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M Vidaud

Publications and source records attributed to M Vidaud.

At least 55 records · Page 3Linked to original sources

Modulation of copper/zinc superoxide dismutase expression and activity with in vitro differentiation of human villous cytotrophoblasts.

Due to the role of oxygen free radicals in trophoblast cell differentiation, we used the in vitro model of villous cytotrophoblast differentiation into the syncytiotrophoblast to investigate the modulation of the key antioxidant enzyme copper/zinc superoxide dismutase (SOD-1) in the human trophoblast during pregnancy. Cytotrophoblast cells were isolated from first-trimester and term placentae. SOD-1 mRNA levels were determined using real-time quantitative polymerase chain reaction, protein levels were determined by immunoblotting with a specific monoclonal antibody, and oxidoreductase activity was measured during syncytiotrophoblast formation in vitro. Interestingly, SOD-1 protein levels fell significantly (P< 0.001) during syncytiotrophoblast formation but no corresponding change in enzyme activity was observed. This apparent discrepancy may be related to different amounts of SOD-1 co-factor in the two cell types. Indeed the level of copper was significantly higher (P< 0.05) in syncytiotrophoblast as compared with cytotrophoblast. SOD-1 mRNA levels remained stable during cytotrophoblast differentiation. SOD-1 expression and activity were similar in cytotrophoblast cells isolated from first-trimester and term placentae, and in the differentiated syncytiotrophoblast in vitro. These results underline the need to determine SOD-1 protein expression and activity simultaneously in order to gain a better knowledge of its role in human trophoblast cell differentiation.

Cell Differentiation↗

Large-scale screening for human parvovirus B19 DNA by PCR: application to the quality control of plasma for fractionation.

BACKGROUND AND OBJECTIVES: Because human parvovirus B19 (B19) has been transmitted by various plasma-derived medicinal products, the 'Laboratoire français du Fractionnement et des Biotechnologies' (LFB) implemented PCR screening of plasma pool samples for B19 DNA as part of the quality control of plasma source material. MATERIALS AND METHODS: Plasma pool samples (average of 46.5 donations) were tested for B19 DNA by PCR and by immunological detection of PCR products. The viral DNA content was determined by means of a TaqMantrade mark-based, quantitative PCR. RESULTS: From plasma corresponding to 2-year collections in France, and representing 4.26 million donations from approximately 1.25 million voluntary unpaid donors, the average frequency of positive donations was 1/5,950 and reached 1/1,420 during an epidemic. Levels of B19 DNA in positive pools ranged from <10(2) to 10(11) copies/ml. CONCLUSION: A large-scale PCR plasma screening increased the safety of LFB's wide range of products with respect to B19, a virus particularly resistant to physicochemical inactivation procedures.

Consumer Product Safety↗

Defect of villous cytotrophoblast differentiation into syncytiotrophoblast in Down's syndrome.

The syncytiotrophoblast (ST) is one of the major components of the human placenta, as it is involved in feto-maternal exchanges and the secretion of pregnancy-specific hormones. The aim of this study was to elucidate the formation and function of the ST in trisomy 21 (Down's syndrome). We first used the in vitro model of cytotrophoblast differentiation into ST. Cytotrophoblasts were isolated from 15 trisomy 21-affected placentas (12-35 weeks gestation) and 10 gestational age-matched control placentas. In vitro cytotrophoblasts isolated from normal placenta fused to form the ST. This was associated with an increase in transcript levels and in the secretion of hCG, human placental lactogen, placental GH, and leptin. In trisomy 21-affected placentas, we observed a defect (or a delay) in ST formation and a dramatic decrease in the synthesis and secretion of these hormones compared to those in cultured cells isolated from control age-matched placentas. These results were confirmed by a significant (P < 0.001) decrease in gene expression in total homogenates of trisomy 21-affected placentas compared to controls. These results will be of help in understanding the maternal hormonal markers of fetal trisomy 21 and the consequences of placental defects for fetal development.

Adult↗

Retinoids stimulate leptin synthesis and secretion in human syncytiotrophoblast.

