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Astrid Lièvre

Publications and source records attributed to Astrid Lièvre.

9 recordsLinked to original sources

Genetic polymorphisms of MMP1, MMP3 and MMP7 gene promoter and risk of colorectal adenoma.

BACKGROUND: Matrix metalloproteinases (MMP) have been shown to play a role in colorectal cancer (CRC). More recently, MMP1, MMP3 and MMP7 functional gene promoter polymorphisms have been found to be associated with CRC occurrence and prognosis. To document the role of MMP polymorphisms in the early step of colorectal carcinogenesis, we investigated their association with colorectal adenoma risk in a case-control study comprising 295 patients with large adenomas (LA), 302 patients with small adenomas (SA) and 568 polyp-free (PF) controls. METHODS: Patients were genotyped using automated fragment analysis for MMP1 -1607 ins/del G and MMP3 -1612 ins/delA (MMP3.1) polymorphisms and allelic discrimination assay for MMP3 -709 A/G (MMP3.2) and MMP7 -181 A/G polymorphisms. Association between MMP genotypes and colorectal adenomas was first tested for each polymorphism separately and then for combined genotypes using the combination test. Adjustment on relevant variables and estimation of odds ratios were performed using unconditional logistic regression. RESULTS: No association was observed between the polymorphisms and LA when compared to PF or SA. When comparing SA to PF controls, analysis revealed a significant association between MMP3 -1612 ins/delA polymorphism and SA with an increased risk associated with the 6A/6A genotype (OR = 1.67, 95% CI: 1.20-2.34). Using the combination test, the best association was found for MMP3.1-MMP1 (p = 0.001) with an OR of 1.88 (95% CI: 1.08-3.28) for the combined genotype 2G/2G-6A/6A estimated by logistic regression. CONCLUSION: These data show a relation between MMP1 -1607 ins/del G and MMP3 -1612 ins/delA combined polymorphisms and risk of SA, suggesting their potential role in the early steps of colorectal carcinogenesis.

Adenomatous Polyps↗

Thyroid metastases from colorectal cancer: the Institut Gustave Roussy experience.

The prevalence of thyroid metastases in colorectal cancer (CRC) patients is unknown. We retrieved the records of all patients with CRC and pathologically proved thyroid metastasis for the period 1993-2004. Among 5,862 consecutive patients with CRC, 6 (0.1%) were diagnosed with thyroid metastases, a median of 61 months after the diagnosis of primary tumour, and a median of 19 months after the last surgical resection or radiofrequency ablation of other metastases (which were present in all cases). Signs and symptoms, when present (n=3), consisted of cervical pain, cervical adenopathy, goitre, dysphagia, and/or dysphonia. In other cases, the diagnosis was made by positron emission tomography scanning. Thyroidectomy was performed in the 5 patients with isolated thyroid metastases, with cervical lymph node dissection being required in all cases. The only patient treated conservatively because of concomitant liver and lung metastases developed life-threatening dyspnoea, which required emergent tracheal stenting. Median overall survival was 77 months, 58 months, and 12 months after the diagnosis of primary CRC, initial metastases, and thyroid metastasis, respectively. It is concluded that thyroid metastases are rare and occur late in the course of CRC. Thyroidectomy (with cervical lymph node dissection) may result in prevention or improvement of life-threatening symptoms and prolonged survival.

Biopsy, Needle↗

KRAS mutation status is predictive of response to cetuximab therapy in colorectal cancer.

The anti-epidermal growth factor receptor (anti-EGFR) cetuximab has been proven to be efficient in metastatic colorectal cancer. The molecular mechanisms underlying the clinical response to this drug remain unknown. Genetic alterations of the intracellular effectors involved in EGFR-related signaling pathways may have an effect on response to this targeted therapy. In this study, tumors from 30 metastatic colorectal cancer patients treated by cetuximab were screened for KRAS, BRAF, and PIK3CA mutation by direct sequencing and for EGFR copy number by chromogenic in situ hybridization. Eleven of the 30 patients (37%) responded to cetuximab. A KRAS mutation was found in 13 tumors (43%) and was significantly associated with the absence of response to cetuximab (KRAS mutation in 0% of the 11 responder patients versus 68.4% of the 19 nonresponder patients; P = 0.0003). The overall survival of patients without KRAS mutation in their tumor was significantly higher compared with those patients with a mutated tumor (P = 0.016; median, 16.3 versus 6.9 months). An increased EGFR copy number was found in 3 patients (10%) and was significantly associated with an objective tumor response to cetuximab (P = 0.04). In conclusion, in this study, KRAS mutations are a predictor of resistance to cetuximab therapy and are associated with a worse prognosis. The EGFR amplification, which is not as frequent as initially reported, is also associated with response to this treatment.

Adult↗

Absence of mutation in the putative tumor-suppressor gene KLF6 in colorectal cancers.

