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Biomedical subjects

V Praloran

Publications and source records attributed to V Praloran.

At least 109 records · Page 6Linked to original sources

Production and role of macrophage colony stimulating factor (CSF-1 or M-CSF) in hematological pathology.

M-CSF, an homodimeric glycoprotein initially identified as a Colony Stimulating Factor, can now be considered as a cytokine-produced by multiple cell types, including T cells and acting on hematological and non hematological tissues. In this short article, we bring evidence that the production of M-CSF is inducible in T cells in vitro and in vivo and that it plays a central role in several hematological disorders. A particular emphasis will be given to EBV induced hemophagocytic syndromes and to related disorders during the oral presentation.

Animals↗

Characteristics of pro-T ALL subgroups: comparison with late T-ALL. The Groupe d'Etude Immunologique des Leucémies.

A group of 30 acute lymphoblastic leukemias (ALL) with the early pro-T phenotype CD7+/cCD3+/CD1-/CD3-/CD4-/CD8-were identified among 103 newly diagnosed ALL with T-lineage markers (T-ALL). Pro T-ALL was more often observed in adults, and showed a lower incidence of hyperleukocytosis than more mature T-ALL. Mediastinal masses and polar acid phosphatase positivity in blast cells were however observed with the same frequency in pro T-ALL and late T-ALL, and rearrangements of both T-cell receptor (TCR) beta and gamma genes were observed in half the pro T-ALL cases tested. The expression of CD34, DR, and myeloid (My) markers was significantly more frequent in pro T-ALL than in late T-ALL, and these three features were strongly linked. TCR gene rearrangements were two to three times more frequent in CD34- and My-pro T-ALL. However, both CD34+ and My+ pro T-ALL showed an incidence of mediastinal masses and polar acid phosphatase positivity similar to this observed in CD34- and My- cases. This supports the assumption that both types of ALL indeed are engaged in the T-lineage, and confirms intracytoplasmic cCD3 as the earliest marker for this lineage. Moreover, CD34 appears to persist up to an early stage of T-cell maturation, where the cells retain myeloid potentiality. Loss of CD34 correlates with TCR-beta gene rearrangement and definitive commitment to the T lineage. Event-free survival analysis suggested a poorer outcome for pro T-ALL in adult patients.

Adolescent↗

Enhanced hematopoietic growth factor production in an experimental myeloproliferative syndrome.

The murine myeloproliferative syndrome induced by the myeloproliferative sarcoma virus (MPSV) has numerous similarities to human primary myelofibrosis. We have shown that medium conditioned by spleen cells of MPSV-infected mice has the capacity to support the growth of primitive blast cell colonies. The detection of this activity associated with MPSV infection stimulated us to characterize the hematopoietins responsible for this activity. Northern blot analysis showed a large increase, or induction, of interleukin-6 (IL-6), granulocyte-macrophage colony-stimulating factor (GM-CSF), macrophage-CSF (CSF-1), and granulocyte-CSF (G-CSF) transcripts in the hematopoietic organs of MPSV-infected mice; however, no IL-3 transcript could be detected in either MPSV-infected or normal mice. Significant levels of IL-1 alpha, IL-6, G-CSF, and CSF-1 bioactivities were found in the serum of MPSV-infected mice, but not in controls. Additionally, analysis of medium conditioned by spleen cells of MPSV-infected mice showed the presence of tumor necrosis factor alpha bioactivity. The increased production of cytokines that are able to stimulate pluripotent hematopoietic stem cells corroborates the hypothesis of a possible involvement of hematopoietic growth factors in the development of some myeloproliferative disorders.

Animals↗

Primary Epstein-Barr virus infection with clonal T-cell lymphoproliferation.

