Catheter wetting mechanism

The wetting mechanism with a movable stopper ensures proper lubrication and reduces infection risk by controlling wetting fluid application only at the point of use, addressing issues of inadequate lubrication and premature exposure in existing catheters.

JP7723682B2Active Publication Date: 2025-08-14CONGOTECH GMBH
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Patent Information

Application Number
JP2022564332
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-04-24
Filing Date
2021-04-23
Publication Date
2025-08-14
Estimated Expiration
2041-04-23

AI Technical Summary

Technical Problem

Existing catheters face issues with inadequate lubrication, exposure to moisture leading to reduced shelf life, and increased risk of infection due to premature wetting fluid contact with non-tube components, especially during self-catheterization.

Method used

A wetting mechanism with a housing and movable stopper that controls the movement of the catheter tube through a wetting chamber, ensuring proper lubrication only at the point of use, reducing exposure to moisture, and preventing inadvertent activation.

Benefits of technology

Ensures thorough lubrication of the catheter tube before use, minimizes infection risk, and extends shelf life by controlling wetting fluid application, enhancing user experience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a wetting mechanism 20 for wetting the tube 12 of a catheter 10. The wetting mechanism 20 includes a housing 16 that is initially located at or near the distal end 13 of the catheter tube 12. The housing 16 includes a wetting chamber 23 into which at least a portion of the catheter tube 12 can be introduced and moved within to wet the catheter tube during use. The wetting mechanism 20 includes a stopper 26 that is movable between a first position and a second position to prevent or allow movement of the distal end 13 of the catheter tube 12 through the wetting chamber 23.
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Description

[Technical Field]

[0001] The present invention relates to a wetting mechanism for a catheter (e.g., a urinary catheter) for wetting the tube of the catheter during use. The invention extends to a catheter including the wetting mechanism, and to a method for wetting the tube of a catheter. [Background technology]

[0002] A catheter is a medical device that includes a hollow catheter tube designed for insertion into a duct, blood vessel, passageway, or body cavity to allow the infusion, drainage, or withdrawal of fluids or substances therefrom, or to ensure that the duct, blood vessel, or passageway remains open. Urinary catheters are designed to be inserted through the urethra into the user's bladder and used to empty the bladder.

[0003] To maximize comfort and minimize the risk of trauma and / or infection, the exterior surface of the catheter tube is typically wetted with a wetting fluid by the user prior to insertion. In a further advancement, the catheter tube itself contains, is integrated with, or is coated with hydrophilic components (e.g., hydrophilic polymers), which serve to further reduce friction upon application of the wetting fluid.

[0004] For example, some catheters are supplied pre-wetted in packaging where the catheter is at least partially immersed in a wetting fluid within the packaging. While this may allow the catheter tube to be sufficiently wetted prior to use, it can also cause other catheter components, such as the gripper elements and funnel, to become wet. This can have a detrimental effect on the user's experience, making it difficult to hold and orient the catheter tube as needed. This is particularly problematic when the user is self-catheterizing. Furthermore, submerging the catheter in water can effectively shorten the shelf life of the catheter by exposing the catheter components to moisture for extended periods of time.

[0005] It would therefore be advantageous to provide a catheter that can be wetted at or shortly before use.

[0006] In an attempt to address this, some catheters are provided in packaging that includes a rupturable container or pouch within the packaging that the user can rupture to release the wetting fluid. Typically, in this case, the user squeezes the packaging to rupture the container / pouch. However, this arrangement can result in the same problems as those described above, as the wetting fluid can come into contact with other components of the catheter. This arrangement can also result in the catheter tube not being fully wetted, or indeed not being wetted at all, prior to use, which can be harmful to the user. Additionally, the catheter tube in this arrangement is typically exposed upon opening the packaging, posing a risk of infection.

[0007] It would therefore be advantageous to provide a catheter that includes means for supplying wetting fluid only to the catheter tube to enhance the user experience.

