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1.
PeerJ ; 12: e17302, 2024.
Article in English | MEDLINE | ID: mdl-38737747

ABSTRACT

Background: Hepatitis B virus (HBV) infection poses a major public health problem worldwide. Bovine lactoferrin (bLf) is a natural product that can inhibit HBV, but the effect of iron saturation on its resistance to HBV is unknown. Aims: The purpose of this study is to investigate the impact of iron saturation of bLf against HBV. Methods: HepG2 cells were cultured in DMEM high glucose containing 10% inactivated fetal calf serum, at 37 °C, in 5% CO2. MTT method was used to detect the cytotoxicity of bLf to HepG2 cells. Apo-bLf and holo-bLf were prepared from bLf. Iron saturation of these proteins was determined by atomic absorption spectrophotometry. Non-cytotoxic concentrations of candidate proteins were used in anti-HBV tests. Fluorescent quantitative polymerase chain reaction was used to detect HBV-DNA. Results: The TC50 and TC0of bLf were 54.570 mg/ml and 1.997 mg/ml, respectively. The iron saturation of bLf, apo-bLf and holo-bLf were 10.29%, 8.42% and 85.32%, respectively. In this study, four non-cytotoxic concentrations of candidate proteins (1.5, 1.0, 0.5, and 0.1 mg/ml, respectively) were used to inhibit HBV in HepG2 cells. The results showed that 1.5 mg/ml bLf and 0.1 mg/ml holo-bLf effectively impaired the HBV-DNA amplification in HBV-infected HepG2 cells (P < 0.05). However, apo-bLf, and Fe3+ did not show the anti-HBV effects. Conclusion: A total of 1.5 mg/ml bLf and 0.1 mg/ml holo-bLf could inhibit HBV-DNA in HepG2 cells. Complete bLf structure, appropriate concentration and iron saturation of bLf are necessary conditions for anti-HBV effects.


Subject(s)
Antiviral Agents , Hepatitis B virus , Iron , Lactoferrin , Lactoferrin/pharmacology , Humans , Hep G2 Cells , Hepatitis B virus/drug effects , Cattle , Animals , Antiviral Agents/pharmacology , Iron/metabolism , DNA, Viral/drug effects
2.
Zhonghua Gan Zang Bing Za Zhi ; 32(4): 295-299, 2024 Apr 20.
Article in Chinese | MEDLINE | ID: mdl-38733181

ABSTRACT

The ideal goal of hepatitis B treatment is to achieve a functional cure, and the persistent cccDNA in the liver is a barrier to functional cure. Currently, antiviral drugs represented by pegylated interferon-α and nucleos (t) ide analogues cannot eliminate cccDNA, which is difficult to achieve functional cure. With the deepening of the exploration of various mechanisms and drug targets, significant progress has been made in the research and development of several novel drugs targeting the hepatitis B virus's life cycle and immune system, offering hope for a functional cure. This article presents an overview of the new progress in clinical research on antiviral therapy for chronic hepatitis B based on the literature published in recent years and international conference materials.


Subject(s)
Antiviral Agents , Hepatitis B virus , Hepatitis B, Chronic , Antiviral Agents/therapeutic use , Antiviral Agents/pharmacology , Humans , Hepatitis B, Chronic/drug therapy , Hepatitis B virus/drug effects , Interferon-alpha/therapeutic use , Interferon-alpha/pharmacology , DNA, Viral
3.
Zhonghua Gan Zang Bing Za Zhi ; 32(4): 375-379, 2024 Apr 20.
Article in Chinese | MEDLINE | ID: mdl-38733195

ABSTRACT

Hepatitis B virus (HBV) DNA integration occurs during the reverse transcription process of HBV replication, which develops in the early stages of HBV infection and accompanies the entire disease course. The integration of HBV DNA is detrimental to the attainment of clinical cure goals and also raises the risk of developing liver cancer. Theoretically, nucleos(t)ide analogs can reduce the synthesis of new double-stranded linear DNA, but there is no clearance function for hepatocytes that have already integrated HBV. Therefore, patients with serum HBV DNA-negative conversions still have the risk of developing liver cancer. As an immunomodulatory drug, interferon can not only inhibit viral replication but also inhibit or even eliminate existing clonally amplified hepatocytes carrying integrated HBV DNA fragments. However, there are currently few studies on the effects of nucleos(t)ide analogues and interferon therapy on HBV DNA integration. Thus, large-scale clinical studies are urgently needed for further clarification.


Subject(s)
Antiviral Agents , DNA, Viral , Hepatitis B virus , Hepatitis B virus/drug effects , Hepatitis B virus/genetics , Humans , Antiviral Agents/therapeutic use , Antiviral Agents/pharmacology , Virus Integration , Hepatitis B/drug therapy , Hepatitis B/virology , Virus Replication/drug effects , Interferons/therapeutic use
4.
Zhonghua Gan Zang Bing Za Zhi ; 32(4): 318-324, 2024 Apr 20.
Article in Chinese | MEDLINE | ID: mdl-38733186

