Living autologous heart valves engineered from human prenatally harvested progenitors

被引:94
作者
Schmidt, Doerthe
Mol, Anita
Breymann, Christian
Achermann, Josef
Odermatt, Bernhard
Goessi, Matthias
Neuenschwander, Stefan
Pretre, Rene
Genoni, Michele
Zund, Gregor
Hoerstrup, Simon P.
机构
[1] Univ Zurich, Cardiovasc Surg Clin, CH-8091 Zurich, Switzerland
[2] Univ Zurich, Dept Surg Res, CH-8091 Zurich, Switzerland
[3] Univ Zurich Hosp, CH-8091 Zurich, Switzerland
[4] Eindhoven Univ Technol, Dept Biomed Engn, NL-5600 MB Eindhoven, Netherlands
[5] Univ Zurich Hosp, GGS OBGYN Ctr Seefeld, Hirslanden Clin Grp Zurich, CH-8091 Zurich, Switzerland
[6] Univ Zurich Hosp, Feto Maternal Haematol Res Grp, CH-8091 Zurich, Switzerland
[7] Human Genet Lab, Zurich, Switzerland
[8] Univ Zurich Hosp, Inst Clin Pathol, CH-8091 Zurich, Switzerland
[9] ETH, Inst Polymers, Zurich, Switzerland
[10] Univ Zurich, Childrens Hosp, Div Congenital Cardiac Surg, Zurich, Switzerland
关键词
chorionic villi; endothelial progenitor cells; heart defects (congenital); heart valves; prenatal progenitor cells; tissue engineering;
D O I
10.1161/CIRCULATIONAHA.105.001040
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-Heart valve tissue engineering is a promising strategy to overcome the lack of autologous growing replacements, particularly for the repair of congenital malformations. Here, we present a novel concept using human prenatal progenitor cells as new and exclusive cell source to generate autologous implants ready for use at birth. Methods and Results-Human fetal mesenchymal progenitors were isolated from routinely sampled prenatal chorionic villus specimens and expanded in vitro. A portion was cryopreserved. After phenotyping and genotyping, cells were seeded onto synthetic biodegradable leaflet scaffolds (n=12) and conditioned in a bioreactor. After 21 days, leaflets were endothelialized with umbilical cord blood-derived endothelial progenitor cells and conditioned for additional 7 days. Resulting tissues were analyzed by histology, immunohistochemistry, biochemistry ( amounts of extracellular matrix, DNA), mechanical testing, and scanning electron microscopy (SEM) and were compared with native neonatal heart valve leaflets. Fresh and cryopreserved cells showed comparable myofibroblast-like phenotypes. Genotyping confirmed their fetal origin. Neo-tissues exhibited organization, cell phenotypes, extracellular matrix production, and DNA content comparable to their native counterparts. Leaflet surfaces were covered with functional endothelia. SEM showed cellular distribution throughout the polymer and smooth surfaces. Mechanical profiles approximated those of native heart valves. Conclusions-Prenatal fetal progenitors obtained from routine chorionic villus sampling were successfully used as an exclusive, new cell source for the engineering of living heart valve leaflets. This concept may enable autologous replacements with growth potential ready for use at birth. Combined with the use of cell banking technology, this approach may be applied also for postnatal applications.
引用
收藏
页码:I125 / I131
页数:7
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