[0008] It would also be advantageous to provide a system that reduces the likelihood that a catheter tube will be used before or without sufficient lubrication.

[0009] It would also be advantageous to provide a system that reduces the risk of infection by preventing exposure of the catheter tubing prior to use.

[0010] It is an object of embodiments or implementations of the present invention to overcome or at least partially alleviate one or more problems with the prior art. Summary of the Invention

[0011] According to one aspect of the present invention, there is provided a wetting mechanism for wetting a tube of a catheter, the wetting mechanism including a housing configured to be initially located at or proximal to the tip of the catheter tube, the housing including a wetting chamber into which at least a portion of the catheter tube can be introduced and moved through to wet the catheter tube in use, and the wetting mechanism further including a movable stop configured to prevent or allow movement of the catheter tube through the wetting chamber.

[0012] According to one aspect of the present invention, there is provided a wetting mechanism for wetting a tube of a male urinary catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to a distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; The wetting mechanism includes a stopper movable between a first position in which the stopper prevents the tip of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the tip of the catheter tube from being moved through the wetting chamber.

[0013] Advantageously, the wetting mechanism of the present invention requires a positive action to "unlock" the catheter tube. This can prevent or at least reduce the possibility of inadvertent activation or exposure of the catheter tube prior to the point of use by the user. Requiring the catheter tube to be moved through a wetting chamber, thereby wetting the catheter tube, can ensure that the catheter can be exposed (e.g., by moving the tube from the housing) only after the outer surface of the tube is sufficiently wetted.

[0014] The housing may advantageously form a separate, movable (e.g., relative to the catheter tube and / or other components of the catheter, such as the funnel) component of the catheter that acts as a gripping element both during handling of the catheter while wetting the catheter tube and during handling of the catheter during positioning and subsequent insertion of the catheter tube into the urethra during use. Configuring the wetting mechanism as part of the catheter's gripping element improves the ease of use of the catheter, both in terms of wetting and ultimately use of the catheter. For example, instead of having to push or pull the catheter tube through a wetting device, as in prior art solutions, the gripping element can move the tube through a wetting chamber relative to the catheter tube, i.e., along the catheter tube (thereby wetting the tube and exposing the distal end of the catheter tube), thereby reducing problems caused by the length of the catheter tube in male catheters. Furthermore, the gripping element can be used to hold the catheter tube close to the urethra, helping the user guide the catheter tube without touching the tube itself, thereby mitigating the possibility of contamination.

[0015] As used herein and throughout this specification, the term "prevent" is intended to cover the prevention of associated movement during normal use of the wetting mechanism. Specifically, a stop configured to prevent catheter tubing movement should, and will, be interpreted by one skilled in the art as covering the prevention of catheter tubing movement during normal use of the catheter / wetting mechanism. For example, one skilled in the art will understand that the term "prevent" in this example is not intended to exclude the stopper not restricting movement as a result of misuse of the wetting mechanism / catheter by a user, e.g., if the user forcefully moves the catheter tubing against the constraints provided by the stopper, but rather covers the prevention of catheter tubing movement during normal use, e.g., during handling by a user and / or during packaging and shipping of the catheter.

[0016] Any of the features described below may be applied to any aspect of the present invention, as appropriate.

[0017] The distal end of the catheter tube may be, at least initially, positioned outside the humidity chamber. The distal end of the catheter tube may, at least initially, be held within the inlet of the humidity chamber.

[0018] The stopper may be linearly movable between the first and second positions, for example, in use the stopper may be pushed or pulled by a user to move the stopper between the first and second positions.

[0019] The stopper may be rotatable. The stopper may be rotatable between first and second angular positions. The first and second angular positions may correspond to the first and second positions of the stopper. The stopper may be threaded and may be disposed within the wetting mechanism through interaction with a complementary threaded surface on the wetting mechanism, for example, a complementary threaded surface disposed on or within a wetting chamber of the housing.