ABSTRACT

Objective: To explore the antiviral activity of the small-molecule compound AM679 in hepatitis B virus (HBV) replication and infection cell models. Methods: The positive regulatory effect of AM679 on EFTUD2 expression was validated by qPCR and Western blotting. HepAD38 and HepG2-NTCP cells were treated with AM679 (0.5, 1, and 2 nmol/L). Negative control, positive control, and AM679 combined with the entecavir group were set up. HBV DNA intra-and extracellularly, as well as the expression levels of intracellular HBV total RNAs and 3.5kb-RNA changes, were detected with qPCR. Hepatitis B surface antigen (HBsAg) and hepatitis B e antigen (HBeAg) levels were measured in the cell supernatant by an enzyme-linked immunosorbent assay (ELISA). The t-test method was used for the statistical analysis of the mean difference between groups. Results: EFTUD2 mRNA and protein expression levels were significantly increased in HepAD38 and HepG2-NTCP cells following AM679 treatment, with a statistically significant difference (P < 0.001). Intra-and extracellular indicators such as HBV DNA, HBV RNAs, HBV 3.5kb-RNA, HBsAg, and HBeAg were decreased to varying degrees in both cell models, and the decrease in these indicators was more pronounced with the increase in AM679 concentration and prolonged treatment duration, while the combined use of AM679 and entecavir had a more significant antiviral effect. The HBV DNA inhibition rates in the supernatant of HepAD38 cells with the use of 2 nmol/L AM679 were 21% and 48% on days three and nine, respectively. The AM679 combined with the ETV treatment group had the most significant inhibitory effect (62%), with a P < 0.01. More active HBV replication was observed after silencing EFTUD2, while the antiviral activity of AM679 was significantly weakened. Conclusion: AM679 exerts anti-HBV activity in vitro by targeting the regulation of EFTUD2 expression.


Subject(s)
Antiviral Agents , Guanine/analogs & derivatives , Hepatitis B virus , Virus Replication , Hepatitis B virus/drug effects , Humans , Antiviral Agents/pharmacology , Virus Replication/drug effects , Hep G2 Cells , Hepatitis B Surface Antigens/metabolism , Hepatitis B e Antigens/metabolism , DNA, Viral
5.
J Med Virol ; 96(5): e29669, 2024 May.
Article in English | MEDLINE | ID: mdl-38773784

ABSTRACT

Chronic hepatitis B virus (HBV) infection remains a significant global health challenge due to its link to severe conditions like HBV-related cirrhosis and hepatocellular carcinoma (HCC). Although current treatments effectively reduce viral levels, they have limited impact on certain HBV elements, namely hepatitis B surface antigen (HBsAg) and covalently closed circular DNA (cccDNA). This highlights the urgent need for innovative pharmaceutical and biological interventions that can disrupt HBsAg production originating from cccDNA. In this study, we identified a natural furanocoumarin compound, Imperatorin, which markedly inhibited the expression of HBsAg from cccDNA, by screening a library of natural compounds derived from Chinese herbal medicines using ELISA assay and qRT-PCR. The pharmacodynamics study of Imperatorin was explored on HBV infected HepG2-NTCP/PHHs and HBV-infected humanized mouse model. Proteome analysis was performed on HBV infected HepG2-NTCP cells following Imperatorin treatment. Molecular docking and bio-layer interferometry (BLI) were used for finding the target of Imperatorin. Our findings demonstrated Imperatorin remarkably reduced the level of HBsAg, HBV RNAs, HBV DNA and transcriptional activity of cccDNA both in vitro and in vivo. Additionally, Imperatorin effectively restrained the actions of HBV promoters responsible for cccDNA transcription. Mechanistic study revealed that Imperatorin directly binds to ERK and subsequently interfering with the activation of CAMP response element-binding protein (CREB), a crucial transcriptional factor for HBV and has been demonstrated to bind to the PreS2/S and X promoter regions of HBV. Importantly, the absence of ERK could nullify the antiviral impact triggered by Imperatorin. Collectively, the natural compound Imperatorin may be an effective candidate agent for inhibiting HBsAg production and cccDNA transcription by impeding the activities of HBV promoters through ERK-CREB axis.


Subject(s)
DNA, Circular , Furocoumarins , Hepatitis B Surface Antigens , Hepatitis B virus , Transcription, Genetic , Furocoumarins/pharmacology , Humans , Animals , Hepatitis B virus/drug effects , Hepatitis B virus/genetics , Hepatitis B Surface Antigens/metabolism , Hepatitis B Surface Antigens/genetics , Hep G2 Cells , Mice , DNA, Circular/genetics , DNA, Circular/metabolism , Transcription, Genetic/drug effects , Antiviral Agents/pharmacology , DNA, Viral , Molecular Docking Simulation , Virus Replication/drug effects , Cyclic AMP Response Element-Binding Protein/metabolism , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/virology , Disease Models, Animal , Promoter Regions, Genetic
6.
Pak J Pharm Sci ; 37(1): 107-113, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38741406

ABSTRACT

Entecavir, an effective anti-hepatitis B drug with low resistance rate, was designed as sustained-release micro spheres in our previous study. Here, we aimed to reveal the drug-release mechanism by observing the drug distribution and degradation behavior of poly (lactic-co-glycolic acid) and to investigate the pharmacodynamics of entecavir micro spheres. Raman spectroscopy was used to analyze the distribution of active pharmaceutical ingredients in the micro spheres. The results showed that there was little entecavir near the micro sphere surface. With increasing micro sphere depth, the drug distribution gradually increased and larger-size entecavir crystals were mainly distributed near the spherical center. The degradation behavior of poly (lactic-co-glycolic acid) was investigated using gel permeation chromatography. Changes in poly (lactic-co-glycolic acid) molecular weights during micro sphere degradation revealed that dissolution dominated the release process, which proved our previous research results. Pharmacodynamics studies on transgenic mice indicated that the anti-hepatitis B virus replication effect was maintained for 42 days after a single injection of entecavir micro spheres, similar to the effect of daily oral administration of entecavir tablets for 28 days. The entecavir micro spheres prepared in this study had a good anti-hepatitis B virus replication effect and it is expected to be used in anti hepatitis B virus treatment against hepatitis B virus.


