Heart valve replacement in children is fraught with long-term morbidity and mortality rates, largely because conventional implants lack the capacity to grow with the child. Partial heart transplantation presents a potential solution by transplanting only specific segments of a donor heart, thereby providing a living and growing heart valve implant. This approach harnesses the full spectrum of cardiac tissues, which, when freshly procured and supported by immunosuppression, can integrate as functional and potentially growth-capable tissue. This state-of-the-art review discusses the history and development of partial heart transplantation, its indications, recent clinical experiences, regulation, and future directions.
<h4>Importance</h4>Partial heart transplant, or living valve replacement, has the potential to advance surgical management of irreparable valvular disease by providing a viable option with capacity for growth.<h4>Objectives</h4>To describe the early experience and assess the feasibility, safety, and efficacy of partial heart transplant in patients with congenital heart valve disease.<h4>Design, setting, and participants</h4>Case series of the first 19 patients to undergo partial heart transplant at a single high-volume pediatric cardiac surgery and transplant center in the US between April 2022 and December 2024. No patients were excluded or lost to follow-up.<h4>Exposures</h4>Partial heart transplant using semilunar valves from donor hearts. Maintenance immunosuppression consisted of tacrolimus monotherapy with a trough level goal of 4 to 8 ng/mL.<h4>Main outcomes and measures</h4>Efficacy was defined as growth of the transplanted valve annulus and leaflets over time. Secondary outcomes included valve dysfunction and complications related to immunosuppression.<h4>Results</h4>Among the 19 participants with irreparable congenital heart valve dysfunction, 53% were male and 47% female. The median age at the time of transplant was 97 days. The median follow-up was 26 weeks. Three patients received partial heart transplant of both semilunar valves, 7 underwent living pulmonary valve replacement in the pulmonary position, 2 had a living aortic valve allograft in the aortic position, and 7 had a living aortic valve allograft in the pulmonary position. Nine patients constituting the initial cohort of partial heart transplant recipients had their annular diameter and valve leaflet length longitudinally analyzed for growth. All valves functioned well and demonstrated growth along appropriate z scores. Annular diameter increased from medians of 7 mm (aortic valve) and 9 mm (pulmonary valve) to 14 mm (aortic valve) and 17 mm (pulmonary valve), respectively. Leaflet length similarly increased from medians of 0.5 mm (aortic valve) and 0.49 mm (pulmonary valve) to 1 mm (aortic valve) and 0.675 mm (pulmonary valve), respectively. One patient required reoperation unrelated to the implanted valve. No significant complications related to immunosuppression were observed.<h4>Conclusions and relevance</h4>Partial heart transplant appears feasible, safe, and efficacious. All transplanted valves demonstrated growth based on annular and leaflet length measurements. Careful follow-up and monitoring are crucial to support the continued expansion of this novel technique.
Cardiac growth after pediatric heart transplantation - PubMed
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## Abstract
Background: To assess whether normal cardiac growth occurs after heart transplantation in the pediatric age group, we performed a study of 13 infants and children who underwent orthotopic heart transplantation at Stanford.
Methods and results: The echocardiographic data from a population of 93 normal children were analyzed to determine estimates of the fifth, 25th, 50th, 75th, and 95th percentiles of the normal pediatric population. Growth curves for each of the cardiac dimensions were stratified into six classes representing each of the percentile bands, and dimensions for the 13 patients were tracked between early postoperative (early) and point of maximal follow-up (late). Results were compared by Student's paired t test to determine whether normal growth was occurring. The mean age at transplant was 5.0 +/- 1.3 years (mean +/- SEM) (range, 0.4-12.8 years), duration of follow-up was 3.1 +/- 0.4 years (1.3-5.8 years), and change in body surface area was 0.24 +/- 0.03 m2 (0.12-0.50 m2). Both right ventricular (RV) and left ventri
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