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C Jasmin

Publications and source records attributed to C Jasmin.

At least 55 records · Page 3Linked to original sources

Autocrine IL-2-dependent growth of a newly established CD3+, CD16-, CD56+, CD57+, J(H)-, TCRbeta-, TCRgamma- leukemia cell line (NOI-90).

Leukemic cells from a 45-year-old male patient with a CD3+, CD56+, CD57+, CD7+ acute lymphoblastic leukemia were cultured in vitro in the absence of any added growth factor for up to 6 years and a continuous lymphoblastoid cell line (NOI-90) was established. NOI-90 cells have the same phenotype and karyotype as initial leukemic cells. Southern blot of DNA from NOI-90 cells showed that TCRbeta, TCRgamma, and J(H) were in germ line. Two and 25% of NOI-90 cells were positive when stained with the IOT14 and 7G7/B6 moAbs, which recognize the CD25 molecule (IL-2R alpha chain); moreover, 4% and 13% of the cells were positive when stained with the TU-27 and mik beta3 moAbs which recognize the CD122 molecule (IL-2Rbeta chain). Equilibrium binding experiments with radiolabelled IL-2 revealed the presence of a small number of high affinity IL-2R on both fresh and continuously growing cells. Media conditioned by NOI-90 cells could induce proliferation of an IL-2-dependent cell line and this IL-2 activity could be detected by a sensitive immunoenzymatic assay using antibodies recognizing distinct epitopes of IL-2. Moreover, IL-2 activity could be adsorbed by immunoaffinity on anti-IL-2 polyclonal purified IgG and the retained molecule displayed a m.w. of 14.5 kDa in SDS-PAGE. In addition, IL-2 immunoreactive molecules could be revealed in the cytoplasm of the cells. Finally, IL-2 fixed on the cell membrane could be detected by indirect immunofluorescence. Although added IL-2 could not induce cell proliferation, monoclonal antibodies against CD25, CD122 and IL-2 could specifically inhibit spontaneous cell proliferation in a dose-dependent manner. NOI-90 cells failed to demonstrate any cytotoxic activity against the K-562, Raji or Daudi cells. These findings indicate that NOI-90 cells are of non-T, non-B, origin lacking NK activity but proliferate under an autocrine pathway which involves, at least partly, the IL-2/IL-2R system.

CD3 Complex↗

Role of interleukin (IL)-2 and IL-15 in the tumour progression of a melanoma cell line MELP, derived from an IL-2 progressor patient.

MELP is an interleukin (IL)-2 receptor (IL-2R; alpha+ beta+ gamma-) melanoma cell line that was derived, before the beginning of the immunotherapy, from a patient whose metastasis increased in size during treatment with IL-2/interferon-alpha. In these cells, continuous culture in the presence IL-2 (1000 UI/ml) causes the selection of a cell sub-line (termed MILG) expressing the gamma-chain which is tumorigenic in nude mice. Here, we further analysed the characteristics of MELP and MILG cells as well as clones selected at limiting dilution in the presence of high concentrations of IL-2 or IL-15, or those selected after transfection for the expression of a human IL-2 transgene (MELP-CL1). MELP cells, but not six other melanomas cell lines, shed two soluble immunosuppressive molecules, CD25 and intercellular adhesion molecule-1, whose levels also strongly increase in vivo during immunotherapy. In vitro MELP cells express transcripts for IL-6, transforming growth factor, basic fibroblast growth factor and vascular-endothelial growth factor. Cloning at limiting dilution was obtained in culture fed with IL-2 or IL-15. All these clones, as MILG cells, express the transcript for the IL-2R gamma chain. This could favour improved interactions with cytokines using this chain. By contrast, MELP-CL1 cells, which secrete low amounts of biologically active IL-2 (200 UI/10(6) cells) exhibit a phenotype and growth characteristics similar to those of the parental MELP cells. Indeed, a crosslinking experiment with 125I-IL-2, has showed that MELP and MELP-CL1 cells display a scant IL-2 binding ability that is strongly increased in MELP cells fed for 1 week with 1000 UI/ml IL-2. These cells, as well as MILG cells express a betagamma-complex which can also bind IL-15. IL-2 induces a rapid tyrosine phoshorylation in MILG cells, which is followed by a prolonged induction of c-fos and c-jun genes. By contrast, in MELP cells IL-2 only causes a delayed induction of c-myc gene. All MELP derivatives, but not MILG cells, express the transcripts for IL-15, which is not secreted but is present as an intracellular protein. All MELP cells express the transcript for the IL-15R alpha chain. MELP-CL1 cells are not tumorigenic in nude mice, whereas MILG cells form rapidly growing tumours in 75% of the mice. Coinjection at the same site of MILG and MELP-CL1 cells causes the rapid regression of MILG tumours in 80% of the mice, whereas their bilateral injection causes the rapid development of MILG tumours in 100% of the nude mice. Finally, treatment in nude mice of MILG cells with low amounts of IL-2 (1000 UI per mouse) and IL-15 (50 ng per mouse) induces the development of much more aggressive tumours.The expression of functional IL-2Rs in a subset of human melanomas could be responsible for tumour progression.