Subject(s)
Antiviral Agents , Guanine , Hepatitis B virus , Polylactic Acid-Polyglycolic Acid Copolymer , Guanine/pharmacology , Guanine/analogs & derivatives , Guanine/pharmacokinetics , Animals , Antiviral Agents/pharmacology , Antiviral Agents/pharmacokinetics , Polylactic Acid-Polyglycolic Acid Copolymer/chemistry , Hepatitis B virus/drug effects , Drug Liberation , Mice, Transgenic , Mice , Virus Replication/drug effects , Microspheres , Delayed-Action Preparations , Hepatitis B/drug therapy , Particle Size , Polyglycolic Acid/chemistry , Spectrum Analysis, Raman , Lactic Acid
7.
J Immunol Res ; 2024: 4722047, 2024.
Article in English | MEDLINE | ID: mdl-38745751

ABSTRACT

Hepatitis B virus (HBV) infection is a major global health issue and ranks among the top causes of liver cirrhosis and hepatocellular carcinoma. Although current antiviral medications, including nucleot(s)ide analogs and interferons, could inhibit the replication of HBV and alleviate the disease, HBV cannot be fully eradicated. The development of cellular and animal models for HBV infection plays an important role in exploring effective anti-HBV medicine. During the past decades, advancements in several cell culture systems, such as HepG2.2.15, HepAD38, HepaRG, hepatocyte-like cells, and primary human hepatocytes, have propelled the research in inhibiting HBV replication and expression and thus enriched our comprehension of the viral life cycle and enhancing antiviral drug evaluation efficacy. Mouse models, in particular, have emerged as the most extensively studied HBV animal models. Additionally, the present landscape of HBV therapeutics research now encompasses a comprehensive assessment of the virus's life cycle, targeting numerous facets and employing a variety of immunomodulatory approaches, including entry inhibitors, strategies aimed at cccDNA, RNA interference technologies, toll-like receptor agonists, and, notably, traditional Chinese medicine (TCM). This review describes the attributes and limitations of existing HBV model systems and surveys novel advancements in HBV treatment modalities, which will offer deeper insights toward discovering potentially efficacious pharmaceutical interventions.


Subject(s)
Antiviral Agents , Disease Models, Animal , Hepatitis B virus , Hepatitis B , Virus Replication , Humans , Animals , Hepatitis B virus/physiology , Hepatitis B virus/drug effects , Antiviral Agents/therapeutic use , Antiviral Agents/pharmacology , Hepatitis B/drug therapy , Hepatitis B/virology , Hepatitis B/immunology , Virus Replication/drug effects , Mice , Hepatocytes/virology
8.
Biomed Pharmacother ; 175: 116678, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38713940

ABSTRACT

BACKGROUND: Current treatments for chronic hepatitis B management include orally administered nucleos(t)ide analogues, such as tenofovir (TDF), which is an acyclic adenine nucleotide analogue used both in HBV and human immune deficiency virus (HIV). The course of HBV infection is mainly dependent on viral factors, such as HBV genotypes, immunological features and host genetic variables, but a few data are available in the context of HBV, in particular for polymorphisms of genes encoding proteins involved in drug metabolism and elimination. Consequently, the aim of this study was to evaluate the potential impact of genetic variants on TDF plasma and urine concentrations in patients with HBV, considering the role of HBV genotypes. METHODS: A retrospective cohort study at the Infectious Disease Unit of Amedeo di Savoia Hospital, Torino, Italy, was performed. Pharmacokinetic analyses were performed through liquidi chromatography, whereas pharmacogenetic analyses through real-time PCR. FINDINGS: Sixty - eight patients were analyzed: ABCC4 4976 C>T genetic variant showed an impact on urine TDF drug concentrations (p = 0.014). In addition, SLC22A6 453 AA was retained in the final regression multivariate model considering factors predicting plasma concentrations, while ABCC4 4976 TC/CC was the only predictor of urine concentrations in the univariate model. INTERPRETATION: In conclusion, this is the first study showing a potential impact of genetic variants on TDF plasma and urine concentrations in the HBV context, but further studies in different and larger cohorts of patients are required.


Subject(s)
Hepatitis B virus , Multidrug Resistance-Associated Proteins , Pharmacogenetics , Tenofovir , Humans , Tenofovir/therapeutic use , Tenofovir/pharmacokinetics , Male , Female , Retrospective Studies , Multidrug Resistance-Associated Proteins/genetics , Middle Aged , Pharmacogenetics/methods , Hepatitis B virus/genetics , Hepatitis B virus/drug effects , Adult , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/virology , Hepatitis B, Chronic/genetics , Antiviral Agents/pharmacokinetics , Antiviral Agents/therapeutic use , Antiviral Agents/urine , Genotype , Cohort Studies , Membrane Transport Proteins/genetics , Membrane Transport Proteins/metabolism , Polymorphism, Single Nucleotide/genetics
9.
Int Immunopharmacol ; 134: 112219, 2024 Jun 15.
Article in English | MEDLINE | ID: mdl-38733823

