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Biomedical subjects

J Michon

Publications and source records attributed to J Michon.

At least 19 recordsLinked to original sources

In vitro killing of neuroblastoma cells by neutrophils derived from granulocyte colony-stimulating factor-treated cancer patients using an anti-disialoganglioside/anti-Fc gamma RI bispecific antibody.

Neutrophils isolated from cancer patients treated with granulocyte colony-stimulating factor (G-CSF) express high levels of Fc gamma RI. They exhibited an efficient killing of GD2+ neuroblastoma cells in the presence of an antidisialoganglioside (GD2) mouse monoclonal antibody (MoAb; 7A4, IgG3 kappa). However, this cytotoxicity was totally blocked by human monomeric IgG. In contrast, a bispecific antibody (7A4 bis 22/MDX-260), prepared by chemically linking an F(ab') fragment of 7A4 with an F(ab') fragment of an anti-Fc gamma RI MoAb, 22, which binds outside the Fc binding domain, triggered antibody-dependent cell cytotoxicity, even when neutrophils were preincubated with human monomeric IgG. F(ab')2 22 MoAb abrogated the MDX-260 killing without affecting that of 7A4. The 3G8 MoAb, directed against the Fc gamma RIII binding site, did not inhibit the cytotoxicity induced by either antibody. Thus, these results indicate that G-CSF-activated neutrophils exert their cytotoxic effect against neuroblastoma cells through Fc gamma RI and not Fc gamma RIII, and that the saturation of the high affinity Fc gamma RI by monomeric IgG can be overcome by the use of bispecific antibodies binding epitopes outside the IgG Fc gamma RI binding site. A combined administration of such bispecific antibodies and G-CSF may be, therefore, an efficient therapeutic approach to trigger tumor lysis by cytotoxic neutrophils in vivo.

Antibodies, Bispecific

A multiplex PCR assay for routine evaluation of deletion of the short arm of chromosome 1 in neuroblastoma.

Deletions of the short arm of chromosome 1 (1p) are frequent alterations in neuroblastoma. Although a consensus region of deletion has been mapped to chromosome subband 1p36, recent studies suggest that several distinct loci on this chromosome may be involved in neuroblastoma. Moreover, different patterns of deletion might be associated with different clinical and biological characteristics of the tumours. These findings emphasise the importance of assessing the localisation and the extent of the deletions in neuroblastoma. We developed a technique which allows analysis of loss of heterozygosity at multiple loci on 1p in a single step, making use of a multiplex PCR method. Primers specific for six microsatellite loci mapped in the different regions of interest on 1p were used for simultaneous amplification of DNA, and loss of heterozygosity was determined after separation of the alleles by denaturing polyacrylamide gel electrophoresis. This technique enables a simple analysis of the position and extent of 1p deletions, and can be used for routine evaluation of 1p status in neuroblastoma.

Chromosome Deletion

In vivo targeting of human neuroblastoma xenograft by anti-GD2/anti-Fc gamma RI (CD64) bispecific antibody.

Antidisialoganglioside (GD2) monoclonal antibodies can target in vitro and in vivo neuroblastoma cells. However, their in vivo use is limited by the presence of high levels of circulating IgG which hamper the recruitment of effector cells through the high affinity Fc gamma RI (CD64). A bispecific Fab' x Fab' antiGD2/antiFc gamma RI antibody (7A4 bis 22), which binds outside the IgG binding site of Fc gamma RI, was therefore developed. This antibody binds both human GD2+ neuroblastoma and Fc gamma RI+ activated macrophages in vitro. It can localise a GD2 positive neuroblastoma xenografted on Nu/Nu mice. Scintigraphy tumour/muscle ratios showed that targeting with this antibody has an excellent selectivity for the tumour over normal tissues. Furthermore, although its whole body clearance is more rapid than that of the 7A4 parental antibody over the first 48 h, its selective tumour uptake is similar, as shown by immunoscintigraphy imaging. Thus, such a bispecific antibody may represent an efficient tool for in vivo therapy of neuroblastoma through its ability to recruit Fc gamma RI+ effector cells even in presence of circulating IgG and to bind concomitantly GD2+ tumour cells.

