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R Bataille

Publications and source records attributed to R Bataille.

At least 127 records · Page 7Linked to original sources

gamma-Interferon in multiple myeloma: inhibition of interleukin-6 (IL-6)-dependent myeloma cell growth and downregulation of IL-6-receptor expression in vitro.

In multiple myeloma, malignant plasma cells from most patients with active disease proliferate spontaneously when cultured for 5 days in vitro. This spontaneous proliferation is related to the endogenous production of interleukin-6 (IL-6), the major myeloma-cell growth factor. A 50% inhibitory dose (100 U/mL) of human recombinant gamma-interferon (hr gamma-IFN) blocked the proliferation of myeloma cells almost completely in all 19 patients analyzed. This inhibition was not caused by suppression of endogenous IL-6 production and was also observed in the presence of an excess of hrIL-6. hr gamma-IFN was also completely inhibitory in four human myeloma cell lines (HMCL) whose growth is totally dependent on the addition of exogenous hrIL-6. This inhibition was associated with a 47% to 73% decrease in membrane IL-6-binding gp80 protein as well as with a 90% decrease in the amount of gp80 mRNA in HMCL. These results are in line with recent reports indicating that gamma-IFN inhibited several IL-6-dependent biologic processes. They suggest a need to reconsider why previous preliminary clinical trials failed to demonstrate a beneficial effect of gamma-IFN in multiple myeloma.

Bone Marrow↗

[Cytokines and lymphoplasmocytic proliferations: essential role of interleukin 6].

Interleukin 6 (IL-6) is a major in vitro growth factor for tumoral cells in human multiple myeloma and myeloma cell lines, whose growth is completely dependent on exogenous IL-6, can be reproducibly obtained. IL-6 is overproduced in patients with active myeloma, mainly by the tumoral environment. Injection of anti-IL-6 antibodies to myeloma patients with terminal disease and extramedullary proliferation completely blocked myeloma-cell proliferation in vivo and completely inhibited the C-reactive protein production. Moreover, the serum CRP level is a strong prognostic factor in myeloma, increased serum CRP levels (reflecting an increased IL-6 production) being associated with a poor prognosis. Other cytokines control the IL-6 mediated myeloma cell proliferation. GM-CSF, IL-3 and G-CSF stimulate the IL-6 responsiveness of myeloma cells without affecting the endogenous IL-6 production. Interferon-gamma completely inhibits the IL-6 mediated myeloma-cell proliferation without affecting the endogenous IL-6 production and IFN alpha and TNF alpha stimulate the proliferation of our IL-6 dependent myeloma-cell lines by inducing an autocrine production of IL-6 in these cell lines.

Cell Division↗

Increased and highly stable levels of functional soluble interleukin-6 receptor in sera of patients with monoclonal gammopathy.

Soluble human interleukin-6 receptor (sIL-6R) was measured in the serum of 30 healthy individuals, 32 individuals with monoclonal gammopathy of undetermined significance (MGUS), 20 patients with early multiple myeloma (MM) and 54 patients with overt MM. The serum activity recognized by an immunoradiometric assay was determined to be sIL-6R, because of its binding capacity to IL-6 and its molecular mass of 55 kDa. All sera of healthy individuals contained sIL-6R (mean value: 89 ng/ml, range 17-300 ng/ml). Serum sIL-6R levels were increased by 51% in patients with MGUS (mean value: 135 ng/ml, p < 0.005), by 44% in patients with early myeloma (mean value: 128 ng/ml, p < 0.001) and by 116% in patients with overt MM (mean value: 193 ng/ml, p < 0.001). In patients with MM, a complete lack of correlation (p > 0.7) was found between serum sIL-6R levels and other previously recognized prognostic factors in this disease, particularly serum IL-6 levels and those factors related to tumor cell mass. The independence of serum sIL-6R levels on tumor cell mass was directly demonstrated by studying four patients with MM treated with autologous bone marrow transplantation for periods of between 320 and 760 days. These levels were found to be remarkably stable and constant, independent of whether patients relapsed or achieved complete remission. Finally, physiological concentrations of sIL-6R were found to increase by tenfold the sensitivity of human myeloma cell lines to IL-6. These observations suggest a high control of the sIL-6R level in vivo, and, possibly, an important functional role of this circulating protein in patients with monoclonal gammopathies.

