[Hepatitis C; a new virus for an old disease].
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to C L van der Poel.
Explore the source record for details and available documents.
A newly developed antibody assay based on a synthetic peptide of 15 amino acids derived from the core region of the hepatitis C virus (HCV) genome was evaluated in serum and plasma panels of (A) 225 haemophiliacs and (B) 44 patients with chronic non-A, non-B (NANB) hepatitis, and in (C) sequential serum samples of 9 patients with transfusion transmitted HCV infection. The new anti-core peptide ELISA was compared with the anti-C100 ELISA. For confirmation of HCV infection, samples were tested in a 4-antigen recombinant immunoblot assay (4-RIBA) and samples of panels B and C were also assayed in cDNA-polymerase chain reaction (PCR). In two panels with a high prevalence of HCV infection (88.4 and 70.5% in haemophilia and NANB hepatitis patients, respectively), the sensitivity of the anti-core peptide ELISA did not differ significantly from the sensitivity of the anti-C100 ELISA. The sensitivity of the new assay as compared with the anti-C100 assay was found to be 0.84 [95% confidence interval (CI): 0.78-0.89] versus 0.92 (95% CI: 0.87-0.95) in haemophilia patients and 0.71 (95% CI: 0.52-0.86) versus 0.84 (95% CI: 0.66-0.95) in NANB hepatitis patients. In sequential serum samples of patients with transfusion-transmitted HCV infection antibodies to the core peptide (in 6/9 patients) appeared later than antibodies to C100 (in 7/9 patients): 168 (range: 70-322) and 143 (range: 59-365) days after transfusion, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)
A semiautomated dot blot assay and cDNA polymerase chain reaction (PCR) were used to study longitudinal anti-hepatitis C virus (HCV) recognition patterns in relation to presence of HCV-RNA in transfusion recipients and their infectious donors. In 9 recipients, 4 different patterns of HCV infection were observed: (A) persistent HCV carriage accompanied by chronic hepatitis in 6, (B) acute resolved hepatitis, but persistent HCV replication in one, and (C) continuous HCV replication without hepatitis in one and (D) acute resolved hepatitis with clearance of infection in one. This last self-limited infection was characterized by the disappearance of HCV-RNA as well as anti-HCV reactivity. In contrast, antibody reactivity persisted in 7 of 8 patients with chronic HCV infection who could be followed until 1990. Seven of the 9 recipients developed antibodies to all recombinant peptides in dot blot assay; one became positive for anti-C33 and anti-core and one developed anti-core only. The sequence of appearance of antibodies differed among individual patients. In 7 patients with full anti-HCV recognition patterns, the sequence of events was (mean and limits in days after transfusion): onset of hepatitis at day 50 (22-74), seroconversion of anti-C33 at day 91 (59-129), anti-core at day 133 (54-203), and anti-C100 at day 143 (59-365). The incorporation of C33 and core proteins, in addition to C100, in the second generation anti-HCV ELISA enhanced the detection rate in the HCV-infected transfusion recipients from 7/9 (78%) to 9/9 (100%).(ABSTRACT TRUNCATED AT 250 WORDS)
Posttransfusion hepatitis remains a threat to transfusion therapy. Testing for increased ALT levels has been used in an attempt to reduce this risk. Presence of the infectious agent, hepatitis C virus (HCV), appears to be a much more sensitive criterion. Stored serum samples from transfusion blood as well as recipients of transfusion were tested by ELISA, RIBA and PCR for the presence of HCV. The results show that RIBA and PCR are about equally sensitive and are able to detect HCV positivity in many sera that might have been otherwise transfused. Routine screening for the presence of virus will dramatically reduce the danger of hepatitis infection to transfusion patients.
