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A Meye

Publications and source records attributed to A Meye.

43 records · Page 3Linked to original sources

Molecular and immunohistochemical p53 status in liposarcoma and malignant fibrous histiocytoma: identification of seven new mutations for soft tissue sarcomas.

BACKGROUND: p53 mutations are the most frequently observed tumor-related genetic changes. Mutational analysis concerns mostly carcinomas and is not comprehensive for soft tissue sarcomas. Among soft tissue sarcomas, malignant fibrous histiocytoma (MFH) and liposarcoma represent the most frequent tumor types. Most of the few identified mutations for soft tissue sarcomas are localized in the core domain of p53. A correlation between p53 positive immunoreactivity, missense mutations, and a poor prognosis is generally assumed. However, the character of p53 mutations and their functional importance for the clinical process is still unknown. METHODS: Sixty-two soft tissue sarcoma samples were investigated for the presence of p53 mutations and for p53 immunoreactivity. Exons 4-9 of the p53 gene were amplified from genomic DNA with the polymerase chain reaction. A prescreen for mutations was performed by nonradioactive single strand conformation polymorphism analysis; striking cases were sequenced directly. For an evaluation of the immunohistochemical status, five p53 antibodies were used. RESULTS: In 10 tumor samples 7 new p53 mutations and one polymorphism were identified. Mutations were detected for five liposarcomas (four patients) and four MFHs (three patients). Of the seven mutations, three were missense point mutations, three were deletions, and one was a complex conversion. All mutations but one were localized in the core domain of p53. Of 62 tumor samples, 56% (14 of 32 liposarcomas and 21 of 30 MFHs) were positive for p53 immunostaining. CONCLUSIONS: The mutations identified in the core domain affect codons that are structurally or functionally involved in DNA binding. A relation between p53 positive immunoreactivity and a poor prognosis, but not with an exclusively high tumor grade, is evident. p53 mutations in soft tissue sarcomas have a similar spectrum to those in carcinomas.

Histiocytoma, Benign Fibrous↗

Radiosensitization in sarcoma cell lines with a p53 missense mutation correlates with prevention of irradiation G2/M arrest but not with induction of apoptosis.

We analysed the effects of caffeine and taxol on the radiobiological behaviour of two human sarcoma cell lines (RD, SK-LMS-1) each with a p53 missense mutation. Treatment with 2 mM caffeine resulted in an inhibition of the irradiation induced G2/M arrest in both cell lines. This effect was coupled with a radiosensitization in cell line SK-LMS-1 after an irradiation with 6 Gy (enhancement factor of 5.0). However, the effect of radiosensitization was not correlated with an induction of apoptosis. Incubation with 20 nM taxol increased the irradiation induced apoptosis almost 3-fold in cell line SK-LMS-1, but not in cell line RD. However, taxol had no effect on the irradiation induced G2/M arrest or radiosensitivity in either cell line. The results support the hypothesis that the prevention of irradiation induced G2/M arrest but not the induction of apoptosis plays a critical role in determining radiosensitivity in sarcoma cell lines with p53 mutations.

Apoptosis↗

G2/M checkpoint is p53-dependent and independent after irradiation in five human sarcoma cell lines.

To determine the role of p53 in G2/M arrest, G2/M transition and apoptosis, we investigated five human sarcoma cell lines with different p53 gene status in their response to X-rays. The p53 status of the cell lines was mutant (US 8-93, LMS 6-93 and RD), null (SAOS-2) and wildtype (A-204). Clonogenic survival of the cell lines varied as the survival fraction at 2 Gy (SF2) ranged from 0.28 to 0.79. Compared with the mutated p53 cell lines (SF2 with a range from 0.46 to 0.79) the clonogenic survival of the wildtype p53 (wt-p53) cell line A-204 (SF2 = 0.34) was lower. The p53 null cell line (SAOS-2) was also sensitive to X-rays (SF2 = 0.28). We detected, in all cell lines a similar behavior in their response to irradiation with G2/M arrest and apoptosis. However, the maximal rate of apoptosis with a range from 7.0 to 18.0% was rather small. The decrease of G2/M cells was coupled with an increased percentage of apoptotic cells. However, a different delay in G2/M did not result in a change of radiation sensitivity. Western analyses showed an increased P53 level only for the cell line A-204 (wt-p53) after irradiation. Our results point out that there is not always a simple relationship between p53 gene status and radiation sensitivity. We suggest, that wt-p53 plays an active role in G2/M arrest and in decreasing the number of G2/M cells as a response to apoptosis. Therefore, p53-dependent regulation in G2/M may be as important as p53-independent mechanisms.

Apoptosis↗

A multifactorial prognostic model for adult soft tissue sarcoma considering clinical, histopathological and molecular data.

Soft tissue sarcomas (STS) are malignant mesenchymal lesions with a high degree of prognostic variability. Different prognostic markers such as grading, staging, tumour type and localisation are known. The establishment of these markers was based on the evaluation at results of extensive cohorts of patients. Therefore, only the established markers provide us with information about probabilities in relation to other qualities. Considering as many different markers as possible in one prognostic statement should increase the value of the resultant information. Therefore, we developed a model involving known prognostic markers to formulate an individual prognostic index. In a retrospective analysis, different prognostic factors of 198 adult STS patients with histological tumour free resection margins were evaluated using a multifactorial analysis. On the basis of a Cox-Regression-Model with proportional hazards, the prognostic factors (tumour type, staging, localisation and type of surgical resection) were selected using previous knowledge and a statistical step backward selection procedure adjusting the immunohistochemical status of p53/Mdm2 expression. On the basis of the baseline survival function of our cohort (S0 (t)), the cumulative probability of survival for two S (2) and five S (5) years was estimated. As a result of our analysis the equations S (2) = (e-00393)P and S (5) = (e-00869)P can be used to estimate the individual two and five-year probability of survival in our cohort. Here p is the result of the amount of the estimated regression-coefficients of the exact variables of the respective individual patient. This model makes it possible to include all the evaluated prognostic factors which, in turn, increases the accuracy of the prognostic information for individual patients underlining the proportional hazards assumption.

