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Biomedical subjects

G M Marshall

Publications and source records attributed to G M Marshall.

At least 19 recordsLinked to original sources

The retinoid anticancer signal: mechanisms of target gene regulation.

Retinoids induce growth arrest, differentiation, and cell death in many cancer cell types. One factor determining the sensitivity or resistance to the retinoid anticancer signal is the transcriptional response of retinoid-regulated target genes in cancer cells. We used cDNA microarray to identify 31 retinoid-regulated target genes shared by two retinoid-sensitive neuroblastoma cell lines, and then sought to determine the relevance of the target gene responses to the retinoid anticancer signal. The pattern of retinoid responsiveness for six of 13 target genes (RARbeta2, CYP26A1, CRBP1, RGS16, DUSP6, EGR1) correlated with phenotypic retinoid sensitivity, across a panel of retinoid-sensitive or -resistant lung and breast cancer cell lines. Retinoid treatment of MYCN transgenic mice bearing neuroblastoma altered the expression of five of nine target genes examined (RARbeta2, CYP26A1, CRBP1, DUSP6, PLAT) in neuroblastoma tumour tissue in vivo. In retinoid-sensitive neuroblastoma, lung and breast cancer cell lines, direct inhibition of retinoid-induced RARbeta2 expression blocked induction of only one of eight retinoid target genes (CYP26A1). DNA demethylation, histone acetylation, and exogenous overexpression of RARbeta2 partially restored retinoid-responsive CYP26A1 expression in RA-resistant MDA-MB-231 breast, but not SK-MES-1 lung, cancer cells. Combined, rather than individual, inhibition of DUSP6 and RGS16 was required to block retinoid-induced growth inhibition in neuroblastoma cells, through phosphorylation of extracellular-signal-regulated kinase. In conclusion, sensitivity to the retinoid anticancer signal is determined in part by the transcriptional response of key retinoid-regulated target genes, such as RARbeta2, DUSP6, and RGS16.

Animals↗

Measurement of the Michel parameter rho in muon decay.

The TWIST Collaboration has measured the Michel parameter rho in normal muon decay, mu(+)--> e(+)nu(e)nu (mu). In the standard model, rho = 3/4. Deviations from this value imply mixing of left- and right-handed muon and electron couplings. We find rho=0.750 80+/-0.000 32(stat) +/- 0.000 97(syst) +/- 0.000 23, where the last uncertainty represents the dependence of rho on the Michel parameter eta. This result sets new limits on the W(L)-W(R) mixing angle in left-right symmetric models.

Journal Article↗

Function of a genetically modified human liver cell line that stores, processes and secretes insulin.

An alternative approach to the treatment of type I diabetes is the use of genetically altered neoplastic liver cells to synthesize, store and secrete insulin. To try and achieve this goal we modified a human liver cell line, HUH7, by transfecting it with human insulin cDNA under the control of the cytomegalovirus promoter. The HUH7-ins cells created were able to synthesize insulin in a similar manner to that which occurs in pancreatic beta cells. They secreted insulin in a regulated manner in response to glucose, calcium and theophylline, the dose-response curve for glucose being near-physiological. Perifusion studies showed that secretion was rapid and tightly controlled. Removal of calcium resulted in loss of glucose stimulation while addition of brefeldin A resulted in a 30% diminution of effect, indicating that constitutive release of insulin occurred to a small extent. Insulin was stored in granules within the cytoplasm. When transplanted into diabetic immunoincompetent mice, the cells synthesized, processed, stored and secreted diarginyl insulin in a rapid regulated manner in response to glucose. Constitutive release of insulin also occurred and was greater than regulated secretion. Blood glucose levels of the mice were normalized but ultimately became subnormal due to continued proliferation of cells. Examination of the HUH7-ins cells as well as the parent cell line for beta cell transcription factors showed the presence of NeuroD but not PDX-1. PC1 and PC2 were also present in both cell types. Thus, the parent HUH7 cell line possessed a number of endocrine pancreatic features that reflect the common endodermal ancestry of liver and pancreas, perhaps as a result of ontogenetic regression of the neoplastic liver cell from which the line was derived. Introduction of the insulin gene under the control of the CMV promoter induced changes in these cells to make them function to some extent like pancreatic beta cells. Our results support the view that neoplastic liver cells can be induced to become substitute pancreatic beta cells and become a therapy for the treatment of type I diabetes.

