| Literature DB >> 26925287 |
Sara Bondanza1, Maria Grazia Calevo2, Maurizio Marasini1.
Abstract
Background. Stents have become the treatment of choice for native aortic coarctation in adults and adolescents, but in pediatric patients insufficient data are currently available to identify the best therapeutic option. Methods. To compare the outcomes of pediatric and adolescent patients, we retrospectively evaluated early and long-term results of stenting for aortic coarctation in 34 patients divided into 2 groups (A and B) composed, respectively, of 17 children (mean age 8.2 ± 2.3, weight ≤30 kg) and 17 adolescents (mean age 14.3 ± 1.7, weight >30 kg). Results. No significant differences in outcome were found between groups immediately after the procedure. In all of our patients, peak systolic gradient pressure significantly decreased after stenting from 43.7 ± 12 to 1.7 ± 3.1 mmHg in group A and from 39.4 ± 16.8 to 1.6 ± 3 in group B (p < 0.0001). We observed early and late adverse events in both groups: early femoral vessel injury or thrombosis was more frequent in younger patients, as well as restenosis due to vessel growth requiring stent redilatations, often complicated by stent fractures. Data from long-term follow-up showed that, in younger patients, stress-related hypertension was more frequent. Conclusions. The procedure was immediately safe and effective in both groups. Pediatric patients must be accurately selected before stenting because they could probably need reinterventions and stents could impact on their future therapeutic perspectives.Entities:
Year: 2016 PMID: 26925287 PMCID: PMC4748096 DOI: 10.1155/2016/4818307
Source DB: PubMed Journal: Cardiol Res Pract ISSN: 2090-0597 Impact factor: 1.866
Figure 1Anteroposterior view: severe aortic coarctation.
Figure 230° left anterior oblique view: stent positioning across the stenosis.
Figure 330° left anterior oblique view: stent successfully deployed.
Main characteristics of enrolled patients.
| All | Group A | Group B |
| |
|---|---|---|---|---|
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|
| ||
| Males, | 24 (70.6) | 11 (64.7) | 13 (76.5) | 0.71 |
| Age at procedure (yrs) | ||||
| Mean ± SD | 11.3 ± 3.7 | 8.2 ± 2.3 | 14.3 ± 1.7 | ≤0.0001 |
| Median (range) | 11.5 (3; 18) | 9 (3; 11) | 14 (12; 18) | |
| Weight (Kg) | ||||
| Mean ± SD | 40.6 ± 19.4 | 25.3 ± 4.9 | 55.9 ± 15.9 | ≤0.0001 |
| Median (range) | 31 (17; 92) | 26 (17; 30) | 52 (32; 92) | |
| Native AoCo, yes | 23 (67.6) | 10 (58.8) | 13 (76.5) | 0.46 |
| Recurrent AoCo, yes | 11 (32.4) | 7 (41.2) | 4 (23.5) | 0.46 |
| Systolic BP (mmHg), mean ± SD | 132 ± 18 | 127 ± 12.5 | 137 ± 21 | 0.11 |
| Diastolic BP (mmHg), mean ± SD | 71 ± 15 | 69 ± 12.5 | 72 ± 17.4 | 0.65 |
| DP pre (mmHg), mean ± SD | 41.41 ± 14.7 | 43.67 ± 12 | 39.41 ± 16.8 | 0.42 |
| DP post (mmHg), mean ± SD | 1.61 ± 3 | 1.67 ± 3.1 | 1.56 ± 3 | 0.92 |
| Palmaz Stent, yes | 5 (14.7) | 4 (23.5) | 1 (5.9) | 0.33 |
| Bare CP stent, yes | 14 (41.2) | 5 (29.4) | 9 (52.9) | 0.29 |
| Covered CP stent, yes | 17 (50) | 8 (47.1) | 9 (52.9) | 1 |
Late adverse events and follow-up data.
| Group A | Group B |
| |
|---|---|---|---|
|
|
| ||
|
| |||
| Restenosis | 5 (29.4) | 1 (5.9) | 0.17 |
| Stent fracture | 4 (23.5) | 1 (5.9) | 0.33 |
| Aneurysms after redilatation | 1 (5.9) | 0 | 1 |
| Stent migration | 1 (5.9) | 2 (11.8) | 1 |
| Femoral artery stenosis/occlusion | 2 (11.8) | 1 (5.9) | 1 |
| Dissection | 0 | 1 (5.9) | 1 |
| Stress test | 6 (35.3) | 6 (35.3) | 0.72 |
| Hypertensive stress response | 3 (17.6) | 1 (5.9) | 0.60 |
|
| |||
| Mean ± SD | |||
| Systolic blood pressure at 1 year | 120 ± 9 | 126.7 ± 16 | 0.22 |
| Systolic blood pressure at 5 years | 128 ± 16.5 | 128 ± 11 | 1 |
| Systolic blood pressure at 10 years | 116 ± 7 | 128 ± 3 | 0.06 |
Figure 4Lateral view: growth-induced narrowing of the previously implanted stent.
Figure 5Lateral view: shortening and fracture of the stent after redilatation.