Adult↗

Differential expression of transforming growth factor-beta, basic fibroblast growth factor, and their receptors in CD34+ hematopoietic progenitor cells from patients with myelofibrosis and myeloid metaplasia.

Myelofibrosis with myeloid metaplasia (MMM) is a myeloproliferative disorder characterized by clonal expansion of hematopoiesis and marrow fibrosis. Previous results from our group have shown an increased production of two potent fibrogenic factors also involved in the regulation of primitive hematopoietic cells, namely transforming growth factor-beta1 (TGF-beta1) and basic fibroblast growth factor (bFGF), in patients with MMM. It is likely to assume that the myeloproliferation characteristic of this disease may result from an abnormal proliferation of CD34+ hematopoietic progenitors. Thus, we were particularly concerned in studying the gene and protein expression of these cytokines and their receptors in CD34+ progenitors purified from the peripheral blood of MMM patients by using semiquantitative reverse transcriptase-polymerase chain reaction and immunolabeling methods. Our data showed that the expression of TGF-beta1 is not altered in patients CD34+ cells; in contrast, the expression of TGF-beta type II receptor is significantly decreased in such cells, as compared with CD34+ cells from healthy subjects. Regarding bFGF, the very low expression of the cytokine and its type I and II receptors detected in normal CD34+ cells contrasts with that observed in patients' CD34+ cells, which is significantly higher. Our results might be a clue for a better understanding of the mechanism(s) involved in the dysregulation of hematopoiesis in MMM. Actually, the increased expression of bFGF and its receptors associated with the reduction of the TGF-beta binding receptor in CD34+ progenitors from MMM patients might facilitate the expansion of hematopoietic progenitors, not only by stimulating their growth and/or survival, but also by overcoming negative regulatory signals.

ADP-ribosyl Cyclase↗

IL2 triggers a tumor progression process in a melanoma cell line MELP derived from a patient whose metastasis increased in size during IL2/INFalpha biotherapy.

Human melanomas may express both in vivo and in vitro functional IL-Rs and may be expected to directly respond to injected IL2. This may generate biological situations which may be favourable for the patient, but also for tumor progression. Here, we analyse the latter hypothesis. MELP is a melanoma cell line derived from a patient whose metastasis increased in size during IL2/IFN alpha biotherapy [correction of biotheraphy]. These cells have been characterized in vitro for their phenotype and for their sensitivity to IL2. In vitro MELP cells express an IL2-R alpha(+) beta(+) gamma(-) phenotype and IL2 treatment induces the acquisition of new functional characteristics represented (i) by the increased surface expression of two markers of metastatic evolution (ICAM-1 and CD44); (ii) by the stable induction of the IL2-R gamma with the appearance of functional IL2-R beta complex, which are also recognized by GM-CSF; (iii) by the inhibition of transcription of a regulatory cytokine such as IL6; (iv) by a differential effect of IL6 on CD44 surface expression in MELP cells treated or not with IL2 (MILG cells); (v) by the acquisition of faster growth rates and appearance of piling up and multilayer cellular organization; (vi) by the development of rapidly growing tumors in nude mice. IL2 induces in MELP cells a tumor progression process that could mimic the metastatic evolution observed in vivo during biotherapy. Therefore, MELP phenotype may help to define a subset of patients in which IL2 therapy may trigger unfavourable evolution.