[0020] The stopper may include a plug. The plug may be configured to be at least partially withdrawn from the wetting mechanism. The plug may be configured to be at least partially withdrawn from a wetting chamber of the wetting mechanism. The partial withdrawal of the plug may correspond to movement of the plug from a first position to a second position. The plug may be configured to be only partially withdrawn from the wetting mechanism, i.e., not be fully withdrawn from the wetting mechanism. The plug may remain attached or otherwise coupled to the housing whether in the first position or the second position. In embodiments, the plug may be configured to be fully withdrawn from the wetting mechanism (optionally from a wetting chamber of the wetting mechanism).

[0021] The wet chamber may include an inlet through which the catheter tube can be introduced into the wet chamber. The stopper may block or at least partially block the inlet in a first position. In some embodiments, the wetting mechanism may be configured such that movement of the stopper from the first position to the second position unblocks the inlet, thereby allowing the catheter tube to be introduced into (and moved through) the wet chamber.

[0022] In embodiments, at least a portion of the stopper may be received within the inlet of the wet chamber with the stopper in the first position. In this manner, when the stopper is in the first position, the stopper may block or reduce the size of the inlet to prevent the tip of the catheter tube from being introduced and moved through the wet chamber.

[0023] In some embodiments, an end of the stopper may be received in the entrance of the wet chamber with the stopper in the first position. The end of the stopper may comprise a flexible and / or compressible material. The flexible and / or compressible material may be configured to be compressed within the entrance of the wet chamber.

[0024] The end portion may include one or more cantilevered portions that may bend or flex when at least partially received within the inlet of the wet chamber. The one or more cantilevered portions may bend or flex due to interaction with a portion of the housing, such as when moved to a predetermined position within the inlet, which may occur when moving the stopper from the second position to the first position. The end portion may include multiple cantilevered portions that may bend or flex substantially toward one another when at least partially received within the inlet of the wet chamber.

[0025] One particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urethral catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the wet chamber includes an inlet through which the catheter tube can be introduced into the wet chamber; the stopper at least partially blocks the inlet in the first position; an end of the stopper received in the inlet of the wet chamber with the stopper in the first position; The end includes one or more cantilevered portions operable to bend or flex when at least partially received within the entrance of the wet chamber.

[0026] Another particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urinary catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the wet chamber includes an inlet through which the catheter tube can be introduced into the wet chamber; the stopper at least partially blocks the inlet in the first position; an end of the stopper received in the inlet of the wet chamber with the stopper in the first position; The end of the stopper includes a plurality of cantilevered portions configured to bend or flex substantially toward one another when at least partially received within the entrance to the wet chamber.

[0027] Instead of blocking the inlet, the stopper may be operable to act on a portion of the inlet, such as a flexible tubular portion, to restrict its size and thereby prevent movement of the catheter tube in a first position. In a second position, the stopper may allow the portion to expand to allow movement of the catheter tube.

[0028] In embodiments, in use, movement of the stopper from the first position to the second position may retract the end of the stopper from the inlet of the wet chamber. Retraction of the stopper may release any external force (e.g., from the housing) applied to the end of the stopper, allowing the compressed, bent, or flexed portion of the stopper to move (e.g., under a bias force resulting from the compression, bend, or flex) to a position that does not prevent the tip of the catheter tube from being introduced into the wet chamber. For example, retraction of the stopper may remove any blocking of the inlet of the wet chamber.

[0029] In embodiments, the stopper may be tubular. The tubular stopper may define a channel therein. The catheter tube may be moved through the channel during use. For example, in some embodiments, in the first position, an end of the tubular stopper may be received within the entrance of the wet chamber and optionally compressed. This may prevent the tip of the catheter tube from being introduced into the channel of the stopper, thereby preventing the tip of the catheter tube from being introduced into and passing through the wet chamber of the housing.

[0030] One particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urethral catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; The stopper is tubular defining a channel therethrough through which the catheter tube can move in use.

