Key result
Acute percutaneous septal sinus shortening using the PS(3) System was safe and feasible in two patients, reducing mitral regurgitation grade and septal-lateral systolic dimension by 29% and 31%.
Why the study?
Does the PS(3) System safely and feasibly reduce mitral regurgitation in patients prior to surgical mitral valve repair?
Case Report (n=2)
Does the PS(3) System safely and feasibly reduce mitral regurgitation in patients prior to surgical mitral valve repair?
The PS(3) System demonstrated acute safety and feasibility in reducing functional and ischemic mitral regurgitation in a first-in-human pilot study.
May support PS(3) System feasibility for mitral regurgitation; leaves open efficacy, durability, and role before surgical repair.
BACKGROUND: Multiple percutaneous therapies for the treatment of functional and ischemic mitral regurgitation (FMR/IMR) are under development. We previously reported a novel percutaneous technique, the percutaneous septal sinus shortening [PS(3)] System which was effective in ameliorating FMR in an animal model. We herein report results from the first-in-human safety and feasibility pilot study involving the PS(3) System. METHODS AND RESULTS: The primary objective of this first-in-human study was to evaluate the safety and feasibility of acute percutaneous septal-lateral shortening by using the PS(3) System in patients immediately prior to clinically-indicated surgical mitral valve repair. Two patients were enrolled. Patient One had severe aortic insufficiency with moderate functional mitral regurgitation. The PS(3) System reduced the MR grade from 2+ to 1+ with a decrease in the mean septal-lateral systolic (SLS) dimension from 38 to 27 mm (29% reduction). Patient Two had severe ischemic mitral regurgitation in the setting of severe multi-vessel disease and prior infero-posterior infarct. MR grade was reduced from 3+ to 1+ with a decrease in the mean SLS dimension from 36 to 25mm (31% reduction). There were no procedural complications and both patients proceeded to pre-planned cardiac surgery, where the devices were explanted under direct visualization. CONCLUSIONS: The PS(3) System has been safely translated from the preclinical setting to first-in-human implantation. Both patients studied experienced a reduction in MR after device implantation, with significant SLS shortening. Further clinical trials will be needed to assess long-term efficacy and durability.
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Palacios et al. (2007) conducted a case report in Functional and ischemic mitral regurgitation (n=2). Percutaneous septal sinus shortening [PS(3)] System was evaluated on Safety and feasibility of acute percutaneous septal-lateral shortening. Acute percutaneous septal sinus shortening using the PS(3) System was safe and feasible in two patients, reducing mitral regurgitation grade and septal-lateral systolic dimension by 29% and 31%.
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