PROSTHETIC VALVE PROSTHESIS
20230218389 · 2023-07-13
Assignee
Inventors
Cpc classification
A61F2/2412
HUMAN NECESSITIES
A61F2/90
HUMAN NECESSITIES
A61F2220/0075
HUMAN NECESSITIES
A61F2220/0091
HUMAN NECESSITIES
A61F2220/0016
HUMAN NECESSITIES
International classification
Abstract
A prosthetic valve prosthesis including a stent body and a valve leaflet assembly is disclosed. The stent body includes a first stent and a second stent. The first stent is provided with a connecting end. The second stent includes several stent rods, and the several stent rods are fixed to the connecting end of the first stent respectively. The valve leaflet assembly is provided with a first valve leaflet fixing portion, and the valve leaflet assembly is fixed to the connecting end of the first stent by the first valve leaflet fixing portion.
Claims
1. A prosthetic valve prosthesis, comprising a stent body and a valve leaflet assembly, wherein the stent body including a first stent and a second stent that are configured to be provided with a mesh frame structure, the first stent being provided with a connecting end, wherein the second stent includes several stent rods, the several stent rods are fixed to the connecting end of the first stent, and the valve leaflet assembly is configured with a first valve leaflet fixing portion, the first valve leaflet fixing portion being fixed to the connecting end of the first stent.
2. The prosthetic valve prosthesis according to claim 1, wherein the connecting end of the first stent is configured to have an arc matched with the first valve leaflet fixing portion, so that the first valve leaflet fixing portion coincides with the connecting end.
3. The prosthetic valve prosthesis according to claim 1, wherein the stent rods are configured on an end portion of the connecting end, or the stent rods are disposed by way of being configured between two adjacent valve leaflets.
4. The prosthetic valve prosthesis according to claim 3, wherein when the valve leaflet assembly is configured with a plurality of valve leaflets, a joint between two adjacent valve leaflets is configured to be a second valve leaflet fixing portion, and the valve leaflet assembly is further fixed on the stent rod by the second valve leaflet fixing portion.
5. The prosthetic valve prosthesis according to claim 1, wherein the stent rod is configured to be provided with a first end portion fixed with the first stent, the stent rod is further provided with a valve leaflet attachment portion for fixing valve leaflets and a distance from the valve leaflet attachment portion to an end surface of the first end portion accounts for 1/12 to ½ of a length of the stent rod.
6. The prosthetic valve prosthesis according to claim 1, wherein a free end of at least one of the stent rods is configured to be a hook portion for hooking native valve leaflets or tissues; and preferably, at least two of the stent rods in the second stent are configured with the hook portions.
7. The prosthetic valve prosthesis according to claim 1, wherein the second stent further comprises a valve leaflet cutting member for cutting the native valve leaflets.
8. The prosthetic valve prosthesis according to claim 7, wherein the valve leaflet cutting member is fixed to the connecting end of the first stent, and is located between two adjacent stent rods.
9. The prosthetic valve prosthesis according to claim 7, wherein the valve leaflet cutting member is configured to extend towards a direction deviated from the valve leaflet assembly, and an included angle α between the valve leaflet cutting member and an extension direction of the stent rod ranges from 0° to 90° , and preferably the included angle α ranges from 0° to 45° .
10. The prosthetic valve prosthesis according to claim 7, wherein the valve leaflet cutting member is configured with several cutting portions, and each of the cutting portions is configured to be in a triangle shape and a square shape or each of the cutting portions is provided with an arc-shaped cutting edge.
11. The prosthetic valve prosthesis according to claim 10, wherein along a direction towards which the valve leaflet cutting member extends, the several cutting portions are distributed in a continuous manner or the several cutting portions are distributed in a discontinuous manner.
