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Biomedical subjects

B Gérard

Publications and source records attributed to B Gérard.

At least 19 recordsLinked to original sources

Results of randomised phase II studies comparing S16020 with methotrexate in patients with recurrent head and neck cancer.

BACKGROUND: The purpose of this study was to carry out two randomised phase II trials of S16020, a new olivacine derivative, tested as a single agent in patients with recurrent head and neck cancer, using methotrexate as the control arm to validate the results. PATIENTS AND METHODS: S16020 at either 80 or 100 mg/m2 was administered as a 3-h infusion every 3 weeks. Methotrexate, 40 or 50 mg/m2, was given by bolus injection, weekly for a minimum of 6 weeks. In total, 36 patients were entered in the randomised studies (25 in an initial study, 11 in a confirmatory study) of whom 24 received S16020 and 12 received methotrexate. RESULTS: A scheduled interim analysis showed one patient having a non-confirmed objective response with S16020 and three patients having a confirmed objective response with methotrexate. In the methotrexate group, there were no patients with severe non-haematological toxicity. With S16020, there was a high incidence of severe non-haematological toxicities, including asthenia, oedema of the face, oedema and pain at the tumour sites and erythematous rash; consequently, both studies were stopped. CONCLUSIONS: Both studies were stopped due to the poor anticipated benefit/risk ratio for S16020, although time to progression and overall survival time were similar in both treatment arms.

Adult↗

The microsystems based visual prosthesis for optic nerve stimulation.

The microsystems based visual prosthesis (MiViP) visual prosthesis generates visual perceptions well below safety and stimulator saturation limits. These perceptions, called phosphenes, are of reasonably small size and are broadly distributed in the visual field. They can thus be used to convey useful visual information. Psychophysical evaluations are being performed in order to assess the implantee's benefits in the use of the MiViP optic nerve visual prosthesis. In a pattern-recognition task, the performance improved regularly with practice with an increasing score and a decreasing delay to recognition. These observations open the way toward an evaluation of general mobility improvement with the portable system. In conclusion, the results obtained so far still support the potential usefulness of the optic nerve visual prosthesis. A low-resolution artificial vision can be expected from the prosthesis after extensive training.

Electric Stimulation↗

Characterization of 11 novel mutations in the X-linked chronic granulomatous disease (CYBB gene).

The most frequent form of chronic granulomatous disease (CGD) is caused by inactivation of the CYBB gene, which encodes the gp91-phox subunit of phagocyte NADPH oxidase. This defect prevents phagocytes from producing reactive oxygen species and thus from eradicating bacterial and fungal infections. We investigated 16 unrelated male patients with suspected X-linked CGD and gp91-phox deficiency. A mutation was found in the CYBB gene of all 16 patients, and 11 of these mutations were novel. Eleven patients (69%) had a point mutation (84G>A in two unrelated patients, and 177C>G, 217C>T, 388C>T, 676C>T, 691C>T, 868C>T, 919A>C, 1384G>T and T1514G in one case each, yielding W28X, C59W, R73X, R130X, R226X, Q231X, R290X, T307P, E462X, L505R gp-91phox). One patient had an in-frame deletion removing two amino acids (R54 and A55). Finally, insertions or duplications were found in four patients (from +1 to +31 bases). Overall, 12 (75%) of the mutations led to the production of a truncated protein. No clear correlation was found between clinical manifestations and genomic/biochemical alterations. Thirteen mothers could be tested, and all were carriers. Hum Mutat 18:163, 2001.

Cytochrome b Group↗

Genotype determination at the survival motor neuron locus in a normal population and SMA carriers using competitive PCR and primer extension.

