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Biomedical subjects

D Heymann

Publications and source records attributed to D Heymann.

At least 73 records · Page 4Linked to original sources

Association of human growth hormone and calcium phosphate by dynamic compaction: in vitro biocompatibility and bioactivity.

The association of therapeutic agents with biomaterials has been achieved through various techniques, such as coating of the ceramic block surface or drug incorporation into ceramics. The dynamic compaction method recently was developed to consolidate drug-loaded calcium phosphate powder without a sintering step. In the present work, human recombinant growth hormone was loaded on biphasic calcium phosphate powder and consolidated by a specific process of cold sintering (dynamic compaction). Analyses of the biocompatibility of compacted pellets (mouse L929 fibroblastic cell culture) and the bioactivity of the drugs released by them (growth hormone bioassay) were performed. This report demonstrates the biocompatibility of the compacts prepared by dynamic compaction. L929 cell proliferation was maintained and the capacity to secrete fibronectin was conserved in the presence of compacted materials. Comparison of released growth hormone integrity, revealed by radioimmunoassay and eluted stain bioassay, has shown that the biological activity of growth hormone was totally preserved after dynamic compaction. However, 35% of loaded growth hormone was not released in our experimental conditions, probably because of the inaccessibility of growth hormone within the granulated compacts. Dynamic compaction shows good potential for the production of biomaterials capable of releasing therapeutic agents in situ.

Animals↗

Upmodulation of multinucleated cell formation in long-term human bone marrow cultures by leukaemia inhibitory factor (LIF).

Inflammatory processes are mediated by many cellular events involving different cell types (leukocytes, monocytes, stromal cells, etc.). Numerous soluble mediators regulate these reactions, including leukaemia inhibitory factor (LIF), a cytokine which may play an important role in inducing acute-phase protein synthesis by hepatocytes during inflammation. This study was designed to determine the effects of LIF on the human monocyte/macrophage lineage and provide a better definition of its behaviour during systemic inflammation. In-vitro exposure of human long-term bone marrow cultures to recombinant human LIF significantly increased (about two-fold) the number of multinucleated cells (MNC) formed after three weeks of culture. These LIF-induced MNC expressed tartrate-resistant acid phosphatase, and LIF increased this intracellular activity by about 50%. MNC displayed phagocytotic activity but were unable to degrade sperm whale dentin or respond to human calcitonin. They did not possess the main characteristics of osteoclasts and were in fact macrophage polykaryons. Our results demonstrate for the first time that LIF can induce macrophage polykaryon formation from human bone marrow culture, suggesting that this factor not only produces leukocytes but also has a direct influence on the monocyte/macrophage lineage.

Acid Phosphatase↗

Osteoclastic resorption of calcium phosphate ceramics with different hydroxyapatite/beta-tricalcium phosphate ratios.

To study the influence of calcium phosphate ceramic solubility on osteoclastic resorption, neonatal rabbit bone cells were cultured for 2 days on hydroxyapatite (HA), beta-tricalcium phosphate (beta-TCP) and two types of biphasic calcium phosphate (BCP) with HA/beta-TCP ratios of 25/75 and 75/25. Solubility was regulated by varying the ratio of less-soluble HA and more-soluble beta-TCP. After removal of stromal cells by pronase E treatment, ceramic surfaces were observed by scanning electron microscopy. Osteoclasts resorbed BCP most extensively, with an HA/beta-TCP ratio of 25/75, producing typical lobulated, zig-zag track-like resorption lacunae. On pure beta-TCP, which had the highest solubility in acid, osteoclasts formed smaller discontinuous island-like lacunae. The resorption pattern may have been modified by the large number of calcium ions released into the acidic microenvironment at the osteoclast-ceramic interface. No resorption lacunae were found on the other specimens. The extent of osteoclastic resorption of calcium phosphate ceramics might, to a certain degree, be proportional to solubility, although this was not the case when solubility was very high. It would appear that ceramic solubility influences osteoclast resorption activity.

Animals↗

STD vaccines--an overview.