A case of fatal Epstein-Barr virus infection in a previously healthy girl who was first found to have severe infectious mononucleosis with spontaneous recovery is reported. Because an abnormal immune response to the virus persisted, the disease relapsed, manifesting in cutaneous and pulmonary lesions associated with hemophagocytic syndrome responsible for death. Pathologic findings were characterized by polymorphous atypical lymphoid infiltrate, prominent necrosis, and histiocytic hyperplasia. Lymphoid cells displayed CD8 phenotype and clonal T-cell receptor gene rearrangement. Viral genome was detected in lesions by Southern blot and located in nuclei of lymphoid cells by in situ hybridization. Pathologic findings suggested fatal infectious mononucleosis; however, phenotype and genotype favored a malignant diagnosis. Clonality was demonstrated to have arisen during primary infection. Virologic examination indicated that Epstein-Barr virus was a causative agent. Such a process belongs to the recently recognized spectrum of Epstein-Barr virus-related T-cell lymphoproliferative disorders that might overlap fatal infectious mononucleosis in patients who are especially vulnerable to the virus.

Adolescent↗

Immunohistochemical detection of cells positive for colony-stimulating factor 1 in lymph nodes from reactive lymphadenitis, and Hodgkin's disease.

Colony-stimulating factor 1 (CSF-1) is a cytokine involved in hematopoiesis and perhaps more importantly in the early stages of immunological defense mechanisms. Although numerous studies of in vitro CSF-1-producing cells have been published, in vivo data is totally lacking. According, we performed immunohistochemical detection of CSF-1-positive cells on frozen sections of reactive lymphadenitis (three cases) and Hodgkin's disease (13 cases) lymph node biopsies, using as antibody a highly specific polyclonal rabbit antiserum prepared in our laboratory. Endothelial cells from high endothelial venules and most fibroblasts were positive in all cases (reactive lymphadenitis and Hodgkin's samples), and most lymphocytes in interfollicular T cell areas showed faint granular positivity in reactive lymphadenitis lymph nodes. Hodgkin and Reed-Sternberg cells were positive in all cases tested, although staining intensity was highly variable and the percentage of positive cells differed from case to case. These data from in vivo biopsies confirm previous results for in vitro CSF-1 production by endothelial cells, fibroblasts, T lymphocytes, and Hodgkin cell lines. They are consistent with the role of this cytokine in immune response and raise the question of its significance in Hodgkin's disease.

Hodgkin Disease↗

Accumulation of T-cell clones producing high levels of both granulocyte-macrophage and macrophage colony-stimulating factors (CSF-1) in lymph nodes involved by Hodgkin's disease.

We have previously shown that total T cells derived from lymph nodes (LN) involved by Hodgkin's disease (HD) secrete higher levels of colony-stimulating activity than total T cells present within benign hyperplastic (BH) LN and B-non-Hodgkin's lymphoma (B-NHL) LN, suggesting that T cells with particular properties accumulate in HD LN. To further characterize this T-cell population, we have quantified production of both granulocyte-macrophage colony-stimulating factor (GM-CSF) and macrophage colony-stimulating factor (M-CSF) production in a total of 98 T-cell clones (TCC) derived from CD25+ activated T cells present in HD LN; TCC derived from CD25+ T cells obtained from B-NHL LN(101 TCC), BH LN(95 TCC), and peripheral blood (PBL; 38 TCC) of healthy donors were used as controls. HD LN were characterized by the presence of an elevated number (44%) of TCC producing particularly high titers of both GM-CSF and M-CSF, whereas only a minority of such TCC was found in control groups (10% in B-NHL, 16% in BH, 8% in PBL). These observations support the hypothesis of a selection of T-cell families with particular properties occurring in contact with Reed-Sternberg (RS) cells. According to the biological properties of GM-CSF and M-CSF, it seems reasonable to suggest the involvement of this particular subset of T cells in the granulomatous process, the peripheral blood polynucleosis, and in the paracrine growth of RS cells.

Clone Cells↗

Macrophage colony-stimulating factor (CSF-1) gene expression in human T-lymphocyte clones.

