PubMed Health⌕ Search

Biomedical subjects

M Sanson

Publications and source records attributed to M Sanson.

At least 19 recordsLinked to original sources

Polymorphism in Sp1 recognition site of the EGF receptor gene promoter and risk of glioblastoma.

We investigated two polymorphisms of the epidermal growth factor receptor promoter as potential risk factors and prognostic markers for glioblastoma. The -216T allele (which results in a 30% higher activity) was more frequent in the patients compared with the control population (224/376 = 59.6% vs 165/352 = 46.8%; p = 0.0006) corresponding to an odd ratio of 1.67 (1.24; 2.25). A modest difference in median survival was also associated with the TT genotype.

Adult↗

[Multiple gliomas: clinical studies and pathophysiological hypothesis].

INTRODUCTION: Although a rare entity, multiple gliomas must be recognized and distinguished from other causes of multiple brain lesions. METHODS: Clinical and radiological features of 33 multiple gliomas were reviewed, including 20 synchronous cases and 13 metachronous cases. RESULTS: In 17 patients, radiological features were highly suggestive of spread from a primary site (multifocal gliomas). No apparent dissemination route was identified in the other cases which were presumed to be multicentric gliomas. For nine patients (27 percent), a second neoplasia or cancer was found in first degree relatives suggesting a genetic predisposition. Overall median survival was 79 weeks (64 weeks for glioblastomas). The age at onset was the main prognostic factor. CONCLUSION: Multiple gliomas represent a heterogeneous entity, probably corresponding to different mechanisms. In our group, survival was comparable to unique glioma.

Adult↗

Involvement of cannabinoid receptors in inflammatory hypersensitivity to colonic distension in rats.

Activation of cannabinoid CB1 and CB2 receptors is known to attenuate nociception and hyperalgesia in somatic inflammatory conditions. The aim of this study was to determine whether cannabinoids modulate colonic sensitivity in basal and inflammatory conditions. The effects of CB1 and CB2 receptor agonists and antagonists on the abdominal contractile response to colorectal distension (CRD) in basal conditions and after 2,4,6-trinitrobenzenesulphonic acid-induced colitis were investigated. As previously described, colitis triggered a hypersensitivity to CRD. In basal conditions, both CB1 (WIN 55212-2) and CB2 (JWH 015) agonists reduced the abdominal response to CRD at a dose of 1 mg kg(-1), i.p. Both compounds were active at a lower dose (0.1 mg kg(-1)) abolishing the hypersensitivity induced by colitis. Administered alone, CB1 (Rimonabant) and CB2 (SR 144528) receptor antagonists (10 mg kg(-1)) had no effect on basal sensitivity. In contrast, the CB1, but not the CB2, receptor antagonist enhanced colitis-induced hyperalgesia. It is concluded that colonic inflammation enhances the antinociceptive action of CB1 and CB2 receptor agonists, and activates an endogenous, CB1 receptor mediated, antinociceptive pathway.

Animals↗

EGFR tyrosine kinase domain mutations in human gliomas.

Gefitinib is an epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor effective in patients with lung cancer with mutations in exons 19 and 21 of the EGFR tyrosine kinase domain. In this study, the authors tested the presence of such mutations in 95 gliomas including glioblastomas, anaplastic oligodendrogliomas, and low-grade gliomas. No mutation was found, which suggests that the biology of EGFR in gliomas is different from lung cancer and that this may be a factor in the resistance of glioblastomas to gefitinib.

Astrocytoma↗

[Molecular biology of oligodendroglial tumors].

Oligodendrogliomas have been the focus of considerable interest over the last decade, ever since they were recognized as chemosensitive tumors. However, the histological diagnosis remains highly controversial and unsatisfactory. Meanwhile, our understanding of glioma oncogenesis improved greatly. Gliomas are the consequence of specific genetic or epigenetic alterations - activations of oncogenes and inactivation of tumor suppressor genes - resulting in the disruption of critical cellular pathways and leading to phenotypic changes. Such genetic information complements the existing WHO morphological classification and, more importantly, provides additional prognostic markers. Indeed, 1p/19q deletion has been correlated with chemosensitivity in oligodendrogliomas, and is becoming more and more widely used in clinical practice. There is little doubt that emerging techniques, such as CGH-array and gene profiling will be very helpful in clinical practice for refining both classification and therapeutic indications of oligodendroglial tumors.