Detection of early antibody to hepatitis C virus (HCV) by a new second-generation C200/C22 anti-HCV enzyme-linked immunosorbent assay (ELISA) and a four-antigen recombinant immunoblot assay (4-RIBA) was compared with the first-generation anti-HCV C100 ELISA using sequential serum samples of 9 recipients who were infected with HCV, as detected by polymerase chain reaction after transfusion of blood products. Within 26 weeks after transfusion, 9/9 (100%) recipients seroconverted with C200/22 ELISA, and 6/9 (67%) seroconverted with C100 ELISA. Compared with C100 ELISA, C200/C22 ELISA seroconversion occurred simultaneously in 3 cases, 5-6 weeks earlier in 3 other cases, and 20 weeks earlier in 1 case. Seven of 9 (78%) recipients became positive, and 2/9 (22%) became indeterminate with 4-RIBA. In 8 cases with clinical posttransfusion hepatitis non-A, non-B (PTH-NANB), anti-HCV C200/C22 ELISA seroconversion occurred 2-17 (mean 6) weeks after the onset of hepatitis. In 6 cases of PTH-NANB, anti-HCV C100 ELISA seroconversion occurred 2-26 (mean 9) weeks after the onset of hepatitis. It is concluded that the second-generation C200/C22 ELISA is more sensitive than the C100 ELISA for the detection of antibody during early HCV infection. Indeterminate 4-RIBA results are found in the early phase of HCV infection.
A second generation ELISA for combined detection of antibodies to three hepatitis C virus (HCV) recombinant proteins, i.e. C100, C33c and core, was compared with a first generation anti-HCV ELISA in which only antibodies to C100 are detected. The results of the ELISAs were evaluated in 225 haemophilia patients (panel A) and 44 patients with non-A, non-B (NANB) hepatitis (panel B). HCV infection was established by cDNA-polymerase chain reaction (PCR) (in panel B only) and by studying the anti-HCV reaction patterns in 4 separate ELISAs for detection of antibodies to the recombinant proteins C100, C33c, core and a combination of two synthetic peptides sp67/65 derived from the C100 region. The sensitivity for the detection of HCV infection had increased from 0.92[95% confidence interval (CI): 0.87-0.95] to 1.00 (95% CI: 0.89-1.00) in haemophiliacs and from 0.84 (95% CI: 0.66-0.95) to 1.00 (95% CI: 0.89-1.00) in NANB hepatitis patients when the second generation ELISA was used instead of the first generation ELISA. Concurrently the chance of a false negative result was reduced in panel A and B from 0.37 to 0 and from 0.28 to 0, respectively. Analysis of anti-HCV reaction patterns revealed that 172 of 206 (83.5%) anti-HCV ELISA-reactive haemophilia patients had antibodies to all 4 antigens tested. In the NANB hepatitis patients 18 of 31 (58.1%) anti-HCV ELISA-reactive subjects reacted with 4 antigens. In the PCR tested panel of NANB hepatitis patients 2 subjects who showed antibody reactivity to only one antigen and 5 patients with reactivity to 2 antigens were PCR-positive.(ABSTRACT TRUNCATED AT 250 WORDS)
We have noticed that suboptimal specimen processing and storage conditions may cause false-negative results in the detection of hepatitis C virus (HCV) RNA in plasma or serum. To establish the influence of specimen handling in a serological laboratory on the rate of detection of HCV RNA by the cDNA polymerase chain reaction (cDNA-PCR), we tested routine serum samples and fresh-frozen plasma samples from the same bleeding from confirmed anti-HCV-positive blood donors. When primers from the NS3/NS4 region were used, HCV RNA was detected in fresh-frozen plasma from 67% of the donors, whereas positive results were obtained with only 50% of the serum samples that had been subjected to routine serological procedures. Analysis of the same samples with primers from the highly conserved 5'-terminal region (5'-TR) revealed an HCV RNA detection rate of 92% for both the routine and the fresh-frozen samples. However, the yield of the amplification product in routine samples was strongly reduced compared with that in fresh-frozen plasma. Comparison of both primer sets for cDNA-PCR showed that the 5'-TR primer set was 10- to 100-fold more effective in detecting HCV RNA. We also analyzed the effect of storage of whole EDTA-blood and serum at room temperature and at 4 degrees C on the yield of the amplification product. A rapid decline in detectable HCV RNA of 3 to 4 log units was observed within 14 days when whole blood and serum were stored at room temperature. By contrast, no perceptible reduction in the cDNA-PCR signal was found in freshly prepared serum stored at 4 degrees C.