Animals

Sensitive detection of occult Ewing's cells by the reverse transcriptase-polymerase chain reaction.

Recently, Ewing's tumours have been shown to carry specific hybrid transcripts resulting from the fusion of the EWS gene with FLI-1 or ERG genes. Based on the sensitivity and specificity of the detection of these alterations by the reverse transcriptase-polymerase chain reaction technique, we have developed an assay to search for small numbers of Ewing cells in various sites from patients with Ewing's tumour. This method enables the detection of fewer than one tumour cell per million blood mononuclear cells. A total of 28 primary sites and 51 peripheral samples from 36 patients were investigated. Tumour cells could be detected in 4/18 blood samples, 4/15 bone marrow aspirates and 2/18 peripheral stem cell harvests. EWS/FLI-1 and EWS/ERG transcripts being observed in eight and two cases respectively. The type of fusion transcript detected in peripheral site(s) was identical to that observed in the primary site. At diagnosis 5/16 patients (31%) demonstrated either circulating tumour cells or/and occult bone marrow metastasis. After induction therapy, tumour cells were detected in 3/21 patients. This highly sensitive method should be a relevant tool to allow a more accurate clinical assessment of the dissemination of Ewing's tumours.

Base Sequence

Evidence for two tumour suppressor loci on chromosomal bands 1p35-36 involved in neuroblastoma: one probably imprinted, another associated with N-myc amplification.

Previous reports on possible genomic imprinting of the neuroblastoma tumour suppressor gene on chromosome 1p36 have been conflicting. Here we report on the parental origin of 1p36 alleles lost in 47 neuroblastomas and on a detailed Southern blot analysis of the extent of the 1p deletions in 38 cases. The results are remarkably different for tumours with and without N-myc amplification. In the N-myc single copy tumours we show that the lost 1p36 alleles are of preferential maternal origin (16 of 17 cases) and that the commonly deleted region maps to 1p36.2-3. In contrast, all N-myc amplified neuroblastomas have larger 1p deletions, extending from the telomere to at least 1p35-36.1. These deletions are of random parental origin (18 of 30 maternal LOH). This strongly suggests that different suppressor genes on 1p are inactivated in these two types of neuroblastoma. Deletion of a more proximal suppressor gene is associated with N-myc amplification, while a distal, probably imprinted, suppressor can be deleted in N-myc single copy cases.

Chromosome Deletion

[Immunotherapy of malignant diseases].

Cancer immunotherapy has been carried out since the early fifties and first involved nonspecific system (BCG, Corynebacterium parvum, levamisole...). More recently, the production of cytokines as interferons or interleukin 2, the introduction of monoclonal antibodies have allowed a new development to cancer immunotherapy. Nevertheless, these new approaches have to be considered as a step in the biological therapy of cancer.

Animals

Two distinct deleted regions on the short arm of chromosome 1 in neuroblastoma.

The short arm of chromosome 1p is the most frequently altered chromosome segment in neuroblastoma. The alterations, mainly deletions, are thought to be indicative of the presence of a tumor suppressor gene. To further refine the chromosome localization of this gene, we have studied paired constitutional and tumor DNA from a series of 60 patients with neuroblastoma at 2 minisatellite and 23 microsatellite loci dispersed along the short arm of chromosome 1. Twenty-two cases (37%) demonstrated loss of heterozygosity (LOH) at one or more loci on 1p. Surprisingly, the pattern of LOH enabled the identification of two distinct consensus regions of deletions. In agreement with previous reports, one region mapped to the distal short arm of chromosome 1. The other region was localized more proximally on 1p. Deletions observed in tumors involve either one or both of these regions. We show that the correlation between NMYC amplification and 1p deletion is limited to the deletions which involve the proximal region either alone or together with the distal region. These results suggest that two tumor suppressor genes on 1p might be involved in the development of neuroblastoma. Finally, we show that somatic mutations at microsatellite loci, frequently observed in other types of cancer, are rare events in neuroblastoma.