ABSTRACT

BACKGROUNDS & AIMS: Given its ability to inhibit HBV replication, Interferon alpha (IFN-α) treatment has been confirmed to be effective in managing Chronic Hepatitis B (CHB). However, its underlying mechanisms are incompletely understood. METHODS: Herein, we investigated the antiviral properties of IFN-α by introducing IFN-α expression plasmids into a well-established HBV Hydrodynamic Injection (HDI) mouse model and examined the impact of IFN-α or hepcidin treatment on macrophages derived from THP-1 cells. The cytokine profiles were analyzed using the cytometry microsphere microarray technology, and flow cytometry was used to analyze the polarization of macrophages. Additionally, the IL-6/JAK2/STAT3 signaling pathway and the hepcidin-ferroportin axis were analyzed to better understand the macrophage polarization mechanism. RESULTS: As evidenced by the suppression of HBV replication, injection of an IFN-α expression plasmid and supernatants of IFN-α-treated macrophages exerted anti-HBV effects. The IFN-α treatment up-regulated IL-6 in mice with HBV replication, as well as in IFN-α-treated HepG2 cells and macrophages. Furthermore, JAK2/STAT3 signaling and hepcidin expression was promoted, inducing iron accumulation via the hepcidin-ferroportin axis, which caused the polarization of M1 macrophages. Furthermore, under the effect of IFN-α, IL-6 silencing or blockade downregulated the JAK2/STAT3 signaling pathway and hepcidin, implying that increased hepcidin expression under IFN-α treatment was dependent on the IL-6/JAK2/STAT3 pathway. CONCLUSION: The IL-6/JAK2/STAT3 signaling pathway is activated by IFN-α which induces hepcidin expression. The resulting iron accumulation then induces the polarization of M1 macrophages via the hepcidin-ferroportin axis, yielding an immune response which exerts antiviral effects against HBV replication.


Subject(s)
Antiviral Agents , Hepatitis B virus , Hepcidins , Interferon-alpha , Janus Kinase 2 , Macrophages , STAT3 Transcription Factor , Hepcidins/metabolism , Hepcidins/genetics , Animals , Humans , Interferon-alpha/pharmacology , Macrophages/immunology , Macrophages/drug effects , Hepatitis B virus/physiology , Hepatitis B virus/drug effects , Hepatitis B virus/immunology , Antiviral Agents/pharmacology , Antiviral Agents/therapeutic use , Mice , Janus Kinase 2/metabolism , STAT3 Transcription Factor/metabolism , Hep G2 Cells , Signal Transduction/drug effects , Interleukin-6/metabolism , THP-1 Cells , Mice, Inbred C57BL , Virus Replication/drug effects , Male , Hepatitis B, Chronic/immunology , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/virology , Disease Models, Animal , Hepatitis B/immunology , Hepatitis B/drug therapy , Hepatitis B/virology , Cation Transport Proteins/metabolism , Cation Transport Proteins/genetics
10.
World J Gastroenterol ; 30(17): 2294-2297, 2024 May 07.
Article in English | MEDLINE | ID: mdl-38813053

ABSTRACT

Chronic viral hepatitis causes an increased risk of progressive liver disease and hepatocellular carcinoma. On the wave of the World Health Organization's goal to reduce new cases and deaths from hepatitis B and C by 2030, there is an increasing call to expand the indications for treatment of chronic hepatitis B. Currently, the main goal of treatment is to achieve a functional cure due to the inability of current drugs to completely eradicate the virus. There are still many discrepancies between available guidelines in terms of eligibility for treatment as well as an uncertainty about the appropriate treatment duration. This editorial addresses key questions about the topic and whether indications for treatment should be expanded.


Subject(s)
Antiviral Agents , Hepatitis B virus , Hepatitis B, Chronic , Liver Neoplasms , Practice Guidelines as Topic , Humans , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/virology , Hepatitis B, Chronic/diagnosis , Antiviral Agents/therapeutic use , Antiviral Agents/adverse effects , Hepatitis B virus/drug effects , Hepatitis B virus/immunology , Liver Neoplasms/virology , Liver Neoplasms/therapy , Carcinoma, Hepatocellular/virology , Treatment Outcome , Patient Selection
11.
J Med Virol ; 96(6): e29606, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38818708

ABSTRACT

Hepatitis B virus (HBV) integration exists throughout the clinical course of chronic hepatitis B (CHB). This study investigated the effects of long-term antiviral therapy on the level and profiles of transcriptionally active HBV integration. Serial liver biopsies and paired blood samples were obtained from 16, 16, and 22 patients with CHB at baseline, 78, and 260 weeks of entecavir monotherapy or combined with pegylated interferon alfa, respectively. Serum HBV biomarkers were longitudinally assessed. RNA-seq and HIVID2 program was used to identify HBV-host chimeric RNAs transcribed from integrated DNA. The counts of HBV integration reads were positively related to both serum HBV DNA levels (r = 0.695, p = 0.004) and HBeAg titers (r = 0.724, p = 0.021) at baseline, but the positive correlation exited only to the serum HBsAg levels after 260 weeks of antiviral therapy (r = 0.662, p = 0.001). After 78 weeks of antiviral therapy, the levels of HBV integration expression decreased by 12.25 folds from baseline. The viral junction points were enriched at the S and HBx genes after the long-term antiviral therapy. HBs-FN1 became one of the main transcripts, with the mean proportion of HBs-FN1 in all integrated expression increased from 2.79% at baseline to 10.54% at Week 260 of antiviral treatment. Antiviral therapy may reduce but not eliminate the HBV integration events and integration expression. Certain integration events, such as HBs-FN1 can persist in long-term antiviral treatment.


