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Jean-Baptiste Trabut

Publications and source records attributed to Jean-Baptiste Trabut.

5 recordsLinked to original sources

Unexpected mosaicism of R201H-GNAS1 mutant-bearing cells in the testes underlie macro-orchidism without sexual precocity in McCune-Albright syndrome.

McCune-Albright syndrome (MAS), usually presenting with polyostotic bone dysplasia, café-au-lait skin lesions and sexual precocity, results from a somatic activating mutation of the GNAS1 gene, which encodes the Gs-alpha protein involved in signalling of several G-protein-coupled receptors. The clinical spectrum depends on tissue distribution of mutant-bearing cells. Sexual precocity has been ascribed to the occurrence of a mutant GNAS1 allele in the gonadal anlage, from which all somatic cells of the differentiated gonads arise. In boys, precocious activation of Leydig cell androgen secretion results in pubertal spermatogenesis, leading to testicular enlargement, and in the development of secondary sex characteristics. However, sexual precocity is rare in MAS males while isolated testicular enlargement is frequently observed. We recently reported the case of a boy with macro-orchidism and signs of Sertoli cell hyperactivity but no signs of hyperandrogenism, which was unexpected since Gs-alpha is functional in both Sertoli and Leydig cells. To understand its pathophysiology, we microdissected an available testicular biopsy to separate Sertoli from Leydig cells. The R201H-GNAS1 allele was present only in Sertoli cells, resulting in isolated Sertoli cell hyperfunction, evidenced by increased AMH expression and cell hyperplasia leading to prepubertal macro-orchidism, with no signs of Leydig cell activation. The different early embryologic origin of precursors contributing to Sertoli and Leydig cell lineages may underlie the differential existence of the mutated GNAS1 gene. Lack of occurrence of the mutation in Leydig cells may explain why sexual precocity is rarely observed in boys with MAS.

Base Sequence↗

Non-invasive diagnosis of large oesophageal varices with FibroTest in patients with cirrhosis: a preliminary retrospective study.

BACKGROUND AND AIMS: Primary prevention of variceal bleeding with beta-blockers improves survival in patients with large oesophageal varices (LOV). Therefore, cirrhotic patients frequently undergo screening endoscopy. As portal hypertension is related to liver fibrosis, this study aimed to assess the predictive value of FibroTest, a non-invasive marker of liver fibrosis, for the diagnosis of LOV in cirrhotic patients. METHODS: Ninety-nine cirrhotic patients had clinical examination, blood sample (liver function tests, platelet count, FibroTest) and upper endoscopy. Measurements of endoscopic and biochemical parameters were made blindly. Sensitivity, specificity, predictive values and area under the receiver operating characteristic curves were assessed for FibroTest, platelet count and Child-Pugh score. The main endpoint was the presence of LOV. RESULTS: Platelet count, prothrombin time, ascites, FibroTest and Child-Pugh class were significantly different among patients with or without LOV. FibroTest had the highest discriminative power with an area under receiver operating characteristics curves of 0.77 (SE=0.06), compared with 0.64 (0.08) and 0.68 (0.08) for platelet count and Child-Pugh score, respectively (P=0.08). A cut-off at 0.80 had a 86% negative predictive value for the diagnosis of LOV (Se=92%, Sp=21%). CONCLUSION: FibroTest could aid in the diagnosis of LOV and may therefore reduce the indication of endoscopic screening in cirrhotic patients.

Adult↗

Fat, diabetes, and liver injury in chronic hepatitis C.

It is increasingly recognized that host factors can modulate the fibrogenic response in patients with chronic hepatitis C. Obesity, because of its prevalence, and diabetes, which seems to occur more frequently in patients infected by the hepatitis C virus (HCV), are often present in patients with chronic hepatitis C. Both conditions result in fatty liver, which in turn is associated with more severe liver damage, especially fibrosis or inflammation. Steatosis can either originate from associated metabolic alterations (insulin resistance resulting in metabolic steatosis) or from a direct cytopathic effect of the virus (genotype 3, resulting in viral steatosis). Metabolic steatosis seems to be a factor in resistance to antiviral therapy, whereas viral steatosis is reduced in sustained responders. Whether metabolic steatosis has a direct role in liver fibrosis progression or is only a surrogate marker of an underlying defect triggering fibrogenesis, such as insulin resistance, is a subject of debate. High serum glucose levels and diabetes have a strong and independent profibrogenic impact. Exciting new data are expanding our understanding of the mechanisms of steatogenesis in HCV infection and providing potential links between insulin resistance or hyperglycemic states and liver fibrogenesis.

Comorbidity↗

Characterisation of hepatitis B virus X protein mutants in tumour and non-tumour liver cells using laser capture microdissection.

BACKGROUND/AIMS: The analysis of hepatitis B virus (HBV) X protein genetic variability and is correlation with liver disease severity have only been addressed, so far, on whole liver extracts. We have studied, therefore, the HBV X protein (HBx) gene sequence in morphologically well-characterised tumour and non-tumour liver cells from patients with HBV-related hepatocellular carcinoma. METHODS: Using laser capture microdissection (LCM), we picked up six to eight groups of tumour and non-tumour hepatocytes in serial frozen sections from six patients. After global DNA preamplification followed by HBx-specific polymerase chain reaction, the HBx gene was sequenced in each group of microdissected cells. We also validated the quantification of HBV-DNA in microdissected hepatocytes using HBV Amplicor. RESULTS: Heterogeneous mutations in HBx gene were found in distinct cirrhotic nodules and tumour areas from the same patient. Mutations at aa 127, 130 and 131 were frequently detected but there was no distinct point mutation profile between tumour and non-tumour samples. In contrast, deletions in HBx gene, which were found in five/six patients, were more frequent in tumour-derived sequences (6/18) than in non-tumour-derived sequences (1/20). CONCLUSIONS: We have shown that LCM provides a direct insight of intrahepatic HBV infection. Using this technique, we demonstrated the persistence of distinct HBx encoding sequences in clonally expanding cells, thus supporting the hypothesis that HBx deletions may be implicated in liver carcinogenesis.

Adult↗

Identification, using cDNA macroarray analysis, of distinct gene expression profiles associated with pathological and virological features of hepatocellular carcinoma.

It is still unclear as to whether the gene expression profile in HCV- or HBV-related HCC exhibits a degree of specificity and whether the development of HCC in a context of cirrhosis influences this gene profile. To address these issues, the expression profiles of 15 cases of HCC were analysed using cDNA macroarray. A global analysis and hierarchical clustering, demonstrated the heterogeneity of HCC patterns, with a majority of down-regulated genes. Statistical analysis clearly showed a distinction between the gene expression profiles of HCV- and HBV-related HCC. HBV-associated HCC exhibited involvement of different cellular pathways, those controlling apoptosis, p53 signalling and G1/S transition. In HCV-related HCC we identified a more heterogenous pattern with an over-expression of the TGF-beta induced gene. In HCC developing on non-cirrhotic tissues, beta-catenin encoding gene and genes implicated in the PKC pathway were specifically up-regulated. In addition, our investigation highlighted a distinct profiles of TGF-beta superfamily encoding genes in well, moderately or poorly differentiated HCC. Overall, our study supports the hypothesis that despite the heterogeneity of the HCC pattern, the large-scale screening of gene expression may provide data significant to our understanding of the mechanism of liver carcinogenesis.

Carcinoma, Hepatocellular↗