DRUG DELIVERY DEVICE
20170319818 · 2017-11-09
Inventors
Cpc classification
A61M25/0041
HUMAN NECESSITIES
A61B17/22
HUMAN NECESSITIES
A61M25/007
HUMAN NECESSITIES
A61M2025/09141
HUMAN NECESSITIES
A61M25/0068
HUMAN NECESSITIES
International classification
A61B17/22
HUMAN NECESSITIES
Abstract
The present disclosure provides for a fluid delivery device for a body vessel and a method of use. The fluid delivery device may have an elongate member having a proximal end extending along the longitudinal axis to a closed distal end. The elongate member may also have an inner wall defining a fluid delivery lumen and a wire guide lumen. The elongate member may have a tapered region and a distal portion between the proximal and distal ends. The device may have a first state for device delivery to the treatment site.
Claims
1. A device for fluid delivery in a body vessel having a vessel wall, the device comprising: an elongate member having a proximal end extending along a longitudinal axis to a distal end, the elongate member having an inner wall disposed at the proximal end and distally extending to the distal end, the inner wall defining a fluid delivery lumen and a wire guide lumen, the elongate member having a tapered region between the proximal and distal ends, the tapered region having a tapered diameter distally decreasing along the longitudinal axis such that the fluid delivery lumen has a first cross-sectional area proximal the tapered region and a second cross-sectional area distal the tapered region, the first cross-sectional area being greater than the second cross-sectional area, the elongate member having a distal portion distally extending from the tapered region to the distal end and having a plurality of holes formed therethrough, the distal portion being non-spiral in a first state for device delivery and being spiral in a second state for fluid delivery; and a wire guide disposed in the wire guide lumen, one of the wire guide and the distal portion comprising a shape-memory material such that the distal portion moves between the first state and the second state, providing fluid delivery from the fluid delivery lumen and through the holes of the distal portion to the vessel wall.
2. The device of claim 1 wherein the inner wall defines the wire guide lumen being within the fluid delivery lumen, the elongate member having an outer wall formed to close the fluid delivery lumen at the distal end.
3. The device of claim 1 wherein the wire guide lumen has a third cross-sectional area and an inner diameter being constant along the longitudinal axis.
4. The device of claim 3 wherein the third cross-sectional area is smaller than the second cross-sectional area.
5. The device of claim 1 wherein the wire guide comprises the shape-memory material being Nitinol.
6. The device of claim 1 wherein the distal portion comprises the shape-memory material being Nitinol.
7. The device of claim 1 wherein the taper region comprises a first material with a first durometer and the distal portion comprises a second material with a second durometer, the second durometer being less than the first durometer.
8. The device of claim 1 wherein the first cross-sectional area has a first flow rate therethrough and the second cross sectional area has a second flow rate therethrough, the first flow rate being greater than the second flow rate.
9. The device of claim 1 wherein each hole of the plurality of holes is equidistance from all adjacent holes.
10. The device of claim 1 wherein the plurality of holes being formed in longitudinal rows arranged to contact the vessel wall in the second state.
11. The device of claim 1 wherein the elongate member has an elongate length from the proximal end to the distal end, the elongate length being about 100 centimeters, the distal portion having a portion length being about 5 centimeters.
12. The device of claim 1 wherein each hole of the plurality of holes has a hole diameter being about 0.002 inches.
13. The device of claim 1 wherein the spiral of the distal portion has a pitch being about 26 millimeters.
14. The device of claim 1 wherein the first cross-sectional area has a first circumference about three to about nine French.
15. The device of claim 1 further comprising a lubricious coating disposed about the distal portion and the distal end.
16. The device of claim 1 wherein the distal end comprises an atraumatic tip.
17. A device for fluid delivery in a body vessel having a vessel wall, the device comprising: an elongate member having a proximal end extending along a longitudinal axis to a distal end, the elongate member having an inner wall disposed at the proximal end and distally extending to the distal end, the inner wall defining a fluid delivery lumen and a wire guide lumen being within the fluid delivery lumen, the elongate member having an outer wall formed to close the fluid delivery lumen at the distal end and having a distal portion distal the proximal end, the distal portion extending to the distal end and having a plurality of holes formed therethrough, the distal portion being non-spiral in a first state for device delivery and being spiral in a second state for fluid delivery; and a wire guide disposed in the wire guide lumen, one of the wire guide and the distal portion comprising a shape-memory material such that the distal portion moves between the first state and the second state, providing fluid delivery from the fluid delivery lumen and through the holes of the distal portion to the vessel wall.
18. A method of fluid delivery in a body vessel having a vessel wall, the method comprising: disposing a medical device in the body vessel, the device comprising; an elongate member having a proximal end extending along a longitudinal axis to a distal end, the elongate member having an inner wall disposed at the proximal end and distally extending to the distal end, the inner wall defining a fluid delivery lumen and a wire guide lumen, the elongate member having a tapered region between the proximal and distal ends, the tapered region having a tapered diameter distally decreasing along the longitudinal axis such that the fluid delivery lumen has a first cross-sectional area proximal the tapered region and a second cross-sectional area distal the tapered region, the first cross-sectional area being greater than the second cross-sectional area, the elongate member having a distal portion distally extending from the tapered region to the distal end and having a plurality of holes formed therethrough, the distal portion being non-spiral in a first state for device delivery and being spiral in a second state for fluid delivery; and a wire guide disposed in the wire guide lumen, one of the wire guide and the distal portion comprising a shape-memory material such that the distal portion moves between the first state and the second state, providing fluid delivery from the fluid delivery lumen and through the holes of the distal portion to the vessel wall; moving the wire guide in one of a proximal direction and a distal direction to move the distal portion from the first state to the second state; and delivering a fluid through the fluid delivery lumen and through the plurality of holes of the distal portion to the vessel wall.
