SUBMUCOSAL DRUG DELIVERY APPARATUSES, SYSTEMS, AND METHODS
20210023295 ยท 2021-01-28
Inventors
Cpc classification
A61B17/3468
HUMAN NECESSITIES
A61M25/0041
HUMAN NECESSITIES
A61B1/05
HUMAN NECESSITIES
A61B17/24
HUMAN NECESSITIES
International classification
A61M5/145
HUMAN NECESSITIES
A61B1/00
HUMAN NECESSITIES
A61B1/05
HUMAN NECESSITIES
A61B17/24
HUMAN NECESSITIES
Abstract
The present disclosure relates to apparatuses and methods of depot delivery of therapeutic agents. The apparatuses provide a drug delivery device including a catheter component having a stem portion and a branch portion. The catheter component includes a pre-defined bend such that the branch portion is angled with respect to the stem portion at an obtuse angle. The branch portion includes a dissecting head and at least one delivery port. The device includes a dilation balloon positioned on the branch portion between the pre-defined bend and the dissecting head, a drug delivery reservoir fluidly coupled to the at least one drug delivery port and a handle portion.
Claims
1. A drug delivery device comprising: a catheter component comprising a stem portion and a branch portion, the catheter component comprising a pre-defined bend such that the branch portion is angled with respect to the stem portion at an obtuse angle, the branch portion comprising a dissecting head and at least one delivery port; a dilation balloon positioned on the branch portion between the pre-defined bend and the dissecting head, the dilation balloon configured to expand around at least a portion of a cylindrical wall of the branch portion; a drug delivery reservoir fluidly coupled to the at least one drug delivery port through the branch portion and through at least a portion of the stem portion; and a handle portion coupled to the stem portion.
2. The drug delivery device of claim 1, wherein the branch portion is angled with respect to the stem portion at an obtuse angle about two axes.
3. The drug delivery device of claim 1, further comprising an outer sheath positioned between the pre-defined bend and the dilation balloon.
4. The drug delivery device of claim 3, wherein the branch portion is configured to retract into and extend from the outer sheath at the obtuse angle.
5. The drug delivery device of claim 3, wherein at least a portion of the branch portion is configured to retract into and extend from the outer sheath at the obtuse angle.
6. The drug delivery device of claim 4, wherein the dilation balloon is configured to retract into and extend from the outer sheath at the obtuse angle with the branch portion.
7. The drug delivery device of claim 3, wherein the branch is configured to extend 2-3 cm pass the outer sheath.
8. The drug delivery device of claim 1, comprising an endoscope positioned adjacent to the pre-defined bend so as to have a field of view of the dissecting head.
9. The drug delivery device of claim 8, wherein the endoscope comprises a camera.
10. The drug delivery device of claim 1, wherein the dissecting head comprises a flattened disc geometry.
11. The drug delivery device of claim 1, wherein the dissecting head comprises a beveled edge.
12. The drug delivery device of claim 1, wherein the dissecting head comprises a cannula having a diameter in the range of 0.25 mm and 3 mm.
13. The drug delivery device of claim 1, further comprising a pump communicably coupled to the drug delivery reservoir and configured to move a drug from the drug delivery reservoir to the at least one delivery port.
14. The drug delivery device of claim 13, wherein the pump comprises a plunger assembly.
15. The drug delivery device of claim 1, wherein the obtuse angle is in the range of 155-170 degrees.
16. The drug delivery device of claim 1, wherein the branch portion has a length in the range of 10-20 cm.
17. The drug delivery device of claim 1, wherein the balloon has length in the range of 1-4 cm.
18. The drug delivery device of claim 1, wherein the balloon has a diameter in the range of 0.1-3 mm.
19. The drug delivery device of claim 1, wherein the branch portion extends upstream and downstream of the balloon portion such that the balloon is positioned between the dissecting head a section of the branch portion that is narrower than balloon in an inflated state, whereby the entry to the depot upon retraction of the branch portion is narrower than the depot.
20. The drug delivery device of claim 1, wherein the reservoir contains a therapeutically effective amount of a drug for treating a central nervous system disorder.