12. The prosthetic valve prosthesis according to claim 1, wherein the stent body is configured to be of a non-enclosed structure; or the stent body is configured to be of an annular structure enclosed circumferentially.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] Reference for numerals: first stent 110; valve leaflet assembly 130; second stent 120; stent rod 121; first valve leaflet fixing portion 134; second valve leaflet fixing portion 135; valve leaflets (131, 132, 133); connecting end 210; first connecting end 211; second connecting end 212; third connecting end 213; first end portion 120-1; valve leaflet attachment portion 120-2; hook portion 120-3; valve leaflet cutting member 140; cutting portion 141.
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0038] In the description of the present invention, it should be noted that orientations or position relationships indicated by terms “center”, “upper”, “lower”, “left”, “right”, “vertical”, “horizontal”, “inside”, “outside” and the like are orientations or position relationships shown in the drawings, and these terms are merely for facilitating description of the present invention and simplifying the description, but not for indicating or implying that the mentioned apparatus or elements must have a specific orientation and must be established and operated in a specific orientation, and thus, these terms cannot be understood as a limitation to the present invention. Moreover, terms like “first”, “second”, “third” etc. are only used for description, not be considered as a designation or designation of relative importance.
[0039] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, meanings of terms “install”, “connected with”, and “connected to” should be understood in a board sense. For example, the connection may be a fixed connection, a removable connection, or an integral connection; may be a mechanical connection or an electrical connection; may be a direct connection or an indirect connection by using an intermediate medium; or may be intercommunication between two components. For those of ordinary skill in the art, specific meanings of the above terms in the present invention may be understood based on specific situations.
[0040] As used in the specification, singular forms “a/an,” “one,” and “the/that” include plural objects, unless otherwise explicitly stated. As used in the specification, the term “or” is usually used to include the meaning of “and/or”, unless otherwise expressly stated.
[0041] The following further describes the present invention in combination with specific embodiments.
Embodiment 1
[0042] This embodiment provides a prosthetic valve prosthesis (also referred to as a valve prosthesis). With reference to
[0043] With reference to
[0044] The first stent 110 is configured to be the mesh frame structure formed by arranging several enclosed geometrical units. The enclosed geometrical unit includes, but is not limited to, a triangle shape, a square shape, a pentagon shape, a droplet shape, a heart shape, a diamond shape and so on. Preferably, the mesh frame structure is formed by arranging the diamond shape units, so that the first stent 110 may be compressed into a delivery catheter for delivery, and the first stent 110 self-expands to recover to the original shape after being released. The stent rods 121 may be fixed at apexes of edges of the diamond units of the first stent 110, so that the overall stent body may be compressed while self-expanding.
[0045] In the prior art, the stent body is a frame structure formed by arranging several enclosed geometrical units as a whole. With reference to
[0046] In order to solve the problem of thrombosis, in the prior art, an anti-thrombus process is typically performed for the materials contacting the blood to reduce the thrombosis, but there is a risk of thrombosis. At the same time, reducing the amount of the material of the valve prosthesis for reducing the diameter of the delivery apparatus is also a major problem encountered with.
[0047] Different from the structure of the stent body and the technical concept under which the thrombosis is solved in the prior art, the stent body of this embodiment includes a first stent 110 and a second stent 120, wherein the second stent 120 includes several stent rods 121 fixed to the connecting end 210 of the first stent, and the rod-shaped structure of the stent rod 121 causes the second stent 120 to form into a relatively-sparse stent structure. Different from the solution in the prior art where both the lower ventricle middle portion and the lower ventricle lower portion are of the mesh frame structures, the second stent 120 of this embodiment may not form staggered meshes in an extension direction perpendicular to the stent rod. At the joint between the valve leaflet assembly 130 and the stent body, which is deviated from the first stent 110, the relatively-sparse structure of the second stent 120 causes the blood to be not easily deposited in this region, thereby reducing the risk of thrombosis in this region. Meanwhile, the structure of the second stent 120 further reduces the amount of the stent body material, thereby reducing the cross-section area of delivering the valve prosthesis and reducing the trauma area of the patient.
