Hepatitis B Virus (HBV) infection inducesa disease state characterised by liver damage, inflammation and viralpersistence. Infection also increases the risk of hepatocellular carcinoma.HBV belongs to the Hepadnaviridae family of viruses. Its genome consists ofpartially double stranded circular DNA. The DNA is enclosed in anucleocapsid, or core antigen (HBcAg), which is surrounded by a sphericalenvelope (surface antigen or HBsAg). The core antigen shares its sequenceswith the e antigen (HBeAg) but no cross reactivity between the two proteinshas been observed. The HBV genome also encodes a DNA polymerase that alsoacts as a reverse transcriptase.
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Background
Hepatitis B virus (HBV) is a small enveloped virus belonging to the hepadnavirus family. Its genome consists of partially double-stranded circular DNA with four genes encoding specific viral proteins. These proteins include the surface proteins (pre-S1, pre-S2, and HBsAg), the pre-core and core proteins (HBeAg and HBcAg), DNA polymerase, and the X protein. HBV exhibits strain heterogeneity, leading to distinct subtypes. These subtypes are characterized by antigenic determinants on the surface antigen (HBsAg) and their corresponding antibodies. All HBsAg specimens possess a common group determinant, known as "a." However, there are two sets of subdeterminants, namely "d" or "y" and "w" or "r," which are mutually exclusive or allelic. These subdeterminants are used to identify different subtypes. Based on the antigenic variations, HBsAg can be classified into at least four major groups: adw, adr, ayw, and ayr. These classifications help in understanding the diversity and heterogeneity within HBV strains. Recombinant HBsAg ayw antigen was mutated by replacing the Glycine residue at position 145 with Arginine. This mutation has important implications for the antigen's behavior and immunogenicity. The recombinant HBV Surface Antigen (subtype ayw, mutation G-145-R) is widely used in the development and production of vaccines against hepatitis B. Vaccination is one of the most effective strategies for preventing hepatitis B infection and its associated complications. The recombinant antigen is incorporated into vaccines to stimulate the immune system to produce antibodies that can recognize and neutralize the actual HBV virus. Additionally, the recombinant antigen is also utilized in diagnostic tests for hepatitis B. These tests detect the presence of HBV surface antigens in blood samples, aiding in the diagnosis of acute or chronic hepatitis B infections.
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References
Hepatitis B Surface Antigen Isoforms: Their Clinical Implications, Utilisation in Diagnosis, Prevention and New Antiviral Strategies
Prevention and New Antiviral Strategies
Authors: Lazarevic I, Banko A, Miljanovic D, et al.
The hepatitis B surface antigen (HBsAg) is a multifunctional glycoprotein composed of large (LHB), middle (MHB), and small (SHB) subunits. HBsAg isoforms have numerous biological functions during HBV infection—from initial and specific viral attachment to the hepatocytes to initiating chronic infection with their immunomodulatory properties. The genetic variability of HBsAg isoforms may play a role in several HBV-related liver phases and clinical manifestations, from occult hepatitis and viral reactivation upon immunosuppression to fulminant hepatitis and hepatocellular carcinoma (HCC). Their immunogenic properties make them a major target for developing HBV vaccines, and in recent years they have been recognised as valuable targets for new therapeutic approaches. Initial research has already shown promising results in utilising HBsAg isoforms instead of quantitative HBsAg for correctly evaluating chronic infection phases and predicting functional cures. The ratio between surface components was shown to indicate specific outcomes of HBV and HDV infections. Thus, besides traditional HBsAg detection and quantitation, HBsAg isoform quantitation can become a useful non-invasive biomarker for assessing chronically infected patients. This review summarises the current knowledge of HBsAg isoforms, their potential usefulness and aspects deserving further research.
Immunoassay detection of hepatitis B surface antigen mutants
Journal of Medical Virology
Authors: Coleman P F, Jack Chen Y C, Mushahwar* I K.
The increasing use of hepatitis B vaccination has had an overwhelming positive impact on the prevention of hepatitis B viral infection. Mutations in the hepatitis B surface antigen (HBsAg) gene occur as a result of vaccine escape mutants, anti-hepatitis B surface antigen immunotherapy, or in chronic hepatitis B viral infection. These mutants may present a challenge to immunoassay detection. Evaluation of the immunodetection of various HBsAg mutants has been sporadic, as the occurrence of these mutants is not common, and sufficient volume of serum samples is difficult to obtain. To investigate mutant detection, recombinant antigens were constructed to reflect mutations described in the literature occurring throughout the S gene. A limited number of serum samples exhibiting discordant immunoassay reactivity were also used to construct recombinant antigens. The evaluation of 25 HBsAg mutants across nine commercial assays of differing formats is described. Mutations affecting immunoassay performance were characterized as occurring mainly in loop 2 of the "a" determinant of HBsAg. It was determined that reagent epitope recognition was more significant for mutant detection than assay format.