The syncytiotrophoblast (ST), which forms the outer layer of the chorionic villi, is the endocrine unit of the human placenta. Bathing in the maternal blood of the intervillous space, the ST secretes its hormonal products directly into the maternal circulation. Leptin is expressed in the ST and is secreted into the maternal circulation. However, its regulation and physiological role during pregnancy remain poorly known. In the present work we used the in vitro model of human cytotrophoblast differentiation into ST to study the effect of physiological and synthetic retinoids on leptin synthesis and secretion. Using specific antibodies we first illustrated by immunocytochemistry the expression of retinoic acid (RA) receptor alpha and retinoid X receptor alpha (RXRalpha) in ST. We then observed that leptin messenger ribonucleic acid and protein expression increased with in vitro ST formation. The 9-cis isomer of RA and the synthetic retinoid specific for RXRs (BMS 649) stimulated leptin messenger ribonucleic acid expression and secretion. In contrast, all-trans-RA and a RA alpha-specific ligand had no effect. These results suggest that retinoids regulate leptin expression and highlight a role for RXRalpha in this process.

Adult↗

Quantitation of hTERT gene expression in sporadic breast tumors with a real-time reverse transcription-polymerase chain reaction assay.

Recent observations support the notion that telomerase expression is essential for the formation of human tumor cells [W-C. Hahn et al., Nature (Lond.), 400: 464-468, 1999]. The expression pattern of hTERT, the human telomerase catalytic subunit gene, is a rate-limiting determinant of the enzymatic activity of human telomerase. We have developed a real-time quantitative RT-PCR assay based on Taq-Man fluorescence methodology to quantify the full range of hTERT mRNA copy numbers. We validated the method on a series of 134 unilateral invasive primary breast cancer patients with known long-term outcome. Three-quarters of the breast tumors (75.4%; 101 of 134) were hTERT positive, i.e., contained detectable and quantifiable hTERT mRNA. hTERT-positive patients had significantly shorter relapse-free survival (P = 0.017) after surgery compared with hTERT-negative patients. The prognostic significance of hTERT status persisted in Cox multivariate regression analysis. When we subdivided hTERT-positive patients (n = 101) into three equal groups (tumors showing small, intermediate, or high increase in hTERT mRNA content), we observed statistical (or a trend toward) links between high hTERT mRNA levels and Scarff-Bloom-Richardson histopathological grade III (P = 0.066), and negative estrogen (P = 0.002) and progesterone (P = 0.048) receptor status, and therefore with higher aggressiveness of breast tumors. High hTERT mRNA levels were also linked to MYC gene overexpression (P = 0.007). These findings show that the quantitative evaluation of hTERT mRNA can have important prognostic significance in human breast cancer. In addition, our simple, rapid, and semiautomated assay method is suitable for routine hTERT mRNA detection and quantification and will be a powerful tool in large, randomized, prospective, cooperative group trials and in the hTERT-based therapy project.

Adult↗

Fast and efficient mutation detection method using multiplex PCR and cycle sequencing--application to haemophilia B.

A method using multiplex PCR followed by cycle-sequencing has been developed to detect mutations in the FIX gene. The procedure was evaluated in 45 severe or mild haemophilia B patients from 45 unrelated families. At least one deleterious mutation was identified in every haemophiliac demonstrating the efficiency of the method. Furthermore the described procedure offers many advantages compared to other screening detection methods: it is fast (less than 48 h), simple (partly automated) and of relatively low cost (it requires only one PCR).

Codon, Nonsense↗

[Failure of differentiation of the trophoblast in trisomy 21].

The syncytiotrophoblast is the major component of the human placenta as it is involved in the feto-maternal exchanges and the secretion of pregnancy-specific hormones. In normal placenta, the multinucleated syncytiotrophoblast is formed by fusion of mononuclear cytotrophoblast cells. In trisomy 21-affected placenta, we show that it exists a defect (or a delay) in the syncytiotrophoblast formation and a decrease of the production of pregnancy-specific hormones. We show that it is related to the over expression of the SOD-1 located on chromosome 21. These results will be of help for the understanding of maternal hormonal markers of fetal trisomy 21 and the consequences of the placental defects on the fetal development.

Biomarkers↗

Characterization of the human and mouse ETV1/ER81 transcription factor genes: role of the two alternatively spliced isoforms in the human.