The KLF6 gene encodes the Krüppel-like factor 6, a transcription factor that has been individualized as a tumor-suppressor gene involved in the regulation of cell proliferation and differentiation. Recently, high frequency (42%) of KLF6 mutations have been reported in colorectal cancers (CRC) as in prostate cancers, astrocytic gliomas and hepatocellular carcinomas. The aims of the study was to confirm the frequency of KLF6 mutations in a larger series of CRC than that previously published by using DNA extracted from frozen tissue samples, which have been proved to generate less mutational artefact than that extracted from formalin-fixed paraffin-embedded tissue samples, in order to compare KLF6 mutation frequency with that of other common genetic alterations and to determine genotype-phenotype correlations. Amplification and direct sequencing of KLF6 exon 2 of 76 CRC and matched normal frozen tissues was performed. Polymorphisms were observed in 14 cases, among which two (T35T and S116S) had not already been reported. No KLF6 somatic mutation was observed. Our data suggest a minor role of KLF6 mutation in colorectal carcinogenesis and underline the fact that the validity of sequence informations obtained from DNA extracted from formalin-fixed tissues may be limited.

Aged↗

Clinical value of mitochondrial mutations in colorectal cancer.

PURPOSE: Prognostic factors that could select high-risk recurrence colorectal cancer patients and predict chemosensitivity are needed. Since mutations of mitochondrial DNA (mtDNA) have been described in different types of cancers and since they may play a role in response to anticancer agents, we investigated in a population-based series of colorectal cancer patients the clinical value of mtDNA mutations. PATIENTS AND METHODS: The displacement loop (D-loop) region of mtDNA was sequenced on a series of 365 patients recorded in the Digestive Cancer Registry of Côte-d'Or (France) between 1998 and 2000. Clinicopathologic characteristics were correlated to the presence of a D-loop mutation. Survival rates were compared with the log-rank test. A multivariate survival analysis was performed. RESULTS: D-loop mutations were found in 38.3% of the tumors. The 3-year survival rate was 53.5% in patients with D-loop mutation versus 62.1% in patients without (P = .05). After adjustment for age, stage, and microsatellite instability status, the relative risk of death in patients with D-loop mutation was 1.40 (95% CI, 1.02 to 1.93; P = .034) as compared with those without. In stage III colon cancers, adjuvant chemotherapy was beneficial only for patients without D-loop mutation (3-year survival, 78.3% v 45.4%, P < .02). In those with D-loop mutation who received adjuvant chemotherapy, the relative risk of death was 4.30 (95% CI, 1.23 to 15.00; P < .02). CONCLUSION: The D-loop region is a hotspot for somatic mutations in colorectal tumors. Moreover, presence of tumor D-loop mutation appears to be a factor of poor prognosis in colorectal patients and a factor of resistance to fluorouracil-based adjuvant chemotherapy in stage III colon cancers.

Antineoplastic Combined Chemotherapy Protocols↗

Is the gene encoding Chibby implicated as a tumour suppressor in colorectal cancer ?

BACKGROUND: A novel member of the Wnt signalling pathway, Chibby, was recently identified. This protein inhibits Wnt/beta-catenin mediated transcriptional activation by competing with Lef-1 (the transcription factor and target of beta-catenin) to bind to beta-catenin. This suggests that Chibby could be a tumour suppressor protein. The C22orf2 gene coding Chibby is located on chromosome 22, a region recurrently lost in colorectal cancer. Activation of the Wnt pathway is a major feature of colorectal cancer and occurs through inactivation of APC or activation of beta-catenin. All of this led us to analyse the possible implication of Chibby in colorectal carcinogenesis. METHODS: First, 36 tumour and matched normal colonic mucosa DNA were genotyped with five microsatellite markers located on chromosome 22 to search for loss of heterozygosity. Then, mutation screening of the C22orf2 coding sequence and splice sites was performed in the 36 tumour DNA. Finally, expression of Chibby was analysed by quantitative RT-PCR on 10 patients, 4 with loss of heterozygosity (LOH) on chromosome 22. RESULTS: Loss of heterozygosity involving the C22orf2 region was detected in 11 out of 36 patients (30%). Sequencing analysis revealed a known variant, rs3747174, in exon 5: T321C leading to a silent amino acid polymorphism A107A. Allelic frequencies were 0.69 and 0.31 for T and C variants respectively. No other mutation was detected. Among the 10 patients studied, expression analysis revealed that Chibby is overexpressed in 2 tumours and underexpressed in 1. No correlations were found with 22q LOH status. CONCLUSION: As no somatic mutation was detected in C22orf2 in 36 colorectal tumour DNA, our results do not support the implication of Chibby as a tumour suppressor in colorectal carcinogenesis. This was supported by the absence of underexpression of Chibby among the tumour samples with 22q LOH. The implication of other Wnt pathway members remains to be identified to explain the part of colorectal tumours without mutation in APC and beta-catenin.

Adenocarcinoma↗

[Colorectal carcinogenesis: update].

Recent progresses in molecular biology have allowed us to identify at least two different molecular mechanisms implicated in colorectal carcinogenesis: chromosomal instability and genetic instability. These two molecular mechanisms are supported by two hereditary syndromes that predispose to colorectal cancers: familial adenomatous polyposis and hereditary non polyposis colorectal cancer syndrome. In spite of these two different mechanisms, the signalling pathways implicated the malignant transformation of colonic epithelial cells seem to be the same. They are essentially represented by APC/beta-catenin, TGFbeta, RAS and TP53 signalling pathways. This new molecular classification of colorectal cancers is important for the understanding of molecular alterations responsible for tumour development but also for the management of patients.

Adenomatous Polyposis Coli↗