[0048] Further, when the first stent 110 is mainly anchored in the atrium and the second stent 120 is anchored in the ventricle, the structure of the second stent 120 causes the valve prosthesis to be more sparse at the side close to the outflow tract as compared to the stent body in the prior art. Therefore, when the valve prosthesis of this embodiment is used as the mitral valve, the left ventricular outflow tract obstacle may be reduced, and when the valve prosthesis is used as the aortic valve, the left ventricular outflow tract blockade may be reduced.
[0049] Since the first valve leaflet fixing portion 134 in the valve leaflet assembly 130 used for fixation has a certain arc, in some embodiments, the connecting end 210 is configured to have an extension arc matched with the first valve leaflet fixing portion 134, so that the first valve leaflet fixing portion 134 coincides completely with the connecting end 210. With this structure, the joint between the valve leaflet assembly 130 and the stent body , which is deviated from the first stent 110 are sparse structures formed by the several stent rods, thereby further reducing the risk of thrombosis in this region.
[0050] In this embodiment, the number of the stent rods 121 is 2, preferably 2 to 5. When the number of the stent rods is too large, the amount of the stent body material and the cross-section area of the delivery apparatus are increased, thereby increasing the trauma area; when the number of the stent rods is too small, enough fixing forces may not be provided to the valve leaflets to ensure the smooth opening and closure of the valve leaflets.
[0051] The stent rod 121 may be located at any position of the connecting end 210 of the first stent. In some embodiments, the valve prosthesis is used to replace the native valve leaflets with local lesions; the stent body is configured to be of a non-enclosed structure such as a fan structure, which may be used with the cooperation of the native posterior valve leaflets when the mitral valve anterior valve leaflets are repaired and may be used with the cooperation of the native anterior valve leaflets when the mitral valve posterior valve leaflets are repaired. Naturally, this structure may be used to repair the aortic valve or the tricuspid valve, and the stent body and the valve leaflet assembly 130 are configured according to different objects to be repaired.
[0052] With continuous reference to
[0053] With reference to
[0054] The second stent 120 may provide fixing positions for the valve leaflets, and optionally the fixing positions may be any position located on the stent rods 121. Specifically, with reference to
[0055] Further, the valve leaflet attachment portion 120-2 is configured to have several stitching holes, and the stitching holes are in a diamond shape, a circle shape, a triangle shape, and so on, preferably the circle shape. Circle-shaped holes may disperse the force of the stent rod exerted by the valve leaflet assembly 130 on the stent rod 121 uniformly, thereby increasing the endurance property of the stent rod 121. The number of the stitching holes may be 1 to 10, preferably 2 to 5. The more the number of the stitching holes is, the weaker the strength of the stent rod is; the less the number of the stitching holes is, the weaker the supporting force of the valve leaflet assembly 130 exerted by the stent rod is.
[0056] Further, the first end portion 120-1 may be configured to be in a columnar shape or a prism shape (e.g., quadrangular prism), and preferably the first end portion 120-1 may be configured to be in a trumpet shape. As shown in
[0057] In some embodiments, the shape of the free end of the stent rod 121 may be a cylindrical shape or a conical shape; preferably, the free end of the stent rod 121 is configured to be the hook portion 120-3 of a hook shape. The hook portion 120-3 of the free end of the stent rod 121 may hook the native valve leaflets or the tissues to play a fixing role for the stent body, and the movement range of the native valve leaflets is limited, thereby further reducing the risk of blocking the outflow tract by the native valve leaflets.
