Long-term safety and durability of percutaneous septal sinus shortening (The PS3 System™) in an ovine model

Objectives: Chronic implants of the PS3™ system were conducted in an ovine model to assess durability and safety at up to 1 year follow‐up. Background: The long‐term durability and safety of emerging percutaneous devices for functional mitral regurgitation remain largely unknown. Methods: The PS3 sy...

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Published inCatheterization and cardiovascular interventions Vol. 73; no. 4; pp. 540 - 548
Main Authors Rogers, Jason H., Rahdert, David A., Caputo, Gary R., Takeda, Patricia A., Palacios, Igor F., Tio, Fermin O., Taylor, Elizabeth A., Low, Reginald I.
Format Journal Article
LanguageEnglish
Published Hoboken Wiley Subscription Services, Inc., A Wiley Company 01.03.2009
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Summary:Objectives: Chronic implants of the PS3™ system were conducted in an ovine model to assess durability and safety at up to 1 year follow‐up. Background: The long‐term durability and safety of emerging percutaneous devices for functional mitral regurgitation remain largely unknown. Methods: The PS3 system (consisting of interatrial septal and great cardiac vein devices connected by an adjustable suture bridge) was placed in eight healthy adult sheep. The mitral annular septal‐lateral dimension in systole (SLS) was acutely reduced by 15–20%. Animals were sacrificed at up to 12 months postimplant and characterized by intracardiac echocardiography, cardiac computed tomography (CT), and histopathology. In vivo forces exerted on the PS3 bridge were measured by means of a novel load cell catheter. Results: At 3, 6, and 12 months after implantation, intracardiac echocardiographic and CT showed the PS3 systems to be intact without erosion and with overall sustained reductions in the SLS. Histopathologic assessment revealed each component correctly deployed in its respective target site without evidence of erosion, thrombus, or device fracture. The SLS was 26.5 ± 1.7 mm preimplant, 22.0 ± 1.4 mm post‐PS3 (17.0% reduction), and 22.0 ± 2.1 mm at latest follow‐up. Mean forces exerted on the bridge in vivo ranged from 1.16 N to 1.87 N. Conclusions: The PS3 System demonstrated excellent biocompatibility without evidence of erosion, thrombosis, or perforation at up to one‐year follow‐up in this chronic healthy ovine model. Forces exerted in the PS3 system were relatively modest and should contribute to the durability of the device. © 2009 Wiley‐Liss, Inc.
Bibliography:ArticleID:CCD21818
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istex:E5E32BF121008DCBD6EDBED8D66C6D9939E66D93
ISSN:1522-1946
1522-726X
DOI:10.1002/ccd.21818