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Biomedical subjects

J M Pawlotsky

Publications and source records attributed to J M Pawlotsky.

At least 19 recordsLinked to original sources

Multicenter performance evaluation of a new TaqMan PCR assay for monitoring human immunodeficiency virus RNA load.

A TaqMan real-time PCR assay, the COBAS TaqMan human immunodeficiency virus (HIV) (HPS-CTMHIV) PCR assay, recently developed for the quantification of HIV type 1 RNA in plasma, was evaluated in comparison with the licensed COBAS AMPLICOR HIV-1 MONITOR (CAHIM) assay. In this study, we have analyzed the tests' sensitivities, precisions, and linearities using multiple replicates of a standard panel of HIV RNA covering a 7-logarithm range of concentrations, as well as serial threefold dilutions of high-titer clinical samples. The subtype inclusivity was also investigated, using a panel of subtypes A to H, while a collection of 160 clinical samples was analyzed to assess the tests' specificities and the systems' similarities. The results of these experiments showed that the HPS-CTMHIV assay has a sensitivity of 53 copies/ml (95% hit rate), 100% specificity, and good intra- and interassay precision. The results of the HPS-CTMHIV assay were linear in the 50- to 10(7)-copies/ml range, with a correlation coefficient (R) for expected versus observed results of 0.98. Compared to the CAHIM assay, the HPS-CTMHIV assay showed a high correlation (R=0.99) across the dynamic range of RNA concentrations that, for the CAHIM assay, requires two different sample preparations. Equivalent performances were also observed for the two systems in the detection and quantification of HIV subtypes A to H. These data indicate that the HPS-CTMHIV assay may be one of the tests of choice for monitoring viral load throughout the course of HIV infection and during highly active antiretroviral therapy.

Analysis of Variance↗

Hepatitis C virus population dynamics during infection.

Hepatitis C virus (HCV) behaves as an evolving viral quasispecies in its continuously changing environment. The study of HCV quasispecies population dynamics in experimental models and infected patients can provide useful information on factors involved in the HCV life cycle and pathogenicity. HCV quasispecies variability also has therapeutic implications, as the continuous generation and selection of fitter or truly resistant variants can allow the virus to escape control by antiviral drugs.

Animals↗

Changing of hepatitis C virus genotype patterns in France at the beginning of the third millenium: The GEMHEP GenoCII Study.

This cross-sectional study aimed to investigate, during a short period between 2000 and 2001, in a large population of patients with chronic hepatitis C, the epidemiological characteristics of hepatitis C virus (HCV) genotypes in France. Data from 26 referral centres, corresponding to 1769 patients with chronic hepatitis C were collected consecutively during a 6-month period. HCV genotyping in the 5'-non-coding region (NCR) was performed in each center using the line probe assay (LiPA, in 63% of cases), sequencing (25%) or primer-specific polymerase chain reaction (PCR) (12%). HCV genotypes 1a, 1b, 2, 3, 4, 5, non-subtyped 1 and mixed infection were found in 18, 27, 9, 21, 9, 3, 11 and 1% of our population, respectively. HCV genotype distribution was associated with gender, age, source and duration of infection, alanine aminotransferase (ALT) levels, cirrhosis, alcohol consumption, hepatitis B virus (HBV) and human immunodeficiency virus (HIV) coinfection. In multivariate analysis, only the source of infection was the independent factor significantly associated with genotype (P = 0.0001). In conclusion, this study shows a changing pattern of HCV genotypes in France, with i.v. drug abuse as the major risk factor, an increase of genotype 4, and to a lesser extent 1a and 5, and a decrease of genotypes 1b and 2. The modification of the HCV genotype pattern in France in the next 10 years may require new therapeutic strategies, and further survey studies.

Adult↗

Seroprevalence of human herpes virus 8 antibody in populations at high or low risk of transfusion, graft, or sexual transmission of viruses.

