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Biomedical subjects

C Gicquel

Publications and source records attributed to C Gicquel.

At least 37 records · Page 2Linked to original sources

Fibroblast growth factor-2 inhibits the maturation of pro-insulin-like growth factor-II (Pro-IGF-II) and the expression of insulin-like growth factor binding protein-2 (IGFBP-2) in the human adrenocortical tumor cell line NCI-H295R.

The IGF system is thought to play a major role in adrenocortical tumorigenesis. In this study, we used the NCI H295R cell line as a model to investigate the effects of fibroblast growth factor-2 (FGF-2), a potent mitogen for normal adrenal cells, on the proliferation and on the expression of the IGF system in cultured adrenocortical tumor cells. Three immunoreactive FGF-2 isoforms of molecular masses 18, 22, and 24 kDa were detected in H295R cell extracts. Recombinant human FGF-2 stimulated the proliferation of adrenocortical tumor cells in a dose- and time-dependent manner, with a maximal effect at a concentration of about 1 ng/ml. Treatment of H295R cells with 10 ng/ml FGF-2 for 7 days had no significant effect on IGF-II messenger RNA levels. However, a marked increase in levels of intracellular IGF-II protein was detected by immunoblotting. In contrast, FGF-2 induced a marked decrease in the amount of IGF-II protein secreted, with the disappearance of mature IGF-II and secretion of higher molecular forms of the growth factor, suggesting modifications of IGF-II processing. Cell cultures in the presence of brefeldin A (1 microg/ml), a specific inhibitor of protein secretion, suggested that FGF-2 did not increase IGF-II synthesis but instead inhibited the secretion of pro-IGF-II from H295R cells, thereby impairing the final steps of IGF-II processing to the mature 7.5-kDa peptide. At the same concentrations, FGF-2 also decreased both IGFBP-2 messenger RNA and secreted protein, which might increase IGF-II bioavailability. No proteolysis of IGFBP-2 was detected in FGF-2-conditioned medium. Altogether, these results indicate that FGF-2 is mitogenic for NCI H295R tumor cells and regulates the expression of both IGF-II and IGFBP-2 in this tumor model. Moreover, this study shows a novel effect of FGF-2, by which this growth factor modulates the processing of pro-IGF-II.

Adrenal Cortex Neoplasms↗

Establishment and characterization of a human adrenocortical carcinoma xenograft model.

Adrenocortical carcinomas are rare malignant tumors. They have a poor prognosis, as they are often diagnosed late and are usually resistant to chemotherapy. The lack of a suitable animal model for these tumors has been a major obstacle to the evaluation of new therapeutic agents. The aim of this study was to establish and characterize xenografts of the human adrenocortical carcinoma NCI H295R cell line as a model of adrenocortical carcinoma for future therapeutic trials. This cell line was sc injected (6 x 10(6) cells) into nude mice (n = 20). Solid tumors were locally measurable after 45 days at 90% of the inoculation sites. The xenografts were similar histologically to the original adrenocortical carcinoma from which the cell line was derived. The xenografts precisely reproduced the dysregulation of the insulin-like growth factor (IGF) system [overexpression of the IGF-II and IGF-binding protein-2 (IGFBP-2) genes] typical of adrenocortical carcinoma. Similarly to adrenocortical carcinomas, human IGFBP-2 (but not IGF-II) was secreted in mouse plasma. We analyzed steroid production (cortisol, 17-hydroxypregnenolone, 17-hydroxyprogesterone, dehydroepiandrosterone, delta4-androstenedione, 11-deoxycortisol, corticosterone, and testosterone). Xenografts produced all three class of steroids, with the preferential production of androgens of the delta4 pathway. The H295R xenograft model is a good model of human adrenocortical carcinoma, as it mimics dysregulation of the IGF system usually found in these tumors. It also produces IGFBP-2 and steroids that can be used as tumor markers. This model may therefore be useful for evaluating therapeutic agents.

Adrenal Cortex Neoplasms↗

High expression of cyclin E and G1 CDK and loss of function of p57KIP2 are involved in proliferation of malignant sporadic adrenocortical tumors.

