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Biomedical subjects

G Cordier

Publications and source records attributed to G Cordier.

At least 37 records · Page 2Linked to original sources

Anti-CD4 monoclonal antibody administration in renal transplanted patients.

Administration of anti-CD4 antibodies in rodents was shown to prevent or to reverse spontaneous or experimentally induced autoimmune diseases and to delay organ or skin allograft rejection. Some anti-human CD4 antibodies were shown to be immunosuppressive when injected in monkeys. BL4, and IgG2a anti-human CD4 murine monoclonal antibody, which binds to an epitope located between the two N-terminal domains of the CD4 molecule, was administered to 12 recipients of a renal cadaver allograft, in association with azathioprine (2.5 mg/kg/day) and prednisolone (1 mg/kg/day). Treatment was started 1 day after transplantation and was discontinued after 3 to 14 days (median 5 days). Infusion of 10 or 15 mg of BL4 over 1 hr induced a selective but transient CD4+ lymphocytopenia. The lack of clinical side effect was remarkable. Acute rejection occurred in 4 out of 12 treated patients. Antibody response to BL4 3 weeks after completion of the treatment was demonstrated in only one patient. Residual antibody concentrations in serum, 24 hr after infusion, ranged from 0.1 to 0.5 microgram/ml, that is below the concentration required to achieve 50% inhibition of allogenic mixed lymphocyte reaction in vitro (1-10 micrograms/ml) or to saturate CD4 binding sites (5-10 micrograms/ml). Rapid degradation and dissociation of cell bound BL4 contributed to the failure to achieve high residual serum levels of the antibody.

Antibodies, Anti-Idiotypic↗

Elevation of 3'5' cyclic adenosine monophosphate alters CD3 and CD25 antigens expression in activated T lymphocytes.

Modulation of CD3 molecules and expression of receptors for IL-2 (CD25) are pivotal events of lymphocyte activation and proliferation. Knowing the inhibitory effect of cAMP elevating agents on T lymphocyte activation, we investigated the effect of cholera toxin (CT) and dibutyryl cyclic AMP (dbcAMP) on the modulation of the CD3/Ti complex and on the appearance of the CD25 antigen on PHA-activated human lymphocytes. Cytofluorometry analysis of indirectly anti-CD3 labelled cells showed that CT accelerated the disappearance of CD3 molecules and slowed their reappearance. CT or dbcAMP inhibited the expression of CD25 antigen. In both cases, not only the relative number of CD3+ or CD25+ cells decreased, but the number of CD3 or CD25 antigens per cell as well. Exogenous rIL-2 did not reverse the inhibition of IL-2R expression by CT, showing that this effect is independent of the inhibition of IL-2 production already demonstrated. We conclude that augmenting cAMP levels might affect early steps of activation such as antigen receptor modulation, but do affect more profoundly late IL-2 dependent steps especially the autocrine IL-2 pathway of IL-2 receptor upregulation and the production of IL-2.

Antigens, Differentiation, T-Lymphocyte↗

Variability of ecdysteroid-induced cell cycle alterations in Drosophila Kc sublines.

The cell cycle of two lines isolated from Drosophila Kc cells was followed by flow cytofluorometry and cell counting. The first line is the 8-9K clone which grew in a medium supplemented with 5% serum; the second, named subline KcO, grew in a serum-free medium. The stationary phase is characterized by a G2 cell accumulation: 73% in the 8-9K clone and 50% in the KcO subline. When the medium was supplemented with the steroid moulting hormone 20-hydroxyecdysone, more than 90% of 8-9K cells and 65% of KcO cells were progressively arrested in G2. In the continuous presence of 20-hydroxyecdysone, most of the 8-9K cells remain G2-arrested; no massive G2 release into M was observed and only a few cells were able to divide. When treated for only 3 or 7 days, a transient release into M and proliferation occurred after hormone-free medium renewal, largely masked by G2 cell death. These results are discussed in comparison with other reports on cell cycle alteration induced by ecdysteroids.

Animals↗

Impaired T-dependent immune response in L-dopa treated BALB/c mice.