BACKGROUND: The routes of transmission of human herpes virus 8 (HHV-8) remain unclear. In particular, HHV-8 transmission by blood components and organ transplantation is still debated and raises public health issues. The objective of this study was to determine the prevalence of anti-HHV-8 in selected populations of persons or patients with or without risk factors for the transmission of viral infections, in order to determine the routes of HHV-8 transmission. STUDY DESIGN AND METHODS: A total of 1431 persons or patients at low or high risk of sexually, blood-, or graft-transmitted viral infections were tested by means of a standardized immunofluorescence serologic assay detecting anti-HHV-8. RESULTS: The persons or patients could be classified into three distinct groups according to anti-HHV-8 prevalence: a low prevalence group (0.0% to 5.0%), including healthy blood donors, healthy pregnant women, multiply transfused patients with thalassemia major, and IV drug users; an intermediate prevalence group (5.0% to 20.0%), including organ donors, kidney transplant recipients, and multiply transfused patients with sickle cell disease; a high prevalence group (>20.0%), including HIV-negative persons at high risk of sexually-transmitted viral infections, and HIV-infected homosexual men and heterosexuals. CONCLUSION: The sexual route appears to be the main route of HHV-8 transmission; bloodborne transmission of HHV-8, if it exists, is rare. In contrast, organ transplantation recipients might be exposed to HHV-8 transmission by the transplanted organ, which raises the issue of systematic screening of organ donors.

Adult↗

Conservation of the conformation and positive charges of hepatitis C virus E2 envelope glycoprotein hypervariable region 1 points to a role in cell attachment.

Chronic hepatitis C virus (HCV) infection is a major cause of liver disease. The HCV polyprotein contains a hypervariable region (HVR1) located at the N terminus of the second envelope glycoprotein E2. The strong variability of this 27-amino-acid region is due to its apparent tolerance of amino acid substitutions together with strong selection pressures exerted by anti-HCV immune responses. No specific function has so far been attributed to HVR1. However, its presence at the surface of the viral particle suggests that it might be involved in viral entry. This would imply that HVR1 is not randomly variable. We sequenced 460 HVR1 clones isolated at various times from six HCV-infected patients receiving alpha interferon therapy (which exerts strong pressure towards quasispecies genetic evolution) and analyzed their amino acid sequences together with those of 1,382 nonredundant HVR1 sequences collected from the EMBL database. We found that (i) despite strong amino acid sequence variability related to strong pressures towards change, the chemicophysical properties and conformation of HVR1 were highly conserved, and (ii) HVR1 is a globally basic stretch, with the basic residues located at specific sequence positions. This conservation of positively charged residues indicates that HVR1 is involved in interactions with negatively charged molecules such as lipids, proteins, or glycosaminoglycans (GAGs). As with many other viruses, possible interaction with GAGs probably plays a role in host cell recognition and attachment.

Amino Acid Sequence↗

Routine detection and quantification of hepatitis B virus DNA in clinical laboratories: performance of three commercial assays.

The detection and quantification of hepatitis B virus (HBV) genomes in molecular biology-based assays appear to be the most reliable methods for monitoring HBV infection and assessing responses to antiviral treatment. The aim of this study was to evaluate the performance of three HBV-DNA detection and quantification assays currently used for the management of HBV-infected patients: a solution-hybridization assay based on hybrid-capture (Digene Hybrid-Capture, Murex Diagnostics, Dartford, UK); a signal-amplification assay based on 'branched-DNA' (bDNA) technology (Quantiplex HBV DNA, Bayer Diagnostics, Emeryville, CA); and a target-amplification assay based on competitive polymerase chain reaction (Amplicor HBV Monitor, Roche Molecular Systems, Pleasanton, CA). The Monitor assay was significantly more sensitive than both the hybrid-capture and bDNA methods. This better sensitivity appeared to be clinically relevant. The linear ranges of quantification in the hybrid-capture, bDNA and Monitor methods were 6.5-9 log10 genome copies/ml, 6.5-9.5 log10 genome equivalents/ml, and 3-5.5 log10 genome copies/ml, respectively. However, the HBV-DNA units used in the three assays were not comparable. The specificity of the hybrid-capture, bDNA and Monitor assays was 99.2% (95% confidence interval: 97.7-100.0%), 99.2% (97.7-100.0%), and 97.8% (95.3-100%), respectively. Their within-run coefficients of variation and log10 SDs were 5.5% (+/- 0.025 log10 copies/ml), 6.7% (+/- 0.029 log10 Eq/ml) and 21.0% (+/- 0.093 log10 copies/ml), respectively. Between-run coefficients of variation ranged from 4.4-39.1%, 5-39.5%, and 17.8-96.1%, respectively. The competitive PCR-based Monitor assay appears to be significantly more sensitive but slightly less specific and reproducible than the hybrid-capture and bDNA methods. Given their respective performance, these three assays should be used in complementary fashion in the management of HBV-infected patients.

DNA, Viral↗

Lessons from a multicentre study of the detectability of viral genomes based on a two-round quality control of GB virus C (GBV-C)/hepatitis G virus (HGV) polymerase chain reaction assay.