Animals↗

Cloning and characterization of the human neural cell adhesion molecule, CNTN4 (alias BIG-2).

We report the isolation and characterization of human contactin 4 (CNTN4), a brain-derived, immunoglobulin superfamily molecule-2 (alias BIG-2) as a candidate gene responsible for the differentiation potential of human neuroblastoma cells. Northern blot analysis showed highest CNTN4 expression in testes, thyroid, small intestine, uterus and brain. Induction of CNTN4 mRNA expression in human neuroblastoma tumor cells treated with retinoic acid correlated with a block in retinoid-induced neuritogenesis. Our findings suggest a role for human contactin 4 protein in the response of neuroblastoma cells to differentiating agents.

Amino Acid Sequence↗

Allogeneic bone marrow transplant improves outcome for juvenile myelomonocytic leukaemia.

OBJECTIVE: To correlate clinical presentation and therapeutic outcomes in children with a diagnosis of juvenile myelomonocytic leukaemia. METHODS: The medical records of 14 children who fulfilled the International Juvenile Myelomonocytic Leukaemia Working Group Criteria for a diagnosis of juvenile myelomonocytic leukaemia (JMML) presenting to a single institution were reviewed, and their clinical status at September 2000 was documented. RESULTS: The most common presenting features were hepatosplenomegaly and lymphadenopathy. Fifty per cent of cases presented in the first year of life. Nine of 14 patients initially received chemotherapy otherwise used in the treatment of acute myeloid or lymphoblastic leukaemia with no apparent benefit. All six patients who received conditioning therapy with chemotherapy alone, followed by allogeneic bone marrow transplant (BMT), are in complete remission at a median follow-up duration of 12 months (range 5-91 months). Five of six patients surviving post-allogeneic BMT received marrow from an unrelated donor. Only one of seven patients who did not receive BMT survived long-term. CONCLUSION: Children with a diagnosis of JMML should be treated with allogeneic BMT as soon as a suitable donor is found. The role of anti-leukaemic therapy in this disease, prior to BMT, requires further investigation in the context of a multicentre clinical trial.

Antineoplastic Agents↗

MRP1 gene expression level regulates the death and differentiation response of neuroblastoma cells.

We have previously reported a strong correlation between poor prognosis in childhood neuroblastoma (NB) patients and high-level expression of the transmembrane efflux pump, Multidrug Resistance-associated Protein (MRP1), in NB tumour tissue. In this study, we inhibited the endogenous expression of MRP1 in 2 different NB tumour cell lines by stably transfecting an MRP1 antisense expression vector (MRP-AS). Compared with control cells, MRP-AS transfectant cells demonstrated a higher proportion of dead and morphologically apoptotic cells, spontaneous neuritogenesis, and, increased synaptophysin and neurofilament expression. Bcl-2 protein expression was markedly reduced in MRP-AS cells compared to controls. Conversely, we found that the same NB tumour cell line overexpressing the full-length MRP1 cDNA in sense orientation (MRP-S) demonstrated resistance to the neuritogenic effect of the differentiating agent, all-trans-retinoic acid. Taken together, the results suggest that the level of MRP1 expression in NB tumour cells may influence the capacity of NB cells for spontaneous regression in vivo through cell differentiation and death.

Apoptosis↗

Measurement of the resonant d(mu)t molecular formation rate in solid HD.

Measurements of muon-catalyzed dt fusion ( d(mu)t-->4He + n + mu(-)) in solid HD have been performed. The theory describing the energy dependent resonant molecular formation rate for the reaction (mu)t + HD-->[(d(mu)t)pee](*) is compared to experimental results in a pure solid HD target. Constraints on the rates are inferred through the use of a Monte Carlo model developed specifically for the experiment. From the time-of-flight analysis of fusion events in 16 and 37 microg x cm(-2) targets, an average formation rate consistent with 0.897+/-(0.046)(stat)+/-(0.166)(syst) times the theoretical prediction was obtained.

