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L Stuyver

Publications and source records attributed to L Stuyver.

44 records · Page 3Linked to original sources

Host and viral characteristics affecting the response to interferon therapy in chronic hepatitis C.

OBJECTIVE: To define parameters determined before and after 4 weeks of interferon therapy (3 MU three times per week for 24 weeks) which could be reliable predictors of a response to therapy. PATIENTS: Thirty-four patients with chronic hepatitis C virus (HCV) infection were investigated prospectively. METHODS: A complete response was defined as the normalization of serum alanine aminotransferase levels (ALT) at the end of treatment. The genotype of HCV was determined and the level of HCV-RNA was quantitated both before and after 4 weeks of treatment. RESULTS: After 4 weeks, 16 out of 20 responders [95% confidence interval (CI) 54-94%] and two out of 14 non-responders (95% CI 2-44%) normalized their ALT levels (P = 0.0002). The prevalence of genotype 1b was significantly (P < 0.04) higher among non-responders (eight out of 10; 95% CI 44-92%) than in responders (four out of 18; 95% CI 4-40%). Before treatment, the viraemia determined by branched DNA was significantly lower in responders than in non-responders (46.4 versus 116 x 10(5) eq virus/ml). After 4 weeks of treatment, the level of viraemia in responders was still significantly lower than that in non-responders (22.8 versus 66 x 10(5) eq virus/ml). In responders, a significant decrease in the level of viraemia was observed after 4 weeks of treatment. CONCLUSION: In a stepwise regression analysis only age and the normalization of ALT levels after 4 weeks of treatment were predictive of response to interferon at the end of treatment.

Adult↗

Comparative analysis of two assays for genotyping hepatitis C virus based on genotype-specific primers or probes.

BACKGROUND/AIMS: The importance of determining the hepatitis C virus genotype has increased since several authors have described a good correlation between hepatitis C virus genotype and response to interferon treatment or to disease severity. It is thus of particular importance to develop reliable assays for hepatitis C virus genotyping. METHODS: We have comparatively analyzed hepatitis C virus genotypes of 208 French and Italian chronically infected patients using genotype-specific primers polymerase chain reaction in the capsid region and a genotype-specific probe-based assay in the 5' untranslated region (LiPA). RESULTS: We found a good concordance between the two assays for the prevalent genotypes in our regions (145/174). The nucleotide sequences in the 5'UTR and capsid domain were investigated to determine the molecular basis of some discordant results. This analysis showed that the genotype-specific probe-based assay gave more consistent results, probably because this technique is based on several probes distributed along the 5'UTR to reveal each genotype. In contrast, the low variability of 5'UTR did not always permit classification of the hepatitis C virus genotype 1 subtypes. We also found some problems, using genotype-specific primers polymerase chain reaction, for less represented genotypes; in particular, in the presence of type 2a/III we obtained more discordant results. This observation is of importance in view of the potential association of this genotype with mild liver disease and a good response to interferon-a treatment.

Base Sequence↗

Classification of hepatitis C viruses based on phylogenetic analysis of the envelope 1 and nonstructural 5B regions and identification of five additional subtypes.

Genotyping of hepatitis C virus-positive sera by means of a line probe assay indicated that < 3% of European samples, but up to 30% of Gabonese sera, could not be classified as either 1a, 1b, 2a, 2b, 3a, 3b, 4c, 5a, or 6a. Such samples were analyzed in the 5' untranslated region and in the nonstructural 5 (NS5) region. Classification based on phylogenetic analysis of the commonly used 222-bp-long NS5B region was possible for most but not all of the selected sera. Therefore, the core/envelope 1 region (579 bp) and a larger NS5B (340 bp) region were also analyzed. Only the phylogenetic analysis of the 340-bp NS5B region of these newly identified and published isolates provided unambiguous classification into types and subtypes. Furthermore, unequivocal evidence for four subtypes in type 2 and eight subtypes in type 4 was provided. A specific recognition sequence in the 5' untranslated region was observed for every newly identified subtype. Based on 1830 pair-wise comparisons in NS5B, isolates belonging to the same subtype showed evolutionary distances of < 0.127 and isolates of the same type exhibited evolutionary distances of < 0.328. These phylogenetic border distances can be conveniently used for classification of hepatitis C virus isolates into types and subtypes.

Amino Acid Sequence↗

Cloning and phylogenetic analysis of the core, E2, and NS3/NS4 regions of the hepatitis C virus type 5a.

