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Biomedical subjects

R Tedder

Publications and source records attributed to R Tedder.

At least 19 recordsLinked to original sources

Treatment of histologically mild hepatitis C virus infection with interferon and ribavirin: a multicentre randomized controlled trial.

Current guidelines advocate no treatment for patients with histologically mild hepatitis C virus (HCV) infection. This was a UK multicentre randomized controlled trial comparing alpha-interferon (3 MU thrice weekly) + ribavirin (1000-1200 mg/day) for 48 weeks with no treatment in treatment naive, adult patients with histologically mild chronic HCV infection. The aim was to compare benefits, safety and efficacy of combination therapy with alpha-interferon 2b and ribavirin for 48 weeks with no treatment (current standard management) in this patient group. In the treatment group 32 of 98 (33%) patients achieved a sustained virological response (SVR). Patients infected with genotype 1 had a lower SVR than those infected with genotype non-1 (18% vs 49% P = 0.02). No patients who failed to achieve a 2-log drop in viral load at 12 weeks achieved SVR. Improvements in quality of life 24 weeks postcessation of therapy compared with baseline using the SF-36 questionnaire measures were observed in the treated group. For patients with mild HCV infection with viral genotype non-1, the results are sufficiently good to suggest that therapeutic decisions should no longer be biopsy-driven. For patients infected with genotype 1, a liver biopsy is still indicated as the low chance of SVR is outweighed by an unacceptable burden of side-effects. Patients who fail to respond by 12 weeks of therapy should have their treatment curtailed early.

Adult↗

Hepatitis B virus (HBV) and hepatitis C virus (HCV) infections in health care workers (HCWs): guidelines for prevention of transmission of HBV and HCV from HCW to patients.

The transmission of viral hepatitis from health care workers (HCW) to patients is of worldwide concern. Since the introduction of serologic testing in the 1970s there have been over 45 reports of hepatitis B virus (HBV) transmission from HCW to patients, which have resulted in more than 400 infected patients. In addition there are six published reports of transmissions of hepatitis C virus (HCV) from HCW to patients resulting in the infection of 14 patients. Additional HCV cases are known of in the US and UK, but unpublished. At present the guidelines for preventing HCW to patient transmission of viral hepatitis vary greatly between countries. It was our aim to reach a Europe-wide consensus on this issue. In order to do this, experts in blood-borne infection, from 16 countries, were questioned on their national protocols. The replies given by participating countries formed the basis of a discussion document. This paper was then discussed at a meeting with each of the participating countries in order to reach a Europe-wide consensus on the identification of infected HCWs, protection of susceptible HCWs, management and treatment options for the infected HCW. The results of that process are discussed and recommendations formed. The guidelines produced aim to reduce the risk of transmission from infected HCWs to patients. The document is designed to complement existing guidelines or form the basis for the development of new guidelines. This guidance is applicable to all HCWs who perform EPP, whether newly appointed or already in post.

DNA, Viral↗

Sequence specificity of the human immunodeficiency virus type 2 (hiv-2) long terminal repeat u3 region in vivo allows subtyping of the principal hiv-2 viral subtypes a and b.

Sequences from the nef/LTR overlap region of the human immunodeficiency virus type 2 (HIV-2) genome were amplified from uncultured peripheral blood mononuclear cells (PBMCs) from 40 HIV-2-infected individuals in The Gambia, West Africa. Additional sequences from the plasma of three blood donors were also derived. Analysis of HIV-2 U3 LTR transcription factor elements (PuB-1, p-ets, PuB-2, peri-kappa B, and NF-kappa B sites) indicated a relatively high level of conservation in vivo. The region immediately 3' of the nef termination codon, which exhibits clade-dependent specificity, was targeted by PCR to differentiate HIV-2 subtype A from subtype B infections, the two principal clinical HIV-2 subtypes. All clinical samples analyzed (n = 43) from The Gambia were identified as HIV-2 subtype A by a combination of LTR sequence analysis and subtype-specific amplification of subtypes A and B. Differential PCR amplification of the HIV-2 U3 LTR region represents a rapid means of differentiating subtype A from subtype B infections, the two dominant HIV-2 subtypes that are important in human disease.

Base Sequence↗

Antiretroviral therapy for HIV-2 infected patients.