Since the detection of hepatitis B virus (HBV) in the 1960s and hepatitis A virus in the 1970s, a considerable proportion of infections of (probably viral) hepatitis could not be classified. About 90% of transfusion-related hepatitis was identified as non-A/non-B. In 1988 investigators from the Chiron Company (USA) detected the non-A, non-B agent and named it hepatitis C virus (HCV). An anti-HCV antibody assay (ELISA) and subsequently confirmation tests (immunoblot and polymerase chain reaction) were developed. HCV infection results in a chronic carrier state of the virus in about 80%. Almost all HCV carriers have, irrespective of their liver function tests, histologic signs of chronic hepatitis and/or liver cirrhosis. Chronic HCV infection is, like HBV, also associated with the development of hepatocellular carcinoma. Most HCV carriers are infected by parenteral routes (intravenous drug use, blood transfusion, tattooing). Intravenous drug users and haemophilia patients have the highest risk (80-90%) of becoming infected. Sexual and perinatal transmission does not play an important role in spreading the infection. Antiviral therapy (alpha-interferon) in patients with chronic hepatitis C will normalize liver function tests in about 25% of the cases, but it is unclear if the HCV carrier state will disappear and if liver cirrhosis will be prevented. At present no specific immunoglobulin or vaccine preparations are available to prevent the HCV infection.
The anti-C100-enzyme-linked immunosorbent assay, the new four-antigen antibody recombinant immunoblot assay, and detection of viral RNA sequences by copy DNA-polymerase chain reaction were used to establish the course of hepatitis C virus (HCV) infection in recipients of HCV-infected blood products. Different patterns of infection were observed: (1) persistent HCV infection with and without chronic hepatitis, and with acute resolved hepatitis; and (2) acute resolved hepatitis with clearance of HCV. In order to determine whether different infection- and anti-HCV recognition patterns are correlated to differences in viral nucleotide sequences, we compared sequences in the NS3 region between isolates from recipient(s) and their infective donors. Based on these comparisons we conclude that in The Netherlands two types of molecular variants circulate; one resembling the Japanese prototype isolate JH1, and the other the HCV-1 isolate from the U.S.A. The difference in sequence homology between the two types is approximately 24%. Comparison of sequences of donors and involved recipients determined in isolates prepared from blood samples four years after transfusion revealed that viral RNA sequences are strongly conserved (greater than 96.8%) in the NS3 region. These data indicate that the observed differences in anti-HCV immune response patterns between recipients are more a reflection of their immune reactivity than of divergence of viral strains.
In this report we describe a sensitive HIV-1 detection method which is applicable for confirmation testing of donors whose blood sample gives indeterminate viral-serology results. The method involves performing a polymerase chain reaction (PCR) and detecting the generated fragments using liquid hybridization and gel retardation. We found that it is as specific as blotting on a filter and hybridization with an internal probe but at least tenfold more sensitive. After applying it on DNA samples of a panel of 11 persistent indeterminate anti-p24gag-reactive donors, none was found to be PCR positive. Considering other negative virological and biochemical test results and case-historical data, these donors are not likely to be HIV-1 infected.
Explore the source record for details and available documents.
Stored serum samples from 5150 blood product transfusions and 383 recipients were tested for antibodies to hepatitis C virus (anti-HCV) by a recombinant enzyme-linked immunosorbent assay (ELISA) as part of a prospective study on post-transfusion non-A, non-B hepatitis (NANBH). Donor cofactors associated with HCV infectivity of anti-HCV-positive blood products were raised alanine aminotransferase concentrations (6 of 9 infective vs 1 of 26 not infective); a mean ELISA optical density/cut-off ratio greater than or equal to 2 (7 of 9 vs 9 of 26); both preceding factors (together in 6 blood products, all of which transmitted infection); and persistent donor anti-HCV seropositivity. Use of anti-HCV screening to prevent post-transfusion NANBH was compared with measurement of alanine aminotransferase concentrations: a corrected efficacy of 63% and 65%, a specificity of 93% and 64%, and a positive predictive value of 16.2% and 3.6% were found, respectively; 0.7% or 3.8% of blood donations, respectively, would be discarded. Blood donor screening for anti-HCV is recommended to reduce the incidence of post-transfusion NANBH.