Related Experiment Video
Updated: Jul 25, 2026

Detection of Low Copy Number Integrated Viral DNA Formed by In Vitro Hepatitis B Infection
Published on: November 7, 2018
Discovery of non-A, non-B hepatitis and identification of its etiology
1Department of Transfusion Medicine, National Institutes of Health/Clinical Center, Bethesda, Maryland 20892, USA.
Insights
Hepatitis C virus (HCV) was identified as the cause of non-A, non-B hepatitis (NANBH) through molecular techniques. Blood donor screening for HCV has dramatically reduced transfusion-related infections.
Area of Science:
- Hepatology
- Virology
- Molecular Biology
Background:
- Hepatitis C virus (HCV) was identified as the cause of non-A, non-B hepatitis (NANBH) after hepatitis A virus (HAV) and hepatitis B virus (HBV) were discovered.
- Transfusion-associated hepatitis (TAH) was initially classified as NANBH, comprising approximately 75% of cases, and later found to cause chronic hepatitis and cirrhosis.
Purpose of the Study:
- To identify the causative agent of non-A, non-B hepatitis (NANBH).
- To develop screening methods to prevent transfusion-associated hepatitis C (TAH).
Main Methods:
- Molecular cloning and sequencing of RNA from infected chimpanzee plasma.
- Screening of expressed viral products with immune sera.
- Development and implementation of enzyme immunoassays (EIA-1 and EIA-2) for blood donor screening.
Main Results:
- The hepatitis C virus (HCV), a novel flavivirus, was identified as the primary cause of NANBH, responsible for 70-90% of cases.
- First-generation EIA (EIA-1) screening prevented an estimated 40,000 HCV infections in its first year.
- Second-generation EIA (EIA-2) has nearly eliminated new transfusion-related HCV infections.
Conclusions:
- The discovery of HCV and subsequent blood donor screening have had a profound impact on public health.
- HCV screening has been highly effective in preventing transfusion-transmitted hepatitis C.
Abstract:
The discovery of hepatitis C was the direct result of the landmark discoveries of hepatitis B virus (HBV) and hepatitis A virus (HAV) and their serologies. Screening tests for HAV and HBV made it possible in the mid-1970s to examine cases of transfusion-associated hepatitis (TAH) and to demonstrate that only approximately 25% resulted from HBV and that none were related to HAV. Consequently, approximately 75% of TAH became classified as non-A, non-B hepatitis (NANBH). Subsequently, chimpanzee studies demonstrated that NANBH was a result of a transmissible agent Although it has been difficult to convince clinicians that NANBH was a serious disease because the overt manifestations are generally mild, it gradually became apparent that the NANBH agent often resulted in chronic hepatitis and sometimes evolved into cirrhosis. The NANBH agent remained a virologic enigma for the next decade until researchers at the Chiron Corporation used an ambitious molecular approach on large volumes of high-titer infectious chimpanzee plasma from the Centers for Disease Control and Prevention (CDC). They extracted RNA, cloned it into an expression vector, and screened the expressed product with presumed immune sera. A single positive clone was found in the millions screened, and, within a year, the entire genome was sequenced and the agent was identified as a novel flavivirus--the hepatitis C virus (HCV). Retrospective analysis of pedigreed samples at the National Institute of Health (NIH) showed that 70% to 90% of NANBH cases were HCV related. The impact of HCV blood donor screening has been enormous. The single-antigen first-generation enzyme immunoassay (EIA-1) prevented 40,000 HCV infections within the first year, and the second-generation assay (EIA-2) has actually reduced new transfusion-related HCV infections to almost zero.
Related Concept Videos
Hepatitis
Viral Hepatitis I: Introduction
Cirrhosis I: Introduction

