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Biomedical subjects

F D Wilson

Publications and source records attributed to F D Wilson.

At least 37 records · Page 2Linked to original sources

Growth of human T lymphocyte colonies from whole blood: culture requirements and applications.

Growth of human lymphocyte colonies from whole blood following stimulation with PHA, Con A, or PPD is described. Individual colony cells were identified as T lymphocytes on the basis of surface marker and enzyme cytochemical characterizations. Colony formation increased as a power function over a wide range of cell concentrations above a critical minimal concentration. The whole blood culture system eliminates possible selective effects of lymphocyte colony techniques utilizing gradient-enriched lymphocyte fractions and more closely approximates the in vivo milieu. The whole blood colony method is more sensitive for the detection of low-level radiation effects on lymphocytes than widely used tests that measure 3H-thymidine incorporation. In preliminary studies, we used the whole blood method to determine the relative radiosensitivity of lymphocytes from humans with various hematopoietic disorders, and observed abnormalities in mitogen responsiveness and colony formation in some of the patient groups. This method has wide application for studies in cellular and clinical immunology.

Adult↗

Growth of macrophage colonies from normal canine peripheral blood: morphological, cytochemical and functional parameters.

Canine macrophage colonies were grown at high colony-forming efficiencies (average of 4.5 macrophage colonies/10(4) mononuclear cells plated) from gradient-separated peripheral blood mononuclear cells. The colonies were first observed on day 5 of the culture period, reached maximum numbers between days 10-14, and differed kinetically from CFU-GM colonies. Colony cells had typical macrophage morphology at the cellular and ultrastructural levels, were nonspecific-esterase positive, specific-esterase negative, and were actively phagocytic. Colony growth in semisolid cultures and 3H-TdR incorporation in liquid cultures occurred following stimulation with rabbit anti-canine immunoglobulin antisera (anti-Ig), anti-bovine serum albumin and normal rabbit serum. Addition of 2-mercaptoethanol (2-Me) to stimulated cultures significantly enhanced the proliferative response. A maximal response was obtained using anti-IgM and 2-ME. Preincubation of anti-Ig with goat anti-rabbit IgG or purified canine immunoglobulin in the presence or absence of 2-ME significantly reduced the proliferative response, suggesting the presence of both specific and nonspecific components of stimulation. The growth of canine macrophage colonies from peripheral blood provides a method for non-invasive, sequential and kinetic studies of macrophage progenitor cells in large animals.

Animals↗

Functional evaluation of lung macrophages from cigarette smokers and nonsmokers.

The in vitro function of pulmonary alveolar macrophages (PAM) was compared for human smokers and nonsmokers. Initial studies demonstrated the feasibility of shipping lavaged cells on ice with storage up to 6 hr. Comparative studies were performed to evaluate ideal culture conditions including media composition, preincubation period, and phagocytic variables. Smokers had a six-fold enhancement in lavagable macrophages compared to nonsmokers. Macrophages from smokers demonstrated a decreased phagocytic capability compared to nonsmokers. The effects of cigarette smoking on phagocytosis were observed over a wide range of challenge periods using either fetal or newborn bovine serum (FBS or NBS). Regardless of smoking history, enhanced phagocytosis was observed with media containing NBS compared to FBS. No effects on in vitro viability, attachment, or adherence were observed.

Adult↗

Cytogenetics and granulopoietic effects of bone marrow fibroblastic cells in Fanconi's anaemia.

To determine if abnormalities exist in the bone marrow stroma in Fanconi's anaemia, we studied the cytogenetic composition of in vitro bone marrow fibroblastic cells (FC) from a patient with this disorder and compared it to those obtained from skin fibroblasts, peripheral blood lymphocytes, and direct bone marrow preparations. The presence of granulocytic progenitors in bone marrow and T lymphocyte colonies in peripheral blood was also determined in addition to the ability of this patient's FC to stimulate normal granulocytic progenitors. We found that the FC had far fewer chromosomal abnormalities and stimulated normally the growth of granulocyte colonies. Granulocyte progenitors were not found, but T lymphocyte colonies were abundant. These results support the concept that a defect in haematopoietic stromal elements is not responsible for the aplasia developing in the disorder.

Adolescent↗

Morphological studies on 'adherent cells' in bone marrow cultures from humans, dogs, and mice.

Comparative morphological studies were conducted on adherent cells in bone marrow cultures obtained from humans, dogs, and mice. Scanning electron micrographs demonstrated that the adherent colonies are much more homogeneous in humans and dogs and appear larger and more flattened than in mice. In mice, many more rounded cells (macrophages) were seen intermixed with the flattened cells. Transmission electron microscopy demonstrated that the flattened type of cells are characterized by a large primitive nucleus and abundant cytoplasm exhibiting an extensive network of microtubules and submembranous microfilaments and the formation of endoplasmic reticulum-associated secretory bodies. Our results would favor a fibroblastic rather than epithelial nature of the flattened cell type.

Animals↗

Increased radiosensitivity of a subpopulation ot T-lymphocyte progenitors from patients with Fanconi's anemia.