Female↗

Effects of an anti-interleukin-6 (IL-6) murine monoclonal antibody in a patient with acute monoblastic leukemia.

Because IL-6 has been involved in the pathogenesis of acute monoblastic leukemia, we investigated the in vitro anti-proliferative effect and the in vivo anti-tumoral effect of an anti-IL-6 murine monoclonal antibody (mAb) in a patient with M5B type acute leukemia. In the current study, we clearly show the IL-6 dependence of monoblastic cell viability and proliferation in vitro in short-term cultures of malignant cells and the clinical activity of the anti-IL-6 murine mAb. The complete neutralization of IL-6 in vivo was associated with a transient but complete disappearance of malignant monoblastic cells in the peripheral blood, with improvement or even normalization of several other biological parameters of disease activity. No immunization against the anti-IL-6 murine mAb was observed.

Aged↗

Overall interleukin-6 production exceeds 7 mg/day in multiple myeloma complicated by sepsis.

We previously reported that injection of anti-IL-6 monoclonal antibody (mAb) in a patient with multiple myeloma (MM) induced the circulation of high amounts of IL-6 in the form of IL-6/anti-IL-6 monomeric complexes. This made it possible to estimate overall daily IL-6 production in patients in vivo, which had not been achieved in animals or humans before. In this study, estimations are given for a patient with MM who developed Escherichia coli sepsis during anti-IL-6 mAb. During the first 12 days, the overall IL-6 production was estimated at 1.5 to 2.0 micrograms/day. On day 13, serum IL-6 concentration, in the form of IL-6/anti-IL-6 complexes, increased 1000-fold and was 1.7 x 10(6) pg/ml, in relation with the development of E. coli sepsis. Overall IL-6 production was estimated to be greater than 7 mg/day, i.e. 3500 times higher than before sepsis. Serum IL-6 levels in the form of monomeric immune complexes remained very high for 20 days after sepsis indicating the persistence of very high overall IL-6 production (100 to 3500-fold greater than pre-sepsis production). This study demonstrates a considerable and persistent potential for IL-6 production in this patient during and after sepsis.

Antibodies, Monoclonal↗

Cytokine gene expression in human multiple myeloma.

In the present study the gene expression of cytokines promoting in vitro myeloma-cell growth was investigated by Northern blot analysis using total RNA of 36 tumour samples of patients with multiple myeloma (MM) or plasma cell leukaemia and poly(A)+ RNA of 10 human myeloma cell lines (HMCL). These cytokines included interleukin (IL)-1 alpha, IL-1 beta, IL-3, IL-6, granulocyte-macrophage (GM)-colony-stimulating factor (CSF) and granulocyte (G)-CSF. IL-1 beta, IL-6 and G-CSF genes were coexpressed in most patients, although at variable levels. IL-1 alpha transcripts were detected in 32% of patients in whom coexpression of IL-1 beta gene was found. IL-3 gene was not expressed in patients' cells and GM-CSF mRNA was detected in only 1/32 patients. No detectable transcripts for the above cytokines were present in HMCL, whereas IL-6 gene was expressed in 2/10 HMCL. We also looked for the presence of transcripts for IL-2, leukaemia inhibitory factor (LIF) and transforming growth factor (TGF)beta in cells of tumour samples from the same patients and in HMCL. IL-2 gene was not expressed in MM patients and HMCL. Weak expression of LIF gene was detected in three patients (9%), and transforming growth factor beta (TGF beta) mRNA was observed in 12/12 tumour samples analysed and all HMCL. These results suggest that, among cytokines shown to control myeloma-cell growth in vitro, IL-1, IL-6 and G-CSF could play a role in the development of myeloma disease in vivo.