Subject(s)
Antiviral Agents , DNA, Viral , Hepatitis B virus , Hepatitis B, Chronic , Liver , Virus Integration , Humans , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/virology , Antiviral Agents/therapeutic use , Male , Hepatitis B virus/genetics , Hepatitis B virus/drug effects , Adult , Female , Liver/virology , Middle Aged , DNA, Viral/blood , DNA, Viral/genetics , Guanine/analogs & derivatives , Guanine/therapeutic use , Interferon-alpha/therapeutic use , Hepatitis B e Antigens/blood , Hepatitis B Surface Antigens/blood , Longitudinal Studies
12.
ACS Appl Mater Interfaces ; 16(20): 25836-25842, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38728653

ABSTRACT

We demonstrate the use of DNA origami to create virus-trapping nanoshells that efficiently neutralize hepatitis B virus (HBV) in cell culture. By modification of the shells with a synthetic monoclonal antibody that binds to the HBV envelope, the effective neutralization potency per antibody is increased by approximately 100 times compared to using free antibodies. The improvements in neutralizing the virus are attributed to two factors: first, the shells act as a physical barrier that blocks the virus from interacting with host cells; second, the multivalent binding of the antibodies inside the shells lead to stronger attachment to the trapped virus, a phenomenon known as avidity. Pre-incubation of shells with HBV and simultaneous addition of both components separately to cells lead to comparable levels of neutralization, indicating rapid trapping of the virions by the shells. Our study highlights the potential of the DNA shell system to rationally create antivirals using components that, when used individually, show little to no antiviral effectiveness.


Subject(s)
DNA , Hepatitis B virus , Nanoshells , Hepatitis B virus/drug effects , Humans , Nanoshells/chemistry , DNA/chemistry , Antibodies, Monoclonal/chemistry , Antibodies, Monoclonal/immunology , Neutralization Tests , Antiviral Agents/chemistry , Antiviral Agents/pharmacology
13.
Zhongguo Zhong Yao Za Zhi ; 49(10): 2776-2782, 2024 May.
Article in Chinese | MEDLINE | ID: mdl-38812178

ABSTRACT

This study explore the molecular mechanism of the synergistic effect of Chinese Yam polysaccharides and nucleoside analogues(NAs) on hepatitis B virus(HBV) resistance. Different concentrations of Chinese Yam polysaccharide and entecavir were ad-ded to HepG2.2.15 cells. After the cytotoxicity was detected by cell counting kit-8(CCK-8), the optimal concentration and time of the two drugs to inhibit HepG2.2.15 cells were screened out. They were divided into control group, Chinese Yam polysaccharide group, entecavir group and combination drug group(Chinese Yam polysaccharide + entecavir). The drugs were added to HepG2.2.15 cells, ELISA was used to detect the effects of each group of drugs on the secretion of hepatitis B virus surface antigen(HBsAg) and hepatitis B virus e antigen(HBeAg) in cell supernatant, probe quantitative real-time PCR(probe qRT-PCR) was used to detect the effects of drugs on HBV-DNA in HepG2.2.15 cells, and Western blot was used to detect the effects of each group of drugs on the expression of p38 MAPK, p-p38 MAPK, NTCP proteins in HepG2.2.15 cells. The qRT-PCR was used to detect the effect of drugs on the expression of p38 MAPK and NTCP mRNA in HepG2.2.15 cells. The results showed that compared with control group, the concentrations of HBeAg and HBsAg in Chinese Yam polysaccharide group, entecavir group and combination group decreased(P<0.01 or P<0.001), and both of them inhibited HBV-DNA in HepG2.2.15 cells(P<0.01), and the HBV-DNA inhibition of HepG2.2.15 cells in the combination group was more obvious(P<0.001), and the protein expression levels of p-p38 MAPK and NTCP were significantly decreased(P<0.05 or P<0.01), the mRNA expression level of p38 MAPK increased, and the mRNA expression level of NTCP decreased(P<0.05 or P<0.01). To sum up, Chinese Yam polysaccharide can reduce the expression of NTCP protein and mRNA through p38 MAPK signaling pathway and cooperate with entecavir in anti-HBV.


Subject(s)
Antiviral Agents , Dioscorea , Hepatitis B virus , Polysaccharides , p38 Mitogen-Activated Protein Kinases , Humans , Hepatitis B virus/drug effects , Hepatitis B virus/genetics , Polysaccharides/pharmacology , p38 Mitogen-Activated Protein Kinases/metabolism , p38 Mitogen-Activated Protein Kinases/genetics , Hep G2 Cells , Antiviral Agents/pharmacology , Dioscorea/chemistry , Drug Synergism , Nucleosides/pharmacology , MAP Kinase Signaling System/drug effects , Hepatitis B Surface Antigens/metabolism , Hepatitis B Surface Antigens/genetics , Hepatitis B e Antigens/metabolism , Hepatitis B/drug therapy , Hepatitis B/virology , Drugs, Chinese Herbal/pharmacology , Drugs, Chinese Herbal/chemistry , Guanine/analogs & derivatives , Guanine/pharmacology
14.
Ann Clin Lab Sci ; 54(2): 217-223, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38802153

ABSTRACT

OBJECTIVE: Interferon-α (IFNα) therapy has been an integral part of the current treatment for hepatitis B virus (HBV) infection. However, the exact effect of IFNα antiviral therapy on liver function and iron metabolism in patients with chronic hepatitis B (CHB) remains unclear. Here, we investigated the characteristics of changes in liver function and iron metabolism indexes in patients with chronic hepatitis B before and after IFNα treatment. Additionally, we determined their predictive value for the therapeutic response of IFNα treatment. METHODS: In this study, 34 patients with CHB before and after IFNα treatment were enrolled. Serum levels of virological indicators, liver function, and iron metabolism markers were detected and analyzed in each patient. ROC curve analysis was performed to compare the predictive value of serum liver function and iron metabolism markers for the therapeutic response of IFN α treatment. RESULTS: A significant decrease in serum HBV DNA (P<0.001) and HBsAg (P<0.001) was observed before and after IFNα treatment. Compared to the patients before IFNα treatment, patients after IFNα treatment showed a significant increase in serum albumin (ALB) (P<0.05) and a significant decrease in serum alanine aminotransferase (ALT) and aspartate aminotransferase (AST) (P=0.003 and P=0.034). These findings suggested that the synthetic function of the liver was improved, and liver inflammation was alleviated. Serum HEPC and serum ferritin (SF) levels in patients after IFNα treatment were significantly higher (P<0.001, P<0.001); however, serum iron (SI) levels were significantly lower (P=0.005) than those in patients before IFNα treatment. These findings indicate that IFNα treatment regulated iron metabolism homeostasis in CHB patients. Combined liver function and iron metabolism markers, including ALB, SI, SF, and HEPC, had the highest predictive value for the therapeutic response of IFNα treatment for CHB. CONCLUSION: IFNα treatment improved liver function and iron metabolism homeostasis in patients with CHB. Regular monitoring of serum ALB, SI, SF, and HEPC can help predict the therapeutic response of IFNα treatment for CHB.