[0031] In some embodiments, the wet chamber may include an outlet through which the catheter tube can exit the wet chamber. In embodiments in which the stopper includes a tubular stopper having a channel therein, a first end of the stopper may be located at or proximal to the inlet of the wet chamber and a second end of the stopper may be located at or proximal to the outlet of the wet chamber.

[0032] In embodiments, the wetting chamber includes a volume of liquid contained therein, and in such embodiments, the wetting mechanism is configured such that, in use, the catheter tube may contact and move within the wetting chamber with wetting liquid, thereby wetting the outer surface of the catheter tube.

[0033] In embodiments, the housing may include a holding chamber. The holding chamber may contain a volume of liquid therein. In some embodiments, the stopper forms a liquid release control element for the wetting mechanism. Specifically, in some embodiments, the stopper may be configured to control the release of liquid contained in the holding chamber, for example, through an opening in the holding chamber. The stopper may be configured to control the release of liquid from the holding chamber to the wetting chamber.

[0034] One particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urethral catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; The housing includes a holding chamber that contains a volume of liquid therein.

[0035] Another particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urethral catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the housing includes a holding chamber containing a volume of liquid therein; The stopper forms a liquid release control element for a wetting mechanism configured to control the release of liquid in the holding chamber into the wetting chamber.

[0036] Another particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urethral catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber through which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the housing includes a holding chamber containing a volume of liquid therein; the stopper forms a liquid release control element for a wetting mechanism configured to control release of liquid in the holding chamber into the wetting chamber; The stopper is configured such that in a first position, the stopper prevents the release of liquid from the holding chamber, and in a second position, the stopper allows the release of liquid from the holding chamber into the wet chamber.

[0037] The housing, e.g., the wetting chamber and / or in embodiments the holding chamber, may be configured to hold, for example, up to 0.25 ml, or up to 0.5 ml, or up to 0.75 ml, or up to 1.0 ml, or up to 1.5 ml, or up to 2.0 ml, or up to 2.5 ml, or up to 3.0 ml, or up to 4.0 ml, or up to 5.0 ml, or up to 7.5 ml, or up to 10 ml of wetting fluid.

[0038] In embodiments, the stopper is configured such that, in a first position, the stopper prevents the release of liquid from the holding chamber. The stopper may be configured such that, in a second position, the stopper allows the release of liquid from the holding chamber to the wet chamber. For example, movement of the stopper from the first position to the second position can unblock an opening in the holding chamber, allowing liquid to flow therethrough.

[0039] Advantageously, controlling the release of liquid from a holding chamber that is kept out of contact with other components of the catheter system overcomes problems with the prior art, particularly where the catheter may be disadvantageously soaked in wetting liquid before use. Also, by reducing the exposure of most of the catheter's components to moisture until (or as close to) the point of use as possible, the shelf life of the catheter can be improved. Furthermore, controlling the release of wetting liquid into a wetting chamber through which the catheter tube can move provides greater control over the application of wetting liquid to the exterior surface of the catheter tube. This can ensure that the entire surface of the catheter tube is adequately wetted before use by the user. Furthermore, releasing the liquid simultaneously with unblocking the catheter from movement can prevent the catheter tube from being moved through the housing (and thereby used) without the release of wetting liquid (and thus wetting of the exterior surface of the catheter tube).

[0040] The wetting mechanism may be configured to retain the stopper in the first and / or second position.

[0041] For example, in some embodiments, the wetting mechanism may be configured to hold the stopper in the first position unless actively acted upon by the user. Advantageously, this can prevent or at least reduce the possibility of the stopper being inadvertently moved and prematurely exposing the catheter tube. This can ensure that the catheter tube is wetted at, or as close to, the time of use so that the surface of the catheter tube is thoroughly wetted. In such embodiments, the stopper may be biased to the first position, and the user may be required to act against that bias to move the stopper to the second position. At least a portion of the stopper may abut against an additional component of the wetting mechanism, such as a lip, protrusion, or the like from the surface of the housing, to prevent movement of the stopper from the first position unless acted upon by the user. The abutment may be provided between a frangible portion on the stopper and / or on the housing configured to break upon application of force by the user. For example, the abutment between the stopper and the additional component may be configured such that application of force (e.g., a user pulling the stopper away from the housing) is sufficient to overcome such abutment and allow the plug to move to the second position. The stopper may "snap" or "click" upon overcoming the abutment, providing tactile and / or audible feedback to the user.