Abdominal Neoplasms↗

Transfection with mdm2-antisense or wtp53 results in radiosensitization and an increased apoptosis of a soft tissue sarcoma cell line.

Soft tissue sarcomas (STS) are mostly resistant after radiation treatment and are characterized by a rather low rate of apoptosis. The aim of this study was to test, in the p53 mutant STS cell line US8-93, the effect of a combined treatment with DNA transfection--either with mdm2 antisense oligodesoxynucleotides (mdm2-AS) or with a wild-type p53-plasmid (wtp53)--and the effects of irradiation on radiosensitivity. Mdm2-sense oligodesoxynucleotides (mdm2-SE) and a GFP-plasmid (GFP) were applied as controls. In order to evaluate the treatment radiation sensitization (clonogenic survival), apoptotic cell death and P53/MDM2-protein expression were determined. A moderately increased radiation sensitization was observed when comparing clonogenic survival after 2 Gy irradiation between cells transfected either with the control mdm2-SE (48%) or with mdm-2 AS (30%). At the same irradiation dose, clonogenic survival of wtp53-plasmid transfected cells (32%) was about 2-fold less than in the cells transfected with the control GFP-plasmid (61%). This enhancement factor of radiation sensitization was increased by about 3-fold at 4 Gy irradiation. Furthermore, an increase in apoptotic cells was already detectable by up to 7.7% (mdm2-AS) in comparison to 3.1% (mdm2-SE control) 72 hours after transfection. In parallel, the percentage of apoptotic cells could be further elevated after subsequent irradiation with 12 Gy by up to 15% (mdm2-AS) compared to 5.7% (mdm2-SE control). A striking result was obtained with the combined treatment of a wtp53 and 12 Gy irradiation which produced in 25% and 38.9% of apoptotic cells 48 hours and 72 hours after transfection, respectively. We can therefore conclude that the sensitivity of radiation therapy is enhanced by DNA transfection with wtp53 or mdm-2 AS ODNs for the correction of the p53-mdm2 balance in STS in vitro.

Apoptosis↗

LOH analyses in the region of the putative tumour suppressor gene C13 on chromosome 13q13.

BACKGROUND: In previous studies we isolated a new cDNA fragment named C13 which is down-regulated in malignant prostate tissues. The corresponding gene is localized on chromosome 13q13 between the known tumour suppressor genes (TSG) BRCA-2 and RB-1. MATERIALS AND METHODS: Loss of heterozygosity (LOH) analyses were carried out in the region of C13 in order to investigate the importance of the new putative TSG for prostate cancer development. Using semiquantitative LOH analysis, we screened 21 prostate carcinoma patients of different tumour stages (pT2-pT4) for 14 microsatellite markers in the region of C13 (13q13) and in the flanking BRCA-2 and the RB-1 loci. RESULTS: For 18 (86%) patients LOH or allelic imbalances were found. We identified three to nine alterations in affected tumours per marker. An overall genetic alteration frequency per patient of 38% (86 of 225 informative cases) could be calculated. One important finding regarding the overall frequency of determined microsatellite instability is that the LOH/AI rate of 47% for the seven C13-associated markers was higher than for the four markers of the RB-1 locus (39%) and for the three BRCA-2 markers (25%). Surprisingly, defining LOH critical regions (LCR) for the investigated marker panel, eight of the ten affected LCR cases showed chromosomal imbalances simultaneously for the RB-1 and the C13 LOH markers. CONCLUSIONS: The high LOH rate for eight different microsatellite markers in and around the putative TSG locus C13 on chromosome 13q13 further supports an involvement of C13 in prostate tumourigenesis.

Aged↗

The p53 gene in soft tissue sarcomas: prognostic value of DNA sequencing versus immunohistochemistry.

BACKGROUND: The aim of this study was to compare sequencing and immunohistochemistry (IHC) for their ability to detect p53 mutations and to assess their prognostic value in soft tissue sarcomas (STS). MATERIAL AND METHODS: 146 STS samples were investigated by single strand DNA conformation polymorphism (SSCP)-sequencing for p53 mutations. Additionally, IHC with five p53 antibodies (CM-1, Pab1801, Pab240, DO1, DO-7) was performed. RESULTS: In 65 to 131 tumor samples (44.5% to 90.4%) elevated levels of p53 protein were recorded by IHC, depending on the antibody applied. Sixteen out of 146 STS tumor samples (11%) had p53 gene mutations. 13 cases (81.2%) of the 16 tumors with p53 mutations could be detected by DO-1. However, of the 93 DO-1 positive tumors 79 were negative by SSCP-sequencing analysis. Using multivariate regression analysis (Cox proportional hazards model) both p53 mutations (non-frameshift mutations) and IHC detection of p53 protein overexpression were prognostic predictors for poor survival. CONCLUSIONS: This study suggests that IHC is valuable for assessing p53 mutations in STS, but sequencing provides additional important information on the molecular characteristics of the alterations.

DNA, Neoplasm↗