Various neurotransmitters and neuropharmacological agents can affect lymphocyte responses. The purpose of the present study was to investigate the potential immunological effects of L-dihydroxyphenylalanine (L-dopa), the direct precursor of dopamine, by examining the influence of the in vivo administration of the drug on different functional and phenotypic parameters in BALB/c mice. L-dopa at the dose of 100 mg/kg/day altered T-dependent immune responses. The antibody response to sheep red blood cells (SRBC) was abolished by the drug. The delayed-type hypersensitivity reaction to SRBC was also depressed. Lymphocyte proliferation and generation of cytotoxic T cells in response to allogeneic stimulator cells in vitro were decreased by L-dopa treatment. These suppressive effects were correlated with a decrease in spleen T cells number. However, the proliferative response of spleen cells to concanavalin A was greatly enhanced by the L-dopa treatment. Conversely, there was no evidence for alteration of T-independent immune responses by L-dopa. Hence, the antibody response to TNP-Ficoll, and the proliferation of B spleen cells induced by E. coli lipopolysaccharide were unchanged. Altogether, these results showed that L-dopa which is converted to dopamine in the organism, could selectively affect T-dependent immune responses. The integration of these findings in the immune-neuroendocrine interactions, and the possible sites and mechanisms of action are discussed.

Animals↗

Flow cytometry analysis of cells dispersed from the MtTF4 tumor whose growth is inhibited by estradiol treatment.

The aim of this work was to determine whether treatments of rats with estradiol (E) in conditions known to decrease the proliferation rate, the mitotic index and the thymidine incorporation into the DNA of the MtTF4 tumor act at a specific point in the cell cycle. Two weeks after grafting a piece of tumor under the kidney capsule, adult male Fischer rats were treated or not treated with E. Tumors were collected between 12 h and 11 days later. Cells were dispersed by collagenase-DNAse treatment and fixed with ethanol. DNA content, cell size, cell granularity and protein content were analyzed, alone or in combination with a flow cytometer. E treatments did not apparently modify the distribution of cells according to their DNA content whereas they did increase dramatically cell size, cell granularity and cell protein content. Simultaneous analysis of DNA content and light scattering or protein content allowed us to demonstrate that there was an increase of a population of large granular and protein-rich cells regardless of the phase of the division cycle considered. These effects are time-dependent, dose-dependent and hormone-specific. This work shows both the interest of flow cytometry to describe the consequences of E treatment at any phase of the cycle of cells dispersed from a solid tumor and the limits of this method in the conditions used to specify the E target points: at the present time, it cannot be decided whether E acts at one or several points of the cell cycle for inhibiting tumor growth.

Animals↗

Flow cytometry for separation of keratinocyte subpopulations from the viable epidermis.

Human epidermal cell suspensions were analyzed and sorted with flow cytometry. The desmosome and differentiation-related KM48 monoclonal antibody was used for indirect immunofluorescence and permitted staining of keratinocytes at various stages of the cell maturation. Intensity of the staining correlated with the degree of differentiation. Three sorting gates were chosen to obtain subpopulations which varied distinctly in KM48 expression. The flow cytometry-sorted cells were characterized by their ultrastructural appearance and by the bullous pemphigoid antigen expression. According to the ultrastructure criteria, about 50% of the cells obtained from the "IF negative" gate were basal layer keratinocytes (45.5% expressed bullous pemphigoid antigen); 90% of the "intermediate" gate cells were spinal layer keratinocytes, and over 80% of the cells sorted through the "strongly IF positive" gate were of the granular layer type. The method of keratinocyte separation proposed allows samples to be obtained for further biochemical and functional studies on keratinocyte subpopulations in normal and pathologic skin.

Antibodies, Monoclonal↗

Flow cytometry for immunology.

Improvement in our knowledge in cellular biology is largely related to the use of new tools in quantitative cytology. Among them, flow cytometry was developed with numerous applications in the field of immunology including fundamental and applied research. Since its early beginning it has been associated with monoclonal antibodies to identify immuno-competent cells, to quantify changes in expression of surface determinants, to separate cells subsets prior to the test of their functional properties. Major advances gained using either single or dual-laser systems, multicolour fluorescence and computer facilities for multi-parametric analysis. Using this methodology it was possible to correlate analysis of cell cycle phases and membrane antigens expression. Applications have been developed for the analysis of new drugs in vitro, the evaluation of immunomodulating treatment and for clinical investigations.