Journal Article↗

Reversal of multidrug resistance-associated protein-mediated drug resistance in cultured human neuroblastoma cells by the quinolone antibiotic difloxacin.

BACKGROUND: We have recently shown that high-level expression of the multidrug resistance-associated protein (MRP) gene is a powerful independent predictor of poor outcome in neuroblastoma. The clinical implication of these findings is that MRP modulators may prove therapeutically useful. PROCEDURE: We therefore investigated the ability of difloxacin, a quinolone antimicrobial antibiotic, to increase drug cytotoxicity in unselected cultured human neuroblastoma cells. Drug cytotoxicity was determined using a microtiter assay in neuroblastoma cells expressing low (SH-EP), intermediate (NBL-S), or high [BE(2)-C] levels of MRP. RESULTS: Difloxacin (50 microg/ml) increased sensitivity to the MRP substrates, vincristine, doxorubicin, daunorubicin, and potassium antimony tartrate to an extent directly proportional to their level of MRP expression. No change in the response to cisplatin, which is not a substrate for MRP, was observed in any of the cell lines. CONCLUSIONS: The data demonstrate that difloxacin can reverse drug resistance in unselected human neuroblastoma cells and is therefore a potential candidate for future clinical trials.

ATP-Binding Cassette Transporters↗

Expression of the putative tumour suppressor gene, p73, in neuroblastoma and other childhood tumours.

BACKGROUND: The recently characterised p53 homologue, p73, has been mapped to chromosome 1p36, a region often found deleted in neuroblastoma. Although p73 has been implicated as a candidate tumour suppressor for neuroblastoma, mutations in the gene appear to be rare, thus suggesting other mechanisms for its aberrant behaviour. PROCEDURE: We analysed p73 gene expression in a panel of primary neuroblastoma tumours and cell lines, as well as other tumours of childhood, using a reverse transcriptase-polymerase chain reaction assay. RESULTS: Although low-level p73 expression was detected in 44/45 primary neuroblastoma tumours, no association with prognostic markers could be discerned. In no case was the level of p73 expression in the primary tumours as high as that observed in p73-expressing neuroblastoma cell lines. Expression of the p73 gene was also detected in 24/34 other childhood tumours. CONCLUSION: Collectively, the data raise doubts over the role of this gene as a tumour suppressor in neuroblastoma.

Child↗

Detection of minimal residual disease in peripheral blood prior to clinical relapse of childhood acute lymphoblastic leukaemia using PCR.

Submicroscopic evidence of persistent minimal residual disease (MRD) in first remission bone marrow samples from children with acute lymphoblastic leukaemia (ALL) indicates a high risk of clinical relapse. Since microscopic evidence of leukaemic lymphoblasts is often present in the peripheral blood in the weeks before clinical presentation at diagnosis or relapse, peripheral blood may be used instead of bone marrow to detect MRD in ALL patients. We examined a median of 0.165 microg (from 1.0-2.0x10(4)cells) genomic DNA from archived peripheral blood smears collected 8-16 months prior to clinical relapse in eight children with ALL for evidence of MRD. We used the polymerase chain reaction and primers designed to identify clonal antigen receptor gene rearrangements. Among the seven patients with bone marrow relapse, MRD was detected at a median of 1.2 months (0-8 months) prior to clinical relapse, indicating that MRD in the peripheral blood may be a late event in the course of leukaemic relapse. A prospective MRD study in ALL patients analysing larger numbers of peripheral blood cells will be needed to evaluate the utility of peripheral blood over bone marrow for MRD testing in childhood ALL.

Child↗

MYCN expression is not prognostic of adverse outcome in advanced-stage neuroblastoma with nonamplified MYCN.