Precise quantitation of SMN1 copy number is of great interest in many clinical applications such as direct detection of SMA carriers or detection of an SMA-affected patient with a hemizygous deletion of the SMN1 gene. We describe a method that combines two independent nonradioactive PCR assays: determination of the relative ratio of the SMN1 and SMN2 genes using a primer extension assay and of the total SMN copy number using competitive PCR. Consistency of the results of two independent approaches ensures the reliability of the deduced genotype and thus avoids false interpretation of borderline results that can occur in quantitative assays. In all, 135 subjects were tested, including 91 normal controls and 44 SMA-affected children or SMA carriers. Two main genotypes were observed in controls: 2T/2C (45%) and 2T/1C (32%). A wide variability at the SMN locus is observed with nine different genotypes and up to six SMN genes. SMA carriers showed three frequent genotypes, 1T/2C (50%), 1T/3C (29%), and 1T/1C (18%). Normal chromosomes with two SMN1 genes per chromosome are not infrequent and thus, about 3% of SMA carriers are not detected using SMN1 copy number quantitation. Finally, as this method does not detect point mutations (4% of SMN1 gene mutations), reliability ranges from 93% to 100% depending on data available from the propositus.

Child, Preschool↗

Microsatellite instability and frameshift mutations in BAX and transforming growth factor-beta RII genes are very uncommon in acute lymphoblastic leukemia in vivo but not in cell lines.

Mutations in the DNA mismatch repair (MMR) system lead to an instability of simple repetitive DNA sequences involved in several cancer types. This instability is reflected in a high mutation rate of microsatellites, and recent studies in colon cancer indicate that defects in MMR result in frequent frameshift mutations in mononucleotide repeats located in the coding regions of BAX and transforming growth factor-beta (TGF-beta) receptor genes. Circumstantial evidence suggests that the MMR defect may be involved in some lymphoid malignancies, although several allelotype analyses have concluded on the low level of microsatellite instability in acute lymphoblastic leukemias. To further evaluate the implication of MMR defects in leukemogenesis, we have studied a series of 98 children with acute lymphoblastic leukemia and 14 leukemic cell lines using several indicators of MMR defects. Microsatellite markers were compared between blast and normal DNA from the same patients and mutations were sought in mononucleotide repeat sequences of BAX and TGF-beta receptor II (TGF-beta RII). The absence of microsatellite instability (MI) and the absence of mutations in the genes examined from patient's leukemic cells contrasted with the observation that half of the cell lines displayed a high degree of MI and that three of seven of these mutator cell lines harbored mutations in BAX and/or TGF-beta RII. From these results we conclude that MMR defects are very uncommon in freshly isolated blasts but are likely to be selected for during the establishment of cell lines.

Biomarkers, Tumor↗

High-resolution allelotype analysis of childhood B-lineage acute lymphoblastic leukemia.

Knowledge of the patterns of allelic loss has been useful in identifying tumor suppressor genes in many solid tumors. Although the loss of genetic material in acute lymphoblastic leukemias has been documented by cytogenetic studies and microsatellite typing, a global overview of losses of heterozygosity occurring throughout the genome was not yet available. We have performed a high resolution allelotype analysis in 63 childhood B-lineage acute lymphoblastic leukemia. A total of 247 microsatellite markers, evenly distributed along the autosomes were typed in blast and in remission samples from every patient. An average of 41 patients were informative for each marker. LOH at one or several loci was observed in 41 of the 63 patients (64%). The mean values for the fractional allelic loss (FAL) and the hemizygosity index, calculated for each patient, were 0.03 (range 0 to 0.23) and 0.024 (range 0 to 0.18), respectively. The most frequently involved chromosomal arms were 9p (36%), 12p (31%), 20q (15%), 6q (12%), 5p (10%) and 10p (10%). Three regions on chromosomal arms 9p, 12p and 6q were previously identified as the targets of recurring deletions, the target genes being identified for two of them (9p and 12p). The three new regions defined by this allelotype may contain tumor-suppressor genes implicated in the initiation or progression of childhood B-ALLs.

Alleles↗

Combined treatment with dacarbazine, cisplatin, fotemustine and tamoxifen in metastatic malignant melanoma.