Subject(s)
Antiviral Agents , Ferritins , Hepatitis B, Chronic , Hepcidins , Interferon-alpha , Iron , Humans , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/blood , Hepatitis B, Chronic/virology , Male , Female , Interferon-alpha/therapeutic use , Antiviral Agents/therapeutic use , Iron/blood , Iron/metabolism , Adult , Hepcidins/blood , Ferritins/blood , Middle Aged , Serum Albumin/metabolism , Serum Albumin/analysis , Biomarkers/blood , Hepatitis B virus/drug effects , Treatment Outcome , Predictive Value of Tests , ROC Curve
15.
World J Gastroenterol ; 30(13): 1911-1925, 2024 Apr 07.
Article in English | MEDLINE | ID: mdl-38659485

ABSTRACT

BACKGROUND: Liuweiwuling Tablet (LWWL) is a Chinese patent medicine approved for the treatment of chronic inflammation caused by hepatitis B virus (HBV) infection. Previous studies have indicated an anti-HBV effect of LWWL, specifically in terms of antigen inhibition, but the underlying mechanism remains unclear. AIM: To investigate the potential mechanism of action of LWWL against HBV. METHODS: In vitro experiments utilized three HBV-replicating and three non-HBV-replicating cell lines. The in vivo experiment involved a hydrodynamic injection-mediated mouse model with HBV replication. Transcriptomics and metabolomics were used to investigate the underlying mechanisms of action of LWWL. RESULTS: In HepG2.1403F cells, LWWL (0.8 mg/mL) exhibited inhibitory effects on HBV DNA, hepatitis B surface antigen and pregenomic RNA (pgRNA) at rates of 51.36%, 24.74% and 50.74%, respectively. The inhibition rates of LWWL (0.8 mg/mL) on pgRNA/covalently closed circular DNA in HepG2.1403F, HepG2.2.15 and HepG2.A64 cells were 47.78%, 39.51% and 46.74%, respectively. Integration of transcriptomics and metabolomics showed that the anti-HBV effect of LWWL was primarily linked to pathways related to apoptosis (PI3K-AKT, CASP8-CASP3 and P53 pathways). Apoptosis flow analysis revealed that the apoptosis rate in the LWWL-treated group was significantly higher than in the control group (CG) among HBV-replicating cell lines, including HepG2.2.15 (2.92% ± 1.01% vs 6.68% ± 2.04%, P < 0.05), HepG2.A64 (4.89% ± 1.28% vs 8.52% ± 0.50%, P < 0.05) and HepG2.1403F (3.76% ± 1.40% vs 7.57% ± 1.35%, P < 0.05) (CG vs LWWL-treated group). However, there were no significant differences in apoptosis rates between the non-HBV-replicating HepG2 cells (5.04% ± 0.74% vs 5.51% ± 1.57%, P > 0.05), L02 cells (5.49% ± 0.80% vs 5.48% ± 1.01%, P > 0.05) and LX2 cells (6.29% ± 1.54% vs 6.29% ± 0.88%, P > 0.05). TUNEL staining revealed a significantly higher apoptosis rate in the LWWL-treated group than in the CG in the HBV-replicating mouse model, while no noticeable difference in apoptosis rates between the two groups was observed in the non-HBV-replicating mouse model. CONCLUSION: Preliminary results suggest that LWWL exerts a potent inhibitory effect on wild-type and drug-resistant HBV, potentially involving selective regulation of apoptosis. These findings offer novel insights into the anti-HBV activities of LWWL and present a novel mechanism for the development of anti-HBV medications.


Subject(s)
Antiviral Agents , Apoptosis , DNA, Viral , Drugs, Chinese Herbal , Hepatitis B virus , Tablets , Virus Replication , Apoptosis/drug effects , Animals , Humans , Hepatitis B virus/drug effects , Drugs, Chinese Herbal/pharmacology , Mice , Hep G2 Cells , Antiviral Agents/pharmacology , Virus Replication/drug effects , Disease Models, Animal , Hepatitis B Surface Antigens/metabolism , Male , Hepatitis B/drug therapy , Hepatitis B/virology , RNA, Viral/metabolism , Liver/drug effects , Liver/pathology , Liver/virology
16.
Microbiol Spectr ; 12(5): e0378823, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38567974