OBJECTIVES: To describe the role and current status of vaccine research against sexually transmitted diseases (STDs). METHODS: The available literature was reviewed with particular emphasis on bacterial STDs. RESULTS: Strategic approaches to possible implementation of STD vaccine programmes were analysed. The status of vaccines against bacterial STDs (syphilis, chancroid, gonorrhoea, and chlamydia) is described in detail. CONCLUSIONS: The development of safe and effective STD vaccines offers a potent tool for the control of STDs, including direct and indirect prevention of HIV infection. Future priorities should be in the development of vaccines against gonorrhoea, chlamydia, and syphilis. When such vaccines become available, caution should be exercised to ensure that they do not interfere with the effectiveness of other prevention programmes.

Chancroid↗

Human monkeypox in Kasai Oriental, Zaire (1996-1997).

Monkeypox is an orthopoxvirus with enzootic circulation in the rainforests of central and western Africa; the virus can be transmitted to humans and cause a syndrome clinically similar to smallpox (e.g., pustular rash, fever, respiratory symptoms, and in

Journal Article↗

Cytokine production by human thymic epithelial cells: control by the immune recognition of the neurohypophysial self-antigen.

Oxytocin (OT) has been shown to be the dominant peptide of the neurohypophysial family expressed by thymic epithelial and nurse cells (TEC/TNC) in various species. Thymic OT is not secreted but, after translocation of a hybrid neurophysin/MHC class I protein, is integrated within the plasma membrane of TEC, thus allowing its presentation to pre-T cells. In order to further demonstrate that thymic OT behaves like a membrane antigen, we assessed the effect of mAbs to OT on cytokine productions by cultures enriched in human TEC. 75-85% pure TEC cultures were prepared from human thymic fragments. Using immunofluorescence and confocal microscopy, ir-OT, ir-interleukin-1 beta (IL-1 beta), ir-interleukin-6 (IL-6) and ir-leukemia inhibitory factor (LIF) could be detected in these TEC cultures. ir-OT was restricted to TEC, while some ir-IL-6 and ir-LIF were also seen in occasional fibroblasts. In basal conditions, ir-IL-6 and ir-LIF (but not ir-OT and ir-IL-1 beta) were detected in the supernatants of human TEC cultures. MAbs to OT induced a marked increase of ir-IL-6 and ir-LIF secretion in TEC cultures. No significant effect was observed using mAbs against vasopressin, mouse immunoglobulins, or control ascitic fluid controls. These data show that OT is fully processed and recognized by specific mAbs at the outer surface of TEC plasma membrane. They further support that thymic OT behaves as the self-antigen of the neurohypophysial family.

Antibodies, Monoclonal↗

Leukemia inhibitory factor (LIF) and oncastsin M (OSM) high affinity binding require additional receptor subunits besides GP130 and GP190.

The structure of Leukaemia Inhibitory Factor (LIF) and Oncostatin M (OSM) receptors is not completely resolved. Heterodimerization of gp190 and gp130 has been proposed to form a high affinity receptor (type I) shared by LIF and OSM, while heterodimerization of gp130 with an as yet unidentified subunit is proposed to form a high affinity OSM receptor (type II) not shared by LIF. We have analysed the binding stoichiometries, cross-competition properties and cross-linking patterns of LIF and OSM to the choriocarcinoma JAR cell line. The data obtained are not fully accounted for by the model proposed above. They indicate rather that third chains of 140-150 kDa molecular mass, in addition to the gp130 and gp190 subunits, enter in the structure of LIF and OSM high affinity receptors. These results were strongly supported by transfection experiments in CHO cells. CHO cells co-transfected with the human gp190 and gp130 cDNAs expressed high affinity LIF receptors but no high-affinity OSM receptors, indicating that an additional component is required for high affinity OSM binding. High-affinity LIF cross-linking on these cells also showed the association of LIF with a 150 kDa component in addition to the gp130 and gp190 subunits.

Animals↗

Leukaemia inhibitory factor (LIF) production in pleural effusions: comparison with production of IL-4, IL-8, IL-10 and macrophage-colony stimulating factor (M-CSF).