The combination of dacarbazine (DTIC), cisplatin (DDP), carmustine and tamoxifen (TAM) has been reported to yield a high rate of response in patients with metastatic melanoma, but responders often experience intracranial recurrences. As fotemustine (FOT) has demonstrated activity on cerebral metastases, the rationale of this study was to replace carmustine by FOT in this four-drug regimen. Twenty patients with metastatic melanoma received FOT (100 mg/m2) on days 1 and 8, DTIC (220 mg/m2 per day) and DDP (25 mg/m2 per day) from day 1 to day 3 and from day 28 to day 30, and continuous daily treatment with TAM (20 mg/day). If stabilization or response was observed at the end of the 8th week, patients received maintenance courses of FOT on day 1, and DTIC (220 mg/m2 per day) and DDP (25 mg/m2 per day) on days 1 to 3. Nineteen patients were evaluable. Of these, six had brain metastases. The overall response rate was 10.5% (two out of 19); both of the responders had only partial responses. The best responding site was lung. No response was obtained in the four patients with evaluable brain metastases, but no patient had therapy failure due to new brain metastases. The median overall survival was 5 months (range 1-45 months). Toxicity was mainly haematological. The use of this combination is not recommended.

Adult↗

Delineation of a 6 cM commonly deleted region in childhood acute lymphoblastic leukemia on the 6q chromosomal arm.

Deletion of the long arm of human chromosome 6 in acute lymphoblastic leukemia (ALL) has been shown by cytogenetic studies in 4-11% of cases. To characterize further the region of deletion and to precisely establish its frequency, we studied loss of heterozygosity (LOH) in 120 children with ALL using polymorphic markers located from the 6q14-15 chromosomal band to the telomere. LOH was detected in eight patients. A single region of LOH, flanked distally by D6S1594 and proximally by D6S301 was detected. These DNA markers are separated by 6 cM and are approximately located at the 6q21-22 band. Our present results delineate a region that is likely to contain a tumor-suppressor gene involved in a subset of childhood ALLs.

Adolescent↗

Systematic screening for fragile X syndrome in a cohort of 574 mentally retarded children.

In this study, we evaluated the prevalence of the fragile X syndrome in a cohort of 574 mentally retarded children. The only inclusion criterion was the diagnosis of mental retardation according to the DSM-IIIR classification. We used a PCR-based strategy for the diagnosis of fragile X syndrome to facilitate systematic screening. This diagnostic scheme is based on an initial PCR to eliminate most fragile X-negative patients followed by Southern blotting for fragile X syndrome diagnosis. Altogether, 403 boys and 171 girls were tested. The prevalence of this genetic disorder was 1.9% (11/574) in the whole cohort and 2.5% (10/403) in boys. Only one case of fragile X syndrome was detected among the 171 girls tested (0.6%). Clinical examination, especially in the youngest children, was often unremarkable, and the only reason for suspecting fragile X syndrome was the presence of mental retardation. Thus, a systematic screening for the fragile X syndrome in mentally retarded children seems justified because of the importance of a precise diagnosis in genetic counseling.

Adolescent↗

Expression of H and L ferritin mRNAs in mouse small intestine.

Regulation of iron absorption occurs mainly at the level of duodenal enterocytes. Several proteins including ferritin, the iron-storing molecule, have been implicated in the uptake, cellular processing, and transfer of iron by the mucosal cells. H and L ferritin subunits assemble in various proportions to form a 24-subunit protein shell which can store up to 4500 iron atoms. Although tissue-specific distribution of H and L ferritin mRNAs has been widely described, little is known of ferritin gene expression in duodenal cells. In this study, we performed quantitative measurements of H and L ferritin mRNAs levels in mouse duodenum, ileum, and liver by ribonuclease protection assay. In addition, we assessed the relative subcellular distribution of these two mRNAs in mouse duodenal and ileal sections by in situ hybridization. The results show that in duodenal cells, the level of H ferritin mRNA is higher than the L ferritin level (H/L ratio of about 5). Moreover, expression of the H mRNA is regulated along both axes of the small intestine: the level increases sharply from the crypt to the apex of the villus, thus following the general differentiation pathway of these cells, and decreases from the proximal to the distal small intestine. In contrast, the L ferritin mRNA level does not change along the cryptovillus axis and increases in value in the ileum. These results suggest that expression of the H ferritin gene is dependent on the differentiation of the enterocytes but, as yet, the regulatory elements remain to be identified.