Brain Neoplasms↗

[Gliomatosis cerebri].

INTRODUCTION: Gliomatosis cerebri (GC) is defined as a diffuse neoplastic glial cell infiltration of the brain involving more than two cerebral lobes and, occasionally, the infratentorial structures or the spinal cord. The tumor may appear de novo (primary GC) or result from the spreading of a focal glioma (secondary GC). Diagnosis and management of GC are difficult. Because of the diffuse nature of gliomatosis cerebri (GC), surgery is not suitable and large field radiotherapy carries the risk of severe toxicity. STATE OF ART: The analysis of current literature shows that the male population (58 percent) is younger, has a higher incidence of oligodendroglial GC and better prognosis than the female population. Survival (median=14.5 months) is also better for young patients, with high performance status, low-grade gliomatosis, and oligodendroglial subtype. Initial chemotherapy results in nearly 30 percent clinical or radiological improvement. In this setting, temozolomide is well tolerated and appears to be a valuable alternative to procarbazine-CCNU-vincristine, especially for slow-growing, low-grade GC. PERSPECTIVE: Genotyping could be helpful to predict the response to chemotherapy in GC patients.

Antineoplastic Agents↗

Olig2 expression, GFAP, p53 and 1p loss analysis contribute to glioma subclassification.

The expression of Olig2, a basic helix-loop-helix (bHLH) transcription factor involved in oligodendroglial specification, was investigated by immunohistochemistry in a series of 146 tumours and control samples. Olig2 expression was restricted to glial tumours and nontumoral oligodendrocytes. It was higher in oligodendrogliomas as compared to astrocytomas and oligoastrocytomas, and in grade III as compared to grade II tumours. Olig 2 was absent or weakly expressed in glioblastoma (GBM), whereas strong expression was found in the oligodendroglial foci of GBM with oligodendroglial component (GBMO). Double labelling was performed on a subset of the most typical tumours, according to the WHO classification. It showed a mutual exclusion, at cell level, of Olig2 and GFAP expression. In pure oligodendrogliomas, tumour cells were Olig2+/GFAP-. In contrast, two main tumour populations, Olig2+/GFAP- and Olig2-/GFAP+, were found in both oligoastrocytomas and astrocytomas. Based on these data from selected samples, two separate entities can be established, corresponding to 'pure oligodendrogliomas' and 'astrocytomas and oligoastrocytomas'. The relevance of this subdivision is further supported by the association with 1p loss and a trend to better survival for pure oligodendrogliomas and with p53 expression and a trend to shorter survival for astrocytomas and oligoastrocytomas. Combined testing of Olig2, 1p status, GFAP and p53 expression may therefore be helpful in refining current classification and providing more homogeneous sets of gliomas for clinical studies.

Basic Helix-Loop-Helix Proteins↗

Correlations between molecular profile and radiologic pattern in oligodendroglial tumors.

OBJECTIVE: To investigate possible correlations between tumor location and genetic alterations in a series of oligodendrogliomas. METHODS: A series of 158 consecutive oligodendrogliomas were retrospectively reviewed. In each case, the radiologic picture and the chromosome 1p (chr 1p) status of the tumor detected by the loss of heterozygosity technique were analyzed. Correlation between tumor location and molecular profile was made by chi2 tests. RESULTS: Eighty-eight of the 158 patients had low-grade oligodendrogliomas, and 70 had anaplastic oligodendrogliomas. Overall, oligodendrogliomas with chr 1p loss were located preferentially in the anterior part of the brain, whereas tumors with intact chr 1p affected mainly the posterior part of the brain (p = 0.0038). In terms of lobar involvement, a preferential location of oligodendrogliomas with chr 1p loss was found in the frontal lobes as compared with the temporal, parietal, and occipital tumors (p < 0.01). CONCLUSION: There is a significant correlation between loss of heterozygosity on chromosome 1p and tumor location in oligodendrogliomas, suggesting that subtypes of oligodendrogliomas could derive from site-specific precursors.