The Ets transcription factors of the PEA3 group--E1AF/PEA3, ETV1/ER81 and ERM--are almost identical in the ETS DNA-binding and the transcriptional acidic domains. To accelerate our understanding of the molecular basis of putative diseases linked to ETV1 such as Ewing's sarcoma we characterized the human ETV1 and the mouse ER81 genes. We showed that these genes are both encoded by 13 exons in more than 90 kbp genomic DNA, and that the classical acceptor and donor splicing sites are present in each junction except for the 5' donor site of intron 9 where GT is replaced by TT. The genomic organization of the ETS and acidic domains in the human ETV1 and mouse ER81 (localized to chromosome 12) genes is similar to that observed in human ERM and human E1AF/PEA3 genes. Moreover, as in human ERM and human E1AF/PEA3 genes, a first untranslated exon is upstream from the first methionine, and the mouse ER81 gene transcription is regulated by a 1.8 kbp of genomic DNA upstream from this exon. In human, the alternative splicing of the ETV1 gene leads to the presence (ETV1 alpha) or the absence (ETV1 beta) of exon 5 encoding the C-terminal part of the transcriptional acidic domain, but without affecting the alpha helix previously described as crucial for transactivation. We demonstrated here that the truncated isoform (human ETV1 beta) and the full-length isoform (human ETV1 alpha) bind similarly specific DNA Ets binding sites. Moreover, they both activate transcription similarly through the PKA-transduction pathway, so suggesting that this alternative splicing is not crucial for the function of this protein as a transcription factor. The comparison of human ETV1 alpha and human ETV1 beta expression in the same tissues, such as the adrenal gland or the bladder, showed no clear-cut differences. Altogether, these data open a new avenue of investigation leading to a better understanding of the functional role of this transcription factor.

Amino Acid Sequence↗

Quantitation of MYC gene expression in sporadic breast tumors with a real-time reverse transcription-PCR assay.

MYC gene overexpression was identified recently as a downstream step at the end of the Wnt/APC/beta-catenin pathway dysregulation observed in colorectal cancer (T-C. He et al., Science (Washington DC), 281: 1509-1512, 1998). It thus appears that an excess of c-myc protein is a primary cause of numerous cancers. In breast cancer, MYC has been studied mostly at the DNA level because of the poor quality of available antibodies against the protein product. The renewed interest in MYC calls for a sensitive and accurate method for analyzing MYC overexpression in breast tumors. We have developed a real-time quantitative reverse transcription-PCR assay based on TaqMan fluorescence methodology to quantify the MYC mRNA copy number. We validated the method on a large series of breast tumors. MYC gene overexpression was observed in 29 of 134 (22%) breast tumor RNAs, ranging from 3.2 to 19 times the level in normal breast tissues. These data imply that dysregulated MYC gene expression is potentially involved in the pathogenesis of breast cancer, especially by favoring local cell proliferation. We also found that MYC gene overexpression was rarely due to an increased MYC gene copy number in breast cancer. This new, simple, rapid, and semiautomated method will be useful for screening cancer patients for MYC overexpression and will prove a powerful tool in large, randomized, prospective, cooperative group trials and in the MYC-based therapy project.

Adult↗

Expression of the RNA component of human telomerase (hTR) in prostate cancer, prostatic intraepithelial neoplasia, and normal prostate tissue.

Telomerase is a ribonucleoprotein that synthesizes telomeric DNA on chromosomal ends. While telomerase is undetectable in most normal somatic tissues, telomerase activation has been detected by a polymerase chain reaction (PCR)-based assay (TRAP) in many immortal cell lines and various cancers, including prostate cancers. To investigate the role of telomerase in prostate cancer at the cellular level, the expression of one of the ribonucleoprotein complexes, the RNA component of human telomerase (hTR), was studied in normal, preneoplastic, and cancerous prostate tissues using a non-radioactive in situ hybridization procedure. Nine human prostates resected at the time of radical prostatectomy were studied. In each case, archival paraffin-embedded samples from normal tissue, prostatic intraepithelial neoplasia (PIN) lesions, the putative precancerous lesion, and prostate carcinomas were selected for in situ hybridization. hTR mRNA expression was detected in carcinomatous glands of seven out of the nine cancers (75 per cent). Furthermore, in seven out of the eight cases showing PIN lesions, the epithelial cells of PIN foci also expressed hTR mRNA. By contrast, in normal tissue, epithelial cells were negative, whereas hTR mRNA expression was detected in the basal cells. The detection of hTR mRNA in PIN lesions clearly strengthens the link between PIN and carcinomatous glands and suggests that telomerase expression occurs early in prostate carcinogenesis. Furthermore, this study confirms previous experimental data suggesting that the basal cell layer is the stem cell compartment in prostate.