Leukaemia inhibitory factor (LIF), a pleiotropic cytokine detected in various inflammatory body fluids, plays a poorly defined role in the pathogenesis of human disease. This study was conducted to correlate the LIF concentrations in pleural effusions with the type of pathology and to compare its levels with those of IL-4, IL-8, IL-10 and M-CSF for a given pathology. Pleural fluids from 97 patients were assayed for cytokines by specific ELISAs. The concentrations of all cytokines tested were higher in infectious pleural effusions than in other pathologies (malignant or transudative). The lowest levels were observed for transudates. Significant differences were noted between pathology groups for each cytokine. A good correlation was observed between LIF and IL-8 for malignant effusions [regression correlation coefficient (RC) = 0.480, P < 0.01], between LIF and IL-4 for infectious disorders (RC = 0.543, P < 0.05) between LIF and IL-10 for transudates (RC = 0.798, P < 0.001) and between M-CSF and IL-8 in all pathologies tested except for primitive neoplasia (P < 0.05). The LIF concentration in pleural space seems to be strongly associated with the intensity of inflammatory reaction. The LIF production appears to have different regulatory patterns between aetiologic groups.

Aged↗

Development of enzymo-immunoassays (EIA) for macrophage colony-stimulating factor (M-CSF) and leukaemia inhibitory factor (LIF) by using the same capture and signal generating polyclonal antibody.

Specific high titre polyclonal antibodies rapidly obtained by intralymphnode immunization of rabbits with recombinant M-CSF and LIF (< 60 micrograms/animal) have been used to develop specific, accurate and sensitive EIAs. The same batch of purified anti-M-CSF or anti-LIF Igs has been used for the coating of 96-well plates (capture antibody) and for the quantitative detection of the bound cytokine molecules (soluble biotinylated Igs). The sensitivity (M-CSF: 10 IU/ml, LIF: 20 pg/ml), accuracy (intra-assay-CV: 8.2 to 12.8% for M-CSF; 0 to 19.9% for LIF) and reproducibility (inter-assay-CV: 7.9 to 13.6% for M-CSF; 4.9 to 17.5% for LIF) are equivalent to those for previously published RIAs or EIAs. These assays are highly specific since 11 other cytokines (Epo: 3 IU/ml; G-CSF: 100 IU/ml; CNTF, OSM, SCF, IL-1 beta, IL-2, IL-3, IL-6, IL-11, IL-13: 5 ng/ml) tested in both EIAs were not detectable. Finally, the M-CSF and LIF concentrations measured in various biological fluids were found to be similar to those measured by us and others with different assays. In conclusion, the methodology used for M-CSF and LIF EIAs presented in this work represents a valuable approach for most cytokines, particularly when they are still available in reduced amounts.

Adult↗

Biodegradation of synthetic biphasic calcium phosphate by human monocytes in vitro: a morphological study.

Biodegradation processes (both intra- and extracellular) occur immediately after implantation of calcium phosphate (CaP) ceramics. Monocytes and macrophages, among the first cells to appear in wound healing, are largely implicated in phagocytosis and may be involved in CaP degradation because of their sensitivity to secreted cytokines. We tested the behaviour of human monocytes placed on the surface of hydroxyapatite (HA) and biphasic calcium phosphate (BCP) tablets in the presence of vitamin D3 (VD3) and interferon gamma (INF gamma). After short-term culture (6 days), morphological events were observed in histological and scanning electron microscopy studies, and degradation lacunae were characterized. There were cell prints but no pits on the HA surface, but pits appeared near cells on the BCP surface. Preincubation of biomaterial in culture medium was essential. Variations in cell morphology were observed in different culture types. In the presence of VD3, degradation was greater than in the control, and cells were more polarized and rounded. With INF gamma, cells were extensively spread out on the sample surface, and the biomaterial seemed to be extracted from the surface by cells. Thus, monocytes are clearly influenced by soluble factors (vitamins, cytokines) and could be key cells in initiating the degradation of biomaterial.

Biodegradation, Environmental↗

Ultrastructural study of degradation of calcium phosphate ceramic by human monocytes and modulation of this activity by HILDA/LIF cytokine.