[0042] In embodiments, the wetting mechanism may be configured to prevent the stopper from returning to the first position and retain the stopper in the second position. Advantageously, once activated, the wetting mechanism may be configured to remain in a "used" configuration, ensuring that the catheter and wetting mechanism cannot return to a configuration that appears unused, i.e., a configuration that suggests the wetting mechanism may still be operable to wet the catheter tube (which may not be the case). This may prevent or at least reduce the likelihood that a user will reuse the catheter (either accidentally or intentionally). In such embodiments, the wetting mechanism may be configured such that, in the second configuration, at least a portion of the stopper is provided in abutting relationship with a further component of the wetting mechanism (e.g., a housing) to prevent further movement of the stopper.

[0043] In some embodiments, the wetting mechanism includes a wetting applicator. The wetting applicator may be located within the wetting chamber. The wetting applicator may be configured to hold wetting fluid. In embodiments, this may include wetting fluid being released from a holding chamber into the wetting chamber. The wetting applicator may be configured to control the application of fluid to the catheter tube as it moves through the wetting chamber, in use.

[0044] One particularly preferred embodiment provides a wetting mechanism for wetting a tube of a male urethral catheter, the wetting mechanism including a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber into which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the wetting mechanism includes a wetting applicator disposed within the wetting chamber; The wetting applicator is configured, in use, to hold wetting fluid and control the application of the fluid to the catheter tube as it moves through the wetting chamber.

[0045] The wet applicator may include an absorbent material. For example, in some embodiments, the wet applicator includes a sponge, foam, or wicking material operable to absorb wetting liquid during use. In further embodiments, the wet applicator may include a baffle configuration. The baffle configuration may define multiple subregions of the wet applicator each configured to retain a portion of the liquid retained within the wet applicator.

[0046] The wet applicator may define a channel within the wet chamber. The wet applicator may define a channel within the wet chamber through which the catheter tube can move, in use. The wetting mechanism may be configured to move in contact with the wet applicator as the catheter tube moves through the wet chamber (e.g., along the channel defined by the wet applicator). In embodiments, the wet applicator may be configured to release, preferably automatically, liquid retained within the wet applicator so that it can be released therefrom upon movement of the catheter tube through the wet chamber.

[0047] In embodiments, the housing may form a gripping element of the catheter. In use, the gripping element may be used by a user to control application of the catheter. For example, the gripping element may be used to hold the catheter tube near the urethra and help the user guide the catheter tube without touching the tube itself. In embodiments, the housing may include a conical profile. A conical profile may be advantageous when the housing forms the gripping element of the catheter.

[0048] In embodiments in which the stopper includes a plug, the plug may include a conical profile. The plug may include a hollow or substantially hollow interior. When combined with a conical profile, such a plug can form a cup-shaped element that can assist the user in positioning the catheter tube during use. The cup can be used, for example, to position the housing over the tip of the penis to facilitate insertion of the catheter tube into the urethra immediately after wetting.

[0049] In some embodiments, the housing and the plug both include conical profiles. In such embodiments, the wetting mechanism may be configured such that the housing and the plug together form a substantially hourglass-shaped profile. The hourglass-shaped profile may be particularly advantageous in that it may allow a user to operate the wetting mechanism, i.e., remove (or at least partially remove) the plug from the housing, using only one hand.

[0050] According to one aspect of the present invention, there is provided a catheter including a catheter tube having a tip and a distal end, and a wetting mechanism of any of the above aspects operably coupled to or proximal to the tip of the catheter tube for wetting the catheter tube, in use.