Animals↗

Deletion mapping indicates that MTS1 is the target of frequent deletions at chromosome 9p21 in paediatric acute lymphoblastic leukaemias.

Recent reports have indicated a high frequency of deletions of MTS1 (CDKN2, p16ink4, CDKI4) in acute lymphoblastic leukaemias (ALLs). This gene is located at chromosome 9p21 and encodes an inhibitor of cyclin D-dependent kinases. In contrast with the observations in some other malignancies, no inactivation of MTS1 by intragenic mutation was demonstrated in leukaemias. A contribution of MTS1 alterations to leukaemogenesis therefore remains questionable. In order to test for the implication of MTS1 as a tumour suppressor gene in paediatric ALLs we have explored the 9p21 chromosomal region of 46 children with this disease. The copy number of the MTS1 gene in blasts from the patients was determined using a quantitative PCR assay enabling us to precisely detect mono- and bi-allelic deletions. Rearrangements of the gene were sought by Southern blot analysis. The extent of the deletions was studied using microsatellite markers spanning the 9p21 chromosomal region. Point mutations were sought in exon 1 and exon 2 of the MTS1 gene in patients with a mono-allelic deletion in addition, exon 2 of MTS1, which contains two-thirds of the coding region, was sequenced in all patients who had no deletion of the gene. Altogether, our data are consistent with the view that MTS1 is the target of 9p21 deletions. Either one or two alleles of the gene were deleted in 36% of non-selected children with B-lineage ALL and both alleles were deleted in all seven patients we studied with T-lineage ALL. The absence of any point mutation implies that the major mechanism of inactivation of MTS1 in ALLs is deletional.

Adolescent↗

Fluorometric detection of HIV-1 genome through use of an internal control, inosine-substituted primers, and microtiter plate format.

We describe a PCR-based fluorometric assay for the detection of the HIV-1 genome. This technique consists of a reverse hybridization with oligonucleotide probes covalently coated onto a microtiter plate as a solid support. Several improvements to the PCR amplification and detection steps gave greater sensitivity and specificity for HIV-1 screening and resulted in a convenient and rapid technique. False-positive results were avoided by using uracyl DNA glycosylase. False-negative results from the presence of PCR inhibitors were detected by coamplifying an internal control with the viral sequence. False-negative results from viral genome variability were limited by using two pairs of primers and by incorporating inosine at the primer positions corresponding to viral polymorphic nucleotides. Furthermore, the hybridization buffer and enzymatic reaction were optimized to increase the assay's sensitivity. The sensitivity and specificity of the fluorometric detection were similar to those of radioisotopic oligonucleotide solution hybridization; however, hands-on time was reduced, and the use of radioactivity was eliminated. We have used this technique routinely on 115 samples and obtained 100% specificity and high sensitivity (only one false-negative result) according to viral culture and (or) serological status of the patients.

Acquired Immunodeficiency Syndrome↗

Loss of heterozygosity in the chromosomal region 12p12-13 is very common in childhood acute lymphoblastic leukemia and permits the precise localization of a tumor-suppressor gene distinct from p27KIP1.