21. The drug delivery device of claim 1, wherein the dissecting head is configured to create an opening having a cross sectional area that is smaller than a cross sectional area of the dilation balloon when inflated.
22. A method of drug delivery, the method comprising: inserting a catheter component of a drug delivery device into a submucosal tissue by penetrating the tissue via a dissecting head positioned at an end of branch portion of the catheter component extending from a stem portion of the catheter component, the catheter component comprising a pre-defined bend such that the branch portion is angled with respect to the stem portion at an obtuse angle, creating a depot in the submucosal tissue by inflating a dilation balloon positioned on the branch portion between the pre-defined bend and the dissecting head to compress the submucosal tissue; deflating the dilation balloon; and ejecting a drug through a delivery port in the dissecting head, the drug pumped from a drug reservoir through the stem portion and the branch portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The skilled artisan will understand that the drawings primarily are for illustrative purposes and are not intended to limit the scope of the inventive subject matter described herein. The drawings are not necessarily to scale; in some instances, various aspects of the inventive subject matter disclosed herein may be shown exaggerated or enlarged in the drawings to facilitate an understanding of different features. In the drawings, like reference characters generally refer to like features (e.g., functionally similar and/or structurally similar elements).
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[0049] The features and advantages of the inventive concepts disclosed herein will become more apparent from the detailed description set forth below when taken in conjunction with the drawings.
DETAILED DESCRIPTION
[0050] Following below are more detailed descriptions of various concepts related to, and exemplary embodiments of, inventive systems, methods, and components related to optical fiber coupling systems.
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[0052] The catheter component 100 includes a dissecting head 106 positioned at the tip of the branch portion 104. The dissecting head 106 is on a leading edge of the branch portion 104 to create a pinhole opening through the olfactory mucosa tissue as the drug delivery device is advanced therein. The dissecting head 106 includes a flattened disc geometry (e.g., flat semi-circular) in certain implementations. The dissecting head 106 includes a tapered or beveled geometry in certain implementations. The dissecting head comprises a port coupled via a channel extending through the branch portion 104 and at least a portion of the stem portion 102. Accordingly, the dissecting head is configured as a cannula or a needle tip in certain implementations. The port provides a pathway for fluids to be delivered through the catheter component 100 to the depot created thereby. In certain implementations, the port is used to retrieve anatomical fluids. The port is connected to a reservoir 118 in certain implementations. The reservoir 118 can be positioned adjacent to and/or in a handle portion 116. The reservoir 118 is used to hold a drug or the therapeutic agent for delivery. The drug can be pumped from the reservoir 118 to the port via an actuator generating a change in pressure in the catheter component 100. The drug can include a liquid, a gel (e.g., thermosensitive gels), and/or a solid in accordance with certain implementations.
[0053] The catheter component 100 also includes a dilation balloon 108, positioned on the branch portion. The dilation balloon 108 is positioned between the pre-defined bend in the catheter component and the dissecting head 106. The dilation balloon 108 is configured to expand upon actuation. The actuation can be initiated via an actuator button positioned on or near the handle 116. In some implementations, the dilation balloon is fluidly coupled to a fluid source for increasing the volume of the balloon. Expansion of the dilation balloon creates the olfactory submucosal depot by compressing the tissue in the region. The dilation balloon 108 is positioned so that the dissecting head 106 is upstream of the dilation balloon 108 and at least a portion of the branch portion 104 is downstream of the dilation balloon 108. This configuration ensures that once the dilation balloon 108 is contracted back from the expanded state, before the branch portion is at least partially retracted, the pinhole opening created via the dissecting head 106 upon entry into submucosa space maintains its size (e.g. smaller than the depot and smaller than the expanded dilation balloon). In certain implementations, the dilation balloon 108 has a length in the range of 1-4 cm, an inflated diameter in the range of 0.1-3 mm. The dilation balloon 108 is symmetrical in certain implementations, but may also be configured asymmetrically in particular implementations. Maintaining the size of the opening smaller than the depot creates a bottleneck to limit the flow or exit of any delivered drug from the opening through which the dissecting head 106 created and is extracted. As discussed further herein, after the dilation balloon is contracted from its expanded state, the branch portion 104 is at least partially retracted from the depot or void created by the dilation balloon 108 and the drug or therapeutic agent is ejected through the port in the branch portion to reside in the depot for diffusion into the central nervous system. While the dilation balloon 108 is illustrated by way of example as cylindrical, the dilation balloon can be formed in a variety of different shapes or geometries to form various depot geometries and size, for example depending on the patient, dosage, and/or therapeutic agent or drug.