Blotting, Northern↗

Analysis of the B-cell compartment in plasma cell leukemia and multiple myeloma: immunoglobulin gene rearrangement of EBV-infected B-cell lines.

Multiple myeloma (MM) is defined as a tumoral expansion of plasma cells occurring in the bone marrow and sometimes in the peripheral blood (plasma-cell leukemia, PCL). Many reports have demonstrated a clonal expansion of B cells bearing the same idiotypic determinants as the myeloma protein (idiotypic B cells) in MM, suggesting that they could belong to the malignant clone. In order to investigate whether the B-cell population is a malignant component or not, either in the peripheral blood of patients with PCL or in the bone marrow of patients with MM, we derived B-cell lines by infecting, with the Epstein-Barr virus (EBV), cultures in limiting dilution of mononuclear cells from six patients. A limiting dilution culture was used to prevent the elimination of slowly proliferating clones by the more rapidly dividing ones, and thus to get the most exact representation of the B-cell repertoire of these patients. The cloning efficiency of the EBV-infected cells was similar in patients and healthy individuals (range: 1 in 100 to 1 in 1650 B cells). All of the clones obtained from a single patient exhibited different clonal immunoglobulin gene rearrangements (IGR), proving the validity of our cloning technique. No tumoral clones (61 clones analysed) showed the IGR pattern specific of autologous myeloma cells. These results indicate that malignant plasma cells cannot be immortalized with EBV. These results show that, if malignant B cells (pre-switch or post-switch) exist, they could be present only in a minor population, and the corollary of this is that there is a major population of non-malignant B cells in the sites of tumoral proliferation of patients with MM. This is remarkable in view of numerous reports showing a profound defect of the polyclonal B lymphopoiesis in these patients, and even an absence of B lymphocytes. Thus, these results challenge the existence of a major compartment of malignant idiotypic B cells and favor the hypothesis of non-malignant B cells sharing cross-reactive idiotypes with the autologous myeloma protein.

Antigens, CD↗

C-reactive protein and beta-2 microglobulin produce a simple and powerful myeloma staging system.

Multiple myeloma (MM) staging procedures are still inadequate for detection of the optimal therapeutic procedure for an individual patient. The Durie & Salmon staging system and serum beta 2-microglobulin (beta 2M) are used worldwide because of their easy clinical application. Other prognostic parameters, such as myeloma cell proliferative activity, are of exceeding importance, but are not as simple as standard methods. Recently, interleukin-6 (IL-6) has been shown to be a major growth factor for MM. IL-6 is a pleiotropic cytokine acting on several cell lineages, and, at the hepatocyte level, stimulates the synthesis of acute phase proteins, such as the well known C-Reactive Protein (CRP). Serum CRP concentration actually reflects the IL-6 activity. A survival analysis carried out in 162 MM patients at diagnosis showed that serum CRP level is a highly significant prognostic factor. Moreover, serum CRP was independent of serum beta 2M. This feature allowed stratification of MM patients into 3 groups according to CRP and beta 2M serum levels: (1) low risk group, CRP and beta 2M less than 6 mg/L (50% of patients); (2) intermediate risk group, CRP or beta 2M greater than or equal to 6 mg/L (35% of patients); (3) high risk group, CRP and beta 2M greater than or equal to 6 mg/L (15% of patients). Survival was 54, 27, and 6 months, respectively (P less than .0001). We thus propose a new and powerful myeloma staging system based on simple and reliable laboratory evaluations.

C-Reactive Protein↗

Up-regulation of interleukin (IL)-6 receptor gene expression in vitro and in vivo in IL-6 deprived myeloma cells.

