BACKGROUND:Circulating HBsAg, HBV RNA, and hepatitis B core-related antigen (HBcrAg) are potential biomarkers for the response to nucleos(t)ide analog (NA) treatment discontinuation in patients with chronic hepatitis B (CHB). We retrospectively investigated the long-term kinetics of HBsAg, HBV RNA, and HBcrAg in HBeAg-negative patients treated with NA for up to 14 years in a prospective cohort study. METHODS:Ninety-six patients (mean age 65 y, 77% male, 52% with cirrhosis, all HBV genotype D) who were undergoing first (n=33, group A) or second-line (n=63, group B) treatment with tenofovir disoproxil fumarate were included. HBV biomarkers collected during tenofovir disoproxil fumarate treatment were measured in 384 serum samples stored at -20 °C. The combined biomarker endpoints associated with functional cure following NA discontinuation included HBsAg <1000 IU/mL, HBV RNA <54 copies/mL, and HBcrAg <2 log U/mL. RESULTS:Before NA treatment, HBV RNA and HBcrAg were detectable in 85% (mean 3.9±2.3 [range, 0-9.2] log10 copies/mL) and 80% (mean 4.3±1.9 [2-8.9] log10 U/mL), respectively, of the patients in group A. In groups A and B, the percentages of patients with detectable HBV RNA levels decreased to 53% and 34%, respectively, during years 8-10 of NA treatment, and to 29% in group B during years 11-14 to 29%. HBcrAg could be quantified in 2% of patients in group B NA treatment years 8-10. Combined biomarker endpoints were met at baseline and at years 1-4, 5-7, 8-10, and 11-14 of treatment by 3.3%, 12% and 14%, 13% and 38%, 26% and 29%, and 41% of patients, respectively. CONCLUSIONS:HBV biomarker endpoints are associated with functional cure after the discontinuation of NA increase during long-term NA treatment.
The presence of precore (PC) and BCP variants is associated with HBeAg seroconversion (SC) during treatment with PEG-IFN, but the mechanism of HBeAg SC is still unknown. We investigated the occurrence of BCP/PC variants during treatment with PEG-IFN and their association with replication and treatment response. Therefore, patients with HBeAg positive chronic hepatitis B receiving PEG-IFN for 48 weeks (39 with and 28 without HBeAg SC until week 72) were retrospectively analysed. Viral markers (HBeAg, HBcrAg, HBsAg, HBV DNA and HBV RNA) were quantified and BCP (A1762T/G1764A) and PC stop (G1896A) variants were analysed by direct sequencing on HBV DNA basis at every time point. Results revealed that in patients with HBeAg SC, BCP/PC variants were present in 23/39 (60.5%) patients before treatment and in 37/39 (94%) patients at week 72. In contrast, only 7/29 (24.1%) patients without HBeAg SC showed a mutation before treatment and additional 7 patients developed BCP/PC variants until week 72 (48%, p=0.003). BCP/PC variants were strongly associated with decreasing HBV DNA, HBV RNA and HBeAg, but not HBsAg and HBcrAg levels in both patient groups. Moreover, the occurrence of BCP/PC variants was associated with low HBV RNA levels and vice versa, independent of the treatment response. In conclusion, we found higher frequencies of BCP/PC variants in patients with HBeAg SC as compared to patients not achieving HBeAg SC. However, irrespective of HBeAg SC, the occurrence of these variants leads to a decrease in HBV replication as measured by undetectable HBV RNA and abolished HBeAg production.
Background and aims HBsAg consists of the S (small; SHBs), the preS2 (middle, MHBs) and the preS1 (large; LHBs) proteins, and the proportions of those proteins change during the development of HBsAg loss under nucleos(t)ide analogue (NA) treatment. We investigated whether changes in HBsAg composition during development of functional cure are associated with genomic variants in the coding s gene of HBV.