PURPOSE: The clinical significance of MYCN expression in children with neuroblastoma (NB) remains controversial. To determine the prognostic significance of MYCN expression in the absence of MYCN amplification, we analyzed MYCN mRNA and protein expression in tumors from 69 patients. PATIENTS AND METHODS: Sixty-nine NB tumor samples with nonamplified MYCN from patients with stage C or D disease were obtained from the Pediatric Oncology Group Neuroblastoma Tumor Bank. MYCN mRNA was analyzed using a real-time reverse transcriptase polymerase chain reaction assay, and MYCN protein was examined by Western blot analyses. RESULTS: The estimated 5-year event-free survival (EFS) and survival (S) rates plus SE for the cohort were 57% +/- 17% and 60% +/- 16%, respectively. Infants younger than 1 year had significantly higher rates of EFS and S than children >/= 1 year of age (P =.003 and P <.001, respectively); patients with stage C disease had better outcome than those with stage D NB (P <.001); and patients with hyperdiploid tumors had better outcome than those with diploid NB (P <.001). Surprisingly, outcome was slightly better for patients with high versus low levels of MYCN mRNA expression (4-year S, 70% +/- 13% v 50% +/- 16%; P =.290), and for patients with tumors that expressed MYCN protein (4-year S, 73% +/- 19% v 53% +/- 15%, respectively; P =.171). CONCLUSION: High levels of MYCN expression are not prognostic of adverse outcome in patients with advanced-stage NB with nonamplified MYCN. A trend associating high levels of MYCN expression with improved outcome was observed.

Blotting, Western↗

Synergy between 5' and 3' flanking regions of the human tyrosine hydroxylase gene ensures specific, high-level expression in neuroblastoma cells.

Factors regulating tyrosine hydroxylase (TH) gene transcription are of major importance in the studies of malignant and degenerative diseases of catecholamine-synthesizing tissues. In this study, we used transient transfection of a reporter gene to show that high-level, tissue-specific TH expression was only achieved when the reporter gene was cloned between a 5' TH promoter sequence (-513-+1), and, a 3' TH gene flanking sequence (end of exon 14-+976). We also show that TH mRNA expression level is closely linked to the expression level of the proto-oncogene, MYCN in neuroblastoma tumor cell lines. Taken together our data indicate that MYCN may regulate TH expression in neuroblastoma cells, but not through binding to the 5' or 3' TH gene flanking sequences used in our experiments.

3' Untranslated Regions↗

Expression of N-myc and MRP genes and their relationship to N-myc gene dosage and tumor formation in a murine neuroblastoma model.

BACKGROUND: Although the association between N-myc gene amplification and poor clinical outcome in neuroblastoma is well established, the mechanism by which amplification influences prognosis is not well defined. PROCEDURE: We used a human N-myc transgenic mouse model to investigate the role of N-myc in neuroblastoma, including its relationship to the multidrug-resistance-associated protein (MRP) gene. We developed a rapid real-time PCR method to distinguish homozygous and hemizygous N-myc mice that is comparable to Southern analysis. RESULTS: A highly significant correlation (P < 0.0001) between N-myc and MRP expression was demonstrated in murine tumors. Amplification of the transgene was observed in the majority of tumors, highlighting the clinical relevance of this model. However, no correlation between N-myc expression and transgene dosage or tumor latency was observed. CONCLUSIONS: The data suggest that increased N-myc dosage contributes to increased tumor incidence and decreased latency by mechanisms independent of N-myc expression.

ATP-Binding Cassette Transporters↗

Simultaneous detection and quantification of minimal residual disease in childhood acute lymphoblastic leukaemia using real-time polymerase chain reaction.

A number of prospective studies have indicated the clinical utility of measuring minimal residual disease (MRD) in childhood acute lymphoblastic leukaemia (ALL) and have highlighted the need for improved methodology for quantification of residual disease. We describe a novel real-time polymerase chain reaction (PCR) strategy for MRD analysis based on the exonuclease activity of Taq polymerase to cleave a fluorescently labelled probe. Using a consensus probe designed to the framework 2 region of the IgH gene, together with leukaemia-specific primers, the utility of this technique for simultaneous detection and quantification of MRD was demonstrated in samples from six ALL patients. This technique provides a rapid quantitative assay for determining MRD levels which lends itself to the routine monitoring of minimal residual leukaemia.