[0051] The catheter may include a funnel, which may be located at the distal end of the catheter tube or at a proximal end, and which may include a liquid outlet for draining liquid from within the catheter tube.

[0052] In embodiments, the catheter includes a sleeve. The sleeve may be located near the catheter tube. In embodiments, the sleeve may define an interior volume for at least a portion of the catheter tube. The sleeve may comprise a flexible material. The sleeve may be thin and easily crumpled. For example, the sleeve may be formed from a film of a plastic material, which may be, for example, low-density polyethylene.

[0053] The sleeve may be coupled to the wetting mechanism. For example, the sleeve may be coupled to the wetting mechanism at a first end. In such an embodiment, the sleeve may be coupled to a funnel at a second, opposite end at a distal end of the catheter tube. In this manner, the sleeve may define an interior volume of the catheter tube between the wetting mechanism at or near the tip of the catheter tube and the funnel at or near the distal end of the catheter tube.

[0054] The catheter may be configured such that, in use, liquid in the wetting chamber of the wetting mechanism can flow into and along the sleeve to wet the catheter tube. For example, in some embodiments, the housing of the wetting mechanism includes a hole or opening therein to allow liquid in the wetting chamber to flow into the sleeve. The wetting mechanism may be configured such that the hole or opening in the housing is blocked with the stopper in the first position and is unblocked with the stopper in the second position. Advantageously, "unlocking" the catheter tube may release additional wetting liquid into the sleeve to wet the exterior surface of the tube.

[0055] The catheter may comprise a urinary catheter. The catheter may comprise a female urinary catheter, but is preferably a male urinary catheter. The catheter may comprise a single-use catheter. The catheter may comprise an intermittent urinary catheter.

[0056] The catheter tube may have a length of up to 35 cm (or even longer). The catheter tube may have a length of, for example, a maximum or minimum of 20 cm, a maximum or minimum of 25 cm, a maximum or minimum of 30 cm, a maximum or minimum of 35 cm, or a maximum or minimum of 40 cm. In embodiments, the catheter tube may be longer than 40 cm. In preferred embodiments, the catheter tube is between 25 and 35 cm in length. Male catheters typically have catheter tubes of such lengths and may be less suitable for a mechanism that wets the catheter tube from the distal end (as opposed to from the tip, as in the present invention) because the liquid may not adequately cover the entire length of the tube. This is undesirable because the tip may be wetted last (or not at all if there is insufficient liquid) and is introduced into the urethra first, and therefore is most likely to cause injury if not adequately wetted before use. Therefore, the present invention is particularly suited to male catheters.

[0057] The catheter tube may include, be integrated with, or be coated with a hydrophilic component. The hydrophilic component may be configured to provide a low-friction surface (e.g., outer surface) of the catheter tube upon application of a wetting fluid. The hydrophilic component may include, for example, a hydrophilic polymer.

[0058] According to one aspect of the present invention, there is provided a hermetically packaged catheter according to the above aspect of the present invention, wherein a wetting mechanism is operably coupled to or near the distal end of the catheter tube within the sealed package.

[0059] According to one aspect of the present invention, there is provided a method of wetting a catheter tube using the wetting mechanism of any of the aspects described herein, the method comprising: moving a stopper from a first position to a second position; and then introducing and moving a tip of the catheter tube through a wetting chamber to wet at least a portion of an exterior surface of the catheter tube.

[0060] Moving the stopper from the first position to the second position can cause or enable the release of wetting fluid from the holding chamber of the housing to the wetting chamber. Additionally or alternatively, moving the stopper from the first position to the second position can cause or enable the release of wetting fluid from the wetting chamber to a sleeve of the catheter disposed around the catheter tube.