Maternal loss of heterozygosity (LOH) of the 11p15 region and overexpression of the insulin-like growth factor (IGF)-II gene are associated with the malignant phenotype in sporadic adrenocortical tumors. In the imprinted 11p15 region, the p57KIP2 gene is maternally expressed and encodes a cyclin-dependent kinase (CDK) inhibitor involved in G1/S phase of the cell cycle. We hypothesized that maternal LOH in malignant adrenocortical tumors could be responsible for loss of p57KIP2 gene expression and, thus, could favor progression through the cell cycle. We investigated 3 normal adrenals, 31 adrenocortical tumors [11 tumors with normal expression of the IGF-II gene (mainly benign) and 20 with IGF-II gene overexpression (mainly malignant)], and the human adrenocortical tumor cell line NCI H295R for expression of the p57KIP2 gene, G1 cyclins (cyclin D2 and E) and G1 CDK (CDK2, CDK3 and CDK4) protein contents and for kinase activity of G1 cyclin-CDK complexes. The expression of p57KIP2, G1 cyclins, and G1 CDKs in benign tumors was similar to that in normal adrenal tissues, as were kinase activities of G1 cyclin-CDK complexes. By contrast, abrogation of the p57KIP2 gene expression and increased expression of G1 cyclins (cyclin E) and G1 CDKs (CDK2 and CDK4) were associated with high activity of G1 cyclin-CDK complexes in malignant tumors and in the H295R cell line. These data suggest that the p57KIP2 gene might act as a tumor suppressor gene in adrenocortical tumors. Maternal LOH with duplication of the paternal allele or pathological functional imprinting of the 11p15 region are responsible for loss of expression of the p57KIP2 gene and increased expression of the IGF-II gene. Consequently, both events favor cell proliferation in malignant adrenocortical tumors.

Adolescent↗

Expression of the angiogenesis markers vascular endothelial growth factor-A, thrombospondin-1, and platelet-derived endothelial cell growth factor in human sporadic adrenocortical tumors: correlation with genotypic alterations.

Several studies have supported the hypothesis that adrenocortical tumor formation is the result of a multistep process. The angiogenic switch has been proposed to be a key step in tumor progression from adenoma to carcinoma. In this study we measured the cytosolic concentrations of three proteins involved in angiogenesis [namely platelet-derived endothelial cell growth factor vascular endothelial cell growth factor A (VEGF-A), and thrombospondin-1 (TSP1)] in a series of 43 human sporadic adrenocortical tumors. The tumors were classified as adenomas (n = 18), transitional tumors (n = 12), or carcinomas (n = 13) according to the histological criteria defined by Weiss. Platelet-derived endothelial cell growth factor/thymidine phosphorylase levels were not significantly different among these three groups. One hundred percent of the adenomas and 73% of the transitional tumors showed VEGF-A concentrations under the threshold value of 107 ng/g protein, whereas 75% of the carcinomas had VEGF-A concentrations above this threshold value. Similarly, 89% of the adenomas showed TSP1 concentrations above the threshold value of 57 microg/g protein, whereas only 25% of the carcinomas and 33% of the transitional tumor samples did so. Insulin-like growth factor II overexpression, a common genetic alteration of adrenocortical carcinomas, was significantly correlated with higher VEGF-A and lower TSP1 concentrations. The tumors from the 6 patients with tumor recurrence after surgical ablation showed significantly higher VEGF-A values than the carcinomas and the transitional tumors from patients that did not relapse. Taken together, these data suggest that a decrease in TSP1 expression is an event that precedes an increase in VEGF-A expression during adrenocortical tumor progression. The population of premalignant tumors with low TSP1 and normal VEGF-A levels could represent a selective target for antiangiogenic therapies.

Adrenal Cortex Neoplasms↗

Preliminary evaluation of the new hematology analyzer COULTER GEN-S in a university hospital.