Chromosome Deletion

PCR assay for chromosome 1p deletion in small neuroblastoma samples.

Deletion of the short arm of chromosome 1 is among the most recurrent cytogenetic alterations found in neuroblastoma and has been associated with short survival. However, this prognostic information, which relies on time-consuming techniques, is not yet routinely exploited. In order to set up a reliable and simple routine test to determine 1p deletion in neuroblastoma, we have used the polymerase chain reaction to genotype neuroblastoma DNA at 2 loci containing a variable number of tandem repeats and located on the distal part of the short arm of chromosome 1. Agarose gel electrophoresis and ethidium bromide staining of the amplification products enable a simple determination of constitutional and tumor genotypes at these loci to be made. A total of 37 samples from 29 patients were studied with this technique. Loss of heterozygosity (LOH) could be identified in 8 cases. In each case the results obtained were in agreement with those achieved by the Southern procedure. This technique will be of particular interest in the pretherapeutic analysis of 1p deletions in small tumor samples obtained by fine-needle aspirates of the primary tumor. It should also enable retrospective studies from paraffin-embedded tumor fragments to be made and provide information for the analysis of tumor heterogeneity in neuroblastoma and in other tumors with 1p deletions.

Base Sequence

Etoposide and carboplatin in neuroblastoma: a French Society of Pediatric Oncology phase II study.

PURPOSE: A phase II study of etoposide (VP 16) and carboplatin (CBDCA) was performed in patients with metastatic neuroblastoma (NB). The aim of the study was to find an alternative treatment for induction with different toxicities than the VP 16/cisplatin (CDDP) combination. PATIENTS AND METHODS: Forty-seven patients who were from 6 months to 16 years of age, with either relapsed (29) or primary resistant (18) NB, were included in a cooperative multicenter phase II study of the French Society of Pediatric Oncology (SFOP). The schedule consisted of 5 consecutive days of VP 16 100 mg/m2/d and CBDCA 160 mg/m2/d. RESULTS: The response rate for the 39 assessable patients was 43%; there were four complete remissions and 13 partial remissions. Neither the status of the patients nor the total dose of CDDP that was received previously influenced response. Hematologic toxicity was marked and caused considerable delay between courses (median interval, 39 days). In these heavily pretreated patients, 16% had a more than 50% decrease in creatinine clearance and a 22% World Health Organization (WHO) grade 2 ototoxicity. CONCLUSION: This VP 16/CBDCA combination deserves further evaluation for efficacy and toxicity in newly diagnosed patients, and the combination of both drugs should be considered for high-dose therapy with bone marrow transplantation.

Adolescent

Expression of leucocyte adhesion molecules on 66 clinical neuroblastoma specimens.

LFA-3, ICAM-1, HLA.ABC and HLA.DR expression was analyzed on 66 neuroblastoma specimens. HLA.ABC was expressed on 26 specimens, HLA.DR on 2, LFA-3 on 20 and ICAM-1 on 10. HLA.ABC and LFA-3 were positive on ganglioneuroblastoma or ganglioneuroma, but they were negative on neuroblastoma, independently of the clinical staging; HLA.ABC and LFA-3 were induced in vivo by chemotherapy in parallel with tumoral cell differentiation, in both the primary and the metastases. The expression of ICAM-1 was restricted to 5 of the 10 low-grade stage-1 or stage-2 specimens, 1 stage-3 specimen, and the primary tumors of 2 patients with stage-4 disease, analyzed hence at diagnosis and after chemotherapy (4 specimens); metastatic cells obtained in 1 of these patients were negative. HLA.ABC and LFA-3 expressed on both mycN-negative and -positive specimens, whereas ICAM-1 was restricted to MYCN-negative specimens. LFA-3 diffusely stained partially differentiated neuroblasts, Schwann cells and ganglion cells. The expression of HLA.ABC on differentiated neuroblasts varied from one sample to another and within the same tumor; Schwann cells were strongly positive, but ganglion cells were negative. In positive samples, ICAM-1 was expressed on differentiated neuroblasts and Schwann cells, but negative on ganglion cells; however, most of the differentiated tumors were ICAM-1-negative, suggesting ICAM-1 induction by unknown local signal. The 4 markers were negative on undifferentiated neuroblasts. The distribution of these 4 markers on clinical specimens was in agreement with their reactivity on fetal tissues, as well as with results obtained on neuroblastoma cell lines before and after in vitro treatment with IFN-gamma.