In vitro radiation survival of peripheral blood T lymphocytes was studied in 15 clinically normal adults and 4 patients with Fanconi's anemia. Tritiated thymidine incorporation in a whole blood lymphocyte stimulation test (LST) and a newly developed whole blood T-lymphocyte colony assay were used to measure lymphocyte blastogenesis and colony formation in response to phytohemagglutinin (PHA) or concanavalin-A (Con-A) stimulation. Lymphocyte colony formation was found to be consistently more sensitive than the LST for detection of low-level radiation effects using both normal cells and lymphocytes from Fanconi's anemia patients. Lymphocytes from patients with Fanconi's anemia were significantly more sensitive to in vitro x-irradiation than lymphocytes from clinically normal individuals as measured by their ability to divide when stimulated by PHA in the LST (patients, D37 = 198 R; normals, D37 = 309 R, p = 0.057) and colony formation assay (patients, D37 = 53 R; normals, D37 = 109 R, p = 0.016). No significant difference in the radiosensitivity of the Con-A response was observed between the two groups. The PHA-responsive T-lymphocyte subpopulation in Fanconi's anemia patients appears to be intrinsically defective. The nature of this defect, significance in the disease process, and relevancy of these findings to the establishment of radiation protection standards are discussed.

Adolescent↗

The selective growth of human T lymphocyte colonies from whole blood in a semisolid culture system.

Human T lymphocyte colonies may be selectively grown from whole blood in a single phase semisolid culture system following stimulation with PHA-P, Con-A, or PPD. This technique eliminates the requirement for gradient-enriched lymphocyte fractions, and provides a sensitive system for the study of T lymphocyte progenitors that more closely approximates the in vivo milieu. Whole blood colonies were composed of lymphoblasts and mature lymphocytes. Individual colony cells, identified as T lymphocytes, lacked lipase and specific esterase activity, formed E rosettes, did not phagocytize latex beads, and were largely ANAE positive. Whole blood was plated at a final concentration of 3%. Optimal mitogen/antigen concentrations were 125 microgram Con-A, 80 microgram PHA-P and 50 microgram PPD/ml culture media. Peak colony growth occurred between days 7 and 8. Colony formation increased as a power function over a wide range of cell concentrations (5 x 10(3)-5 x 10(4) lymphocytes plated). Maximal whole blood colony formation occurred when 5 x 10(4)-10(5) lymphocytes were plated. There was a significant increase in the cloning efficiency using whole blood as compared to gradient-separated cells. This method has wide application for the study of radiation effects, lymphocyte alterations in various disease states, antigen recognition, and the induction and amplification of T cell function.

Adolescent↗

Microinjection of catalytic subunit of cyclic AMP-dependent protein kinase enhances calcium action potentials of bag cell neurons in cell culture.

We have found that the calcium action potentials of bag cell neurons from the abdominal ganglion of Aplysia may be enhanced by intracellular microinjection of the catalytic subunit of cyclic AMP-dependent protein kinase (ATP:protein phosphotransferase, EC 2.7.1.37). The catalytic subunit was purified from bovine heart and shown to be effective in stimulating the phosphorylation of bag cell proteins in homogenates at concentrations of 10-50 nM. Intracellular injection into isolated bag cell neurons maintained in primary culture was through pressure applied to microelectrodes filled at the tip with catalytic subunit (5-22 muM). In 11 of 16 injected cells, both the slope of the rising phase and the height of the action potentials evoked by a constant depolarizing current were markedly enhanced relative to the pre-injection control (mean increases, 73% and 35%, respectively). This effect could occur with no change in resting potential or in the latency of the action potential from the onset of the depolarizing pulse. The effect was observed with enzyme dissolved in three different salt solutions (Na phosphate, K phosphate, or KCl). In two experiments, tetrodotoxin (50 muM) added to the extracellular medium had no effect on the enhanced action potentials. Subsequent addition of the calcium antagonist Co(2+), however, diminished or abolished the spikes. In more than half of the experiments, the injection of catalytic subunit was accompanied by an increase in the input resistance of the cells as measured by applying small hyperpolarizing current pulses. In three experiments, subthreshold oscillations in membrane potential resulted from the injections. Control injections (24 cells), carried out either with carrier medium alone or with heat-inactivated enzyme preparations, did not produce spike enhancement, increased input resistance, or oscillations. Our data suggest that the stimulation of intracellular protein phosphorylation by the catalytic subunit of cyclic AMP-dependent protein kinase enhances the excitability of bag cell neurons by modifying calcium and potassium channels or currents.

Action Potentials↗

Intracellular injection of t he catalytic subunit of cyclic AMP-dependent protein kinase simulates facilitation of transmitter release underlying behavioral sensitization in Aplysia.