Adult↗

CD44 and hyaluronan binding by human myeloid cells.

The CD44 cell surface molecule has been shown to be the principal cell surface receptor for hyaluronan (or hyaluronic acid), a glycosaminoglycan component of marrow extracellular matrix. However, its affinity for hyaluronan is not constitutive, since it depends on the cell type, the stage of differentiation and on activation by external stimuli including certain anti-CD44 antibodies and phorbol esters. Except for a few lymphoid cell lines, hematopoietic cells do not spontaneously bind hyaluronan and initial studies reported that, contrary to lymphocytes, myeloid cells could not be activated to bind hyaluronan. Because CD44 plays an important role in the initial phases of hematopoiesis, as shown by experiments using blocking anti-CD44 monoclonal antibodies, its capacity to mediate adhesion of primitive myeloid cells has been investigated. It was found that CD44 could mediate spontaneous adhesion to hyaluronan of immature myeloid cell lines KG1, KG1a, and TF1, which serve as a model for hematopoietic progenitors. However, despite expressing high amounts of CD44, no more than 15% of bone marrow progenitors could adhere to hyaluronan. Recent experiments have shown that a very important feature of CD44 is its capacity to be rapidly activated by certain antibodies and cytokines (GM-CSF and KL) from a low affinity to a high affinity state for hyaluronan. These data shed light on striking similarities in the functional regulation of CD44 and of the two integrin receptors VLA-4 (a4b1), and VLA-5 (a5b1), which are also expressed on hematopoietic progenitors. The relevance of these data to the regulation of normal hematopoiesis and mobilization of CD34+ progenitors in the view of cell grafting is analyzed. In addition, we show that in idiopathic myelofibrosis, the amount of hyaluronan is markedly increased in the extracellular matrix from the myeloproliferative spleen. Considering that the production of cytokines is enhanced in this disease, we discuss whether CD44-hyaluronan interaction may have a role in the pathophysiology of this myeloproliferative syndrome.

Antibodies, Monoclonal↗

[Gene therapy in oncology: applications to lung cancer].

Gene therapy defines a new therapeutic avenue whose site of action is at the level of the gene itself; viral vectors (adenovirus, retrovirus, herpes virus) or non-viral (liposomes, plasmids) enable the transfer of a fraction of DNA (transgenic) to the target itself. In this review, we present recently acquired data on the mechanisms of oncogenesis and anti-tumor immunity which have enabled the application of several therapeutic strategies in oncology; the transfer of gene(s), coding for cytokines or for coactivation factors in order to develop active immunotherapy; the transfer of suicides genes; the transfer of multidrug resistance gene (MDR1); the transfer of tumor suppressor genes or of cDNA coding for antisense oligonucleotides in order to correct genomic anomalies which are responsible for the malign phenotype. The development of gene therapy demands the resolution of a number of technical difficulties such as vectorisation, targeting, and the expression of the stability of the trans-gene. Phase 1 trials in man have established the innocuity of certain vectors and have confirmed the expression of trans-genes (marker genes). Compared to monogenic hereditary diseases, the "molecular heterogenetic" of bronchial tumours, the consequence of the instability of the genome and the diversity of amplified oncogenes are a major difficulty. In addition, each one of these approaches prevents limiting factors: for example the exclusive targeting of malign cells is an indispensable pre-requisite for the transfer of suicide genes and in the same way the expression the tumour in antigens is the pre-requisite for the development of active immunotherapy. We report the overall results of applied trials for pulmonary carcinomas on murine models and present their applications which are underway in men.

Animals↗

Characterization of the 5' region of the CD10/neutral endopeptidase 24.11 gene.