Macrophage colony stimulating factor (CSF-1) is one of several cytokines that control the differentiation, survival, and proliferation of monocytes and macrophages. A set of 11 human T-cell clones, chosen for their phenotypic diversity, were tested for their ability to express CSF-1 mRNA. After 5 hours of stimulation with phorbol myristate acetate (PMA) + calcium ionophore (Cal), all T-cell clones expressed a major 4-kb transcript, a less abundant 2-kb transcript, and several other minor species. This pattern of expression is typical for CSF-1 mRNAs. Furthermore, of the two alloreactive T-cell clones analyzed, only one showed a definitive message for CSF-1 on specific antigenic stimulation, but with delayed kinetics and less efficiency. Both conditions of stimulation induced the release of CSF-1 protein by T cells in the culture medium. Together, these findings demonstrate for the first time that normal T cells are able to produce CSF-1, previous reports being limited to two cases of tumoral cells of the T-cell lineage.

Antigens↗

Purification and biological properties of vasculotropin, a new angiogenic cytokine.

Angiogenesis is a key step in organ development and remodeling during embryogenesis or tissue regeneration. Some pathological events such as tumor growth or diabetic retinopathy also lead to angiogenesis formation. Several molecules have already been identified as promoting angiogenesis in vivo. Whether their bioactivity is mediated by other angiogenic growth factors or not is still unclear. We identified and purified recently a new angiogenic growth factor. Its unique specificity for vascular endothelial cells led us to provisionally name it vasculotropin (VAS). We describe the biochemical properties of VAS and its biological functions. Structural data showed that VAS is related to the SIS family. In vivo VAS was recognized as an inducer of angiogenesis and vascular permeability. In vitro, despite a moderate action on proliferation, VAS strongly stimulates the cell migration. The screening of the presence of cellular receptors and VAS production showed that the cells which bind VAS do not synthesize it, whereas the cells which synthesize VAS do not bind it. Thus, VAS seems to act through a paracrine pathway. We also present data suggesting that VAS has a lymphokine activity.

Amino Acid Sequence↗

Structure, biosynthesis and biological roles of monocyte-macrophage colony stimulating factor (CSF-1 or M-CSF).

CSF-1 or M-CSF is a homodimeric glycosylated protein purified to homogeneity through its hematopoietic growth factor properties. It has recently been cloned and sequenced as a unique gene encoding several m-RNAs and peptidic species. Its receptor has been identified as the c-fms protooncogene product expressed at the surface of all CSF-1 responsive cells as a transmembrane tyrosine kinase responsible for CSF-1 induced signal transduction. CSF-1 is permanently present in serum and several biological fluids at stable concentrations and can thus be considered as a hormone. In vivo concentrations are mainly regulated by binding, internalization and degradation of the CSF-1 molecule by hepatic and splenic macrophage receptors. Very little is known about the organs and cell types responsible for in vivo CSF-1 synthesis. In vitro, CSF-1 regulates the survival, proliferation and differentiation of the monocyte-macrophage lineage from progenitors to mature cells and activates several important functions of mature tissular macrophages. Recent results obtained with injections of recombinant CSF-1 show that interesting activities, e.g., as ADCC, NK or antiinfectious effects, that had been initially observed in vitro can also be induced in vivo. All these in vitro and in vivo data and the recent availability of large amounts of pure recombinant human CSF-1 point to the diagnostic value of CSF-1 concentration measurements in biological fluids and suggest a therapeutic role for CSF-1 infusion in cancer and infection therapy.

Animals↗

[Mitogenic activity of vasculotropin for peripheral human lymphocytes].

Vasculotropin is a growth factor with a unique specificity for vascular derived endothelial cells. We report that normal human peripheral lymphocytes represent another target for vasculotropin. The mitogenic activity of the medium conditioned by these cells cultured in the presence of Concanavalin A is potentiated by vasculotropin. This effect is exerted more likely through interactions with the soluble mediators rather than through the VAS receptors since VAS binds equally to Concanavalin A stimulated and to unstimulated lymphocytes.

Concanavalin A↗

[Vasculotropin: a new angiogenic growth factor].