Adult↗

Temozolomide as initial treatment for adults with low-grade oligodendrogliomas or oligoastrocytomas and correlation with chromosome 1p deletions.

PURPOSE: To determine the response rate of low-grade oligodendroglial tumors (LGOT) to temozolomide (TMZ) as initial treatment and to evaluate the predictive value of chromosome 1p deletion on the radiologic response. PATIENTS AND METHODS: Adult patients with pathologically proven LGOT with progressive disease on magnetic resonance imaging (MRI) were eligible for the study. TMZ was administered at the starting dose of 200 mg/m2/d for 5 days, repeated every 28 days. Response was evaluated clinically and by central review of MRIs. Chromosome 1p and 19q deletions were detected by the loss of heterozygosity technique. RESULTS: Sixty consecutive patients were included in the study. At the time of analysis, the median number of TMZ cycles delivered was 11. Clinically, 51% of patients improved, particularly those with uncontrolled epilepsy. The objective radiologic response rate was 31% (17% partial response and 14% minor response), whereas 61% of patients had stable disease and 8% experienced disease progression. The median time to maximum tumor response was 12 months (range, 5 to 20 months). Myelosuppression was the most frequent side effect, with grade 3 to 4 toxicity in 8% of patients. Loss of chromosome 1p was associated with objective tumor response (P < .004). CONCLUSION: TMZ is well tolerated and provides a substantial rate of response in LGOT. Chromosome 1p loss is correlated with radiographic response and could be a helpful marker for guiding therapeutic decision making in LGOT.

Adult↗

Initial chemotherapy in gliomatosis cerebri.

BACKGROUND: Because of the diffuse nature of gliomatosis cerebri (GC), surgery is not suitable, and large field radiotherapy carries the risk of severe toxicity. In this setting, initial chemotherapy warrants further investigation. METHODS: The authors treated 63 consecutive patients with GC with initial chemotherapy consisting of either PCV (procarbazine, 60 mg/m2 on days 8 to 21; CCNU, 110 mg/m2 on day 1; and vincristine, 1.4 mg/m2 on days 8 and 29) or temozolomide (TMZ; 150 to 200 mg/m2 for 5 days every 4 weeks). There were 40 men and 23 women, with a median age of 48 years (range, 17 to 74 years) and a median Karnofsky performance status of 90 (range, 50 to 100). GC was initially present at diagnosis in 49 patients (primary GC), whereas 14 patients with a circumscribed glioma at onset developed secondary GC after a median follow-up period of 5.11 years. GC was classified based on the predominant tumor cells as astrocytic, oligodendroglial, or mixed GC. RESULTS: Seventeen patients received 1 to 6 cycles (median, 5) of PCV, and 46 received 2 to 24 courses (median, 13) of TMZ. Grade 3 to 4 hematologic toxicity was seen in 4 of 17 (23.5%) patients treated with PCV and in 4 of 46 (8.6%) of those treated with TMZ. Clinical objective responses were observed in 21 of 63 (33%) patients, and radiologic responses were seen in 16 of 62 (26%), with no significant difference between the two regimens. For all patients combined, the median progression-free survival (PFS) and overall survival (OS) were 16 months and 29 months, respectively. Regardless of the chemotherapeutic regimen, oligodendroglial GC had a better prognosis than astrocytic and oligoastrocytic GC in terms of PFS (p < 0.02) and OS (p < 0.0001). CONCLUSION: Initial chemotherapy is useful for some patients with gliomatosis cerebri. Temozolomide is well tolerated and appears to be a valuable alternative to procarbazine-CCNU-vincristine, especially for those with slow-growing, low-grade GC.

Adolescent↗

[Results of salvage stereotactic radiosurgery in 14 patients with grade III or IV gliomas].