We have characterized the 5' region of the CALLA/CD10 gene which has been shown to be identical to the membrane-associated enzyme neutral endopeptidase 24.11 (NEP). There is no CAAT or TATA box in the 5' flanking region, upstream of exon 1, but a GC rich region with several Sp1 binding sites. We have detected several putative initiation transcription sites by primer extension and by nuclease S1 analysis. Moreover by reverse transcriptase-polymerase chain reaction, we demonstrated the existence of a new exon: exon 1bis. This exon can be alternatively spliced as has already been described for exon 1 and exon 2.

Base Sequence↗

Non random activation of endogenous interleukin-2, (IL-2), IL-2 receptor alpha and IL-2 receptor beta genes after transfection of mouse fibroblasts with a cDNA for the alpha chain of the human IL-2 receptor.

Mouse fibroblasts do not ordinarily express components for the interleukin-2 receptor (IL-2R alpha, beta, and gamma). An analysis of these cells by reverse transcription followed by polymerase chain reaction, however, indicates the presence of transcripts specific for the IL-2R beta and gamma genes. Transfection of the cDNA for the alpha chain of the human IL-2R into LTK- mouse fibroblast cell line (L3 cells) leads, in long-term cultures, to the formation of transcripts of endogenous mouse IL-2, IL-2R alpha and beta genes, as detected by Northern blotting. Based upon the results of the binding of 125I-labeled IL-2 to the transfected cells, three IL-2-binding proteins of 55 kDa, 65 kDa and 75 kDa were expressed by the transfected cells. The 65-kDa and 75-kDa proteins bound IL-2 in the presence of monoclonal antibodies for the IL-2R alpha chain. These polypeptides assembled to form high-affinity IL-2R, as shown by Scatchard binding analyses. The receptors were functionally active, since the expression of H-2k major histocompatibility complex antigens on the surface membranes of L3 cells was enhanced by exposing the cells to IL-2. Activation of the IL-2 gene was also observed in long-term cultures of L alpha beta cells, another LTK- transfectant expressing the human IL-2R alpha chain. This type of gene activation was not observed in LTK- fibroblasts transfected with cDNA for human IL-2 or IL-2R beta genes. In L3 and L alpha beta cells, transcription of the endogenous IL-2 gene was suppressed by cyclosporin A and enhanced by cycloheximide. These data may have implications for gene therapy of cancer cells.

Animals↗

In vitro chronopharmacology of recombinant mouse IL-3, mouse GM-CSF, and human G-CSF on murine myeloid progenitor cells.

Circadian changes in in vitro pharmacodynamic effects of recombinant mouse interleukin-3 (rmIL-3), rm granulocyte-macrophage colony-stimulating factor (rmGM-CSF), and recombinant human G-CSF (rhG-CSF) were investigated in 418 male B6D2F1 mice. Seven distinct experiments were staggered from July to December 1991. All mice were standardized for 3 weeks with a lighting schedule consisting of 12 hours of light and 12 hours of dark (LD12:12). In each experiment, bone marrow was sampled from separate groups of nine to 10 mice each every 4 hours for 24 hours. Data were analyzed with analysis of variance (ANOVA) and Cosinor. This latter method computes the probability of rhythm detection and its parameters. Femoral myeloid progenitors were quantified using the colony-forming units granulocyte/macrophage (CFU-GM) assay in the presence or absence of recombinant CSFs. For each CSF, the number of colonies is a function of circadian time of bone marrow exposure (ANOVA and Cosinor; p < 0.0001) with the values at peak time being double those found at the trough. Peak CSF efficacy occurred at 3 hours after light onset (HALO, early rest span) irrespective of CSF type or dose. Furthermore, in the absence of any added CSF, the number of clusters varied significantly according to sampling time, with a similar peak at 3 HALO (ANOVA and Cosinor; p < 0.001). Further in vivo chronopharmacologic experiments are needed to assess the relevance of these in vitro rhythms in bone marrow responsiveness to hematopoietic growth factors.