ABSTRACT

The key to a curative treatment of hepatitis B virus (HBV) infection is the eradication of the intranuclear episomal covalently closed circular DNA (cccDNA), the stable persistence reservoir of HBV. Currently, established therapies can only limit HBV replication but fail to tackle the cccDNA. Thus, novel therapeutic approaches toward curative treatment are urgently needed. Recent publications indicated a strong association between the HBV core protein SUMOylation and the association with promyelocytic leukemia nuclear bodies (PML-NBs) on relaxed circular DNA to cccDNA conversion. We propose that interference with the cellular SUMOylation system and PML-NB integrity using arsenic trioxide provides a useful tool in the treatment of HBV infection. Our study showed a significant reduction in HBV-infected cells, core protein levels, HBV mRNA, and total DNA. Additionally, a reduction, albeit to a limited extent, of HBV cccDNA could be observed. Furthermore, this interference was also applied for the treatment of an established HBV infection, characterized by a stably present nuclear pool of cccDNA. Arsenic trioxide (ATO) treatment not only changed the amount of expressed HBV core protein but also induced a distinct relocalization to an extranuclear phenotype during infection. Moreover, ATO treatment resulted in the redistribution of transfected HBV core protein away from PML-NBs, a phenotype similar to that previously observed with SUMOylation-deficient HBV core. Taken together, these findings revealed the inhibition of HBV replication by ATO treatment during several steps of the viral replication cycle, including viral entry into the nucleus as well as cccDNA formation and maintenance. We propose ATO as a novel prospective treatment option for further pre-clinical and clinical studies against HBV infection. IMPORTANCE: The main challenge for the achievement of a functional cure for hepatitis B virus (HBV) is the covalently closed circular DNA (cccDNA), the highly stable persistence reservoir of HBV, which is maintained by further rounds of infection with newly generated progeny viruses or by intracellular recycling of mature nucleocapsids. Eradication of the cccDNA is considered to be the holy grail for HBV curative treatment; however, current therapeutic approaches fail to directly tackle this HBV persistence reservoir. The molecular effect of arsenic trioxide (ATO) on HBV infection, protein expression, and cccDNA formation and maintenance, however, has not been characterized and understood until now. In this study, we reveal ATO treatment as a novel and innovative therapeutic approach against HBV infections, repressing viral gene expression and replication as well as the stable cccDNA pool at low micromolar concentrations by affecting the cellular function of promyelocytic leukemia nuclear bodies.


Subject(s)
Arsenic Trioxide , Cell Nucleus , DNA, Circular , DNA, Viral , Hepatitis B virus , Hepatitis B , Sumoylation , Virus Replication , Arsenic Trioxide/pharmacology , Hepatitis B virus/drug effects , Hepatitis B virus/genetics , Hepatitis B virus/physiology , Humans , Virus Replication/drug effects , Hepatitis B/virology , Hepatitis B/drug therapy , Hepatitis B/metabolism , Sumoylation/drug effects , DNA, Circular/genetics , DNA, Circular/metabolism , Cell Nucleus/metabolism , DNA, Viral/genetics , DNA, Viral/metabolism , Antiviral Agents/pharmacology , Viral Core Proteins/metabolism , Viral Core Proteins/genetics , Hep G2 Cells
17.
Sci Rep ; 14(1): 9262, 2024 04 22.
Article in English | MEDLINE | ID: mdl-38649402

ABSTRACT

Hepatitis B and C viruses (HBV and HCV) are significant causes of chronic liver diseases, with approximately 350 million infections globally. To accelerate the finding of effective treatment options, we introduce HBCVTr, a novel ligand-based drug design (LBDD) method for predicting the inhibitory activity of small molecules against HBV and HCV. HBCVTr employs a hybrid model consisting of double encoders of transformers and a deep neural network to learn the relationship between small molecules' simplified molecular-input line-entry system (SMILES) and their antiviral activity against HBV or HCV. The prediction accuracy of HBCVTr has surpassed baseline machine learning models and existing methods, with R-squared values of 0.641 and 0.721 for the HBV and HCV test sets, respectively. The trained models were successfully applied to virtual screening against 10 million compounds within 240 h, leading to the discovery of the top novel inhibitor candidates, including IJN04 for HBV and IJN12 and IJN19 for HCV. Molecular docking and dynamics simulations identified IJN04, IJN12, and IJN19 target proteins as the HBV core antigen, HCV NS5B RNA-dependent RNA polymerase, and HCV NS3/4A serine protease, respectively. Overall, HBCVTr offers a new and rapid drug discovery and development screening method targeting HBV and HCV.


Subject(s)
Antiviral Agents , Hepacivirus , Hepatitis B virus , Molecular Docking Simulation , Neural Networks, Computer , Antiviral Agents/pharmacology , Antiviral Agents/chemistry , Hepatitis B virus/drug effects , Hepacivirus/drug effects , Humans , Drug Design , Viral Nonstructural Proteins/metabolism , Viral Nonstructural Proteins/antagonists & inhibitors , Hepatitis B/virology , Hepatitis B/drug therapy , Ligands , Molecular Dynamics Simulation , Hepatitis C/drug therapy , Hepatitis C/virology
18.
Antiviral Res ; 226: 105892, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38663455

ABSTRACT

This study aimed to investigate whether peginterferon-α (IFN) add-on nucleos(t)ide analogs(NAs) can further reduce hepatocellular carcinoma(HCC) risk compared with NAs monotherapy in NA-treated patients with chronic hepatitis B(CHB). In this multi-center randomized controlled trial "PARADISE study" (NCT05671315), CHB patients with intermediate to high risk of HCC after more than 24-week NAs pretreatment were recruited, randomized to two groups at a ratio of 1:2 and followed up for 240 weeks. NAs group maintained NAs monotherapy, while IFN + NAs group received IFN add-on NAs therapy for 48 weeks, then switched to NAs monotherapy. Totally, 196 patients were included in interim analysis (NAs group 68, IFN + NAs group 128). The 96-week cumulative HCC incidence was lower in IFN + NAs group than NAs group (0% vs. 4.5%, p < 0.05). Compared with NAs group, IFN + NAs group had significantly higher rates of HBsAg loss at week 48 and 96 (22.7% vs. 0%; 16.7% vs. 0%, both p < 0.05). A new scoring system was established to predict HBsAg decline >2log10 IU/ml, HBsAg <10 IU/ml or HBsAg loss at the end of 48-week IFN treatment. The area under ROC curve was 0.914, 0.922 or 0.905 in the original cohort (n = 128) and 0.896, 0.896 or 0.864 in the external validation cohort (n = 162) for the aforementioned three outcomes, respectively. IFN add-on NAs therapy may suggest the dual benefits of reducing HCC development and facilitating HBsAg loss among NA-treated CHB patients with intermediate to high risk of HCC. The new scoring system helps to make the most of IFN treatment for a higher cost-effectiveness in healthcare.