AIMS: To determine local control and overall survival rates of 14 patients treated for a grade III or IV glioma relapsing in a previously irradiated area and re-irradiated by stereotactic radiosurgery. PATIENTS AND METHODS: From January 1997 to October 2001, 14 patients (median age 52 Years, age range 49-58 Years, Karnofski performance score 80 to 100) received radiosurgery for a relapse of grade III (3 patients) and or grade IV (10 patients) malignant gliomas. Before relapse, all patients had undergone surgery and had been given with a classical radiation protocol. Median maximum diameter and Volume of the tumors were 38.5mm (24-86mm) and 7cm3 (2-35cm3), respectively. RESULTS: Median maximal dose at the isocenter and median minimal dose at the periphery of the lesion were 21Gy (16-38Gy) and 13Gy (9-17Gy), respectively. Mean follow-up was 8.5 Months (1-29). Median overall survival was 11.6 Months; 6-Month, 1- and 2-Year overall survival rates were 85p.100, 36p.100 and 12p.100, respectively. At univariate analysis, only histological grade was a significant prognostic factor of overall survival (p=0.03). Median disease-free survival was 8.2 Months while 6-Month and 1-Year disease-free survival rates were 69p.100 and 14p.100, respectively. According to univariate analysis, histological grade (p=0.033) and minimal dose delivered at the margin of the target Volume (p=0.02) were prognostic factors for disease-free survival. Two patients developed a symptomatic radionecrosis. CONCLUSION: Radiosurgery of relapsed primitive high-grade brain tumors is efficient and overall survival rates were encouraging.

Brain Neoplasms↗

Correlation between genetic alterations and growth of human malignant glioma xenografted in nude mice.

In order to develop preclinical models of malignant astrocytomas and oligodendrogliomas, a series of 54 resected gliomas (37 from oligodendroglial lineage and 17 from astrocytic lineage) were xenografted subcutaneously into nude mice. Molecular alterations commonly observed in gliomas subtypes, including LOH 1p and 1q, LOH 19q, LOH 10p and 10q, LOH 9p, TP53 and PTEN mutations, EGFR amplification, CDKN2A homozygous deletion and telomerase reactivation were systematically screened in the original and xenografted tumours. In all, 23 gliomas grew in nude mice. The most anaplastic tumours were selected as shown by pathological and molecular studies of the original tumour as well as shorter survival in patients whose tumours were successfully grafted. Comparison between the two growth profiles showed that 10q LOH and EGFR amplification gave a tumorigenic advantage. With a few exceptions, the genetic pattern was remarkably stable before and after growth in nude mice. These results suggest that subcutaneous xenografts are useful and reproducible models to analyse the molecular profile of malignant astrocytoma and oligodendroglioma. This represents the first step to improve our understanding of the correlations between molecular alterations and response to standard or experimental therapies.

Adult↗

Telomerase reactivation in malignant gliomas and loss of heterozygosity on 10p15.1.

An inhibitor of telomerase activity maps to chromosome 10p15.1. A series of 51 high-grade gliomas was analyzed for loss of heterozygosity (LOH) on chromosome 10 and for telomerase activity. In univariate analysis, LOH10p (59%) and LOH10q (61%) were associated with telomerase activity (55%; p < 0.0001 and p = 0.0006). In multivariate analysis, only LOH10p remained statistically related to telomerase activity, suggesting that the telomerase repressor gene located on 10p15.1 is inactivated in high-grade gliomas.

Chromosome Mapping↗

[The molecular genetics of meningiomas and genotypic/phenotypic correlations].

The WHO classification divides meningiomas in three grades. In grade 1 tumors, by far the most common (90 p. cent), inactivation of the NF2 gene (associated to the loss of chromosome 22) is the most frequent alteration. However, a subset of grade 1 meningiomas does not involve the NF2 gene and is less likely to evolve towards higher grade tumors. After NF2 inactivation, additional events may occur and are related to greater aggressiveness, such as loss of 1p, 14q, 10 q and 9p chromosomes, reactivation of telomerase, inactivation of the p16/CDKN2A gene. All these alterations are much more frequent in grades 2 (atypical) and 3 (malignant) of the WHO classification. In addition to reviewing the available literature, we pooled together the individual cases in order to refine the correlation between genotype and phenotype (histological grading, location) and to propose a model for tumoral progression of meningiomas.

Disease Progression↗