Biodegradation of ceramics in vivo is achieved essentially by monocytes and multinuclear cells (osteoclasts). Monocytes are the key element in this process because they intervene first at the biomaterial implantation site during inflammatory reaction. In this work, in vitro studies were conducted on an ultrastructural scale to determine the specific behavior of these cells with regard to a calcium phosphate (CaP) ceramic. Two types of phagocytosis were observed when cells came into contact with the biomaterial: either CaP crystals were taken up alone and then dissolved in the cytoplasm after disappearance of the phagosome membrane or they were incorporated together with large quantities of culture medium, in which case dissolution occurred after the formation of heterophagosomes. Phagocytosis of CaP coincided with autophagy and the accumulation of residual bodies in the cells. Addition of HILDA/LIF factor to these cultures induced a very marked decrease in phagocytotic activity directed at the capture of CaP crystals and culture medium. Autophagy was reduced, and residual bodies were rare or absent. This study specifies the role of monocytes in CaP biodegradation and demonstrates for the first time that HILDA/LIF has a biological effect on this cell line.

Animals↗

Heterogeneity of B lineage acute lymphoblastic leukemias (B-ALL) with regard to their in vitro spontaneous proliferation, growth factor response and BCL-2 expression.

The spontaneous proliferation and the effects of 8 various growth factors (GF) were evaluated on leukemic cells from 27 patients with B-lineage ALL. Two groups of ALLs were distinguished. ALLs from group I (21 patients) exhibited a low spontaneous proliferative rate and were stimulated by IL-3 + IL-7 +/- SCF and/or LIF, while ALLs from group II (6 patients) had a high spontaneous proliferative rate and did no longer require this combination of GFs for proliferation. No effect of bFGF, IGF-I, IL-10 and IL-11 alone or in combination, was observed. Such differences in the behaviour of B-ALLs indicated that the GF requirement of ALL blasts was not related to the presence of serum in the culture nor to the pattern of reactivity of ALL blasts for B lymphoid markers or CD34 antigen. Furthermore, we showed in 1/9 cases that high proliferation might be due to an overexpression of the bcl-2 proto-oncogene and to the acquisition of an autocrine secretion.

Adult↗

[Modulation of integrin alpha-v-beta-1 expression on human tumor cells by leukemia inhibitory factor (LIF) and oncostatin M (OSM)].

Integrins belong to a large family of heterodimeric membrane glycoproteins which mediate cell-cell or cell-extracellular matrix interactions. These interactions could play a major role during the migration of tumor cells across the extracellular matrix and vascular endothelium and would thus appear to be a requisite for the metastatic process. Treatment of the Foss human melanoma cell line with LIF or OSM, two cytokines involved in acute-phase response, increased the expression of membrane alpha v beta 1 by 1.5-2 fold. The same phenomenon was observed on the SK-N-SH human neuroblastoma cell line. This modulation, which was inhibited by specific monoclonal antibodies against alpha v or beta 1 integrin subunits, was concomitant with improved tumor cell attachment to the fibronectin matrix. Similar results were obtained after TNF-alpha treatment. Our findings demonstrate the ability of LIF and OSM to modulate tumor cell capacity to adhere to the matrix component, suggesting a potential role for these cytokines in modulation of tumoral progression.

Antineoplastic Agents↗

Upmodulation of alpha v beta 1 integrin expression on human tumor cells by human interleukin for DA cells/leukemia inhibitory factor and oncostatin M: correlation with increased cell adhesion on fibronectin.

Integrins belong to a large family of heterodimeric membrane glycoproteins which mediate cell-cell or cell-extracellular matrix interactions. These interactions could play a major role during the migration of tumor cells across the extracellular matrix and vascular endothelium and would thus appear to be requisite for the metastatic process. Pretreatment of the Foss human melanoma cell line with HILDA/LIF or OSM, two cytokines involved in acute-phase response, increased the expression of membrane alpha v beta 1 1.5-2-fold. The same phenomenon was observed on the SK-N-SH human neuroblastoma cell line. alpha v beta 1 upmodulation was concomitant with improved tumor cells attachment to the fibronectin matrix. This greater adhesion of tumor cells to fibronectin was inhibited by specific monoclonal antibodies against alpha v or beta 1 integrin subunits. Similar results were obtained after TNF-alpha treatment. Our findings demonstrate the ability of HILDA/LIF and OSM to modulate tumor cell capacity to adhere to the matrix component, suggesting a potential role for these cytokines in modulation of tumoral progression.