The contribution of more sensitive hepatitis B surface antigen assays to detecting and monitoring hepatitis B infection
Background: Hepatitis B surface antigen (HBsAg) remains the main viral marker for screening and monitoring hepatitis B virus (HBV) infection. The quantification limit of most current HBsAg assays is around 0.05 IU/mL. The Lumipulse-G-HBsAg-Quant assay (Fujirebio) claims to obtain a tenfold improvement in sensitivity. This study aimed to assess the performance of this assay in detecting low HBsAg levels in clinical samples. Methods: Three panels of stored frozen samples were selected on the basis of HBV-DNA and HBsAg values obtained previously with routine techniques. Panels 1 (n=13) and 2 (n=52) consisted of DNA-positive/HBsAg-negative samples from individuals in the window period and with occult HBV infection respectively. Panel 3 comprised 23 samples with low or discrepant HBsAg screening results. All these samples were tested retrospectively with the DiaSorin and Fujirebio HBsAg assays. Results: Sixteen out of 65 samples (25 %), initially screened HBsAg negative, were reactive only with the Fujirebio assay (median value= 0.015 IU/mL; IQR= 0.012): three (23 %) samples from panel 1 and 13 (25 %) from panel 2. Thirteen of these 16 (81 %) had HBsAg values below 0.03 IU/mL with the DiaSorin assay. In panel 3, 22 (96 %) samples were quantified successfully with the Fujirebio assay (median: 0.32 IU/mL; IQR: 1.20) and 19 (83 %) with the DiaSorin assay (median: 0.31 IU/mL; IQR: 0.65). Concentrations obtained with the two assays showed good correlations (r=0.893, Spearman). Conclusions: HBsAg assays with enhanced analytical sensitivity could improve HBV serological profile interpretation with possible consequences on clinical management of infected patients, and on blood transfusion safety.
Hepatitis B-related outcomes following direct-acting antiviral therapy in Taiwanese patients with chronic HBV/HCV co-infection
dynamics of HBsAg and HBV virological reactivation, among patients coinfected with HCV receiving direct-acting antivirals (DAAs) remains unclear. Thus, we aimed to analyze HBV-related outcomes in these patients. Methods: Serial HBsAg and HBV DNA levels were measured in 79 HBV/HCV-coinfected patients receiving DAAs (13 receiving anti-HBV nucleot(s)ide analog [NUC] therapy simultaneously). The endpoints included HBsAg dynamics and seroclearance, HBV reactivation (HBV DNA >1 log increase or >100 IU/ml if undetectable at baseline) and HBV-related clinical reactivation. Results: HBsAg levels declined from a median of 73.3 IU/ml at baseline to 16.2 IU/ml at the end-of-DAA treatment and increased to 94.1 IU/ml at 12 months post-treatment. During a mean 11.1-months of follow-up, 8 (10.1%) patients experienced HBsAg seroclearance and 30 (38.0%) HBV reactivation (12-month cumulative incidence, 10.3% and 40.4%, respectively). Patients with pre-treatment HBsAg <= 10 IU/ml had a significantly higher rate of HBsAg seroclearance (hazard ratio [HR] 8.52; 95% CI 1.048-69.312) and lower risk of HBV reactivation than those with pre-treatment HBsAg >10 IU/ml (HR 2.88; 95% CI 1.057-7.844) in multivariate analyses. Six patients (4 cirrhotics) not receiving NUC therapy experienced HBV-related clinical reactivation; 3 of the 4 cirrhotics developed liver failure and 2 died despite immediate NUC therapy. Compared to untreated HBV-monoinfected patients, HBV/HCV-coinfected patients without NUC prophylaxis had a similar rate of HBsAg seroclearance, but a significantly higher risk of HBV reactivation following DAA therapy (HR 6.59; 95% CI 2.488-17.432). Conclusions: DAA-treated HBV/HCV-coinfected patients had significantly higher rates of HBV seroclearance, particularly among those with low pre-treatment HBsAg titer, but were at higher risk of HBV reactivation, particularly among those with higher pretreatment HBsAg titer. Prophylactic anti-HBV therapy is essential for cirrhotic patients, irrespective of baseline HBV DNA levels. Lay summary: We studied outcomes relating to hepatitis B virus (HBV) in patients coinfected with both hepatitis B and C. Patients receiving direct-acting antiviral treatment for hepatitis C were more likely to experience seroclearance (or functional cure of HBV), but were also more likely to experience HBV reactivation, which can lead to hepatitis, liver failure and death. In coinfected cirrhotic patients being treated for HCV, prophylactic treatment for HBV is mandatory. (C) 2020 European Association for the Study of the Liver. Published by Elsevier B.V.