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Published on: June 7, 2016
Angiotensin II Type 1 Receptor Expression and Anti-AT1R Antibodies in Heart Transplantation: A Systematic Review of
Radha Gopalan1, Mohamed Reyad Mohamed2, Jamal Mahar1
1Cardiology Department, Banner University Medical Center, Phoenix, AZ 85006, USA.
Insights
This study found that anti-angiotensin II type 1 receptor antibodies (AT1R-Abs) may play a role in heart transplant rejection and cardiac allograft vasculopathy (CAV). More research is needed to confirm their clinical significance.
Area of Science:
- Immunology
- Transplantation Science
- Cardiology
Background:
- Heart transplantation (HT) is the primary treatment for end-stage heart failure.
- Rejection and cardiac allograft vasculopathy (CAV) remain significant challenges limiting long-term HT outcomes.
- Non-HLA antibodies, such as anti-angiotensin II type 1 receptor antibodies (AT1R-Abs), are increasingly implicated in allograft injury, but evidence is inconsistent.
Purpose of the Study:
- To systematically evaluate the existing evidence linking angiotensin II type 1 receptor (AT1R) gene expression and AT1R-Abs with post-heart transplant outcomes.
- To synthesize findings on the association between AT1R-Abs and rejection, CAV, and patient survival after HT.
Main Methods:
- Conducted a systematic review following PRISMA guidelines.
- Searched major databases (Scopus, PubMed, Web of Science, Cochrane Library) for relevant cohort and case-control studies.
- Two independent reviewers screened studies, extracted data, and assessed the risk of bias.
Main Results:
- Twelve studies involving 951 recipients were included.
- AT1R mRNA expression showed variable patterns; some studies linked higher AT1R expression to transplant coronary artery disease and rejection.
- AT1R-Ab prevalence varied, increasing after mechanical circulatory support, with inconsistent associations with acute cellular rejection, antibody-mediated rejection, and CAV. Some studies suggested a link between elevated AT1R-Abs and poorer long-term outcomes.
Conclusions:
- Current evidence suggests a potential role for AT1R expression and AT1R-Abs in cardiac allograft dysfunction, including rejection and vasculopathy.
- Larger prospective studies with standardized testing are necessary to establish clinically relevant AT1R-Ab thresholds and their utility in risk stratification and therapeutic trials.
Abstract:
Background: Heart transplantation (HT) remains the definitive therapy for end-stage heart failure, yet rejection and cardiac allograft vasculopathy (CAV) continue to limit long-term outcomes. Beyond donor-specific HLA antibodies, non-HLA antibodies, particularly anti-angiotensin II type 1 receptor antibodies (AT1R-Abs), have been implicated in allograft injury, but published findings are heterogeneous. Aim: The aim of this study is to systematically evaluate the evidence linking AT1R gene expression and anti-AT1R antibodies with key post-heart transplant outcomes. Methods: We conducted a systematic review in accordance with PRISMA guidelines. Scopus, PubMed, Web of Science, and the Cochrane Library were searched (December 2025) for cohort and case-control studies evaluating AT1R gene expression and/or AT1R-Ab status in HT recipients and their association with post-transplant outcomes. Two reviewers independently screened studies, extracted data, and assessed risk of bias using the NIH Quality Assessment Tool. Results: Twelve studies encompassing 951 recipients met the inclusion criteria. Five studies evaluated AT1R mRNA expression, reporting variable patterns: several observed reduced AT1R/AT2R transcription after transplantation without clear clinical correlation, whereas others associated higher donor or recipient AT1R expression with transplant coronary artery disease and recurrent rejection. AT1R-Ab prevalence varied widely and appeared to increase after mechanical circulatory support, with substantial seroconversion reported during LVAD support in initially antibody-negative patients. Associations between AT1R-Ab and acute cellular rejection and antibody-mediated rejection were inconsistent across studies, and survival findings were inconclusive; however, some reports linked elevated AT1R-Abs to poorer long-term freedom from adverse events. Evidence regarding CAV was mixed, with signals of increased vasculopathy risk in some cohorts but not others. Conclusions: Current evidence suggests a potential role for AT1R expression and AT1R-Abs in cardiac allograft dysfunction, including rejection phenotypes and vasculopathy. Larger prospective studies with harmonized testing strategies are needed to define clinically meaningful AT1R-Ab cutoffs and clarify their utility in risk stratification and targeted therapeutic trials.
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