By means of the Line Probe Assay, a hepatitis C virus type 5a infected serum from a Belgian patient was selected. The complete core region (573 bp), the carboxyterminal part of E1 and the aminoterminal part of E2/NS1 (661 bp), and an epitope containing region in NS3-NS4 (1452 bp) were cloned and sequenced. The deduced amino acid sequence revealed type-specific variations in regions of core and NS4 which were previously recognized as evoking a type-specific antibody response. In addition, the aminoterminal region of E2 showed high variability when compared with sequences of type 1, 2, and 3. Phylogenetic analysis showed separate branching of this isolate. The analysis in the core region was not conclusive for some of the strains included and should therefore be carried out in combination with the NS5B region.

Amino Acid Sequence↗

Analysis of hepatitis C virus genotypes by a line probe assay and correlation with antibody profiles.

The 5' untranslated regions derived from 54 patients with a chronic hepatitis C virus infection were analyzed to determine the (sub)type of hepatitis C virus. Labelled polymerase chain reaction products from 5' untranslated region were used as probes for reverse hybridization in a line probe assay (Inno-LiPA) and results were validated by comparison with direct sequencing data. Five different genotypes could be distinguished based on 5' untranslated region sequence diversity. Results of typing by line probe assay and direct sequencing were similar. Antibody responses against core, NS-3, NS-4 and NS-5 epitopes were detected by RIBA-4 and Inno-LIA HCVAb II confirmatory assays. There was no consistent correlation between genotype and anti-HCV responses, although types 2, 3 and 4 hepatitis C virus isolates show poor reactivity with NS-4 ep!%"pes.

Base Sequence↗

Analysis of the putative E1 envelope and NS4a epitope regions of HCV type 3.

Using a Line Probe Assay, type 3 HCV genotype-infected sera were selected from Brazilian blood donors. The partial nucleotide sequences of the core/E1 and NS4a epitope-containing regions and the NS5b typing region were determined. The E1 region had a nucleic acid homology of only 61 to 65% with the type 1 prototype genomes, and 56 to 58% homology with the type 2 prototype HCV genomes. Similar homologies were also found for the NS4a epitope region and for NS5. Furthermore, the deduced amino acid sequence of type 3 NS4a was used to generate synthetic peptides which were strongly reactive with human HCV-infected sera which were previously determined as anti-NS4 negative, indicating that a type-specific antibody response to the NS4a protein may exist.

Amino Acid Sequence↗

A contiguous physical map of the pericentromeric region of chromosome 21q between D21Z1 and D21S13E.

We constructed a long range restriction map of the pericentromeric 21q region between the centromere, identified by the alphoid DNA sequence D21Z1, and D21S13E. The physical map showed the order and intermarker distances of five new loci, including two for which highly informative dinucleotide repeat polymorphisms were identified. The total distance between D21Z1 and D21S13E was 2400 kb. Comparison of genetic and physical distances indicated that there is about 400 to 500 kb per centimorgan that is not significantly different from the average 470 kb per centimorgan for the whole of chromosome 21q. Our physical mapping results do not indicate suppression of recombination in pericentromeric 21q.

Animals↗

Typing of hepatitis C virus isolates and characterization of new subtypes using a line probe assay.

A reverse-hybridization assay, the line probe assay (LiPA), based on variations found in the 5' untranslated regions of the different hepatitis C virus (HCV) genotypes was developed, permitting simple and fast determination of four HCV genotypes and their subtypes. Using this assay, 61 PCR-positive Brazilian HCV sera were typed. Of the sera, 33% had a type 1 HCV infection, 38% had type 1b (related to HCV-J), 1.5% had type 2a (related to HC-J6), 24.5% had type 3 (related to E-b1 and HCV-T), and 3% of the sera were co-infected. This assay format was further evaluated using 13 sera from Belgium and the Netherlands, and all of these could be classified. Two pools of Japanese sera were classified as either type 2a or were co-infected with types 1b and 2a, but no type 2b sequences were detected. Another eight PCR-positive sera were obtained from Burundi and Gabon. The sequence of the 5' untranslated region of these African viruses was strongly divergent from the three previously described types. Therefore, these isolates were tentatively classified as type 4. These and some of the other non-type 1 sera often demonstrated weaker reactivities than type 1 isolates in currently used second generation antibody confirmation assays.

Base Sequence↗