Annuloplasty Implant
20200360143 · 2020-11-19
Inventors
- Ger O'Carroll (Co. Sligo, IE)
- Mark Pugh (Co. Sligo, IE)
- Adrian Moran (Co. Sligo, IE)
- Hans-Reinhard Zerkowski (Kreuzlingen, CH)
- Olli Keränen (Bjärred, SE)
Cpc classification
A61F2/2445
HUMAN NECESSITIES
A61F2/2454
HUMAN NECESSITIES
A61F2230/0091
HUMAN NECESSITIES
International classification
Abstract
An annuloplasty implant comprising an inner core of a shape memory material, an outer covering arranged radially outside said inner core material to cover at least part of said inner core, wherein said outer covering is resilient to conform to said inner core during movement of said shape memory material, wherein said outer covering comprises a material having surface properties to promote endothelialization. Two portions of the implant may be joined by a recess to be flexible with respect to each other by a bending motion at the recess. The two portions may also have a predefined breaking point at the recess.
Claims
1. An annuloplasty implant comprising: an inner core of a shape memory material and an outer covering arranged radially outside said inner core memory material to cover at least part of said inner core, wherein: said outer covering is resilient to conform to said inner core during movement of said shape memory material, and said outer covering comprises a first material having surface properties to promote endothelialization.
2. The annuloplasty implant according to claim 1, wherein said outer covering comprises a spiral wound around said inner core.
3. The annuloplasty implant according to claim 1, wherein said outer covering comprises a mesh or braiding of strands.
4. The annuloplasty implant according to claims 1, wherein said outer covering has a predefined surface porosity or roughness to start endothealialization within a set time period.
5. The annuloplasty implant according to claims 1, wherein said outer covering covers substantially the entire core in a longitudinal direction of the implant.
6. The annuloplasty implant according to claims 1, wherein said implant comprises a catheter deliverable ring and wherein said catheter deliverable ring has an elongated delivery configuration for advancement in a catheter and an implanted shape assuming a predefined configuration of said shape memory material for positioning at a heart valve annulus.
7. The annuloplasty implant according to claim 6, wherein said catheter deliverable ring in the implanted shape comprises first and second support members arranged in a coiled configuration, and is adapted to be arranged on opposite sides of native heart valve leaflets to pinch said leaflets.
8. The annuloplasty implant according to claim 7, wherein said outer covering covers the first and second support members.
9. The annuloplasty implant according to claim 1, comprising a recess along a portion of said implant to reduce the cross-sectional area thereof at said recess.
10. The annuloplasty implant according to claim 9, wherein two portions of said implant are joined at said recess and are flexible with respect to one other by a bending motion at said recess.
11. The annuloplasty implant according to claim 10, wherein said two portions have a predefined breaking point at said recess.
12. The annuloplasty implant according claim 9, comprising a plurality of said recesses along a longitudinal direction of said implant.
13. The annuloplasty implant according to claim 9, wherein said covering is arranged over said recess.
14. The annuloplasty implant according to claim 1, wherein said first material comprises a first metal alloy.
15. The annuloplasty implant according to claim 1, wherein said inner core comprises a second material, different from said first material, and wherein said second material comprises a second metal alloy.
16. An annuloplasty implant comprising a shape memory material and a recess along a portion of said implant to reduce the cross-sectional area thereof at said recess, wherein two portions of said implant are joined at said recess and are flexible with respect to each other by a bending motion at said recess.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] These and other aspects, features and advantages of which embodiments of the invention are capable of will be apparent and elucidated from the following description of embodiments of the present invention, reference being made to the accompanying drawings, in which
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DESCRIPTION OF EMBODIMENTS
[0032] Specific embodiments of the invention will now be described with reference to the accompanying drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art. The terminology used in the detailed description of the embodiments illustrated in the accompanying drawings is not intended to be limiting of the invention. In the drawings, like numbers refer to like elements.
[0033] The following description focuses on an embodiment of the present invention applicable to cardiac valve implants such as annuloplasty rings. However, it will be appreciated that the invention is not limited to this application but may be applied to many other annuloplasty implants and cardiac valve implants including for example replacement valves, and other medical implantable devices.
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[0035] The outer covering 102 may comprise a spiral 103 wound around the inner core 101, as illustrated in the detailed view of
[0036] The outer covering may comprise a mesh or braiding 104 of strands, as illustrated in the detailed view of
[0037] The outer covering 102 may have a predefined surface porosity or roughness to start endothealialization within a set time period. Thus it is possible to customize the surface properties to attain the desired endothealialization process, to minimize embolism.
[0038] The outer covering 102 may cover substantially the entire core 101 in the longitudinal direction 107 of the implant 100, 200. This may provide for optimized endothealialization across the entire length of the implant. The covering may also have different properties on different parts of the implant 100, 200. In case having a coil shaped ring the ring placed towards the atrium or the ventricle may have different properties than the other ring.