Alkaline Phosphatase

Interleukin-2 and lymphokine-activated killer cells in 15 children with advanced metastatic neuroblastoma.

A phase II trial using interleukin-2 (IL2) and lymphokine-activated killer (LAK) cells was carried out in an attempt to treat children with end-stage neuroblastoma. Fifteen patients (median age, 7 years) were enrolled in the study. Twelve were in relapse after massive chemotherapy and autologous bone marrow transplantation (ABMT), and three had a primary refractory disease after conventional chemotherapy. IL2 was administered as an 18 x 10(6) IU/m2/d continuous infusion. One course consisted of a double 5-day treatment period separated by a 6-day break. Cytapheresis to harvest LAK progenitor cells was performed during the rest period. After a 4-day in vitro culture, LAK cells were reinjected during the second cycle of therapy. A phenotypic and functional analysis of immunologic parameters was conducted along with the therapeutic protocol. Toxicity was significant with two toxic deaths (cardiotoxicity and respiratory distress). The reinfusion of large amounts of LAK cells was clearly involved in one case, but this particularly severe toxicity has to be related to the patient's status (ie, heavy pretreatment). No significant clinical response was seen. The immunologic monitoring showed phenotypic and functional modifications in these patients before initiation of treatment and an unexpected absence of evolution of these parameters during IL2 therapy. Although the origin of these immune dysfunctions is not clear, they could be involved in the failure of IL2 therapy. Future studies of IL2 therapy in neuroblastoma should be undertaken earlier in the course of the disease.

Antibodies, Monoclonal

Acceleration of hemopoietic recovery after autologous bone marrow transplantation by low doses of peripheral blood stem cells.

Twenty patients with advanced malignant disease submitted to autologous bone marrow transplantation with marrow either unpurged (10 patients) or purged in vitro with mafosfamide (10 patients) after ablative chemotherapy, received simultaneously autologous peripheral blood stem cells (PBSC) collected during one to three 3 h cytapheresis procedures. The kinetics of the hematological recovery of these patients were compared to those of a group of patients suffering from similar diseases and grafted in the same institution with either unpurged marrow only (14 patients) or purged in vitro with mafosfamide (six patients). The median times to reach 10(9)/l leukocytes, 0.5 x 10(9)/l polymorphs, and 50 x 10(9)/l platelets were reduced by 10, 10, and 13 days, respectively, in patients transfused with both autologous bone marrow and peripheral blood stem cells as compared to those receiving bone marrow only. A reduction in the numbers of days spent in hospital post-transplantation (p less than 0.01), of days of fever greater than 38 degrees C (p = NS), and of platelet (p = 0.07) and of red blood cell transfusions (p less than 0.01) were also observed in the group of patients grafted with bone marrow and PBSC.

Adolescent

Inhibitory effect of monocytes on "lymphokine activated killer" (LAK) cell activity.

The effects of placing activated monocytes in the presence of LAK cells was investigated. It was shown that the addition of monocytes to a preparation of rIL2-stimulated lymphocytes decreased LAK cell activity. This inhibition is enhanced in the presence of rIFN gamma. To analyze the mechanisms of inhibition, monocytes and lymphocytes were cultured separately, on opposite sides of a porous membrane which allowed the passage of molecules. Under such conditions, monocytes inhibited the activity of LAK cells to the same degree that a mixed culture does, suggesting a possible role of diffusible factor(s). Neither indomethacin nor PGE2 fully inhibited LAK cell activity, indicating that PGE2 is not the major monocyte-derived factor inhibiting LAK cell activity. It was also demonstrated that LAK cells can kill monocytes, but that IFN gamma can protect the monocyte from the toxic effect. This protective mechanism may be responsible for enhancing the inhibitory activity of monocytes.

Cell Communication