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Updated: Dec 13, 2025

Murine Heterotopic Heart Transplant Technique
Published on: July 8, 2014
Increased early acute cellular rejection events in hepatitis C-positive heart transplantation
Claudia G Gidea1, Navneet Narula2, Alex Reyentovich1
1Division of Cardiology, Department of Medicine.
Insights
Hepatitis C virus (HCV) viremia in heart transplant recipients from HCV-positive donors increases acute cellular rejection (ACR) rates and severity. Early immune activation in these NAT+ recipients warrants further investigation.
Area of Science:
- Transplant Immunology
- Virology
- Cardiology
Background:
- Increased use of hepatitis C virus (HCV)-positive donors improves transplant rates but can lead to recipient viremia.
- The impact of transient viremia on acute cellular rejection (ACR) in heart transplant recipients is not well understood.
Purpose of the Study:
- To investigate the relationship between viremia in heart transplant recipients and the incidence and severity of acute cellular rejection (ACR).
Main Methods:
- A cohort of 50 heart transplant recipients was divided into two groups: those receiving organs from viremic donors (NAT+) and non-viremic donors (NAT-).
- Patients were monitored for viremia, and endomyocardial biopsies were performed for 180 days to assess ACR incidence and severity.
Main Results:
- 44% of NAT+ recipients developed viremia, experiencing significantly higher rates of ACR (64% vs 18%) and repeat rejection biopsies (77% vs 43%) compared to NAT- recipients.
- ACR in NAT+ recipients showed a trend towards higher grade rejections.
- NAT+ recipients had a significantly higher rate of ACR occurrences, even after adjusting for demographics.
Conclusions:
- Transient viremia in heart transplant recipients is associated with increased rates and severity of acute cellular rejection.
- Further research is needed to understand the mechanisms of early immune activation in NAT+ recipients.
Background:
Increased utilization of hepatitis C virus (HCV)-positive donors has increased transplantation rates. However, high levels of viremia have been documented in recipients of viremic donors. There is a knowledge gap in how transient viremia may impact acute cellular rejections (ACRs).
Methods:
In this study, 50 subjects received hearts from either viremic or non-viremic donors. The recipients of viremic donors were classified as nucleic acid amplification testing (NAT)+ group, and the remaining were classified as NAT-. All patients were monitored for viremia levels. Endomyocardial biopsies were performed through 180 days, evaluating the incidence of ACRs.
Results:
A total of 50 HCV-naive recipients received hearts between 2018 and 2019. A total of 22 patients (44%) who received transplants from viremic donors developed viremia at a mean period of 7.2 ± 0.2 days. At that time, glecaprevir/pibrentasvir was initiated. In the viremia period (<56 days), 14 of 22 NAT+ recipients (64%) had ACR vs 5 of 28 NAT- group (18%) (p = 0.001). Through 180 days, 17 of 22 NAT+ recipients (77%) had a repeat rejection biopsy vs 12 of 28 NAT- recipients (43%) (p = 0.02). NAT+ biopsies demonstrated disparity of ACR distribution: negative, low-grade, and high-grade ACR in 84%, 12%, and 4%, respectively, vs 96%, 3%, and 1%, respectively, in the NAT- group (p = 0.03). The median time to first event was 26 (interquartile range [IQR]: 8-45) in the NAT+ group vs 65 (IQR: 44-84) days in the NAT-. Time to first event risk model revealed that NAT+ recipients had a significantly higher rate of ACR occurrences, adjusting for demographics (p = 0.004).
Conclusions:
Transient levels of viremia contributed to higher rates and severity of ACRs. Further investigation into the mechanisms of early immune activation in NAT+ recipients is required.
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