A new growth factor, provisionally named vasculotropin (VAS), with a unique specificity for vascular endothelial cells has been purified to homogeneity. VAS is a 45 kDa glycosylated homodimeric protein. Cloning of the VAS gene has evidenced a sequence homology with A and B chains of Platelet-Derived Growth Factor. The receptor on vascular endothelial cells has been shown to be a 180 kDa protein. A 110 kDa receptor has been found on cells that do not respond to the mitogenic effect of vasculotropin, such as lens epithelial cells or corneal endothelial cells.

Growth Inhibitors↗

Alterations in the expression of colony-stimulating factor-1 and its receptor during an acute graft-vs-host reaction in mice.

During the course of an acute graft-vs-host reaction in the mouse we observed a progressive increase in the concentration of CSF-1 in serum and liver, peaking at day 14. In contrast, there was a progressive decrease in the splenic CSF-1 concentration. In vivo studies of 125I-CSF-1 uptake and degradation and in vitro studies of 125I-CSF-1 binding by splenic cells demonstrated that within 24 h of the reaction the number of CSF-1 receptor+ cells had increased by 2-fold and their capacity to express the CSF-1 receptor by approximately 3-fold, resulting in a approximately 2.5-fold increase in the splenic clearance of CSF-1 from the circulation. Inasmuch as at 24 h, serum CSF-1 was not significantly altered, these results are suggestive of an increased rate of release of CSF-1 into the circulation early in the response. The splenic CSF-1-receptor bearing cells were in a Mac-1+ fraction that is consistent with a role for CSF-1 in the generation of host-derived splenic macrophages in acute graft-vs-host reaction.

Animals↗

Constitutive production of human interleukin for DA cells/leukemia inhibitory factor by human tumor cell lines derived from various tissues.

The cytokine HILDA (human IL for DA cells)/LIF (leukemia inhibitory factor), previously reported to trigger the proliferation of the DA1.a cell line was purified to homogeneity from the culture supernatant of the 5637 bladder carcinoma cell line by using a four step procedure, including cationic exchange chromatography at pH 6, Con A affinity chromatography, reverse phase HPLC, and gel filtration HPLC. The purified radiolabeled protein was analyzed in SDS-PAGE and a single band with a molecular mass of 43 kDa was revealed. The iodinated material was then tested in a radioreceptor assay using the M1 cell line as a second target cell line. The binding of the natural 125I hormone was abrogated in a dose dependent and specific fashion by either natural and rHILDA. The limit of signal detection of displacement for the radiolabeled ligand by unlabeled sample was found to be 0.05 ng/ml. The proliferative DA1.a assay and the M1 radioreceptor assay were used to analyze the HILDA content of 17 human tumor cell line culture supernatants, and 12 among them were spontaneously secreting a detectable level of LIF. The secreted amount of HILDA was largely enhanced by treating the cell line with 30 to 80 nM PMA; in these conditions a 10 to 20x increase in the detected amount was observed. The specificity of the detected signal was reinforced by analyzing the mRNA expression of HILDA in the tumor cell lines. The secreting cell lines were found to express various forms of LIF transcripts with a major specie at 3.8 kb.

Animals↗

The protection of hemopoietic mice progenitors by WR-2721 during photodynamic therapy.

Photodynamic therapy is a new concept for in vitro evaluation of bone marrow clearance in leukemia. This treatment eliminates 99.9999% of leukemic cells, but under the same conditions over 50% of normal bone marrow cells are damaged. WR-2721, a thiol compound, is reported to except a protective effect for bone marrow against radiation therapy. This study analyzed the protective effect of WR-2721 during photodynamic therapy with hematoporphyrin derivative. Mice hemopoietic cells were exposed to laser light after sensitization by hematoporphyrin, with or without WR-2721 at 3 dose levels (250, 500, 750 mg/kg). The efficacy of protection was evaluated by GM-CFU assay in collagen gel medium. Results showed significant protection at 25 and 50 j/cm2 (p less than 0.05), but at 75 j/cm2 irradiation only the 750 mg/kg dosage remained protective. The protective factor of WR-2721 is 1.65 (95% confidence interval: 1.38-1.99) WR-2721 is protective against photodynamic lesions but this protection is diminished by increased irradiation energy. The best results are obtained with a dose of 750 mg/kg though this appears to be toxic. Further studies are needed to evaluate the action of WR-2721 on leukemic cells before the use of WR-2721 in bone marrow clearance.

