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Updated: May 7, 2026

Isolation of Endothelial Progenitor Cells from Human Umbilical Cord Blood
Published on: September 14, 2017
Initial use of endothelial progenitor cells capturing stents in paediatric congenital heart disease
Nuno Cabanelas1, José D F Martins2, Fátima Pinto2
11Department of Cardiology,Santarém Hospital,Santarém,Portugal.
Insights
Genous® stent implantation is feasible in infants with complex congenital heart disease, improving oxygen saturation. While some stents experienced partial occlusion, they were successfully managed, indicating potential benefits for pediatric patients.
Area of Science:
- Cardiovascular Surgery
- Pediatric Cardiology
- Biomaterials Science
Background:
- Stenosis in congenital heart disease often necessitates interventions like shunts.
- Neointimal hyperplasia and thrombosis are key challenges in stent implantation.
- Endothelial progenitor cell-capturing stents offer a novel approach to improve stent coverage and reduce complications.
Observation:
- Genous® stents, designed for adults, were implanted in three infants with cyanotic congenital heart disease to treat obstructed systemic-to-pulmonary shunts.
- Four stents were used to maintain the patency of modified Blalock-Taussig shunts and a ductus arteriosus.
- Procedures resulted in immediate resolution of stenosis and improved oxygen saturation.
Findings:
- All procedures were immediately successful, with oxygen saturation increasing from 66% to 92%.
- One stent remained patent throughout the follow-up period.
- Two stents showed partial occlusion at 5 and 5.5 months but were successfully managed with balloon angioplasty.
Implications:
- Genous® stent implantation appears feasible for infants with complex congenital heart disease.
- This technology may offer an alternative to long-term dual antiplatelet therapy.
- Further research with larger cohorts and extended follow-up is needed to validate these preliminary findings.
Introduction:
Stenosis, mediated by neointimal hyperplasia and thrombosis, is a major limiting factor in successful stent implantation. The introduction of a stent, coated in its endoluminal surface by antihuman CD34 antibodies with endothelial progenitor cell-capturing properties, opens the possibility of promoting a rapid and normal functioning coverage by endothelium and thus avoids both an excessive cell proliferation within stent and the need for long-term dual antiplatelet therapy. These stents, developed for adult coronary artery disease, have not yet been implanted in children or in those with congenital heart disease.
Objective And Methods:
In this paper, we describe the implantation of Genous® stents in three children with cyanotic congenital heart disease and obstructed systemic-to-pulmonary shunts. We describe the use of this stent and address its potential feasibility in paediatric congenital heart disease.
Results:
To maintain the patency of two modified Blalock-Taussig shunts and one ductus arteriosus, four Genous® stents were implanted in three infants with cyanotic heart disease. All procedures were immediately successful, with resolution of stenosis and improvement in transcutaneous oxygen saturation from 66% ± 3.6% to 92% ± 2.6%. In the follow-up, one stent had no occlusion; however, the remaining two had partial occlusion after 5 and 5.5 months, which were successfully managed with balloon dilatation preceding elective definitive surgical correction.
Conclusion:
In our preliminary experience, we demonstrated that Genous® stent implantation was feasible in infants with complex congenital heart disease. Additional studies with larger samples and longer follow-up are required to confirm the potential benefits of this technology in this clinical setting.
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