The COULTER GEN-S system (COULTER Corp, Miami, USA) is an automated hematology instrument that is designed to provide a complete hematological profile including white blood cells (WBC), complete blood count (CBC) differential count (diff) and the reticulocyte parameters. It was evaluated in our laboratory over a one month period. A preliminary study was performed using the GEN-S software revision 1D. The evaluation had two purposes: 1) evaluation of the GEN-S specifications; 2) comparison of its analytical performance with the hematology analyzer currently used in our laboratory. The first part of the evaluation showed that the COULTER GEN-S is reproducible, has linearity beyond the specifications given by the manufacturer and produces stable results up to 48 hours after blood collection. The evaluation of analytical performance included: 1) a comparison between the GEN-S CBC and diff numerical results and the COULTER STKS (COULTER Corp, Miami, USA). These comparisons showed that the results given by the two methods are similar and suggested that the COULTER GEN-S could replace the current hematology instrument in use in our laboratory; 2) a performance analysis, to measure the system's ability to detect morphologic abnormalities, when compared to the reference blood smear examination. This part of the evaluation was performed on both normal and abnormal samples. The results of this analysis showed that the sensitivity of the GEN-S was excellent, especially regarding blast cells, immature granulocytes, nucleated red blood cells (NRBCs) and platelet clumps when using the complete suspect flagging system of the instrument. In addition, the use of the review criteria in our laboratory allowed to detect all hematological diseases. The overall false negative rate was 0.9%. Thus we consider that the COULTER GEN-S system is suited for use in medium-to large hospital laboratories which perform more than 100 CBC/day. Overall, the instrument had excellent performance, with a throughput of more than 100 samples/h. Its user friendly workstation has complete patient data management, which is in compliance with good laboratory practices in France.

Blood Cell Count↗

Autocrine role of IGF-II in proliferation of human adrenocortical carcinoma NCI H295R cell line.

In adrenocortical tumors, the malignant phenotype is associated with rearrangements (paternal isodisomy) at the 11p15 locus and IGF-II gene overexpression, strongly suggesting that the IGF system is a major determinant of adrenocortical tumor progression. The aim of this study was to validate an in vitro model for investigating the involvement of the IGF system in adrenocortical tumorigenesis. We analyzed the production of IGF mRNA and proteins, IGF-binding proteins (IGFBPs) and IGF receptors by the NCI H295R cell line, which is derived from a human adult adrenocortical carcinoma. H295R cells were shown to proliferate for a long period (26 days) in the absence of serum or any added growth factor. Northern blot analyses showed high IGF-II mRNA contents in H295R cells. The cells secreted large amounts of IGF-II protein (14 ng/10(6) cells per 48 h) although no IGF-I protein was detected. Western ligand blot analyses of conditioned media detected the presence of large amounts of a 34 kDa protein, which was identified as IGFBP-2 by immunoblotting. The presence of high-affinity binding sites for IGF-I and IGF-II on H295R cells was shown by binding experiments using radiolabeled IGFs and confirmed by reverse transcription PCR analyses showing type 1 and type 2 IGF receptors. Proliferation of H295R cells was inhibited by anti-IGF-II antibody (45%) and by anti-type 1 IGF receptor antibody (53%) indicating that IGF-II is an autocrine growth factor for these cells and that its effects are, at least in part, mediated by the type 1 IGF receptor. These findings confirm the involvement of the IGF system in adrenocortical tumors and suggest that the H295R cell line is a suitable in vitro model for studying the molecular mechanisms of adrenocortical tumor proliferation.

Adrenal Cortex Neoplasms↗

Phenotypic and genotypic variability in monozygotic triplets with Turner syndrome.

Turner syndrome (TS) is a common disorder (1/2500 and 1/5000 female births) which is diagnosed at birth in approximately 20% of patients and during childhood (usually due to growth retardation) or later, (due to lack of pubertal development) for the remaining patients. Here we present a cytogenetic and molecular analysis of three monozygotic sisters. The diagnosis of TS was done for one of them (patient 1) who presented with a typical Turner phenotype. A first karyotype was established as normal and a second karyotype (carried out on 200 cells) revealed a 45,X/46,XX mosaicism with 6% of cells with a 45,X karyotype. Lymphocyte karyotype analysis showed the same mosaicism pattern for the two other sisters, one of them exhibiting only a mild (patient 2) and the other no clinical features of Turner syndrome (patient 3). Karyotype analysis was this time conducted on fibroblasts and showed that the 45,X/46,XX mosaicism pattern correlated with the clinical phenotype with 99, 43 and 3% of 45,X cells in patients 1, 2, and 3, respectively. These data suggest that different tissues other than lymphocytes should be subjected to a karyotype analysis when the observed genotype does not correlate with the clinical phenotype.

