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PMID: 11082361 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Functional living trileaflet heart valves grown in vitro.

Circulation ·Vol. 102 ·No. 19 Suppl 3 ·2000-11-07 ·Pages III44-9

Hoerstrup SP, Sodian R, Daebritz S, Wang J, Bacha EA, Martin DP, Moran AM, Guleserian KJ, Sperling JS, Kaushal S, Vacanti JP, Schoen FJ, Mayer JE

Abstract

Previous tissue engineering approaches to create heart valves have been limited by the structural immaturity and mechanical properties of the valve constructs. This study used an in vitro pulse duplicator system to provide a biomimetic environment during tissue formation to yield more mature implantable heart valves derived from autologous tissue. Trileaflet heart valves were fabricated from novel bioabsorbable polymers and sequentially seeded with autologous ovine myofibroblasts and endothelial cells. The constructs were grown for 14 days in a pulse duplicator in vitro system under gradually increasing flow and pressure conditions. By use of cardiopulmonary bypass, the native pulmonary leaflets were resected, and the valve constructs were implanted into 6 lambs (weight 19+/-2.8 kg). All animals had uneventful postoperative courses, and the valves were explanted at 1 day and at 4, 6, 8, 16, and 20 weeks. Echocardiography demonstrated mobile functioning leaflets without stenosis, thrombus, or aneurysm up to 20 weeks. Histology (16 and 20 weeks) showed uniform layered cuspal tissue with endothelium. Environmental scanning electron microscopy revealed a confluent smooth valvular surface. Mechanical properties were comparable to those of native tissue at 20 weeks. Complete degradation of the polymers occurred by 8 weeks. Extracellular matrix content (collagen, glycosaminoglycans, and elastin) and DNA content increased to levels of native tissue and higher at 20 weeks. This study demonstrates in vitro generation of implantable complete living heart valves based on a biomimetic flow culture system. These autologous tissue-engineered valves functioned up to 5 months and resembled normal heart valves in microstructure, mechanical properties, and extracellular matrix formation.

MeSH Terms
Absorbable Implants Animals Bioreactors Culture Techniques/methods Echocardiography Endothelium, Vascular/cytology,metabolism,transplantation Extracellular Matrix/metabolism Fibroblasts/cytology,transplantation Heart Valve Prosthesis Heart Valve Prosthesis Implantation Muscle, Smooth, Vascular/cytology,transplantation Polymers Sheep Stress, Mechanical Surface Properties Transplantation, Autologous/methods
Chemicals
Polymers
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Hoerstrup S P
Department of Cardiovascular Surgery, Children's Hospital Boston, MA, USA. [email protected]
Sodian R
Daebritz S
Wang J
Bacha E A
Martin D P
Moran A M
Guleserian K J
Sperling J S
Kaushal S
Vacanti J P
Schoen F J
Mayer J E
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
1524-4539
Published
2000-11-07
Pages
III44-9
Language
English
Region
United States
NLM ID
0147763
Subset
IM
Grants
NHLBI NIH HHS · HL-97-005 · United States
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