[0058] In some preferred embodiments, at least two of the stent rods 121 in the second stent 120 are configured with the hook portion 120-3. The more the number of the hook portion 120-3 is, the stronger the force applied to the native valve leaflets is, preventing the outflow tract obstacle during the cardiac systole due to the native valve leaflets. Preferably, the stent rods 121 configured with the hook portion 120-3 should be configured at two sides of a middle point C of the connecting end 210 of the first stent symmetrically. As shown in
[0059] In some embodiments, an included angle γ between the second stent 120 and the first stent 110 ranges from 10° to 175° , and preferably, the included angle γ ranges from 90° to 160° , as shown in
[0060] In a preferred embodiment, the second stent 120 further includes a valve leaflet cutting member 140 for cutting the native valve leaflets; for example, when the mitral valve is repaired, the larger native valve leaflets may be cut by the valve leaflet cutting member 140 to avoid the outflow tract from being blocked by the oversized native valve leaflets, with reference to
[0061] The side where the valve leaflet assembly 130 locates is served as an inner side of the stent body or the valve prosthesis. In some embodiments, the valve leaflet cutting member 140 is configured to extend towards a direction deviated from the valve leaflet assembly 130, and with reference to
[0062] In some embodiments, the valve leaflet cutting member 140 is configured with several cutting portions 141. With reference to
[0063] In some embodiments, if the cutting portions 141 are disposed in a continuous manner along the direction in which the valve leaflet cutting member 140 extends, as shown in
[0064] With continuous reference to
[0065] In a specific embodiment, the cutting portions 141 may be configured to be received in the valve leaflet cutting member 140 when in an implanted state, and when in use, the cutting portions 141 may be exposed by an operation of rotating a handle for achieving the cutting operation.
[0066] In some embodiments, the prosthetic valve is used to replace the mitral valve, the tricuspid valve, or the aortic valve, and then the stent body should be constructed as an annular enclosed structure. In other words, the first stent 110 is constructed as the annular enclosed structure circumferentially, the valve leaflet assembly 130 is fixed to an inner circumference side of the annular stent body, and the stent rods 121 of the second stent 120 are distributed circumferentially along the first stent 110. At this time, the stent body material may be a balloon-expandable material.
[0067] Specifically, the first stent 110 and the second stent 120 mentioned above are connected fixedly with each other by way of including, but not limited to, welding, fixing with clips, stitching, or preparing integrally. These two parts are preferably prepared integrally, reducing the preparation processes, enhancing the connection strength, and providing a support force to the activities of the valve leaflets. The valve leaflet assembly 130 is fixedly connected with the second stent 120 by way of including, but not limited to, welding, fixing with clips, or preparing integrally, preferably stitching. Further, to increase the biocompatibility of the second stent 120, biocompatible materials such as PET and PTFE may be covered outside.
[0068] According to the valve prosthesis in this embodiment, since the design of the stent rods of the second stent 120 substitutes the mesh frame structure of the lower ventricle middle portion and the lower ventricle lower portion in the prior art, the amount of the stent body material is reduced, and the side of the connection between the valve leaflet assembly and the second stent is the sparse structure formed by the stent rods, so that the blood is not easy to be deposited here, thereby reducing the risk of thrombosis. At the same time, the reduction of the blockade or obstacle of the outflow tract is facilitated.
[0069] Compared with a frame structure consisting of several enclosed geometric units in the prior art, the second stent of this invention mainly consists of several stent rods, so that the amount of the stent body material of this invention is reduced, thereby reducing a cross section area of a delivery apparatus and reducing a trauma area of a patient; in addition, the stent structure of a region sandwiched between the valve leaflets and the second stent is relatively sparse, so that the blood is not easily deposited there, thereby reducing a risk of thrombosis.
[0070] The above disclosure is only the preferred embodiment of this invention, the preferred embodiment does not describe all the details in detail. It should be understood that these embodiments are only used for illustrating this invention, but not for the limitation of the scope of this invention. This invention is limited only by the claims and its full scope and equivalents.
[0071] The present invention selects and specifically describes the embodiments with the purpose of better explain the principle and practical use of the present invention, such that a person skilled in the art can well utilize the present invention. Obviously, according to the contents of this specification, there are many modifications and changes that can be made. In practical application, the improvements and adjustments made by those skilled in the art according to this invention still fall within the scope of protection of this invention. The technical characteristics in the different embodiments above can be combined arbitrarily without conflict.