Abnormalities of the short arm of chromosome 12 are relatively common in hematologic malignancies and deletions of the region. 12p12-13 are found in approximately 5% of the patients with acute lymphoblastic leukemia (ALL). As a potent inhibitor of cyclin-dependent kinases, p27KIP1 prevents the progression of the cell cycle and the gene encoding p27KIP1 represents a potential tumor-suppressor gene. Its recent assignment to the chromosomal region (12p12.3) prompted us to study the p27KIP1 gene in a series of 61 children with ALL. Microsatellite polymorphic markers flanking the p27KIP1 gene were analyzed to detect losses of heterozygosity (LOH). Eleven patients displayed LOH for at least one of the markers. The deleted are encompassed the p27KIP1 gene locus in 10 cases, but inactivation of the remaining allele by deletion, translocation, or mutation was never observed. In addition, in 1 patient, the p27KIP1 gene was situated outside of the region of LOH. Thus, p27KIP1 does not seem to be the target gene of 12p12-13 alterations. However, this study indicates that 12p12-13 alterations at the molecular level, which are present in about 27% of the children with B-lineage ALL, are much more common than had previously been reported by usual chromosome analysis. Moreover, LOH mapping allowed us to better define the location of a putative tumor-suppressor gene implicated in these malignancies and should therefore help in identifying this gene.

Base Sequence↗

Palliative therapy of melanoma patients with fotemustine. Inverse relationship between tumour load and treatment effectiveness. A multicentre phase II trial of the EORTC-Melanoma Cooperative Group (MCG).

Fotemustine (FM) is a new chloronitrosurea (CNU), chemically characterized by the graft of an aminophosphonic acid on the CNU radical, which makes it highly lipophilic. Following single-institution phase I and II studies with remarkably high response rates of some 40%, including brain metastases of 25% and more, the EORTC-MCG started a multicentre phase II trial to confirm these results according to EORTC guidelines. Treatment consisted of an induction cycle of FM (100 mg/m2 on days 1 + 8 + 15), followed by maintenance courses (q3w). Fifty-four patients were entered by 11 institutions. General interest in this promising new agent, however, led clinicians of six additional institutions to join the EORTC trial and 90 more patients were included in only 4 months. This rapidly rising accrual rate became inversely related to the physicians' adherence to the eligibility criteria: palliation of symptoms rather than clinical research was the dominant reason to start treatment. Clinical characteristics and results in the eligible vs non-eligible patient group (in parentheses) were as follows: male/female 29/26 (68/65), mean age 54 years (53), ECOG-PS 0-1 (0-4), CR 2 (0), PR 10 (2), NC 17 (5) and for brain metastases: PR 4 (1), NC 2 (1), for an ORR of 12% (5%). Median duration of response was 6 months (range 4-16). The clinically relevant toxicity was limited to the haematopoiesis with delayed platelet nadirs (30% grade III+IV), granulocyte (25% grade III + IV) and the gastrointestinal tract: nausea and vomiting (26% grade II, 18% III, 1% IV). This study confirms that FM is active in melanoma including brain metastases.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Liver cytochrome c oxidase deficiency in a case of neonatal-onset hepatic failure.

In the last few years, inborn errors of oxidative phosphorylation have been recognized as possible causes of hepatic failure in infancy and respiratory enzyme deficiencies have been described in several tissues of affected individuals. Here, we report on cytochrome c oxidase deficiency in the liver but not in the skeletal muscle of a 5-month-old girl who presented hepatic failure in early infancy. Persistent hyperlactatemia (> 4 mM, normal < 2.4) with high lactate/pyruvate (L/P) molar ratios in plasma, and their further elevation in the post-absorptive period were suggestive of an inborn error of oxidative phosphorylation. However, no mutation in the coding sequences of the liver-specific subunits of cytochrome c oxidase (VIa and VIIa) has been detected and no major rearrangement or depletion of the mitochondrial DNA has been observed. Based on this observation we suggest that inborn errors of oxidative phosphorylation be considered in the diagnosis of severe hepatocellular dysfunction of unknown origin, especially when an abnormal oxidation-reduction status is found in the plasma and even if normal respiratory enzyme activities are found in peripheral tissues. The findings of normal respiratory enzyme activities in skeletal muscle, circulating lymphocytes or cultured skin fibroblasts does not rule out this diagnosis. Instead, the negativity of these tests should prompt one to carry out the specific enzyme assays in the tissue which expresses the disease, namely the liver.

Cytochrome-c Oxidase Deficiency↗