involving Met-363, Arg-364, Tyr-365, and Glu-366 did not affect high-affinity binding. However, substitution of His-367 by lysine or glutamine abolished high-affinity binding, suggesting that this residue may form an important part of the high-affinity GM-CSF-binding determinant. Consistent with the loss of high-affinity binding, higher concentrations of human GM-CSF were required to stimulate proliferation of CTLL-2 cell lines transfected with cDNAs for GM-CSF receptor alpha chain and His-367 beta c mutant than those expressing GM-CSF receptor alpha subunit and beta c wild type.

Amino Acid Sequence↗

Implications of the polyfunctionality of hemopoietic regulators.

Studies on the expanding group of hemopoietic regulators have identified several types of situations indicating the polyfunctionality of these regulators. In actions on hemopoietic populations, this polyfunctionality is seen in cross-lineage actions, in proliferative actions on cells at multiple stages within a lineage and, above all, in actions that do not simply control cell proliferation but also aspects of differentiation commitment, maturation and the functional activity of mature cells. More perplexing are the growing lists of actions on non-hemopoietic tissues, seen in extreme form with the leukemia inhibitory factor group of regulators. The bizarre range of actions exhibited by regulators of this group is difficult to explain but may be indicating the unsuspected existence of some novel integrated bioorgan systems.

Animals↗