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Tissue engineering of acellular vascular grafts capable of somatic growth in young lambs.


ABSTRACT: Treatment of congenital heart defects in children requiring right ventricular outflow tract reconstruction typically involves multiple open-heart surgeries because all existing graft materials have no growth potential. Here we present an 'off-the-shelf' vascular graft grown from donor fibroblasts in a fibrin gel to address this critical unmet need. In a proof-of-concept study, the decellularized grafts are implanted as a pulmonary artery replacement in three young lambs and evaluated to adulthood. Longitudinal ultrasounds document dimensional growth of the grafts. The lambs show normal growth, increasing body weight by 366% and graft diameter and volume by 56% and 216%, respectively. Explanted grafts display physiological strength and stiffness, complete lumen endothelialization and extensive population by mature smooth muscle cells. The grafts also show substantial elastin deposition and a 465% increase in collagen content, without signs of calcification, aneurysm or stenosis. Collectively, our data support somatic growth of this completely biological graft.

SUBMITTER: Syedain Z 

PROVIDER: S-EPMC5052664 | biostudies-literature | 2016 Sep

REPOSITORIES: biostudies-literature

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Tissue engineering of acellular vascular grafts capable of somatic growth in young lambs.

Syedain Zeeshan Z   Reimer Jay J   Lahti Matthew M   Berry James J   Johnson Sandra S   Tranquillo Robert T RT  

Nature communications 20160927


Treatment of congenital heart defects in children requiring right ventricular outflow tract reconstruction typically involves multiple open-heart surgeries because all existing graft materials have no growth potential. Here we present an 'off-the-shelf' vascular graft grown from donor fibroblasts in a fibrin gel to address this critical unmet need. In a proof-of-concept study, the decellularized grafts are implanted as a pulmonary artery replacement in three young lambs and evaluated to adulthoo  ...[more]

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