19. The method of claim 17 wherein the step of moving the wire guide comprising moving the wire guide in the proximal direction to move the distal portion from the first state to the second state.
20. The method of claim 17 wherein the step of moving the wire guide comprising moving the wire guide in the distal direction to move the distal portion from the first state to the second state.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION
[0025] The present disclosure will now be described more fully with reference to the accompanying figures, which show preferred embodiments. The accompanying figures are provided for general understanding of the structure of various embodiments. However, this disclosure may be embodied in many different forms. These figures should not be construed as limiting and they are not necessarily to scale.
[0026]
[0027] In
[0028] The elongate member 18 may have an elongate length L from the proximal end 22 to the distal end 24. In some embodiments, the elongate length L may be about 100 cm. “About” or “substantially” mean that a given quantity is within 10%, preferably within 5%, more preferably within 1%. The elongate member 18 may also have an inner wall (discussed further in
[0029] Although not visible in
[0030] The elongate member 18 may also have a tapered region 44. The tapered region 44 may have a tapered diameter 46 distally decreasing along the longitudinal axis A such that the fluid delivery lumen has a first cross-sectional area (2A) proximal the taper region 44 and a second cross-sectional area (2B) distal the taper region 44.
[0031] The elongate member 18 may have a distal portion 50 distally extending from the tapered region 44 to the distal end 24. The distal portion 50 may have a plurality of holes 52 formed therethrough.
[0032] The device may further comprise a wire guide 68 disposed in the wire guide lumen. It will be understood that even though the wire guide 68 is visible in
[0033] Nitinol is a metal alloy of nickel and titanium having unique shape memory setting properties and being biocompatible. At a transition temperature, Nitinol may undergo a phase change from Martensite to Austenite, changing its structure. In addition to this phase change ability, Nitinol is also quite flexible.
[0034] As shown in
[0035] In
[0036] In a second configuration, the distal tip 50 may not contain the shape-memory material to form a spiral. Instead, the wire guide 68 may contain the shape-memory material (e.g. Nitinol) to form a spiral. As shown in
[0037] In either configuration, the part of the device comprising the shape-memory material may change from martensite to austenite configuration by a change in temperature (i.e. body temperature) or by restricting the part comprising the shape-memory material, such as by constricting the shape-memory material with the stiffness of the other of the wire guide 68 or the distal portion 50 (i.e. constricting the shape-memory material with whichever part does not contain the shape-memory material).
[0038] In either configuration, the distal portion 50 may have a change in material from the rest of the elongate member such that it forms a floppy or flexible distal portion 50. This flexible portion may better accommodate the change from the first state to the second state. In some embodiments, the distal portion 50 may have a portion length being about 5 centimeters (cm) to about 10 centimeters. In one example, the length may be 8 centimeters.
[0039] For example in
[0040] In
[0041] The device may further comprise a lubricious coating disposed about the distal portion 50 and/or the distal end 24. In addition, the distal end 24 may comprise a rounded or atraumatic tip. A skilled artisan will understand that such a coating and/or an atraumatic tip may facilitate device delivery to the treatment site without damage to the vessel wall.
[0042] Lines 2A and 2B of
[0043] In
[0044] As discussed above, an outer wall may be formed to close the fluid delivery lumen 30 at the distal end. Contrastingly, the wire guide lumen 28 may be open at the distal end to allow the wire guide to pass through. Alternatively, the wire guide lumen 28 may be closed at the distal end by the outer wall such that the wire guide may only advance to the distal end.
[0045]
[0046] Because of the taper region, the second cross-sectional area distal the taper region may have a second flow rate 42 therethrough. The first flow rate 36 may be greater than the second flow rate 42. Because of this change in flow rate, the taper region may allow the practitioner to deliver a fluid F with a lower fluid pressure along the elongate length to the taper region. When the fluid reaches the taper region, the fluid pressure may increase such that the fluid flow rate 42 slows down from the fluid flow rate 36, giving the practitioner greater control of the fluid flow to the vessel wall 14.
[0047] Line 4A is shown in
[0048]
[0049]
[0050] In this manner that the practitioner may use the device to locally deliver a fluid or drug to an intended treatment site of the vessel wall. It will be understood that even though the fluid may be delivered to the vessel wall, some fluid may be allowed to flow into the vessel lumen with the blood flow. The practitioner may desire to deliver the fluid in a bolus of fluid or a steady stream of fluid delivery. Additionally, the step of delivering a fluid through the fluid delivery lumen may include delivering tPA.
[0051] It should be understood that the foregoing relates to exemplary embodiments of the disclosure and that modifications may be made without departing from the spirit and scope of the disclosure as set forth in the following claims. While the disclosure has been described with respect to certain embodiments it will be appreciated that modifications and changes may be made by those skilled in the art without departing from the spirit of the disclosure.