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October 7, 2003Circulation204 citationsOpen Access

Endovascular Edge-to-Edge Mitral Valve Repair

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FGFrederick G. St. GoarJFJames I. FannJKJan Komtebedde

Structured PICO

Does an endovascular edge-to-edge mitral valve repair system successfully create a double-orifice valve in a nondiseased porcine model?

P
Population
Adult pigs (n=14) in a nondiseased porcine model
I
Intervention
Endovascular edge-to-edge mitral valve repair using an implantable clip delivered transseptally via femoral vein access
O
Outcome
Successful approximation of the middle scallops of the anterior and posterior leaflets to create a double-orifice valve, confirmed by echo and immediate postmortem examinationsurrogate

This study provides the first preclinical evidence that an endovascular edge-to-edge mitral valve repair is feasible, laying the groundwork for percutaneous treatment of mitral regurgitation in humans.

Abstract

BACKGROUND: The edge-to-edge technique is an accepted method for the surgical repair of a regurgitant mitral valve. This study reports the initial use of an endovascular technology that enables a double-orifice edge-to-edge mitral valve repair without cardiopulmonary bypass in an animal model. METHODS AND RESULTS: Adult pigs (n=14) were anesthetized, and left thoracotomy was performed for epicardial echo imaging. Using femoral vein access, a steerable guide catheter was placed transseptally into the left atrium. An implantable clip designed to grasp and approximate the middle scallops of the anterior and posterior mitral leaflets was introduced through the guide catheter. The clip was opened in the left atrium, advanced through the mitral orifice, and retracted to grasp the leaflet edges. When a functional double-orifice valve was confirmed by echo, the clip was closed to coapt the leaflets and detached from the delivery catheter. Before final clip detachment, echo demonstrated a double orifice in all 14 animals. In 2 studies, the clip released from the anterior mitral leaflet. Retrospective analysis of echo images indicated an incomplete grasp of the anterior leaflet. Immediate postmortem examination revealed that the clip successfully approximated the middle scallops of the anterior and posterior leaflets in all 12 double-orifice studies. CONCLUSIONS: This study demonstrates for the first time that an endovascular system can be successfully used to perform the edge-to-edge repair technique in a nondiseased porcine model. This technique is potentially applicable as a percutaneous catheterization laboratory procedure for the treatment of mitral regurgitation in humans.

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Goar et al. (2003) studied this question.

synapsesocial.com/papers/6a20949fbacd3839888a2dcahttps://doi.org/10.1161/01.cir.0000096052.78331.ca
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