It has been difficult to establish whether cyclic AMP-mediated protein phosphorylation in nerve cells plays a specific role in synaptic transmission. This difficulty can be overcome in higher invertebrates because their large neurons allow the injection of protein molecules into the cell. We have used intracellular injection to study whether protein phosphorylation is involved in the mechanism of sensitization, a simple form of learning. Sensitization of the gill-withdrawal reflex in Aplysia involves enhancement of transmitter release by presynaptic facilitation at a particular set of synaptic connections between identified sensory neurons and their follower cells. We have found that injection of the catalytic subunit of cyclic AMP-dependent protein kinase (ATP:protein phosphotransferase, EC 2.7.1.37) purified from bovine heart mimics the action of the natural transmitter and of serotonin, the putative transmitter, by simulating the physiological changes that accompany presynaptic facilitation. Intracellular injection of the kinase into a sensory cell (i) broadens the action potential in the presence of tetraethylammonium, indicating an increase in Ca2+ current, (ii) decreases the input conductance of the cell, presumably as a result of a decrease in the K+ current, and (iii) increases the amount of transmitter released by terminals of the sensory cell onto follower neurons.

Animals↗

A "whole-blood" technique for the quantitation of canine "T-lymphocyte" progenitors using a semisolid culture system.

A whole blood technique is described for the growth of concanavalin A (Con A) stimulated canine lymphocyte colonies in semisolid medium. By eliminating the routine Ficoll-Paque (F-P) gradient lymphocyte isolation, this method avoids potential problems of growth modulation due to elimination of non-lymphoid accessory cells and the influences on colony formation associated with the selective effects of F-P on lymphocyte subpopulations. Thus, the technique more closely approximates the in vivo milieu. The whole-blood method also produces higher cloning efficiencies than methods using gradient isolation of lymphocytes. Studies over a wide range of blood concentration produced a linear response of in vitro colony formation although extrapolation of the cell-dose colony-response curve did not intersect zero. Mitogen titration data indicates that a relatively large dose of Con A is required for whole blood colony formation compared to the standard F-P method. The colonies ultrastructurally were composed of lymphoblastic and lymphocytic elements which were negative for non-specific esterase activity. Characterization of cells retrieved from the colonies using rosetting techniques indicates a high percentage of the colony cells relative to canine peripheral blood cells form rosettes with human erythrocytes.

Animals↗

The formation of human lymphocyte colonies in semisolid cultures in response to allogeneic mixed-lymphocyte stimulation.

A technique is described for the growth of human lymphocyte colonies in semisolid culture systems in response to allogeneic lymphocyte stimulation. Colonies did not form to any major extent using autologous lymphocyte stimulation. Both one-way and two-way mixed-lymphocyte reactions were investigated. Ultrastructurally, such colonies are composed of cells with lymphoblastic and lymphocytic morphology. The majority of the lymphoid elements composing the colonies were T-cells based on their ability to rosette with sheep red blood cells. Our studies suggest that the colonies are clonogenic in origin and therefore the technique offers the potential for isolation of specific clones, or subpopulations of lymphocytes involved in allogeneic reactions and characterization of their function. Studies directly comparing the stimulation indices achieved with standard mixed lymphocyte cultures utilizing 3HTdr-incorporation to the colony-forming assay indicate that the cloning technique produces higher stimulation indices for allogeneic/autologous reactions and produces less autologous (background) response than the 3HTdr incorporation technique. In addition to lymphocyte colonies, we also observed colonies of surface-adherent populations of macrophages, including multinucleated giant cells. Thus, the technique appears to provide a new and potentially more sensitive method for the study of transplantation immunology and cell-mediated immunity in humans.

Cells, Cultured↗

Graft-versus-host disease in two immunocompetent dogs.

Graft-versus-host disease developed in two dogs injected with lymphocytes from BCG immunized donors. The disease was characterized by bone marrow depression, ulcerative enteritis, necrotizing cholangiohepatitis, thymic atrophy, pancreatitis, lymphadenopathy, inflammation of mucous membranes and weight loss. In one of the two dogs repopulation of bone marrow and lymphoid tissue by donor cells was demonstrated by cytogenetics. The development of GVHD was considered unusual because both animals received on immunosuppressive treatment and both responded well to PHA in lymphocyte transformation assays indicating they were immunocompetent. It was hypothesized that stimulation of donor lymphocytes by BCG enhanced their ability to induce a graft-versus-host reaction.

Animals↗

Cytogentics of fibroblastic colonies in Ph1-positive chronic myelogenous leukemia.

The cytogenetic status of bone marrow stromal elements obtained from six patients with Ph1-positive chronic myelogenous leukemia (CML), two in blast crisis, was studied in vitro utilizing the potential of marrow to form surface-adherent colonies morphologically compatible with mesenchymal elements. We demonstrated the absence of both the marker chromosome and other chromosomal abnormalities in all the fibroblastic colonies studied, indicating that the progenitors of such colonies (plaque-forming units in culture, PFU-C) are not closely related to hematopoietic elements including macrophages. This supports previous reports suggesting that the stromal elements in myelofibrosis associated with CML are not derived from the primary Ph1-positive malignant clone but represent a stromal reactive component of benign or independent malignant potential.

Bone Marrow Cells↗