The aim of this study was to determine whether multicentre quality controls for the detectability of viral genomes could contribute to the improvement of diagnostic performance in the participating laboratories. The study was carried out during two successive rounds, during which 18 laboratories specialized in nucleic acid testing analyzed, through a polymerase chain reaction (PCR) assay, a common panel of GB virus C (GBV-C)/hepatitis G virus (HGV) RNA-positive and -negative samples. During the first round, the laboratories used either an 'in-house' PCR procedure or a partly standardized commercial test. After decoding the results of the first round, the procedures of the participating laboratories were compared in order to establish a consensus procedure deduced from those of the laboratories which provided the best results. During the second round, each participating laboratory could use the resulting consensus procedure, or its own procedure, or both. The results of this quality control study indicated that, whatever method used, even specialized and trained laboratories may give false-negative or false-positive results. The commercial assay did not guarantee a systematic high quality level of results. The striking heterogeneity of results observed among laboratories using the same commercial assay confirm that molecular biology methods need skilled technicians. The results of this quality control study suggest that full standardization of viral genome detection, including all steps of the procedure, is necessary and that the laboratories performing PCR should participate in repeated quality control studies, whatever technique is being used.

Flaviviridae↗

Standardization of hepatitis C virus RNA quantification.

It was recently recommended that hepatitis C virus (HCV) RNA quantification be used to tailor the duration of combined interferon alfa (IFN-alpha)/ribavirin therapy in patients infected by HCV genotypes 1, 4, and 5. This recommendation has been difficult to implement in the absence of standardized quantitative units for HCV RNA. The aim of this work was to define clinically relevant HCV RNA loads in standardized international units (IU), for use in routine clinical and research applications based on standardized quantitative assays. Two hepatitis C virus RNA quantitative assays were used: (1) the Superquant assay (National Genetics Institute, Los Angeles, CA), for which possibly relevant thresholds were established; and (2) the semi-automated Cobas Amplicor HCV Monitor assay version 2.0 (Cobas v2.0, Roche Molecular Systems, Pleasanton, CA) that measures HCV RNA loads in IU/mL. Quantification in the Cobas v2.0 assay was linear over the entire range of values tested, including viral loads higher than 850,000 IU/mL after 100-fold dilution. The accuracy and precision of the measures in IU/mL were satisfactory with Cobas v2.0. The results obtained with Superquant and Cobas v2.0 correlated (r =.932; P <.0001). A value of 2,000,000 copies/mL (6.3 log(10) copies/mL) with Superquant was converted to nearly 800,000 IU/mL (5.9 log(10) IU/mL). In conclusion, all HCV RNA quantitative assays should give HCV RNA loads in international units and be validated with appropriate calibrated panels; 800,000 IU/mL in any of these assays should be used as the decision threshold to tailor the IFN-alpha/ribavirin treatment duration in patients infected by HCV genotypes 1, 4, and 5.

Antiviral Agents↗

Comparative analysis of translation efficiencies of hepatitis C virus 5' untranslated regions among intraindividual quasispecies present in chronic infection: opposite behaviors depending on cell type.

Hepatitis C virus (HCV) RNA translation initiation is dependent on the presence of an internal ribosome entry site (IRES) that is found mostly in its 5' untranslated region (5' UTR). While exhibiting the most highly conserved sequence within the genome, the 5' UTR accumulates small differences, which may be of biological and clinical importance. In this study, using a bicistronic dual luciferase expression system, we have examined the sequence of 5' UTRs from quasispecies characterized in the serum of a patient chronically infected with HCV genotype 1a and its corresponding translational activity. Sequence heterogeneity between IRES elements led to important changes in their translation efficiency both in vitro and in different cell cultures lines, implying that interactions of RNA with related transacting factors may vary according to cell type. These data suggest that variants occasionally carried by the serum prior to reinfection could be selected toward different compartments of the same infected organism, thus favoring the hypothesis of HCV multiple tropism.

5' Untranslated Regions↗

[The G virus: the orphan virus].

The GB-C/hepatitis G virus (GBV-C/HGV) was discovered in 1995. Its prevalence in the general population of industrialized countries is relatively high. The GBV-C/HGV virus is transmitted by blood and blood-product transfusion, intravenous drug abuse, sexual transmission and mother-fetus transmission. To date, this virus has not been associated with acute or chronic hepatitis and as such hepatitis G virus is a misnomer. This orphelin virus is thus still looking for the right name and perhaps an induced pathology.

Blood Transfusion↗