BACKGROUND:Hepatitis B virus RNA (HBV-RNA) is a novel serum biomarker that correlates with transcription of intrahepatic covalently closed circular (cccDNA), which is an important target for pegylated interferon (PEG-IFN) and novel therapies for functional cure. We studied HBV-RNA kinetics following PEG-IFN treatment and its potential role as a predictor to response in HBeAg-negative chronic hepatitis B (CHB) patients. METHODS:HBV-RNA levels were measured in 133 HBeAg-negative CHB patients treated in an international randomized controlled trial (PARC study). Patients received PEG-IFN α-2a for 48 weeks. HBV-RNA was measured from baseline through week 144. Response was defined as HBV-DNA <2000 IU/mL and ALT normalization at week 72. Kinetics of HBV-RNA were compared with HBV-DNA, HBsAg, and HBcrAg. RESULTS:Mean HBV-RNA at baseline was 4.4 (standard deviation [SD] 1.2) log10 c/mL. At week 12, HBV-RNA declined by -1.6 (1.1) log10 c/mL. HBV-RNA showed a greater decline in responders compared to nonresponders early at week 12 (-2.0 [1.2] vs -1.5 [1.1] log10 c/mL, P = .04). HBV-RNA level above 1700 c/mL (3.2 log10 c/mL) had a negative predictive value of 91% at week 12 and 93% at week 24 (P = .01) for response. Overall, HBV-RNA showed a stronger correlation with HBV-DNA and HBcrAg (.82 and .80, P < .001) and a weak correlation with HBsAg (.25). At week 12, HBV-RNA was significantly lower among patients with lower HBsAg (<100 IU/mL) or HBsAg loss at week 144. CONCLUSIONS:During PEG-IFN treatment for HBeAg-negative CHB, HBV-RNA showed a fast and significant decline that correlates with treatment response and HBsAg loss at long-term follow-up. CLINICAL TRIALS REGISTRATION:NCT00114361.
Question The hepatitis B surface antigen (HBsAg) consists of the components small (SHBs), middle (MHBs) and large (LHBs) HBsAg. Recently, we could show that HBsAg loss during nucleos(t)ide analogue (NA) treatment are preceded by decreases of the LHBs and MHBs ratios. In this study, we investigated the association between HBsAg composition and changes in their protein amino acids sequences within the HBV s gene during the process of HBsAg loss during NA treatment.
Hepatitis B virus (HBV) RNA in serum is a novel biomarker that reflects cccDNA activity. We investigated whether HBV RNA can predict serological response to peginterferon (PEG‐IFN) treatment. Serum HBV RNA levels were retrospectively measured at weeks 0, 12, 24 and 52 of therapy and after treatment discontinuation (week 78) in 266 HBeAg‐positive chronic HBV patients who had participated in a global randomized controlled trial (HBV99‐01 study). Patients received 52 weeks PEG‐IFN monotherapy (n = 136) or PEG‐IFN and lamivudine (n = 130). The primary end point was HBeAg loss 24 weeks after PEG‐IFN discontinuation. At baseline, the mean serum level of HBV RNA was 6.8 (SD 1.2) log c/mL. HBV RNA levels declined to 4.7 (1.7) log c/mL after one year of PEG‐IFN therapy alone and to 3.3 (1.2)log c/mL after combination therapy. From week 12 onward, HBV RNA level was significantly lower in patients who achieved HBeAg loss at the end of follow‐up as compared to those who did not, regardless of treatment allocation (week 12:4.4 vs 5.1 log c/mL, P = .01; week 24:3.7 vs 4.9 log c/mL, P < .001). The performance of a multivariable model based on HBV RNA level was comparable at week 12 (AUC 0.68) and 24 (AUC 0.72) of therapy. HBV RNA level above 5.5 log c/mL at week 12 showed negative predictive values of 93/67/90/64% for HBV genotypes A/B/C/D for the prediction of HBeAg loss. In conclusion, HBV RNA in serum declines profoundly during PEG‐IFN treatment. Early on‐treatment HBV RNA level may be used to predict nonresponse.
Background and aims The surface antigen of hepatitis B virus (HBV), HBsAg, consists of the components large (L), middle (M) and small (S)HBs. The composition of HBsAg differs across disease stages, is an early marker for treatment induced HBsAg loss and possibly a marker for HBV integration. However, the role of HBsAg components in the HBV life cycle is largely unknown. We aimed at establishing an in vitro model of HBV infections based on primary human hepatocytes (PHHs) and patient-derived HBV to investigate the composition of the HBsAg proteins during the natural course of in vitro HBV infections.
