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Biomedical subjects

F Oliveri

Publications and source records attributed to F Oliveri.

13 recordsLinked to original sources

Specific low-affinity recognition of major histocompatibility complex plus peptide by soluble T-cell receptor.

The T-cell receptor is necessary and sufficient for recognition of peptides presented by major histocompatibility complex molecules. Other adhesion molecules, like CD4 or CD8, play an auxiliary role in antigen recognition by T cells. Here we analyse T-cell receptor (TCR) binding using a soluble rather than a cell-bound receptor molecule. A TCR-immunoglobulin chimaera is constructed with the variable and the first constant regions of both the TCR alpha- and beta-chains linked to the immunoglobulin light-chain constant regions. This soluble TCR is expressed, assembled and secreted as an alpha beta heterodimer by a myeloma cell line transfected with the recombinant genes. Furthermore, the soluble TCR is biologically active: it specifically inhibits antigen-dependent activation of the relevant T-cell clones and thus discriminates between proper and irrelevant peptides presented by major histocompatibility complex molecules.

Animals

Wild-type and e antigen-minus hepatitis B viruses and course of chronic hepatitis.

Using an oligonucleotide hybridization assay, we studied the clinical implication of wild-type hepatitis B virus (HBV) and a HBV mutant that is unable to secrete hepatitis B e antigen (HBeAg) because of a translational defect due to a stop codon in the pre-C region in 106 hepatitis B surface antigen-positive patients with chronic hepatitis B. Wild-type HBV was detected in 31 of 42 (73.8%) HBeAg-positive patients, whereas a mixed viral population was present in 10 (23.8%). Significant differences in the severity and outcome of liver disease were not observed in the two groups of patients. However, the emergence of HBeAg-minus HBV in wild-type HBV carriers was associated with an exacerbation of liver disease and was followed by the presence of antibodies against HBeAg (anti-HBe) in serum in 50% of the cases. In 61 of 64 (95.3%) anti-HBe-positive patients, HBeAg-minus HBV was the predominant virus: HBeAg-minus HBV was detected in 42 patients (65.6%), whereas both wild-type and HBeAg-minus HBV were present in 19 (29.7%). HBeAg-minus HBV was associated with a course of hepatitis characterized by flare-ups of liver cell necrosis interspersed with periods of asymptomatic HBV carriage (P less than 0.01). These data support the hypothesis that genetic heterogeneity of HBV significantly influences the course and outcome of chronic hepatitis B. Wild-type HBV secreting HBeAg induces immunologic tolerance and causes chronic infection. HBeAg-minus HBV might be unable to induce chronic infection without the helper function of wild-type HBV, but it appears to be more pathogenic. Once chronic infection is established, HBeAg-minus HBV variants may prevail and displace wild-type virus.

Adolescent

Role of hepatitis delta virus infection in hepatocellular carcinoma.

Hepatitis B virus (HBV) DNA integrates into the host DNA and shows a series of potentially oncogenetic properties, but HBV is not an acutely transforming virus, because HCC develops decades after infection. Other factors, namely cirrhosis, inflammation, alcohol intake, and viral superinfections, could promote the oncogenetic process induced by HBV-DNA integration. We studied the impact of HDV infection in the pathogenesis of HCC in 62 consecutive patients. Their mean age was 59 years (range 25-75 years), 54 were male and eight female; 58 had cirrhosis. The findings suggest that HBsAg-positive patients with HDV superinfection developed cirrhosis and HCC at an earlier age than HBsAg carriers without HDV infection. HDV appears to represent a "promotion" factor for HCC in subjects with an oncogenic risk induced by HBV. A long-lasting necroinflammatory lesion of the liver substained by productive HBV and HDV infections may be a major pathogenetic mechanism.

Carcinoma, Hepatocellular

'e' antigen defective hepatitis B virus and course of chronic infection.

We studied the relations between HBV heterogeneity and different phases of HBV infection and disease in 145 HBsAg-positive carriers followed-up for 28 months (range 24-60 months). Viraemia was characterized for the relative prevalence of wild-type and HBeAg minus HBVs after HBV-DNA amplification by PCR using an oligonucleotide hybridization assay. HBeAg minus HBV was detected in 27% of immunotolerant HBV carriers, in 67% of patients with chronic hepatitis B (immunoelimination phase) and in 17% of HBsAg carriers with latent infection. Serum HBV-DNA and IgM anti-HBc became undetectable and ALT levels normalized, either spontaneously or after interferon therapy in 12 (36.3%) of 33 patients with an exclusive wild-type viraemia, but only in two (5.7%) of 35 patients with homogeneous HBeAg minus HBV (p = 0.005). An HBeAg minus viraemia higher than 20% was associated, in both HBeAg- and anti-HBe-positive patients, with HBV-induced liver disease and an unfavourable outcome of hepatitis. These findings suggest that surgence of HBeAg defective HBV is a virus strategy to survive under peculiar conditions dictated by the interplay between HBV and the host's immune system. The HBeAg/anti-HBe serological status is determined not only by the extent of virus replication and integration of HBV-DNA into cellular DNA but also by heterogeneity of HBV. The study of HBV heterogeneity in baseline sera of patients undergoing antiviral therapy appears to have a predictive value of the outcome of HBV infection in the single patient.

Adult

Treatment with interferon of chronic hepatitis B associated with antibody to hepatitis B e antigen.