[0054] In certain implementations, the catheter component 100 also includes an outer sheath 110. The outer sheath 110 is positioned downstream of the bend in the catheter component 100. The outer sheath 110 is configured to house the branch portion 104 in implementations where the branch portion 104 is partially or wholly retractable into the outer sheath 110. The outer sheath 110, is also angulated with respect to the stem portion 102 in the range of 155-170 degrees. The catheter component 100 can also include an endoscopic device 112 positioned on the stem portion. The endoscopic device 112 is positioned adjacent the pre-defined bend so as to have a field of view of the dissecting head 106 and the plane directly above the dissecting head 106. This assists the operator with properly placing the dissecting head 106 and the dilation balloon 108 in the submucosal tissue. The endoscopic device 112 can include a camera (e.g. a digital video camera) for recording the views obtainable via the endoscopic device 112.
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Other Embodiments
[0068] While this specification contains many specific implementation details, these should not be construed as limitations on the scope of any inventions or of what may be claimed, but rather as descriptions of features specific to particular implementations of particular inventions. Certain features that are described in this specification in the context of separate implementations can also be implemented in combination in a single implementation. Conversely, various features that are described in the context of a single implementation can also be implemented in multiple implementations separately or in any suitable sub combination. Moreover, although features may be described above as acting in certain combinations and even initially claimed as such, one or more features from a claimed combination can in some cases be excised from the combination, and the claimed combination may be directed to a sub combination or variation of a sub combination.
[0069] While this specification contains many specific implementation details, these should not be construed as limitations on the scope of any inventions or of what may be claimed, but rather as descriptions of features specific to particular implementations of particular inventions. Certain features that are described in this specification in the context of separate implementations can also be implemented in combination in a single implementation. Conversely, various features that are described in the context of a single implementation can also be implemented in multiple implementations separately or in any suitable sub combination. Moreover, although features may be described above as acting in certain combinations and even initially claimed as such, one or more features from a claimed combination can in some cases be excised from the combination, and the claimed combination may be directed to a sub combination or variation of a sub combination.
[0070] The orientation of various elements may differ according to other exemplary implementations, and such variations are encompassed by the present disclosure. Features of the disclosed implementations can be incorporated into other disclosed implementations.
[0071] While various inventive implementations have been described and illustrated herein, a variety of other means and/or structures for performing the function and/or obtaining the results and/or one or more of the advantages described herein are, and each of such variations and/or modifications is, deemed to be within the scope of the inventive implementations described herein. The foregoing implementations are presented by way of example only and that, within the scope of the appended claims and equivalents thereto, inventive implementations may be practiced otherwise than as specifically described and claimed. Inventive implementations of the present disclosure are directed to each individual feature, system, article, material, kit, and/or method described herein. In addition, any combination of two or more such features, systems, articles, materials, kits, and/or methods, if such features, systems, articles, materials, kits, and/or methods are not mutually inconsistent, is included within the inventive scope of the present disclosure.
[0072] Also, the technology described herein may be embodied as a method, of which at least one example has been provided. The acts performed as part of the method may be ordered in any suitable way. Accordingly, implementations may be constructed in which acts are performed in an order different than illustrated, which may include performing some acts simultaneously, even though shown as sequential acts in illustrative implementations.
[0073] The claims should not be read as limited to the described order or elements unless stated to that effect. It should be understood that various changes in form and detail may be made by one of ordinary skill in the art without departing from the spirit and scope of the appended claims. All implementations that come within the spirit and scope of the following claims and equivalents thereto are claimed.