[0039] The implant may comprise a catheter deliverable ring 100, wherein said ring has an elongated delivery configuration for advancement in a catheter and an implanted shape assuming a predefined configuration of said shape memory material for positioning at a heart valve annulus. Thus the ring in the implanted shape may comprise a first 105 and second 106 support members arranged in a coiled configuration, and being adapted to be arranged on opposite sides of native heart valve leaflets to pinch said leaflets.
[0040] The outer covering may cover the first and second support members. Alternatively, the covering may only be provided at one of the rings, or have different properties for the rings as mentioned above.
[0041] The annuloplasty implant 100, 200, may comprise a recess 108 along a portion of the implant to reduce the cross-sectional area thereof at said recess, as illustrated in
[0042] Two portions 109, 110 of the implant 100, 200 may thus be joined at said recess 108 and be flexible with respect to each other by a bending motion at the recess 108. The recess can thus serve to increase the flexibility of the implant, at defined locations where more movement is desired. The recess is provided in the inner core 101 of the shape memory material.
[0043] The two portions 109, 110, may also have a predefined breaking point at the recess 108. Thus since the amount of material is less at the reduced cross-section of the implant it is possible to define preferred breaking points of the implant, to avoid random breaking in case of material fatigue occurs after a long time. The location of the breaking point can thus be positioned to not cause any damage to the patient. Further, even if the core material is not broken, the material properties may change over time, e.g. becoming less flexible due to material hardening, and the recess will thus still provide flexibility to the implant.
[0044] The annuloplasty implant may comprise a plurality of said recesses 108, 108, along a longitudinal direction 107 of said implant, as seen in
[0045] The covering may be arranged over said recess. In case of having a covering 102, the will also be an additional increase in safety since the covering will prevent any broken parts to be dislodged into the patient.
[0046] The first material may comprise a first metal alloy that is bio compatible, such as stainless steel, NiTinol, or any other metal alloy that is suitable for formation of endothelia. In addition of the advantageous properties of such metal alloy for the endothelialization process, the metal alloy covering over the inner core provides for reduced friction against a delivery catheter, compared to e.g. surfaces being more porous and/or having higher friction coefficients such as textile coverings. It is also conceivable to have a polymer covering that also has a very low friction coefficient, similar to that of the surface of a metal alloy. This may thus facilitate delivery of the implant, and allowing a more controlled delivery, since the implant moves more easily through the delivery catheter. It is thus possible to optimize the outer covering for providing advantageous formation of endothelia, while at the same time reducing friction, and further having the inner core optimized for the desired shape-memory properties as described above. The effect of having reduced friction can also be advantageously combined with having the recess 108, 108, in the core material, providing for the advantageous effects as described above with respect to the recess 108, 108.
[0047] Having a metal alloy as outer covering provides also for a compact implant with a minimized cross-sectional dimension, while allowing for the optimization of the shape memory properties of the core material simultaneous as having the optimized properties of the covering with respect to endothelialization, as well as the low-friction properties described in the foregoing. The compact cross-sectional dimension allows for using a thinner catheter, that can be advantageous in some procedures, and/or facilitates the simultaneous use of additional instruments that can be inserted in parallel lumens of the catheter during the procedure.
[0048] The covering may comprise any polymer and is not limited to a metal alloy.
[0049] The inner core may comprise a second material such as a second metal alloy, different from said first material or first metal alloy, such as NiTinol, or any other alloy that provides for the desired shape memory effect. The inner core may comprise any polymer and is not limited to a metal alloy. Both metal alloys and polymers can be treated during manufacturing to have a desired heat-set shape, which is the shape the implant strives towards when any restraining force is removed, i.e. the relaxed shape, such as when the implant is pushed out of the delivery catheter which forces the implant into an elongated shape. It is also possible that the implant assumes the desired implanted shape by activation of the shape memory function of the material, such as by addition of energy, e.g. heating, electromagnetic energy etc, or by mechanical restructuring of the material.
[0050] It is also disclosed an annuloplasty implant without a covering according to one embodiment of the invention. Such annuloplasty implant comprises a shape memory material and a recess 108 along a portion of said implant to reduce the cross-sectional area thereof at said recess, wherein two portions 109, 110 of said implant are joined at said recess and are flexible with respect to each other by a bending motion at said recess. This provides for the above mentioned advantages.
[0051] The present invention has been described above with reference to specific embodiments. However, other embodiments than the above described are equally possible within the scope of the invention. The different features and steps of the invention may be combined in other combinations than those described. The scope of the invention is only limited by the appended patent claims.
[0052] More generally, those skilled in the art will readily appreciate that all parameters, dimensions, materials, and configurations described herein are meant to be exemplary and that the actual parameters, dimensions, materials, and/or configurations will depend upon the specific application or applications for which the teachings of the present invention is/are used.