Cell Adhesion↗

Human interleukin for DA cells/leukemia inhibitory factor and oncostatin M enhance membrane expression of intercellular adhesion molecule-1 on melanoma cells but not the shedding of its soluble form.

ICAM-1-mediated cell-cell adhesion is essential for different immunologic functions including non-MHC-restricted cytotoxicity. The shedding of a soluble form of ICAM-1 from melanoma impairs immune recognition and leads to tumour escape. Pretreatment of the Foss human melanoma cell line with HILDA/LIF or OSM, two cytokines involved in acute-phase response, increased the expression of membrane ICAM-1 twofold without inducing sICAM-1 shedding. Conversely, TNF-alpha, in the same conditions, strongly stimulated membrane ICAM-1 expression and the shedding of the soluble form. The same phenomenon was observed on the A375 human melanoma cell line. ICAM-1 upregulation was concomitant with an increase in the non-MHC-restricted cytotoxicity of tumour cells mediated by LAK cell.s This higher sensitivity to LAK lysis was abolished by RR1/1, a specific monoclonal antibody against ICAM-1. Our results demonstrate for the first time the ability of HILDA/LIF and OSM to upregulate ICAM-1 expression on the melanoma cell surface, suggesting a potential role for these cytokines in human immune surveillance during tumour progression.

Binding Sites↗

Culturing of cells from giant cell tumour of bone on natural and synthetic calcified substrata: the effect of leukaemia inhibitory factor and vitamin D3 on the resorbing activity of osteoclast-like cells.

Osteoclastic cells from giant cell tumour of bone (GCT) of bone provide a rich source for investigation of cellular mechanisms leading to formation of multinucleated cells, the resorption process and involvement of hormones and cytokines in these events. In the present study we investigated the effect of 1,25-dihydroxyvitamin D3 (VD3) and leukaemia inhibitory factor (LIF) on the resorbing potential of osteoclast of GCT origin using quantitative image-analysis of resorption lacunae in an in vitro dentine model. While VD3 unsignificantly increased the number of resorption pits and implicated surface after 7 days of GCT cell culturing, the stimulative effect of LIF was statistically significant. In cultures supplemented with LIF (5000 U/ml) the number of lacunae and resorption surface increased by 38% and 55%, respectively, when compared with control cultures. We suggest that both osteotropic agents increased osteoclastic activity, as the number of multinucleated cells was similar in control and experimental cultures. Seeding of GCT cells on biphasic calcium phosphate substratum revealed the relative inability of osteoclastic cells to resorb this synthetic material.

Adult↗

Modulation of LIF expression in human melanoma cells by oncostatin M.

Oncostatin M (OSM) and leukemia inhibitory factor (LIF) are involved in stimulation of acute-phase protein during inflammatory processes. We recently suggested that these two cytokines may play a role in human immune surveillance during tumor progression. The present study was designed to determine the capacity of OSM in modulating LIF production by human tumor cells and to provide a better definition of the interactions between these two molecules during inflammatory reaction due to neoplasia. LIF content in culture supernatants was assayed by a specific ELISA (sensitivity: 25 pg/ml). In vitro exposure to recombinant OSM increased LIF production 2 to 6-fold in all human melanoma cell lines tested. This effect was not limited to melanoma cell types since LIF production was also enhanced by an MDA breast undifferentiated adenocarcinoma line. Moreover, a synergistic effect was observed for OSM and TNF-alpha. LIF increase was apparently due to up-modulation through LIF synthesis since LIF transcript expression was also enhanced in these tumor cell lines. It is concluded that OSM can induce inflammatory reaction not only directly but also via LIF production by tumor cells.

Adjuvants, Immunologic↗