Background & Aims: During treatment of chronic HBV infections, loss or seroconversion of the HBV surface antigen (HBsAg) is considered a functional cure. HBsAg consists of the large (LHBs), middle (MHBs), and small surface protein (SHBs) and their relative proportions correlate strongly with disease stage. Our aim was to assess the association between HBsAg composition and functional cure during treatment. Methods: A total of 83 patients were retrospectively analyzed. HBsAg loss was achieved by 17/64 patients during nucleos(t)ide analogue (NA) treatment and 3/19 patients following treatment with pegylated interferon-alfa2a (PEG-IFN) for 48 weeks. Sixty-three patients without HBsAg loss were matched as controls. LHBs, MHBs and SHBs were quantified in sera collected before and during treatment. Results: Before treatment, median MHBs levels were significantly lower in patients with subsequent HBsAg loss than in those without (p = 0.005). During treatment, MHBs and LHBs proportions showed a fast decline in patients with HBsAg loss, but not in patients with HBV e antigen seroconversion only or patients without serologic response. MHBs became undetectable by month 6 of NA treatment in all patients with HBsAg loss, which occurred on average 12.8 +/- 8.7 (0-52) months before loss of total HBsAg. Receiver-operating characteristic analyses revealed that the proportion of MHBs was the best early predictor of HBsAg loss before NA treatment (AUC = 0.726, p = 0.019). In patients achieving HBsAg loss with PEG-IFN, the proportions of MHBs and LHBs showed similar kinetics. Conclusion: Quantification of HBsAg proteins shows promise as a novel tool to predict early treatment response. These assessments may help optimize individual antiviral treatment, increasing the rates of functional cure in chronically HBV-infected patients. Lay summary: The hepatitis B surface antigen (HBsAg) is a key serum marker for viral replication. Loss of HBsAg is considered stable remission, which can be achieved with antiviral treatments. We have investigated whether the ratios of the different components of HBsAg, namely the large (LHBs) and medium (MHBs) HBsAg during different treatments are associated with the occurrence of HBsAg loss. We found that LHBs and MHBs decrease earlier than total HBsAg before HBsAg loss and we propose LHBs and MHBs as promising novel biomarker candidates for predicting cure of HBV infection. (C) 2020 European Association for the Study of the Liver. Published by Elsevier B.V. All rights reserved.
Der HBsAg-Verlust oder die Serokonversion (SC) während der Behandlung mit Nukleos(t)id-analoga (NA) oder pegyliertem Interferon-alfa (PEG-IFN) wird als funktionelle Heilung angesehen. HBsAg besteht aus dem großen (L), mittleren (M) und kleinen (S)HBs. Bei Patienten im inaktiven Trägerstatus zeigt sich ein stark verminderter Anteil von LHBs und MHBs im Vergleich zu anderen Krankheitsstadien. Wir haben untersucht, ob bei Patienten, die unter NA- bzw. IFN-basierter Therapie eine funktionelle Heilung erreichen, eine frühzeitige Änderung der HBsAg-Zusammensetzung erkennbar ist.
Objective Among individuals with chronic hepatitis B, those with hepatitis B e-antigen (HBeAg)-negative chronic hepatitis (CHB) can be difficult to distinguish from those with HBeAg-negative chronic HBV infection, also referred to as inactive HBV carriers (ICs), but both require different medical management. The level of HBV surface antigen (HBsAg) has been proposed as a marker to discriminate between chronic infection and hepatitis stages. HBsAg consists of large, middle and small HBs. The aim of this study was to determine whether the composition of HBsAg improved the identification of ICs among HBsAg-positive subjects with different phases of HBV infections. Design HBV large surface proteins (LHBs) and HBV middle surface proteins (MHBs) were quantified in serum samples from 183 clinically well-characterised untreated patients with acute (n=14) HBV infection, ICs (n=44), CHBs (n=46), chronic HBeAg-positive phase (n=68) and hepatitis delta coinfection (n=11) using an ELISA, with well-defined monoclonal antibodies against the preS1 domain (LHBs) and the preS2-domain (MHBs). A Western blot analysis was used to verify the quantitation of the components of HBsAg. Total HBsAg was quantified using a modified commercially available assay (HBsAg V.6.0, Enzygnost, Siemens, Erlangen). Results The composition of HBsAg showed specific patterns across different phases of hepatitis B. Individuals in the IC phase had significantly lower proportions of LHBs and MHBs than patients in acute or chronic phases irrespective of their HBV e-antigen status (p<0.0001) or HBsAg level. Both LHBs and MHBs ratios better predicted the IC phase than total HBsAg levels. Conclusion Quantification of MHBs, particularly LHBs represents a novel tool for the identification of the IC stage.
