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Non-invasive Prediction of EArly Cardiac rEjection

Predictive Modeling of Acute Rejection in Pediatric Heart Transplant Recipients

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07770659
Acronym
PEACE
Enrollment
200
Registered
2026-08-18
Start date
2023-03-29
Completion date
2027-06-30
Last updated
2026-08-20

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiac MRI, Cell Free DNA, Heart Transplant, Pediatric Heart Transplant, Rejection

Keywords

Pediatric heart transplant, acute rejection, acute cellular rejection, antibody mediated rejection, cardiac mri, cell free DNA

Brief summary

Acute rejection remains a major cause of morbidity and mortality in pediatric patients after heart transplant. In order to screen for rejection, most centers perform heart catheterizations with endomyocardial biopsies frequently in the first year post transplant and then every 1-2 years thereafter; these biopsies are associated with complications, can cause significant anxiety in patients and family members, and are a significant cost for the healthcare system. This project will evaluate non-invasive methods of detecting rejection using cardiac magnetic resonance imaging and blood testing with a goal to reduce the required number of cardiac catheterizations.

Detailed description

Despite significant advances in the care of pediatric heart transplant (PHTx) patients, acute rejection (AR) remains one of the leading causes of death. Cardiac catheterization with endomyocardial biopsy (biopsy) is the standard of care for diagnosing AR and is performed when there is a clinical suspicion for AR or during routine surveillance. Unfortunately, biopsy is invasive and associated with potential risks, including: complications from anesthesia or sedation, valve damage, injury to the conduction system, vascular damage or occlusion, and cardiac perforation. These potential complications are magnified in the pediatric population. Non-invasive methods of detecting AR, such as blood biomarkers and cardiac magnetic resonance imaging (CMR), could decrease the frequency of biopsy. Blood biomarkers, such has donor fraction cell-free DNA and microRNA, have shown potential for diagnosis of AR but have not yet gained widespread adoption in PHTx. Advanced CMR parametric mapping sequences quantify myocardial fibrosis and edema, and our preliminary data suggest a potential for these sequences to diagnose AR. While CMR parametric mapping has significant promise, focusing simply on the average properties across an entire left ventricular plane or region ignores the spatial patterns of disease, resulting in a loss of information and an impaired ability to use the imaging data to direct care. Here we propose advanced image analysis methods that are more granular than plane analysis, including texture analysis, as a means for objectively analyzing different patterns of myocardial disease and developing predictive models that would allow improved clinical decision making. The central hypothesis of this grant is that non-invasive cardiac magnetic resonance and blood biomarkers can detect myocardial abnormalities consistent with acute rejection in pediatric heart transplant recipients and can predict the need for endomyocardial biopsy. To address this hypothesis, Aim 1 will develop and validate a comprehensive predictive model for identifying PHTx recipients having suspected AR and requiring cardiac catheterization. Aim 2 will evaluate whether blood biomarkers improve the CMR model developed in Aim 1. SubAims will include assessment of cost to determine the most cost-efficient screening protocol. Aim 3 will expand modeling to determine severity of AR as defined histologically. This multi-PI proposal is a prospective, multicenter study to perform CMR in PHTx with and without AR who are also undergoing clinical biopsy. The innovation of this study is the use of advanced CMR, texture analysis, and blood biomarkers for the non-invasive detection of AR. This proposal leverages the support of the Congenital/Pediatric Research Committee within the Society of Cardiovascular Magnetic Resonance (SCMR). Application of these data to clinical practice could improve quality of life and decrease associated morbidity by ensuring that only patients with a high probability of rejection undergo biopsy.

Interventions

None listed

Sponsors

Vanderbilt University Medical Center
Lead SponsorOTHER
National Heart, Lung, and Blood Institute (NHLBI)
CollaboratorNIH

Study design

Observational model
CASE_CONTROL
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
6 Years to 25 Years
Healthy volunteers
No

Inclusion criteria

* Received heart transplant at age \< 21 years old * \> 2 months from transplant * ≥6 years old and ≤ 25 years old and able to undergo cardiac MRI (CMR) * CMR can be scheduled within 5 days from heart biopsy\* * Heart catheterization with biopsy is scheduled "for cause" to confirm suspected AR or Heart catheterization with biopsy is scheduled for surveillance

Exclusion criteria

* No endomyocardial biopsy scheduled * Other illness or disease process that could potentially lead to myocardial edema or fibrosis * Contraindication to CMR with contrast * Previously enrolled in this study, UNLESS previous enrollment was heart biopsy scheduled for surveillance with no suspicion of AR AND final study status was documented as "no AR" AND current enrollment is heart biopsy is scheduled "for cause" to confirm suspected AR * Multiple transplanted organs * Requires anesthesia for CMR

Design outcomes

Primary

MeasureTime frameDescription
Acute rejectiontime of enrollmentRejection is defined as a clinical event that results in augmentation of immunosuppression. Core pathology laboratory will determine biopsy positive vs biopsy negative rejection.

Countries

United States

Contacts

CONTACTJonathan Soslow, MD MSCI
PEACE@vumc.org615-322-7447

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 21, 2026