Myeloma cells absolutely require interleukin-6 (IL-6) for growing in vivo in patients with multiple myeloma and exogenous IL-6-dependent myeloma cell lines have been reproducibly obtained. In this study we show a dramatic up-regulation of the IL-6 receptor (gp80 chain) gene expression in myeloma cell lines following the removal of exogenous IL-6. Such a regulation was also known to occur in IL-6-deprived myeloma cells in vivo in three patients who were treated with optimal doses of anti-IL-6 monoclonal antibodies. The direct effect of IL-6 on IL-6 receptor gene expression in myeloma cells was further confirmed by adding IL-6 to an autonomously growing myeloma cell line.

Blotting, Northern↗

Interleukin-6 dependence of advanced malignant plasma cell dyscrasias.

The authors, and others, clearly have established that interleukin-6 (IL-6) is the major growth factor for human myeloma cells in vitro. It is a critical conceptual point whether or not IL-6 remains involved in the final phases of disease progression in malignant plasma cell dyscrasias. To answer this question, the authors evaluated the in vitro IL-6 dependence of the proliferation of myeloma cells from the bone marrow of 13 patients with advanced multiple myeloma (MM) and from the peripheral blood of 13 patients with plasma cell leukemia (seven primary and six secondary cases). Their results show that myeloma cell growth was totally dependent on IL-6 in 25 of 26 patients. Myeloma cells of only one patient did not respond to IL-6 in vitro. Actually, the cells from this patient were not proliferating in vivo. Identical patterns of IL-6 dependence of myeloma cells were found in the peripheral blood and bone marrow from four patients with PCL. The authors conclude that, in the terminal phase of malignant plasma cell dyscrasias, tumoral growth is totally dependent on IL-6 in vitro. This observation is critical in considering the investigation of anti-IL-6 therapy in patients with advanced MM.

Aged↗

CD5 B lymphocyte antigen in monoclonal gammopathy.

Because B lymphocytes bearing the CD5 antigen have been involved in many B-cell malignancies, we have investigated the presence of the CD5 B-cell antigen on B and plasma cells in monoclonal gammopathy. Quantification of CD5 B cells was made in the peripheral blood of seven individuals with monoclonal gammopathy of undetermined significance (MGUS) and in that of 21 patients with multiple myeloma (MM). The bone marrow of ten patients with MM was also studied. Patients with progressive MM presented a significant reduction in both B and CD5 B lymphocytes (i.e., percentages and absolute numbers), when compared with individuals with MGUS and patients with stable MM. These latter individuals and patients did not differ from healthy donors. No CD5 B cells were found in the bone marrow of patients with MM. Moreover, no CD5 antigen could be detected on eight freshly established human myeloma cells lines including six totally dependent on interleukin-6. However, it was weakly expressed on two standard myeloma cell lines not requiring exogenous interleukin-6 (i.e., RPMI 8226 and U 266). In conclusion, our data show mainly an overall reduction of the polyclonal CD5 B lymphocytes similar to what is observed for the other polyclonal B lymphocytes in patients with active MM. Finally, the expression of the CD5 antigen human myeloma cell lines is not constant.

Antigens, CD↗

High amounts of circulating interleukin (IL)-6 in the form of monomeric immune complexes during anti-IL-6 therapy. Towards a new methodology for measuring overall cytokine production in human in vivo.

A patient with plasma cell leukemia was treated with anti-interleukin (IL)-6 monoclonal antibodies (mAb) for 2 months. Using chromatography on protein A-Sepharose, anti-murine-IgG-Sepharose, anti-IL-6-mAb-Sepharose and gel filtration at pH 2.3, we have demonstrated that the anti-IL-6 mAb, by preventing the binding of IL-6 to its cell membrane receptor and its renal elimination, has induced huge amounts of IL-6 to circulate in the form of monomeric immune complexes. By using this observation, we have developed a mathematical modelling that allows the determination of the overall daily production of IL-6 in this patient, which was in the range of 15 micrograms per day. Overall in vivo production of cytokines has never been evaluated in animals or in humans before.

Antibodies, Monoclonal↗