Percutaneous or Minimally Invasive Cardiac Valve Repair System and Methods of Using the Same
Percutaneous or minimally invasive systems configured to deliver a synthetic chord to an internal body location are provided. Aspects of the percutaneous or minimally invasive systems include a synthetic chord present in a percutaneous minimally invasive delivery device. The systems and methods of the invention find use in a variety of applications, such as cardiac valve, e.g., mitral valve, repair.
1 . A synthetic chord comprising:
(a) a first flexible connector comprising a first end and a second end;
(b) an attachment element comprising a tissue piercing member and a securing member located at the first end of the flexible connector, wherein the securing member transitions from a linear to a planar configuration upon separation of the tissue piercing member from the attachment element; and
(c) a reinforcing element located at a second end of the flexible connector.
2 . The synthetic chord device according to claim 1 , wherein the linear configuration is one that lacks a secondary structure and the planar configuration is one that has a secondary structure.
3 . The synthetic chord device according to claim 2 , wherein the secondary structure is a spiral configuration.
4 . The synthetic chord device according to claim 3 , wherein the spiral configuration has 1.5 turns.
5 . The synthetic chord device according to claim 3 , wherein the securing member includes a planar maintenance structure.
6 . The synthetic chord device according to claim 1 , wherein the linear configuration comprises the securing member having a longitudinal axis at least substantially parallel to the longitudinal axis of the flexible connector and the planar configuration comprises the securing member having a longitudinal axis at least substantially perpendicular to the longitudinal axis of the flexible connector.
7 . The synthetic chord device according to claim 6 , wherein the securing member is a bar.
8 . The synthetic chord device according to claim 1 , wherein the securing member comprises a shape memory material.
9 . The synthetic chord device according to claim 1 , wherein the securing member and tissue piercing member of the attachment element are separated from each other by a second flexible connector.
10 . The synthetic chord device according to claim 1 , wherein the tissue piercing member and securing member are operably connected to each other by an interlocking member.
11 . The synthetic chord device according to claim 1 , wherein the reinforcing element is a pledget.
12 . The synthetic chord device according to claim 1 , wherein the device comprises a third flexible member attached to the reinforcing element at a first end and a second attachment element at a second end, wherein the second attachment element comprises a tissue piercing member and a securing member that transitions from a linear to a planar configuration upon separation of the tissue piercing member from the attachment element.
13 . The synthetic chord device according to claim 12 , wherein the first and third flexible members form a continuous flexible structure.
14 . A method for connecting a first tissue to a second tissue, the method comprising:
(a) passing a tissue piercing member of a synthetic chord device according to claim 1 through the first tissue so that the reinforcing element contacts the first tissue;
(b) passing the tissue piercing member through the second tissue; and
(c) separating the tissue piercing member from the attachment element to transition the securing element to a planar configuration and connect the first tissue to the second tissue.
15 . A kit comprising:
a set of two or more synthetic chord devices according to claim 1 .