Aged↗

Liver fibrosis progression in human immunodeficiency virus and hepatitis C virus coinfected patients. The Multivirc Group.

The natural history of hepatitis C virus (HCV) infection in human immunodeficiency virus (HIV)-infected patients has never been studied according to the concept of liver fibrosis progression. The aim of this work was to assess the fibrosis progression rate in HIV-HCV coinfected patients and in patients infected by HCV only. A cohort of 122 HIV-HCV coinfected patients was compared with a control group of 122 HIV-negative HCV-infected patients. Groups were matched according to age, sex, daily alcohol consumption, age at HCV infection, and duration and route of HCV infection. The fibrosis progression rate was defined as the ratio between fibrosis stage (METAVIR scoring system) and the HCV duration. The prevalence of extensive liver fibrosis (METAVIR fibrosis scores 2, 3, and 4) and moderate or severe activity were higher in HIV-infected patients (60% and 54%, respectively) than in control patients (47% and 30%, respectively; P <.05 and P <.001, respectively). The median fibrosis progression rate in coinfected patients and in control patients was 0.153 (95% confidence interval [CI], 0.117-0.181) and 0.106 (95% CI, 0.084-0.125) fibrosis units per year, respectively (P <.0001). HIV seropositivity (P <.0001), alcohol consumption (>50 g/d, P =.0002), age at HCV infection (<25 years old, P <.0001), and severe immunosuppression (CD4 count </=200 cells/microL, P <.0001) were associated with an increase in the fibrosis progression rate. In coinfected patients, alcohol consumption (>50 g/d), CD4 count (</=200 cells/microL), and age at HCV infection (<25 years old) (P <. 0001, respectively) were associated with a higher fibrosis progression rate. HIV seropositivity accelerates HCV-related liver fibrosis progression. In coinfected patients, a low CD4 count, alcohol consumption rate, and age at HCV infection are associated with a higher liver fibrosis progression rate.

Adult↗

Expression of connective tissue growth factor in experimental rat and human liver fibrosis.

Connective tissue growth factor (CTGF) stimulates in vitro fibroblast proliferation and extracellular matrix synthesis. The aim of this study was to assess the role of CTGF in liver fibrogenesis. CTGF expression was investigated both at the protein and mRNA level in biopsies of chronic liver diseases, in experimental models of liver fibrosis, and in hepatic stellate cells in culture. CTGF immunostaining was observed in most human liver biopsies with significant fibrosis. An increase of CTGF immunostaining was associated with a higher score of fibrosis both in the group of chronic hepatitis C (chi(2) = 9.3; P <.01) and in the non-hepatitis C group (chi(2) = 7.2; P <.02). In situ hybridization showed CTGF mRNA expression in spindle cells in both the fibrous septa and sinusoidal lining. In experimental models of liver fibrosis, CTGF accumulated in parallel with the development of septal fibrosis and cirrhosis. Quantification of CTGF mRNA by a real-time reverse-transcription polymerase chain reaction (RT-PCR) assay showed a significant increase of CTGF mRNA in both CCl(4)-induced and bile duct-ligated rat models of liver fibrosis. Expression of CTGF protein and mRNA was definitively assigned to hepatic stellate cells, because CTGF was detected by Western blot both in lysate and supernatant of a hepatic stellate cell line derived from rats. These cells also displayed CTGF protein and mRNA as shown by immunohistochemistry and in situ hybridization. In conclusion, this study shows that CTGF is strongly expressed during liver fibrogenesis, and hepatic stellate cells seem to be the major cellular sources of CTGF in the liver.

Adolescent↗

Modeling the impact of interferon alfa treatment on liver fibrosis progression in chronic hepatitis C: a dynamic view. The Multivirc Group.

