Related Experiment Video
Updated: Aug 13, 2026

A Rodent Model of The Ross Operation: Syngeneic Pulmonary Artery Graft Implantation in A Systemic Position
Published on: April 1, 2022
Aortoiliac reconstruction in infants and toddlers: replacement with decellularized branched pulmonary artery
Rebecka L Meyers1, Amy Lowichik, Larry W Kraiss
1Pediatric Surgery, Primary Children's Medical Center, Salt Lake City, UT 84113, USA. rebecka.meyers@hsc.utah.edu
Background:
Aortic reconstruction in infants and small children has been reported with Dacron or polytef prosthetic material, hypogastric artery autograft, and saphenous vein autograft. In children, synthetic grafts are limited by a concern for late infection and a lack of potential growth. Available autogenous vessels have a limited length and diameter. Conventional allografts have not been durable. When the entire infrarenal aorta and aortoiliac bifurcation must be replaced, none of the historic options are optimal.
Methods:
We report 2 cases of infrarenal aorta and aortoiliac bifurcation reconstruction using a new generation of cryopreserved allograft now decellularized for decreased immunogenicity. The branched pulmonary artery allograft is particularly attractive for reconstruction of the aortic bifurcation.
Results:
The postoperative course in both cases was uncomplicated. Follow-up with serial abdominal duplex ultrasound has shown no evidence of graft stenosis or calcification at 29 and 32 months, respectively.
Conclusions:
The use of commercially available, decellularized, and antigen-reduced allograft offers a nonsynthetic option for replacement of the pediatric abdominal aorta. We chose this novel approach in hopes of reducing the lifetime risk for graft infection and maintaining the potential for graft ingrowth by the child.
More Related Videos
13:10Direct Re-implantation of Left Coronary Artery into the Aorta in Adults with Anomalous Origin of Left Coronary Artery from the Pulmonary Artery (ALCAPA)
Published on: April 24, 2017
05:31Transcatheter Pulmonary Valve Replacement from Autologous Pericardium with a Self-Expandable Nitinol Stent in an Adult Sheep Model
Published on: June 8, 2022