OBJECTIVES: To evaluate clinical and RNA load response to antiretroviral therapy amongst patients infected with HIV-2 and to study the development of drug resistance. METHODS: Seven HIV-2 seropositive patients were monitored with clinical examination, CD4 cell count and HIV-2 viral RNA load. Viruses from four subjects were genotyped and in vitro recovery of virus by co-cultivation with PBMCs and HVS T-cells was attempted. Viruses isolated from two subjects were assayed for phenotypic antiviral resistance. The main outcome measures were the relationship between disease stage, viral load, CD4 cell count, viral subtype and the clinical course of HIV-2 infection and the effect of combination antiretroviral therapy on disease progression, CD4 cell count, HIV-2 RNA viral load and drug resistance. RESULTS: The median time of follow-up was 3 years (range 0-8 years). Three patients had AIDS, and one had symptomatic disease. Of the four patients genotyped, three were infected with HIV-2 subtype B and one with subtype A. Viraemia was detectable only at CD4 counts of less than 300 x 10(6)/ml. Two patients with high viral loads failed to respond to antiretroviral therapy although their treatment may not have been optimal. One developed in vitro phenotypic antiviral resistance. The genotype of this patient's viral reverse transcriptase is being analysed. CONCLUSIONS: In contrast to HIV-1, HIV-2 RNA levels were often undetectable despite advanced disease and low CD4 cell counts. However, HIV-2 was clearly capable of causing CD4 cell depletion resulting in symptomatic disease. The principles of highly active antiretroviral therapy seem to apply to HIV-2 and suboptimal therapy may lead to drug resistance. The timing of therapy initiation, monitoring of response and the measurement of resistance remain unresolved issues and conclusions cannot be extrapolated from HIV-1.

Acquired Immunodeficiency Syndrome↗

Plasma RNA viral load predicts the rate of CD4 T cell decline and death in HIV-2-infected patients in West Africa.

OBJECTIVE: To examine whether the levels of plasma RNA and DNA provirus predict the rate of CD4 cell decline and patient death. DESIGN: Retrospective analysis of HIV-2 cohort subjects. METHODS: Fifty-two subjects were recruited between January 1991 and December 1992. HIV-2 RNA levels in plasma and DNA levels in peripheral blood mononuclear cells (PBMC) were measured using in-house quantitative PCR assays. The annual rate of CD4 cell decline was calculated using the least-squares method. The survival data on 31 December 1997 were used. RESULTS: The mean percentage of CD4 cells at baseline was 30.7 (SD, 9.5). In a linear regression model, the annual rate of CD4 cell decline was 1.76 CD4% faster for every increase in one log10 RNA copies/ml [95% confidence interval (CI), 0.81-2.7; P = 0.0006; r = 0.46; n = 52] and 1.76 CD4% faster for every increase in log10 DNA copies/10(5) PBMC (95% CI 0.46-3.1; P = 0.01; r = 0.33; n = 42). In a multiple linear regression model, RNA load was related to CD4 decline independently of DNA load (P = 0.02). The overall mortality rate was 7.29/100 person-years. In a Cox regression model, the hazard rate increased by 2.12 for each log10 increase in RNA load (95% CI, 1.3-3.5; P = 0.0023) but only by 1.09 for each log10 increase in DNA load (95% CI, 0.64-1.87; P = 0.8). CONCLUSION: This longitudinal study shows for the first time that a baseline HIV-2 RNA load predicts the rate of disease progression. HIV-2-infected patients with a high viral load may need to be treated as vigorously as HIV-1 patients.

Adolescent↗

Comparison of a point mutation assay with a line probe assay for the detection of the major mutations in the HIV-1 reverse transcriptase gene associated with reduced susceptibility to nucleoside analogues.

This study compares the performance of a line probe assay (LiPA) for the detection of the major mutations associated with reduced sensitivity to nucleoside analogues with a well characterised point mutation assay (PMA). Plasma samples obtained from patients in a trial of four reverse transcriptase inhibitors (MRC Quattro Trial) were tested by both LiPA and PMA at baseline, 32nd and 64th weeks for the presence of drug resistance associated mutations in the reverse transcriptase (RT) gene. HIV-1 RNA was extracted from plasma by the Boom method and amplified by RT-PCR prior to being tested by LiPA or PMA. Assay discrepancies were further investigated by sequencing of the RT gene. Of 275 samples available from 98 trial subjects, 246 samples were successfully amplified by PCR and analysed by LiPA and PMA for six mutations. Of the 1476 individual codons analysed, LiPA successfully assayed 1444 (97.8%) and PMA gave a result with 1418 (96.1%). LiPA failed to give a result for 32 codons from 22 samples and PMA failed with 58 codons from 38 samples. Gross differences between the two assays, in which one scored a codon as wild-type only and the other as mutant only or vice versa, occurred at 28 codons analysed (1.9%) representing 26 samples from 20 subjects. Sequencing of 22 of the 26 samples confirmed the LiPA result in nine cases, the PMA result in 11 and detected a novel variant at codon 215 in four cases. The PMA and LiPA approach to the detection of the major mutations that are genotypically associated with reduced sensitivity to nucleoside analogues can correctly detect mutations in 97% of the cases.