Animals↗

Circadian rhythm-modulated (CRM) chemotherapy of metastatic breast cancer with mitoxantrone, 5-fluorouracil, and folinic acid: preliminary results of a phase I trial.

A phase I feasibility trial with a 5-day schedule of circadian rhythm-modulated mitoxantrone (MIT), 5-fluorouracil (5-FU, 600 mg/m2/day), and folinic acid (FA, 300 mg/m2/day) was performed in patients with metastatic breast cancer. The MIT dose was escalated from 2 to 2.5 and 2.75 mg/m2/day in consecutive groups of six patients. All three drugs were infused intravenously with a multichannel ambulatory pump. Maximal delivery rate was programmed at 4.00 hours for 5-FU and FA and at 16.00 hours for MIT. Eighteen women with advanced metastatic breast cancer were included in the trial between April 1991 and July 1993. Seventeen of 18 patients had received previous chemotherapy, which contained anthracyling for 16 of them. Tolerability of the first treatment course was assessed 10 and 21 days after course onset. Neutropenia was dose dependent and the most frequent toxicity (grade 3: 4 patients; grade 4: 7 patients), yet only a single hospitalization was required for fever and neutropenia. A single patient exhibited grade 3 mucositis. No grade 3 or 4 diarrhea, nausea, or vomiting was encountered. This chronomodulated infusion of MIT, 5-FU, and FA showed acceptable toxicity in heavily pretreated patients. For the phase II evaluation of the antitumor activity of this circadian schedule, a dose of 2.75 mg/m2/day of MIT is recommended using a monthly regimen. Further dose escalation may be performed in patients without bone metastasis and good performance status.

Antineoplastic Combined Chemotherapy Protocols↗

A phase I-II trial of five-day continuous intravenous infusion of 5-fluorouracil delivered at circadian rhythm modulated rate in patients with metastatic colorectal cancer.

The toxicity of 5-fluorouracil (5-FU) was decreased by two to eight-fold if this drug was injected in mice near the middle of the day (rest span) rather than in the middle of the night (activity span). If the rhythm in 5-FU toxicity is linked to the sleep-wakefulness endogenous circadian cycle across species, the least toxic time in man would correspond to 4.00 hours at night. The availability of a single-reservoir programmable-in-time external ambulatory pump (Chronopump, Autosyringe, Hooksett, USA) allowed us to perform a first test of this hypothesis. Five-FU was infused for 5 consecutive days, via an implanted venous access port, with peak drug delivery at 4.00 hours and no infusion from 18.00 to 22.00 hours. Each course was repeated after a free interval of 16 days. Intrapatient dose escalation was planned from 4 to 9 g/m2/course (800 to 1800 mg/m2/day x 5 days) if toxicity was less than grade 2 according to the World Health Organization (W.H.O.). Thirty-five patients with metastatic colorectal cancer were treated; 15 (41%) had received previous therapy, 22 (63%) had W.H.O. performance status of 2 or greater, and 19 (54%) had two or more sites involved. Grade 2 or greater toxicity was encountered in less than 5% of the courses, indicating an adequate control of toxicity via dose adjustment. Oral mucositis, diarrhea, and/or hand-foot syndrome limited dose escalation, and their incidence was dose dependent. Median maximal tolerated dose was 7.5 mg/m2/course in 30 patients assessed for this endpoint.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

CD44 mediates hyaluronan binding by human myeloid KG1A and KG1 cells.

