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Status unknownNCT04170452Updated Nov 21, 2019

Study the Content of the HBV DNA in Liver Biopsy in the Patients Chronic Hepatitis Delta

An observational study in Chronic Hepatitis Delta and Liver Biopsy, sponsored by Tokhirbek Dolimov. Status unknown at 1 site in Uzbekistan. Open to participants aged 18 Years to 40 Years. Per ClinicalTrials.gov, last updated 2019-11-21.

Sponsored by Tokhirbek Dolimov · Observational

The sponsor has not verified this record recently (last verified Nov 2019), so the status shown — last known as Enrolling by invitation — may be out of date.
Study type
Observational
Model
Cohort
Time perspective
Prospective
Enrollment
30
Ages
18 Years to 40 Years
Sex
All
01

Study summary

Study the content of the HBV DNA in liver biopsy in the patients with the Chronic Hepatitis Delta in absence of the HBV DNA in the blood plasma

Read the detailed description

Investigators interpreted the data of several researchers that studied suppression of the HBV DNA replication in the Delta infection within this article. Co-infection and superinfection of hepatitis B virus (HBV) with hepatitis delta virus (HDV) leads to suppression of HBV replication in both patients as well as animals and cell models. The mechanisms underlying this suppression were not fully studied before.

Jaw-Ching Wu et al. described the suppression of HBV DNA replication during HBV and HDV co-infection for the first time in 1991. The results of studies in the liver experimental models HuH-7 clearly demonstrated that one delta HDV antigen can suppress the expression of HBV RNA.

Dulce Alfaiate et al. conducted studies on the experimental models proving that HBV replication markers, including HBeAg, total HBV DNA and pregenomic RNA were significantly reduced after superinfection with HDV which confirming the effect of HDV on HBV. But thereby, the levels of circularly covalently closed levels of HBV DNA (cccDNA) and HBsAg were not decreased. At the peak of HDV-RNA accumulation and appearance of the interference in HBV replication, a strong I type IFN response was observed with highly induced genes stimulated by the interferon, RSAD2 (Viperin) and IFI78 (MxA). Both mono- and superinfected dHepaRG cells maintained strong intracellular replication of HDV, which was accompanied with the strong secretion of infectious HDV virions.

The following analysis of the data in the experimental studies by Zhenfeng Zhang et al. proved that the HDV virus activated strongly IFN-β and IFN-λ in the hepatocyte cell lines. The active HDV replication induces the IFN-β/λ response. Unlike hepatitis B virus, hepatitis D virus infection causes a strong IFN-β/λ response in the innate immunocompetent cell lines. The activated IFN did not suppress replication of hepatitis D virus in vitro, which indicatesthat Delta hepatitis virus is resistant to the self-induced innate immune responses and therapeutic treatment for IFN.

According to the authors, this stimulation of the synthesis of endogenous IFN-β and IFN-λ inside the hepatocyte by the HDV virus caused suppression of the HBV virus replication.

The following study, conducted Paolo Pugnale et al., in Huh-7 human hepatoma cells demonstrates that HDV can disrupt the IFN-α-stimulated JAK-STAT signaling pathway (a mediating protein ensuring cell response to the signals from the interleukin receptors and growth factors). The mechanism adopted by HDV to interfere with IFN-α/β signaling is based on inhibition of the tyrosine phosphorylation of STAT1, STAT2 and Tyk2 receptor-bound kinase without reducing expression levels of the IFN receptor subunits or other components in the signaling cascade. These results indicate that the HDV virus develops a strategy to counteract the actions of I type IFN. This study may be useful for a better understanding of the observed resistance to IFN in the chronic patients with the Chronic Hepatitis Delta and may provide the useful data for defining new strategies for antiviral intervention.

However, it should be noted that KatashibaY. in his research indicates that IFN is mainly stimulated in case of infection with the DNA-containing viruses, while IL-12 induction predominates in case of the RNA-containing infections. Since HDV consists of a single-stranded RNA molecule, it is not expected to stimulate IFN.

Given the above stated disagreements in the results of the authors' studies, Investigators decided to examine the patients with the Chronic Hepatitis Delta when the HBV DNA was not detected in the blood during examination by PCR.

02

Conditions studied

  • Chronic Hepatitis Delta
  • Liver Biopsy

Keywords

  • Viral hepatitis B
  • HBV DNA
  • Viral hepatitis Delta
  • iver biopsy
  • PCR
03

In context

Hepatitis A

2,709 studies on the registry are indexed under Hepatitis A; 142 are open to participants now.

This study's planned enrollment of 30 is below the median of 250 across 687 observational studies indexed under Hepatitis A.

Browse Hepatitis A studies →

Lead sponsor

This is the only study on the registry with Tokhirbek Dolimov as lead sponsor.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 40 Years
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Probability sample

Study population

All patients with chronic viral hepatitis delta

Inclusion criteria

  • patients with the Chronic Hepatitis Delta in absence of the HBV DNA in the blood plasma

Exclusion criteria

Exclusion Criteria:

  • patient's with the Chronic Hepatitis Delta in absence of the HBV DNA in the blood plasma but: inability to remain still and to maintain brief expiration for the procedure, suspected vascular lesion (eg, hemangioma), bleeding tendency (eg, INR > 1.2 despite receiving vitamin K, bleeding time > 10 min), severe thrombocytopenia (\< 50,000/mL)
05

Study design

Observational model
Cohort
Time perspective
Prospective
Enrollment
30 participants (estimated)
Patient registry
No
Biospecimen retention
Samples with dna

Groups and cohorts

  • Chronic Hepatitis Delta patients

    Patients infected with delta virus

    Procedure: liver biopsy

Interventions

  • Procedureliver biopsy

    Pre-procedure assessment of the liver with ultrasound should be performed for planning positioning and needle entrance point. Supine, oblique, or total left lateral decubitus are the possible positioning of the patient - it is important to make sure that the patient is comfortable and can remain still in that position. Assessing if the procedure will be performed under breath held and practice this with the patient. Marking of the entrance point on the skin is advised to aid the skin cleaning and dressing. A time-out should be performed by this stage. Skin site is prepped and draped to ensure asepsis. Ocal anaesthesia is infiltrated under the skin abdominal wall/intercostal space until the liver capsule. Entrance point is created with a scalpel. Using the freehand technique the needle is advanced under ultrasound guidance during the entire course of the biopsy. The needle tip must always cross the capsule prior to deploying the cutting device.

06

What researchers measure

Primary outcomes

  1. The study the content of the HBV DNA in liver biopsy

    In this study we are going to do liver biopsy in 30 patients with a diagnosis of Chronic Viral Hepatitis B and Delta.

    Time frame: up to 3 months

07

Study locations

1 site
  • RIEMID
    Tashkent, Uchtepa District, 100106, Uzbekistan
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References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Nov 21, 2019, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT04170452
Lead sponsor
Tokhirbek Dolimov
Responsible party
Tokhirbek Dolimov (Research Institute of Epidemiology, Microbiology and Infectious deseases, Research Institute of Epidemiology, Microbiology and Infectious Diseases, Uzbekistan) — Sponsor-investigator
First posted
Nov 20, 2019
Start date
Oct 10, 2019
Primary completion
Jun 1, 2020 (estimated)
Completion
Jun 1, 2020 (estimated)
Last update
Nov 21, 2019

Study contacts

Nariman Gulyamov, DSci
study chair · Research institute of epidemiology, microbiology and infectious diseases

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is status unknown, as verified in Nov 2019. You cannot join it, but the record below documents what was studied.

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