Acetamides↗

Pre-transplantation testing: who, when and why?

An ever-widening range of human organs and tissues is being transplanted, limited currently only by the ingenuity of surgeons and immunologists to overcome the physical and immune barriers. Microbiologists are in danger of being left behind. Although the major infective risks of human organ transplantation are now well understood, many details remain controversial, and the special risks associated with tissue banking have received little attention until recently. What should we do? Are we making mountains out of molehills? Are there any data on which to base a rational decision? Topics covered include: bacteriology of cadaveric heart valve transplantation (why are valves not cultured and only dunked in antibiotic solution for 24h, whereas endocarditis gets treated for 4 weeks?); screening for tissue-born viruses (why does everyone persist with serology when genomic methods are so much better?); screening organ donors for CMV (surely we should use the optimally sensitive combination of methods?); peripheral blood stem cell transplants (should we culture these, and what do the positive results mean if we do?); donor sputum screening before heart-lung transplantation (does this aid the post-operative management of the recipient?). With active participation from the floor some areas of consensus were identified and topics worthy of scientific investigation in the future were highlighted.

Heart Valves↗

Transmission rates of hepatitis C virus by different batches of a contaminated anti-D immunoglobulin preparation.

BACKGROUND AND OBJECTIVES: The aim of this study was to determine the hepatitis C virus (HCV) infection rate of recipients of different batches of anti-D immunoglobulin associated with an outbreak of HCV infection which occurred in 1977 and its relationship to the polymerase chain reaction (PCR) status of the implicated batches. This study was undertaken to determine the predictive value of HCV genome detection and quantification for subsequent infection in recipients of an HCV-contaminated anti-D immunoglobulin product for intravenous use. MATERIALS AND METHODS: Sera from recipients of anti-D were tested by HCV enzyme immunoassay and if found positive were subsequently tested by recombinant immunoblot assay and HCV PCR in a national HCV anti-D screening programme set up in 1994. The HCV status of 1,342 known recipients of infectious or potentially infectious batches has been compared to the amount of HCV RNA in the anti-D batch they received so as to determine the value of PCR in the prediction of infectivity in immunoglobulin preparations. RESULTS: It has been demonstrated that HCV-infected plasma derived from batches of anti-D showing levels of viral genome in excess of 10(4) genomes per millilitre led to infection of up to 60% of recipients. In contrast, batches with undetectable levels of HCV genome very rarely transmitted infection. CONCLUSIONS: The presence of HCV RNA in intravenous immunoglobulin preparations which have not undergone a specific viral inactivation step is a predictor of HCV infection in recipients.

Disease Outbreaks↗

HIV-1 viral load, phenotype, and resistance in a subset of drug-naive participants from the Delta trial. The National Virology Groups. Delta Virology Working Group and Coordinating Committee.