Bone Marrow Cells↗

Altered expression of the MYCN oncogene modulates MRP gene expression and response to cytotoxic drugs in neuroblastoma cells.

We have recently shown a close correlation between expression of the Multidrug Resistance-associated Protein (MRP) gene and the MYCN oncogene and provided evidence that high MRP expression is a powerful independent predictor of poor outcome in neuroblastoma (Norris et al., New Engl. J. Med., 334, 231-238, 1996). The effect of MYCN down-regulation on MRP expression and response to cytotoxic drugs was investigated in NBL-S neuroblastoma cells transfected with MYCN antisense RNA constructs. Concomitant with MYCN down-regulation, the level of MRP expression was decreased in the NBAS-4 and NBAS-5 antisense transfectants. These cells demonstrated significantly increased sensitivity to the high affinity MRP substrates vincristine, doxorubicin, sodium arsenate and potassium antimony tartrate, but not to the poor MRP substrates, taxol or cisplatin. Similarly, transfection of full-length MYCN cDNA into SH-EP neuroblastoma cells resulted in increased MRP expression and significantly increased resistance specifically to MRP substrates. The results provide evidence for the MYCN oncogene influencing cytotoxic drug response via regulation of MRP gene expression. Our data also provide a link between the malignant and chemoresistant phenotypes of this childhood malignancy.

ATP-Binding Cassette Transporters↗

Use of tumor-specific gene expression for the differential diagnosis of neuroblastoma from other pediatric small round-cell malignancies.

The differential diagnosis of neuroblastoma from other small round-cell tumors of childhood, although clinically of great importance, is sometimes difficult due to the almost indistinguishable appearance of such tumors by conventional microscopy. Because neuroblastomas are characterized by the synthesis of catecholamines, we investigated the possibility that expression of genes involved in this pathway could serve as a molecular marker for this disease. A reverse transcriptase polymerase chain reaction assay was used to analyze expression of tyrosine hydroxylase and dopa decarboxylase in 84 pediatric malignancies including 55 neuroblastomas, 6 Ewing's sarcomas/primitive neuroectodermal tumors, 7 lymphomas, 6 leukemias, 2 rhabdomyosarcomas, 6 osteosarcomas, and 2 phaeochromocytomas. Of the 55 neuroblastoma samples analyzed, 54 expressed clearly detectable levels of both genes. The one sample that did not express either of the genes was rediagnosed both clinically and by molecular genetic analysis as a Ewing's sarcoma. Of the 29 non-neuroblastoma tumor samples examined, the only tumor samples that expressed clearly detectable levels of both tyrosine hydroxylase and dopa decarboxylase were phaeochromocytomas. Like neuroblastomas, these tumors are characterized by high levels of catecholamines. These findings suggest that expression of genes involved in catecholamine biosynthesis may be useful for differentiating neuroblastoma from other small round-cell tumors of childhood.

Child, Preschool↗

Haemophagocytic lymphohistiocytosis in children.

OBJECTIVE: To evaluate the clinical and diagnostic features of children presenting with haemophagocytic lymphohistiocytosis (HLH), evolution of the disease and outcomes in response to treatment. METHODOLOGY: The medical records of 12 children, aged 5 weeks to 13 years at diagnosis, with HLH managed at a single institution were reviewed. RESULTS: Presenting features were fever, hepatosplenomegaly, pancytopenia and hypertriglyceridemia or hypofibrinogenemia. Nine patients (75%) developed central nervous system (CNS) disease. Only one child with CNS disease survived. Five children had complete responses to therapy (42%), but all relapsed at a median of 1.5 months after starting treatment (range 2 weeks to 5 months). Two of the children treated are long-term survivors (17%), both after allogeneic bone marrow transplantation. All deaths occurred in the context of active disease. CONCLUSIONS: Haemophagocytic lymphohistiocytosis is a disease with a poor prognosis. Central nervous system complications are common and response to treatment usually is transient. This study provides support for the use of immunomodulatory therapy for remission introduction followed by consideration of allogeneic bone marrow transplantation.

Adolescent↗