Hyaluronan-binding function of the CD44 molecule has not been so far detected in myeloid cells. To study pure populations of primitive myeloid cells, we investigated the hyaluronan-binding function of the CD44 molecule from three myeloid cell lines: KG1a, KG1, and HL60. Both KG1a and KG1 cells express the CD34 antigen characteristic of the hematopoietic stem cells and HL60 cells do not; accordingly, KG1a and KG1 cells are generally considered as the most primitive and HL60 cells as the most mature of these cell lines. Measurement of cell adhesion to hyaluronan-coated surfaces (using 51Cr-labeled cells) and of aggregate formation in hyaluronan-containing solutions, showed that 45% of KG1 cells and 22% to 24% of KG1a spontaneously bind to hyaluronan, whereas HL60 cells do not either spontaneously or after treatment with a phorbol ester. Hyaluronan binding by KG1a and KG1 cells is mediated by CD44, because it is specifically abolished by monoclonal antibodies (MoAbs) to this molecule. The binding might require phosphorylation by protein kinase C and perhaps also by protein kinase A, because it is prevented by staurosporine, which inhibits these enzymes. 12-O-tetradecanoylphorbol-13-acetate (TPA) which activates protein kinase C, rises to 80% the proportion of KG1 and KG1a cells that bind hyaluronan; this activation is dependent on protein synthesis, for it is abrogated by cyclophosphamide, a protein synthesis inhibitor. Binding of TPA-treated cells to hyaluronan is only partly inhibited by MoAb to CD44: this suggests that TPA may induce synthesis of a hyaluronan-binding protein distinct from CD44. Considering the abundance of hyaluronan in human bone marrow, these results suggest that CD44 may be involved in mediating precursor-stroma interaction.

Alkaloids↗

How interleukin-2 can affect human fibroblasts behaviour.

The alpha and beta chains of the Interleukin 2 receptor (IL2R alpha and IL2R beta) were detected at the surface of cultured fibroblastic cells by flow cytometry, using monoclonal antibodies (mAbs) directed against the IL2R alpha and the IL2R beta. These cells bound FITC-IL2 and this binding was inhibited by an excess of cold ligand and by mAbs recognizing the IL2 binding sites of the alpha and beta chains. Internalisation studies show that the fibroblastic IL2R/IL2 complex is internalized at 37 degrees C. By Northern Blot analysis we detected the presence of specific transcripts for the IL2R alpha and IL2R beta genes. Finally, the addition of exogenous IL2 specifically modified the surface expression of different antigens involved in the process of immunosurveillance. Indeed, IL2, at concentrations affecting the high affinity IL2R, caused the down regulation of ICAM-1 protein. IL2 also decreased the surface expression of the class I and class II HLA. By contrast, the use of IL2 concentrations which saturate the intermediate affinity IL2R beta caused the up regulation of the surface expression of the ICAM-1 protein. ICAM-1 is the natural ligand for the LFA-1 integrin expressed at the surface of lymphoid cells. ICAM-1/LFA-1 interactions favour homotypic and heterotypic cell-cell adhesion. Since human fibroblasts express an LFA-1 like molecule, we propose that in these cells IL2 can modify homotypic and heterotypic interactions acting on the surface expression of ICAM-1 protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Line↗

IL-2 production by myofibroblasts from post-radiation fibrosis in breast cancer patients.

The origin of cell activation in post-radiation fibrosis and its chronic extension are still poorly understood. Since local IL-2 cancer treatment sometimes triggers intraperitoneal fibrosis we have analyzed three myofibroblastic cell strains from post-radiation skin fibrosis (FPR7, FPR10 and FPR15) for their interactions with IL-2. In these cells we have observed the surface expression of the two chains of the IL-2R (IL-2R alpha beta), the presence of the 0.9 kb transcript specific for the IL-2 gene and, by flow cytometry with anti-IL-2 mAbs, the presence of IL-2 immunoreactive material inside the cells up to 8 days after subculture. The FPR cell lines secreted IL-2, as determined by ELISA. The secreted IL-2 is biologically active since it sustains the proliferation of the IL-2-dependent murine lymphoid cell line CTLL2 and preincubation with anti-IL-2 blocking mAbs completely abolishes this activity. Overnight incubation of FPR cells with polyclonal anti-IL-2 antibodies leads to a decreased expression of the membrane adhesion molecules ICAM-1 and CD44, suggesting the existence of an autocrine/paracrine loop involved in the surface expression of these antigens. By contrast, in normal adult skin fibroblasts we did not detect IL-2 gene activation. In vivo, IL-2 secretion by post-radiation fibrosis fibroblasts and the subsequent up-regulation of ICAM-1 and CD44 may represent key events during the process that leads to radiation fibrosis.

Breast Neoplasms↗