BACKGROUND: The Delta trial showed that combination therapy (zidovudine plus didanosine and zidovudine plus zalcitabine) substantially lengthened life and reduced disease progression compared with zidovudine monotherapy. We did a nested virological study in three countries (France, the Netherlands, and the UK) to investigate changes in markers for viral load and antiretroviral-drug resistance during therapy. METHODS: 240 zidovudine-naive HIV-1-infected patients were randomly assigned zidovudine only (n = 87), zidovudine plus didanosine (n = 80), or zidovudine plus zalcitabine (n = 73). Viral load in peripheral-blood mononuclear cells and plasma was measured by quantitative culture. Plasma HIV-1 RNA was measured by reverse-transcriptase PCR amplification, and serum p24 antigen by ELISA. Resistance to antiretroviral drugs was measured phenotypically by culture and genotypically by detection and quantification of drug-related point mutations in the pol gene. Analyses were done by intention to treat. FINDINGS: The reduction in viral load was greatest 4-12 weeks after the start of therapy and was most pronounced in the combination-therapy study groups (median reductions of RNA at 4 weeks 1.58, 1.28, and 0.49 log10 copies/mL for zidovudine plus didanosine, zidovudine plus zalcitabine, and zidovudine only, respectively). RNA levels at 8 weeks were predictive of disease progression and death after allowance for baseline values. At 48 weeks, the proportion of participants with phenotypic zidovudine resistance was similar in all three groups: didanosine and zalcitabine resistance were rare; zidovudine genomic resistance correlated with phenotypic resistance (r = 0.54, p < 0.0001) and developed earlier in the combined-therapy groups. However, participants in the zidovudine monotherapy group had higher circulating loads of resistant virus than those in the combined-therapy groups. INTERPRETATION: Combined antiretroviral therapy was more efficient at lowering virus load than monotherapy. Although zidovudine resistance was common in monotherapy and combined-therapy groups, circulating concentrations of resistant virus were substantially lower in the combination groups, which is likely to be a result of the continued antiviral activity of didanosine or zalcitabine.

Anti-HIV Agents↗

Multicenter comparison of three commercial methods for quantification of human immunodeficiency virus type 1 RNA in plasma.

Three procedures for the quantification of human immunodeficiency virus type 1 (HIV-1) RNA from plasma were compared at three laboratories. The comparison involved the Quantiplex branched DNA assay (version 1.0) by Chiron Diagnostics, the NASBA-QT assay by Organon Teknika, and the Amplicor Monitor assay by Roche Molecular Systems. The laboratories performed each of the three assays with the same sets of reconstructed HIV-1-infected human plasma samples, cross-sectionally collected clinical plasma samples and longitudinally collected plasma samples from patients starting zidovudine therapy. Analysis of the reconstruction panel results for interlaboratory variation demonstrated that no laboratory differences in results were detected for any of the assays. A comparison of the reproducibilities of duplicate samples analyzed by batch and in separate assay runs demonstrated that the reproducibilities of the test results were similar within one assay and appeared to be independent of the HIV-1 concentration. The best reproducibility was obtained with the Quantiplex assay, but all three assays demonstrated equal reliability, which was independent of batched or unbatched analysis of replicate samples. Differences in the absolute concentrations calculated were observed for the assays, in particular in the analysis of reconstructed samples. In all assays, similar changes in plasma HIV-1 RNA concentrations were determined for longitudinally collected clinical samples.

Biomarkers↗

Use of polymerase chain reaction and quantitative antibody tests in children born to human immunodeficiency virus-1-infected mothers.

The diagnosis of human immunodeficiency virus (HIV) infection in children born to HIV-infected mothers is complicated by the presence of passively acquired maternal antibodies, and exclusion of infection in these infants remains problematic. The use of genome detection by polymerase chain reaction (PCR) amplification and the quantification of anti-HIV-1 antibodies were examined as methods for early diagnosis. Blood samples were taken from 84 non-breast-fed infants of HIV-infected mothers in five Italian and Spanish centres, a subgroup of children enrolled in the European Collaborative Study (ECS) for whom clinical and immunological information has been documented from birth. Whole blood was added to glycigel cryopreservative, stored, and tested in the United Kingdom by a nested PCR method. Antibody to HIV-1 was detected and quantified by titration using a gelatin particle agglutination test. PCR sensitivity and specificity were assessed. Twenty-one of the 84 children tested were infected. The estimated PCR sensitivity ranged from 0% (95% CI 0-26%) on day 1, 57% (19-85) on day 7, to 63% (33-92) on day 30. The negative predictive value of PCR ranged from 85% (83-88) on day 0 to 98% (94-100) at 3 months of age. On average, the level of maternal antibody halved every 33 days (31-36.5) in uninfected children. Between 6 and 9 months of age, increases in antibody titres in infected children were not more informative than absolute levels. These findings suggest that antibody measurement may supplement genomic diagnosis and that this collection method provides an alternative to the use of dried blood spots.

Age Factors↗

Virus inactivation procedures: an overview.

Viruses can easily be transmitted by intravenous infusion of contaminated blood or blood products. Reduction of viral transmission is achieved by suitable donor selection, screening of donations, and choice of manufacturing processes. The components of this strategy should not be considered individually but are complementary. An overview is presented of the combined strategy for reducing the likelihood of virus transmission via blood and blood products.

Antiviral Agents↗