BACKGROUND & AIMS: Impact of hepatitis C treatment has never taken into account the dynamics of fibrosis progression. This study assessed the impact of interferon on liver fibrosis progression in patients with chronic hepatitis C according to 3-month aminotransferase activity response. METHODS: We recruited 287 patients, 185 treated and 102 control, with paired biopsy specimens. Before follow-up, the fibrosis progression rate per year was estimated as the ratio between fibrosis stage in METAVIR units (1 U, 1 stage; 4 U, cirrhosis) and the duration of infection. During follow-up, fibrosis progression was assessed by the observed difference between stages divided by duration between biopsies. RESULTS: The median fibrosis progression rate in treated patients decreased compared with the rate before treatment from 0.103 F METAVIR U/yr (95% confidence interval [CI], 0.087-0.120) to 0.000 (95% CI, 0.000-0.000; P </= 0.0001). Among 91 treated responders, fibrosis stage worsened in 19 (22%), compared with 21 (22%) of 94 treated nonresponders and 57 of 102 controls (56%; P </= 0.0001 compared with treated patients), and improved in 26 (29%), 17 (18%), and 8 (8%; P = 0.0002 compared with 29% and P = 0.03 compared with 18%), respectively. These observed differences persisted after genotype, viremia, sex, age at infection, duration of infection, and alcohol consumption were taken into account. CONCLUSIONS: Interferon treatment changes the natural fibrosis progression rate in patients with chronic hepatitis C independently of genotype and early response.

Adult↗

Prion protein and neuronal differentiation: quantitative analysis of prnp gene expression in a murine inducible neuroectodermal progenitor.

The biological function of the cellular prion protein, PrP(c), is currently unknown. The presence of PrP(c) transcripts in the developing neural tube from embryonic day 13.5 and the predominant expression of PrP(c) in the adult brain is suggestive of a role in the onset and/or modulation of neuronal functions. We took advantage of the bipotential neuroectodermal 1C11 cell line to monitor PrP(c) expression during its bioaminergic differentiations. The F9-derived 1C11 precursor cell line displays a stable and immature phenotype in the absence of extracellular signal and, upon induction, has the capacity to acquire a complete serotonergic or noradrenergic phenotype, the two pathways being mutually exclusive. A real-time quantitative PCR assay was developed to assess PrP(c) gene expression at definite times of the two programs that correspond to sequential acquisition of neurotransmitter-specific functions. 1C11 cells and their differentiated progenies express significant amounts of PrP transcripts and of the corresponding protein. A unique decrease in prnp gene expression is observed upon entry into the serotonergic pathway, correlating with a downregulation at the protein level. Moreover, nerve growth factor (NGF) is shown to induce a decrease in the level of prnp gene expression along the serotonergic - but not the noradrenergic - pathway. Our study accurately establishes that prnp gene expression (i) is strongly upregulated concomitantly with cell fate restriction of multipotential cells towards the neural lineage; (ii) is differentially regulated along the serotonergic versus noradrenergic differentiation program of a unique neuroectodermal progenitor. The 1C11 cell line may provide a new tool for studying prion infectivity in a well-defined neuronal context.

Amyloid↗

A short induction regimen of interferon-alpha is not effective for treatment of relapse in chronic hepatitis C: a randomized trial. For the multicentre GER-CYT-01 group.

The aim of this work was to assess the effect of a high-dose (10 million units, MU) short-duration (14 weeks) interferon-alpha2b (IFN-alpha2b) regimen in relapsers compared with the standard IFN regimen of 3 MU three times weekly (t.i.w.) for 6 months. Fifty-eight non-cirrhotic patients (who had relapsed after previous treatment with IFN) with chronic hepatitis were randomized: 29 to the high-dose, short-duration regimen and 29 to the standard regimen. By the end of IFN therapy, in the high-dose, short-duration group alanine aminotransferase (ALT) normalization was observed in 23 (79%) of 29 patients, and undetectable hepatitis C virus (HCV) RNA in eight (28%) vs 25 (86%) and 11 (38%) of the 29 patients in the standard group, respectively (P = NS). At the end of the 72-week follow-up, in the high-dose, short-duration group a sustained ALT normalization was observed in two (7%) patients, and undetectable HCV RNA in 0 (0%) vs five (17%) and four (14%) patients in the standard group (P = NS). There was less fibrosis improvement in the high-dose, short-duration group (two of 26 patients, 8%) than in the standard group (eight of 25 patients, 32%) (P = 0.04). Tolerance to IFN was good and similar in the two groups. In conclusion, in IFN relapsers, high-dose, short-duration treatment with IFN-alpha has no advantage when compared to a 6-month treatment with 3 MU IFN t.i.w.

Adult↗