Amifostine↗

Inducible production of macrophage colony-stimulating factor (CSF-1) by malignant and normal human T cells.

The CEM-ON malignant T cell line and long-term cultured normal T cells can be induced to release CSF-1 in their culture supernatants. Chemical inducers (PMA + A23187) and, more interestingly, cytokines (tumor necrosis factor alpha (TNF alpha) and interleukin-1 alpha (IL-1 alpha)), as well as physiological (antigen + IL-2) or specific (anti-CD3 + IL-2 or PMA) stimuli, lead to rapid transient colony-stimulating factor-1 (CSF-1) gene expression and production of biologically active CSF-1. These data suggest that CSF-1 may play a role in the early phases of immune response.

Antigens, Differentiation, T-Lymphocyte↗

Collagen gel cultures for detection of spared hematopoietic progenitors in Asta Z 7557 purged human marrows.

Asta-Z 7557, an in vitro active metabolite of cyclophosphamide, is used for human bone marrow purging in acute leukemias and solid tumors since it is more highly toxic to tumor than normal hematopoietic clonogenic cells. However, doses higher than 80 microM totally inhibit the growth of hematopoietic progenitors in semisolid assays, despite preservation of marrow repopulating ability in vivo. This discrepancy complicates assessment of the functional value of purged grafts. In 11 patients undergoing autologous bone marrow transplantation with 100 microM Asta-Z purged marrow, we investigated the advantages of the collagen gel culture system for detection of spared hematopoietic progenitors. This technique provides a suitable and convenient assay as compared with results with agar. In nine of 11 samples after 14 or 21 days of incubation, up to 100 colonies were observed, (64% monocytic, 27% granulocytic). Day-14 granulocytic colonies were mostly immature, suggesting that they derived from early CFU-GM or pre-CFU-GM. This development of early progenitors could account for the better sensitivity of this technique compared with agar or methylcellulose systems. The mechanism involved as well as the correlation between colony growth in collagen and clinical hematopoietic recovery is also considered.

Adolescent↗

Characterization and NH2-terminal amino acid sequence of natural human interleukin for DA cells: leukemia inhibitory factor. Differentiation inhibitory activity secreted by a T lymphoma cell line.

Six human T lymphomas and an NK-like cell line were tested for their ability to produce HILDA, one of the two human growth promoting activities for the DA1.a cells. Among them, the HSB2 cell line turned out to be the only one secreting significant HILDA activity (200-400 units/ml) after activation with 50 nM phorbol myristate acetate. Subclones of the HSB2 cell line were obtained by limiting dilution experiments. One of them (2B3) was found to secrete 1,000-5,000 units/ml of HILDA after phorbol myristate acetate activation in the presence of 10% fetal calf serum and 200-500 units/ml in serum-free conditions. 2B3-HILDA was purified from serum-free conditioned medium by a four-step procedure including fast flow cationic exchange at pH 6, concanavalin A chromatography, reverse-phase high performance liquid chromatography and gel-filtration high performance liquid chromatography. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of the purified radiolabeled cytokine revealed a single band of Mr 43,000, which co-electrophoresed with the biological activity. The NH2-terminal amino acid sequence of the first residues of the protein were determined and found to be similar to the equivalent residues deduced from the molecularly cloned cytokine. Isoelectric point determination revealed some charge heterogeneity of HILDA, which focused to pH 8.5-9 after neuraminidase treatment. Carbohydrate content of the cytokine was studied by deglycosylation experiments which showed that the O-linked oligosaccharides represented 2,000-3,000 and that the N-linked sugars account for half of the apparent molecular weight of HILDA.

Amino Acid Sequence↗