Adolescent↗

Assessment of Turner's syndrome by molecular analysis of the X chromosome in growth-retarded girls.

Turner's syndrome (TS) is a common disorder (1/2500 to 1/5000 female births) which is diagnosed at birth in approximately 20% of patients and during childhood or at puberty for the rest. Growth retardation is the most frequent clinical feature of TS, so we systematically searched for TS in female patients referred to our center because of short stature. Three hundred seventy-five female patients, 1 month to 18 yr old (mean +/- SD = 9(7/12) +/- 3(9/12), with growth retardation (less than -2 SD) and/or decreased height velocity were included in the study. Mean growth retardation was -2.57 SD +/- 0.79 (range: -1 to -7). Thirty-two percent of the patients had reached puberty. GH provocative tests were performed in 329 patients (87.7%), and 36 of these patients (11%) had impaired GH secretion (5 complete and 31 partial GH deficiency). TS was evaluated by Southern blot analysis of leukocyte DNA using a multiallelic polymorphic X chromosome marker (88% heterozygosity rate). Y chromosome PCR analysis was carried out if a pattern indicative of TS was obtained. Leukocyte DNA analysis produced an abnormal restriction pattern for 20 of the 375 cases (5.3%). There was a single hybridizing band in 13 cases, an allelic disproportion indicative of mosaicism in 6 cases, and 3 hybridizing bands in 1 case. One patient tested positive in the Y chromosome PCR analysis. Cytogenetic analysis showed 47 XXX trisomy in the patient with a 3-hybridizing-band pattern and confirmed the diagnosis of TS for 17 of the 19 suspected cases: 45 X: n = 7; 45 X/46 Xi(Xq): n = 4; 45 X/46 XX: n = 2; 46 Xi(Xq): n = 1; 45 X/46 Xr(X): n = 1; 45 X/46 XX/47 XXX: n = 1; 45 X/46 XY: n = 1. Cytogenetic analysis was normal (46 XX) for the 2 other patients. The TS phenotype is variable: dysmorphism is often missing or mild (particularly in cases of mosaicism), but growth is reduced in virtually all patients. Screening of 375 growth-retarded girls identified 18 cases of TS, of which 17 were diagnosed by molecular analysis. This incidence (4.8%) was significantly higher than the expected incidence in this population (0.8-1.6%: P < 0.001).

Adolescent↗

Increased levels of insulin-like growth factor II (IGF-II) and IGF-binding protein-2 are associated with malignancy in sporadic adrenocortical tumors.

In adrenocortical tumors, malignancy is strongly associated with insulin-like growth factor II (IGF-II) gene overexpression and abnormalities at the 11p15 locus, suggesting a role for this growth factor in adrenocortical tumorigenesis. To further investigate this role, the IGF/IGF-binding protein (IGFBP) system was analyzed in 18 adrenocortical tumors, classified into 2 groups on the basis of their IGF-II messenger ribonucleic acid (mRNA) content (group 1, normal IGF-II mRNA content, mostly benign tumors; group 2, high IGF-II mRNA content, mostly malignant tumors). Group 2 tumors contained 10 times more IGF-II protein than group 1 tumors or normal adrenal tissue (P < 0.001), indicating efficient translation of IGF-II mRNA in malignant tumors. Western ligand blotting detected various functional IGFBPs in normal adrenocortical glands and tumors: a doublet of 39-42 kDa identified by immunoblotting as IGFBP-3, a band at 32 kDa, and bands at 29-30 and 24 kDa. Total IGFBP-3 protein levels were similar in the two groups of tumors. By contrast, malignant tumors differed from benign ones by specific expression of the 32-kDa IGFBP. Immunoblotting identified this 32-kDa band together with a proteolytic fragment of 25 kDa as IGFBP-2, and quantitative analysis showed significantly higher levels of total IGFBP-2 in malignant tumors than in benign tumors (P < 0.001). Despite enhanced levels of IGBP-2 protein in malignant tumors, no increase in IGFBP-2 mRNA levels was detected, suggesting post-transcriptional regulation of this IGFBP. These results confirm the major role of IGF-II in adrenocortical tumorigenesis and suggest that IGFBP-2 may be a regulator of IGF-II proliferative effects in this tumor system.