Animals↗

Flow cytometry sorting of unlabelled epidermal Langerhans cells using forward and orthogonal light scatter properties.

A variety of techniques based on the presence of specific markers has been proposed to enrich Langerhans cells from epidermal cell suspensions. Computer analysis of multiparameter flow cytometry records involving forward angle and orthogonal scattered light and immunofluorescence of epidermal cells allowed us to determine the scattering properties of Langerhans cells. Unlabelled cells sorted according to these properties were shown to be Langerhans cells by electron microscopy and/or subsequent labelling by anti-HLA-DR monoclonal antibody. The relevance of this method is discussed to sorting viable Langerhans cells which may be used in functional studies and for establishing long-term culture.

Female↗

Pulmonary sarcoidosis: flow cytometry measurement of lung T cell activation.

Lung T cell activation is considered a major factor in the pathogenesis of pulmonary sarcoidosis. Our study was designed to investigate several parameters of T cell activation among blood and alveolar cell populations, including expression of HLA-DR or MLR antigens, increased cell size, and presence of dividing cells. Blood sampling and bronchoalveolar lavages were performed in 20 patients with pulmonary sarcoidosis. Cell populations were analyzed by flow cytometry using immunofluorescence labeling with monoclonal antibodies to lymphocyte differentiation or activation antigens. Cell types were identified by their light-scattering properties. Cell cycle analysis was done after staining with acridine orange. Bronchoalveolar lavage contained a higher proportion of small T4-positive lymphocytes, and large cells of the same phenotype were detected in three patients. T cells bearing HLA-DR antigens were detected in six of 14 bronchoalveolar lavage samples. A marked increased of MLR-positive cells was found in the peripheral blood of eight of eight patients and in the bronchoalveolar lavage of five of seven patients. Increased percentages of cells in the S + G2 + M phases were found in blood lymphocytes from three patients and in half the bronchoalveolar lavage samples. Therefore, a variety of activation markers may be expressed by alveolar T cells. Their qualitative and quantitative assessment may provide additional criteria for staging the intensity of the alveolitis, and the possible relationship between these markers and disease progression or activity deserves long-term clinical investigation.

Adult↗

[Pneumopathy caused by hypersensitivity to isocyanates. Value and dangers of a realistic provocation test].

Organic isocyanates are responsible for bronchial pathology and in rare cases of hypersensitivity pneumonia. We present a new observation supported by a complete lung function assessment, histology of a transbronchial biopsy and a positive bronchial challenge test. The progress of the disorder was followed by repeated lung function measurements and bronchoalveolar lavage. The alveolar response at first showed an alveolar leukocytosis, then a mixed picture, finally becoming a pure lymphocytosis. The activity of the alveolar cells was assessed for T lymphocytes by cytofluorimetry, the presence of DRa like and LMR antigens and lastly for macrophages with Gallium scans. The inflammatory response was followed by analysing the proteins in the lavage liquid. The value of studying alveolar cell-activity and equally alveolar protein content is underlined in this study and reminds one of the character, sometimes unpredicted and dangerous, of challenge tests using isocyanates.

Bronchi↗

Activated lung lymphocytes in hypersensitivity pneumonitis.

T-lymphocyte activation was investigated in peripheral blood and bronchoalveolar lavage (BAL) of four patients with hypersensitivity pneumonitis. The study was performed by flow cytometry with the use of immunofluorescence labeling with monoclonal antibodies to lymphocyte differentiation or activation antigens. Simultaneous measurement of DNA and RNA content by acridine orange staining was used for cell-cycle analysis. The various cell types were identified by their light-scattering properties. T cell activation was demonstrated in the BAL of all patients by the presence of T cells (OKT3 positive) bearing class II histocompatibility antigen (HLA-DR) and activated T cell markers (MLR 1-3). Lymphocyte proliferation was evidenced in BAL but not in blood of patients by an increased percentage of cells in S + (G2 + M) phases. In addition, T-lymphocyte subsets analysis revealed no abnormalities in the blood and no major imbalance in the BAL despite a slightly increased OKT4/OKT8 ratio. The finding of T cell activation and lymphocyte proliferation in hypersensitivity pneumonitis alveolitis is consistent with the contribution of a local type IV immune reaction to the pathogenesis of this disease.

Alveolar Process↗