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Published on: May 26, 2021
Clonal Hematopoiesis of Indeterminate Potential and Long-term Outcomes in Heart Transplantation
Panagiotis Simitsis1, Anju Nohria1, Jane Kelleher1
1Division of Cardiovascular Medicine, Department of Medicine, Brigham and Women's Hospital, Boston, MA, USA.
Insights
Clonal hematopoiesis of indeterminate potential (CHIP) mutations are not associated with adverse outcomes after heart transplantation (HT). This study found no link between CHIP and cardiac allograft vasculopathy, graft failure, malignancy, or death in HT recipients.
Area of Science:
- Cardiology
- Hematology
- Transplantation Science
Background:
- Clonal hematopoiesis of indeterminate potential (CHIP) mutations are linked to aging, cardiovascular disease, and cancer.
- The association between CHIP and heart transplantation (HT) outcomes remains unclear.
Purpose of the Study:
- To investigate the prevalence of CHIP mutations in HT recipients.
- To determine if CHIP mutations are associated with long-term HT outcomes, including cardiac allograft vasculopathy (CAV), graft failure, malignancy, and mortality.
Main Methods:
- A mixed retrospective-prospective observational study of 95 HT recipients.
- Targeted sequencing was used to identify CHIP mutations (variant allele frequency [VAF] ≥ 2%).
- Primary composite outcome included CAV (≥ grade 2), graft failure, malignancy, retransplantation, or all-cause death.
Main Results:
- CHIP mutations were present in 31.6% of HT recipients (30/95).
- DNMT3A, PPM1D, SF3B1, TET2, and TP53 were the most common CHIP mutations.
- CHIP mutations were not significantly associated with the primary composite outcome (HR=0.487; P=0.119) or individual outcomes like malignancy or death after multivariable adjustment.
Conclusions:
- No association was found between CHIP mutations and adverse post-heart transplantation outcomes.
- CHIP mutations do not appear to be a valuable biomarker for surveillance of outcomes after HT.
Background:
Clonal hematopoiesis of indeterminate potential (CHIP) mutations, a trait of aging, has been associated with the progression of cardiovascular disease and the development of malignancy. Uncertainty prevails regarding a robust association between CHIP and heart-transplantation (HT) outcomes.
Objectives:
To determine the prevalence of CHIP mutations in HT and their association with long-term outcomes, including cardiac allograft vasculopathy (CAV), graft failure, malignancy, and all-cause mortality.
Methods:
We conducted a mixed retrospective-prospective observational study of HT recipients with targeted sequencing for CHIP mutations (variant allele frequency [VAF] of ≥ 2%). The primary composite outcome was the first occurrence of CAV grade ≥ 2, graft failure, malignancy, cardiac retransplantation, or all-cause death. Secondary outcomes were the individual components of the composite primary outcome. Sensitivity analyses with base-case and extreme scenarios were performed.
Results:
Among 95 HT recipients, 30 had CHIP mutations (31.6%). DNMT3A mutations were most common (44.7%), followed by PPM1D (13.2%), SF3B1 (10.5%), TET2 (7.9%), and TP53 (7.9%). The only significant independent predictor of CHIP was age at enrollment or age at transplantation. After multivariable adjustment, CHIP mutations were not associated with the primary outcome, which occurred in 44 (46.3%) patients (HR = 0.487; 95% CI:0.197-1.204; P = 0.119), nor were they associated with mlalignancy alone, or death.
Conclusion:
We demonstrated no association between CHIP mutations and post-transplant outcomes, including CAV, graft failure, malignancy, and all-cause mortality. In line with previously published data, our analysis provides additional evidence about the lack of clinical value of using CHIP mutations as a biomarker for surveillance in outcomes after HT.
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