Persistence of HBV replication (serum HBV-DNA and intrahepatic HBcAg) and markers of HBV-induced (IgM anti-HBc positive) liver disease in anti-HBe-positive patients characterize a peculiar form of chronic hepatitis B. This form of hepatitis B prevails in the Mediterranean Basin, Middle and Far East and is associated with the infection of an HBV variant that lacks the capacity to produce HBeAg. We analysed the results of interferon treatment of 90 patients with chronic anti-HBe-positive hepatitis included in four randomized controlled trials. Interferon inhibited viral replication to undetectable levels and ALT normalized in about 70% of patients. However, the effect was transient in the majority of cases and hepatitis B relapsed in 41 to 90% of patients. A discrepancy in the rate of relapses could be explained by a significant difference in patients populations with a higher prevalence of cirrhotic patients in studies with poorer response. Therefore, in advanced anti-HBe-positive chronic hepatitis B, interferon shows a lower efficacy than in HBeAg-positive patients. The earlier treatment starts, the more efficacious is the response to interferon. Future clinical trials should focus on higher doses for longer periods, repeated courses or on combination therapy with nucleoside analogs or immuno-stimulant drugs.

Chronic Disease

Pathobiology of chronic hepatitis virus infection and hepatocellular carcinoma (HCC).

Hepatitis viruses may cause liver cancer (HCC) through an indirect mechanism inducing inflammation and cirrhosis. Only hepatitis B virus (HBV) was shown to have a direct oncogenetic potential. Hepatitis D virus (HDV) infection, superimposed on the oncogenetic background provided by chronic HBV infection, appears to provide an additional risk for HCC. Patients with florid infections from both HBV and HDV and active liver inflammation develop HCC at a significantly younger age than those infected by HBV alone or infected by hepatitis C virus (about 10 years earlier). In patients positive for serum HBV-DNA/HDV-RNA and/or IgM anti-HBc/IgM anti-HD it is mandatory to program a more frequent (thrice a year) schedule of screenings (ultrasound scan, alpha-1-phetoprotein, etc.) for prophylaxis of HCC.

Animals

A new hepatitis B virus strain in patients with severe anti-HBe positive chronic hepatitis B.

In hepatitis B virus carriers who are anti-HBe positive despite ongoing viral replication (HBcAg in liver and HBV-DNA in serum) the natural course of hepatitis is severe and the response to interferon is low. We investigated whether a new hepatitis B virus (HBV) strain could be involved. A translational termination codon at the carboxyterminal end of the pre-C region responsible for the lack of HBeAg secretion was found in 18 of 19 HBV clones isolated from seven pedigreed patients with this clinical syndrome. The same findings were confirmed by direct sequencing. One of these patients underwent a liver transplant and HBV infection of the new liver resulted in high titered viremia and intrahepatic expression of HBcAg, without detectable HBeAg in serum. Another patient was superinfected by hepatitis delta virus (HDV) and developed high titres of total and IgM anti-HD. In spite of this, chronic hepatitis remained unchanged during 7 years of follow-up. These data strongly suggest that a viable precore minus mutant of hepatitis B virus is responsible for the lack of HBeAg in the serum of these patients. The HBV variant may explain the peculiar geographic distribution of anti-HBe positive hepatitis. The variations in the virus genome sequence may cause the more severe form of liver disease and modify the pathogenicity in the case of HDV superinfection.

Adult

Natural course and response to interferon of chronic hepatitis B accompanied by antibody to hepatitis B e antigen.

The course of chronic hepatitis B was studied in 30 patients who had antibody to hepatitis e antigen and hepatitis B virus DNA in the serum and hepatitis B core antigen in the liver. Over a 2-year period, no patient experienced a sustained spontaneous remission of disease, and follow-up liver histology revealed worsening of the disease in four patients. After 2 years of observation, 24 patients were allocated randomly to one of two groups: 12 patients served as untreated controls and 12 received recombinant human alpha-interferon-2a in a dose of 9 million units intramuscularly three times weekly for 16 weeks. Patients who remained viremic after 16 weeks received 3 million units three times weekly for an additional 8 weeks. Abnormal amino-transferases and serum hepatitis B virus DNA persisted without appreciable changes in all untreated patients. Hepatitis B virus DNA rapidly became undetectable and serum aminotransferases fell to normal in eight treated patients. After the end of treatment, hepatitis B virus DNA became detectable once again in seven patients, in six of whom a peak of aminotransferases (range: 256 to 850 units per liter) ensued; subsequently, hepatitis B virus DNA disappeared, and serum aminotransferases again fell to normal in two of the seven. Overall, hepatitis B virus DNA was no longer detectable in serum and liver histology improved in three treated patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Solubilizing the T-cell receptor--problems in solution.

Recombinant DNA technology has been central in answering some of the most important questions in immunology and has recently helped to define the complex of membrane associated proteins on T-cell surfaces responsible for antigen recognition. Here André Traunecker and colleagues describe attempts to facilitate the analysis of this complex using genetic engineering to produce solubilized T-cell receptor and associated molecules.

Animals

Normal T cell development is possible without 'functional' gamma chain genes.

The T cell-specific gamma gene family is organized into four V, J and C gene segments containing clusters (gamma 1, gamma 2, gamma 3, gamma 4) in germline DNA. We found that the V, J and C elements of gamma 2 are physically linked on a stretch of 6 kb of DNA while those of gamma 3 are found within a 15-kb region. Rearrangements take place only within the clusters, explaining the rigid rearrangement patterns seen in T lymphocytes. New V gamma, J gamma and C gamma gene segments were discovered and characterized allowing the better understanding of the potential germline diversity of the gamma gene family. No correlation with T cell function, i.e. cytolytic or helper, and the type of the productive gamma rearrangement could be established. In contrast we found that functional T cell clones have been able to mature without any functional gamma chain genes.

Animals