Subject(s)
Antiviral Agents , Carcinoma, Hepatocellular , Drug Therapy, Combination , Hepatitis B, Chronic , Interferon-alpha , Liver Neoplasms , Humans , Male , Female , Hepatitis B, Chronic/drug therapy , Interferon-alpha/therapeutic use , Interferon-alpha/administration & dosage , Antiviral Agents/therapeutic use , Antiviral Agents/administration & dosage , Middle Aged , Carcinoma, Hepatocellular/drug therapy , Adult , Liver Neoplasms/drug therapy , Treatment Outcome , Polyethylene Glycols/therapeutic use , Polyethylene Glycols/administration & dosage , Nucleosides/therapeutic use , Hepatitis B virus/drug effects , Hepatitis B Surface Antigens/blood
19.
Antiviral Res ; 226: 105893, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38679166

ABSTRACT

With the increasing momentum and success of monoclonal antibody therapy in conventional medical practices, there is a revived emphasis on the development of monoclonal antibodies targeting the hepatitis B surface antigen (anti-HBs) for the treatment of chronic hepatitis B (HBV) and hepatitis D (HDV). Combination therapies of anti-HBs monoclonal antibodies, and novel anti-HBV compounds and immunomodulatory drugs presenting a promising avenue to enhanced therapeutic outcomes in HBV/HDV cure regimens. In this review, we will cover the role of antibodies in the protection and clearance of HBV infection, the association of anti-HBV surface antigen antibodies (anti-HBs) in protection against HBV and how antibody effector functions, beyond neutralization, are likely necessary. Lastly, we will review clinical data from previous and ongoing clinical trials of passive antibody therapy to provide a state-of-the-are perspective on passive antibody therapies in combinations with additional novel agents.


Subject(s)
Hepatitis D , Immunization, Passive , Humans , Hepatitis D/immunology , Hepatitis D/drug therapy , Hepatitis B virus/immunology , Hepatitis B virus/drug effects , Hepatitis B Antibodies/immunology , Hepatitis B, Chronic/immunology , Hepatitis B, Chronic/drug therapy , Animals , Hepatitis B Surface Antigens/immunology , Antibodies, Monoclonal/therapeutic use , Antibodies, Monoclonal/immunology , Hepatitis B/immunology , Hepatitis B/prevention & control , Hepatitis B/drug therapy , Antiviral Agents/therapeutic use , Hepatitis Delta Virus/immunology
20.
Viruses ; 16(4)2024 04 11.
Article in English | MEDLINE | ID: mdl-38675933

ABSTRACT

(1) Background: We aimed to determine the prevalence of hepatitis B virus (HBV) resistance-associated mutations (RAMs) in people with HBV and human immunodeficiency virus (HBV/HIV) in Botswana. (2) Methods: We sequenced HBV deoxyribonucleic acid (DNA) from participants with HBV/HIV from the Botswana Combination Prevention Project study (2013-2018) using the Oxford Nanopore GridION platform. Consensus sequences were analyzed for genotypic and mutational profiles. (3) Results: Overall, 98 HBV sequences had evaluable reverse transcriptase region coverage. The median participant age was 43 years (IQR: 37, 49) and 66/98 (67.4%) were female. Most participants, i.e., 86/98 (87.8%) had suppressed HIV viral load (VL). HBV RAMs were identified in 61/98 (62.2%) participants. Most RAMs were in positions 204 (60.3%), 180 (50.5%), and 173 (33.3%), mostly associated with lamivudine resistance. The triple mutations rtM204V/L180M/V173L were the most predominant (17/61 [27.9%]). Most participants (96.7%) with RAMs were on antiretroviral therapy for a median duration of 7.5 years (IQR: 4.8, 10.5). Approximately 27.9% (17/61) of participants with RAMs had undetectable HBV VL, 50.8% (31/61) had VL < 2000 IU/mL, and 13/61 (21.3%) had VL ≥ 2000 IU/mL. (4) Conclusions: The high prevalence of lamivudine RAMs discourages the use of ART regimens with 3TC as the only HBV-active drug in people with HIV/HBV.


Subject(s)
Coinfection , Drug Resistance, Viral , HIV Infections , Hepatitis B virus , Hepatitis B , Lamivudine , Mutation , Humans , Hepatitis B virus/genetics , Hepatitis B virus/drug effects , HIV Infections/virology , HIV Infections/drug therapy , HIV Infections/epidemiology , Female , Drug Resistance, Viral/genetics , Male , Botswana/epidemiology , Lamivudine/therapeutic use , Lamivudine/pharmacology , Adult , Middle Aged , Prevalence , Coinfection/virology , Coinfection/epidemiology , Coinfection/drug therapy , Hepatitis B/virology , Hepatitis B/epidemiology , Hepatitis B/drug therapy , Rural Population , Viral Load , Genotype , Antiviral Agents/pharmacology , Antiviral Agents/therapeutic use
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