Hepatitis B virus (HBV) RNA in serum is a novel biomarker for intrahepatic HBV replication and treatment response. For its proper use, it is essential to identify factors influencing serum HBV RNA level. Using a rapid amplification of complimentary DNA (cDNA) ends (RACE) PCR technique (lower limit of detection [LLD], 800 copies/mL [c/mL]), serum HBV RNA levels were measured in samples of 488 untreated individuals with chronic HBV infection who were eligible to treatment according to currently used recommendations. We explored the association of serum levels of HBV RNA with patient‐ and virus‐associated factors. HBV genotype distribution was 21/10/20/46/3% for A/B/C/D/other. Mean HBV RNA serum level was 5.9 (1.6) log10 c/mL (hepatitis B e antigen [HBeAg]‐positive chronic hepatitis B [CHB], 6.5 [1.2] log c/mL; HBeAg‐negative CHB, 4.1 [1.2] log c/mL; P < 0.001). By multivariable linear regression, factors associated with lower HBV RNA level were HBeAg negativity (β = –0.69; P < 0.001), HBV genotypes A (β = –0.13; P = 0.002), B (β = –0.07; P = 0.049), and C (β = –0.61; P < 0.001) in comparison to D, and presence of HBV basal core promoter mutation either alone (β = –0.14; P = 0.001) or in combination with precore mutation (β = –0.22; P < 0.001). Higher serum alanine aminotransferase (ALT) was associated with higher HBV RNA (β = 0.23; P < 0.001). HBV RNA correlated strongly with HBV DNA (HBeAg‐pos, r = 0.72; P < 0.001; HBeAg‐neg, r = 0.78; P < 0.001) and moderately with quantitative hepatitis B surface antigen (qHBsAg; HBeAg‐pos, r = 0.54; P < 0.001; HBeAg‐neg, r = 0.19; P = 0.04) and quantitative hepatitis B surface antigen (qHBeAg; r = 0.41; P < 0.001). Conclusion: In this multiethnic cohort of 488 untreated individuals with CHB, factors associated with serum HBV RNA level were HBeAg status, serum ALT, HBV genotype, and presence of basal core promotor mutations. For the future use of serum HBV RNA as a clinical marker, it seems mandatory to take these factors into consideration. (Hepatology 2018).
Background Hepatitis B virus (HBV) RNA is a novel serum biomarker that has the potential to predict treatment response in patients with chronic hepatitis B. We explored whether HBV RNA serum levels can predict hepatitis B e antigen (HBeAg) seroconversion in patients treated with peginterferon alfa-2a. Methods Serum samples from HBeAg-positive patients previously treated with peginterferon alfa-2a in 2 large randomized controlled trials were retrospectively analyzed. HBV RNA levels were measured using a real-time polymerase chain reaction assay. Ability of individual biomarkers to predict HBeAg seroconversion at 24 weeks posttreatment was evaluated using receiver operating characteristics (ROC) analyses. Results The study included 131 subjects (70% male, 96% Asians, 35% HBV genotypes B, and 61% C), 76 treated with peginterferon alfa-2a alone and 55 in combination with lamivudine. Median HBV RNA levels were significantly lower, at all timepoints, in patients achieving HBeAg seroconversion. Levels of HBV RNA at treatment weeks 12 and 24 showed good ability to predict HBeAg seroconversion (area under ROC scores >0.75, P < .001). A HBV RNA cutoff of >5.5 log10 copies/mL identified 30% of nonresponders at week 12 (negative predictive value >90%). Conclusion Serum HBV RNA is an early predictor of HBeAg seroconversion in patients treated with peginterferon alfa-2a. Clinical Trials Registration NCT01705704.