Adolescent↗

Molecular markers for malignancy in adrenocortical tumors.

Little is known about the pathophysiology of sporadic adrenocortical tumors. Benign and malignant adrenocortical tumors are often difficult to distinguish by conventional histology. We tested 38 adrenocortical tumors (23 benign and 15 malignant) for loss of heterozygosity (LOH) at 17p13 and abnormalities in the 11p15 region (uniparental disomy, UPD, and overexpression of the IGF II gene). We showed that 17p13 LOH, 11p15 UPD and overexpression of the IFG II gene are frequent in adrenocortical tumors, occurring in 40% of them. These genetic changes are associated with the malignant phenotype and thus could be used for diagnostic evaluation of adrenocortical tumors.

Adolescent↗

Structural and functional abnormalities at 11p15 are associated with the malignant phenotype in sporadic adrenocortical tumors: study on a series of 82 tumors.

Abnormalities of the 11p15 region with overexpression of the normally imprinted insulin-like growth factor II (IGF-II) gene have been implicated in the pathogenesis of adrenocortical tumors. We evaluated the frequency and distribution of 11p15 loss of heterozygosity (LOH) and IGF-II gene overexpression in a series of 82 sporadic adrenocortical tumors, screened for pathological functional imprinting of the 11p15 region in tumors not exhibiting LOH and evaluated the expression of H19 gene in these tumors. Abnormalities of the 11p15 region as LOH (loss of the maternal allele and duplication of the paternal allele) and/or IGF-II gene overexpression are frequent features of the malignant state and were found in 27 of 29 (93.1%) of the malignant tumors and in only 3 of 35 (8.6%) of the benign tumors. Tumors without abnormality of the 11p15 region (mainly benign tumors) did not exhibit pathological functional imprinting. In tumors with mosaicism for 11p15 LOH, biallelic expression of the IGF-II gene was constant in the tumor cell contingent not undergoing LOH. Abrogation of H19 expression correlated with the loss of the maternal allele (LOH or pathological imprinting), but did not always correlate with overexpression of the IGF-II gene. These data indicate the involvement of dysregulation of the 11p15 region in late steps of adrenocortical tumorigenesis and provide us with new molecular markers for a better diagnostic and prognostic evaluation of adrenocortical tumors.

Adolescent↗

Cushing's syndrome in medullary thyroid carcinoma.

Ectopic ACTH secretion is a rare cause of hypercortisolism. Induced metabolic disturbances are often serious, and the management of such patients may be difficult. We report here our experience with four medullary thyroid carcinoma (MTC) patients with distant metastases in whom an ectopic ACTH syndrome occurred. The clinical presentation was significant by the severity and the rapidity of the hypercortisolism. Diagnosis and follow-up were realized by measurements of plasma cortisol, urinary free cortisol, urinary 17-hydroxycorticosteroid, plasma ACTH, plasma LPH, serum calcitonin and carcino-embryonic antigen. Initial treatment with adrenalytic medical therapy failed to control the disease. Only bilateral adrenalectomy cured the excessive cortisol production, and for a long time despite tumor progression. In conclusion, bilateral adrenalectomy should be considered in MTC patients with Cushing's syndrome even at the stage of distant spread. In fact, with regard to the slow growth rate of most MTC's, they may survive for years.

Adrenalectomy↗

Oncogenic mutations of alpha-Gi2 protein are not determinant for human adrenocortical tumourigenesis.

Activating mutations of G proteins, which are membrane signal transducers, have been associated recently with the development of various endocrine neoplasms. Mutations of two highly conserved codons, Arg201 and Gln227, in the alpha-subunit of the Gs protein, the adenylyl cyclase-stimulating protein, were first described in growth hormone-producing pituitary tumours. They resulted in constitutive activation of the alpha s-subunit by decreasing intrinsic GTPase activity. A similar mutation, affecting codon Arg179 (exon 5) in the alpha-subunit of the Gi2 protein, the adenylyl cyclase-inhibiting protein, has been described by a single group in ovarian and adrenocortical tumours. We evaluated the frequency of activating mutations in the alpha-subunit of the Gi2 protein in 18 human adrenocortical tumours. We screened exons 5 (codon Arg179) and 6 (codon gln205) for mutations by denaturing gradient gel electrophoresis analysis of leucocyte and tumoural DNA. No abnormal migration pattern was found in either exon. The absence of mutation in exon 5, which includes the Arg179 codon, was confirmed in all tumoural DNA by direct sequencing. In conclusion, we did not find any oncogenic mutations in the GTPase domain of the alpha-subunit of the Gi2 protein in adrenocortical tumours. Thus, the previously oncogenic gip2 mutations do not appear to be determinant for adrenocortical tumourigenesis.

Adolescent↗

Clonal analysis of human adrenocortical carcinomas and secreting adenomas.

OBJECTIVES: Adrenocortical tumours in man are characterized mainly on biochemical, anatomical and histological grounds which establish their secretory pattern and, with some uncertainty, their benign or malignant nature. To study further these tumours and eventually to shed some light on their pathogenesis, we determined their clonal composition. METHODS: Clonal composition was determined by X-chromosome inactivation analysis on tumour and leucocyte DNA using three markers: M27 beta, phospho-glycero-kinase (PGK) and hypoxanthine-phosphoribosyl transferase (HPRT) with 88, 33 and 27% heterozygosity rates respectively. PATIENTS: Clonal analysis was performed on 25 tumours from 19 heterozygous female patients: four had a carcinoma, 14 had a single secreting adenoma, and one had autonomous bilateral macronodular hyperplasia with Cushing's syndrome (seven adenomas examined). RESULTS: The malignant tumours had patterns indicative of monoclonality. The single adenomas displayed contrasting results with patterns indicative of monoclonality in eight cases, and patterns indicative of polyclonality in six cases; monoclonal adenomas were larger and had a higher prevalence of nuclear pleomorphism than the apparently polyclonal adenomas. In the patient with bilateral macronodular hyperplasia, different clonal patterns were present in different adenomas: whereas a clear monoclonal pattern was observed in the three adenomas of the right gland, in which the active X-allele was not always the same, in two interpretable adenomas of the left gland, a moderately skewed pattern suggested a partial monoclonal component. CONCLUSIONS: These data show that adrenocortical carcinomas are monoclonal and suggest that adenomas may arise from a single cell or from more than one cell under the putative action of local growth factors. In adenomas, which until now had appeared homogeneous, this genetic heterogeneity may reflect different pathophysiological mechanisms or it may represent different stages of a common multistep process exceptionally occurring in a single patient with bilateral macronodular hyperplasia.

Adenoma↗

Rearrangements at the 11p15 locus and overexpression of insulin-like growth factor-II gene in sporadic adrenocortical tumors.

Little is known about the pathophysiology of sporadic adrenocortical tumors in adults. Because loss of heterozygosity at the 11p15 locus has been described in childhood tumors, particularly, in adrenocortical tumors, associated with the Beckwith-Wiedemann syndrome and because insulin-like growth factor-II (IGF-II) is a crucial regulator of fetal adrenal growth, we looked for structural analysis at the 11p15 locus and IGF-II gene expression in 23 sporadic adrenocortical adult tumors: 6 carcinomas (5 with Cushing's syndrome and 1 nonsecreting) and 17 benign adenomas (13 with Cushing's syndrome, 1 pure androgen secreting, and 3 nonsecreting). Twenty-one patients were informative at the 11p15 locus, and six (four carcinomas and two adenomas) of them (28.5%) exhibited 11p15 structural abnormalities in tumor DNA (five, an uniparental disomy and one, a mosaicism). In a single case that could be further studied, a paternal isodisomy was observed. Very high IGF-II mRNA contents were detected in seven tumors (30%; 5 of the 6 carcinomas and 2 of the 17 adenomas). They were particularly found in tumors with uniparental disomy at the 11p15 locus. Overall, a strong correlation existed between IGF-II mRNA contents and DNA demethylation at the IGF-II locus. These data show that genetic alterations involving the 11p15 locus were highly frequent in malignant tumors, but found only in rare adenomas. These results in combination with evidence for overexpression of IGF-II from the 11p15.5 locus suggest that abnormalities in structure and/or expression of the IGF-II gene play a role as a late event of a multistep process of tumorigenesis.

Adenoma↗