[0061] In some embodiments, the stopper includes a plug, and the method may include at least partially withdrawing the plug from the wetting mechanism. The method may include at least partially withdrawing the plug from the wetting chamber to cause release of liquid from the holding chamber into the wetting chamber. The method may include completely withdrawing the plug from the wetting mechanism. [Brief explanation of the drawings]

[0062] In order that the invention may be more clearly understood, one or more embodiments thereof will now be described, by way of example only, with reference to the accompanying drawings, in which:

[0063] [Figure 1] FIG. 1 is a schematic diagram of a first embodiment of the present invention. [Figure 2A] FIG. 2A is a schematic cross-sectional view of section A in FIG. 1, showing the operation of use. [Figure 2B] FIG. 2B is a schematic cross-sectional view of cross section A in FIG. 1, showing the operation of use. [Figure 3A] FIG. 3A is a series of schematic cross-sectional views showing the operation of using the second embodiment. [Figure 3B] FIG. 3B is a series of schematic cross-sectional views showing the operation of using the second embodiment. [Figure 3C] FIG. 3C is a series of schematic cross-sectional views showing the operation of using the second embodiment. [Figure 4A] FIG. 4A is a series of schematic cross-sectional views showing the operation of using the third embodiment. [Figure 4B]FIG. 4B is a series of schematic cross-sectional views showing the operation of using the third embodiment. [Figure 4C] FIG. 4C is a series of schematic cross-sectional views showing the operation of using the third embodiment. [Figure 5] FIG. 5 is a schematic diagram of a fourth embodiment of the present invention. [Figure 6A] 6A is a pair of side views illustrating the use of the embodiment shown in FIG. [Figure 6B] 6B is a pair of side views illustrating the use of the embodiment shown in FIG. DETAILED DESCRIPTION OF THE INVENTION

[0064] Generally, the present invention relates to a catheter 10, 310, and more particularly to a wetting mechanism 20, 120, 220, 320 configured to wet the tube 12, 312 of the catheter 10, 310 during use.

[0065] The figures illustrate a series of embodiments of the present invention, and like reference numerals are used where equivalent elements exist between the embodiments.

[0066] 1-2B illustrate a first embodiment of a wetting mechanism 20 used to wetting the tube 12 of the catheter 10. As shown in FIG.

[0067] The catheter 10 includes a catheter tube 12 having a wetting mechanism 20 at its tip 13 (proximal end) and a funnel 30 at its distal end 14. A sleeve 18 is provided between the wetting mechanism 20 and the funnel 30 to surround the catheter tube 12. The sleeve 18 is formed of a flexible film material and is coupled at a first end to the housing 16 of the wetting mechanism 20 and at a second end to the funnel 30. In this manner, the sleeve 18 defines an interior volume of the catheter tube 12 into which a liquid can be introduced to wet the exterior surface of the catheter tube 12.

[0068] As described above, the catheter tube 12 has a tip 13 and a distal end 14. The tip 13 includes a tip portion for inserting the catheter tube 12 into a duct, blood vessel, passageway, body cavity, etc., and removing fluid therefrom. Here, the catheter 10 includes a male urinary catheter 10 configured for insertion into the bladder of a male patient. The tip 13 of the catheter tube includes a hole 34 therein for introducing fluid into the catheter tube 12. The distal end 14 of the catheter tube 12 is disposed within a funnel 30. Specifically, the distal end 14 of the catheter tube 12 is positioned within and opens into the funnel 30, which defines a fluid outlet 32 that functions as an outlet for draining fluid from within the catheter tube 12. The catheter tube 12 itself includes a hydrophilic coating that acts to provide a low-friction outer surface of the catheter tube 12 upon application of a wetting fluid.

[0069] The wetting mechanism 20 includes a tubular housing 16 that is (at least initially) disposed at the distal end 13 of the catheter tube 12. The housing 16 includes a wetting chamber 23 that contains a volume of liquid (not shown) therein for wetting the catheter tube 12. The wetting chamber has an inlet 43 at a first end and an outlet 28 at a second end, defining an inlet and an outlet for the catheter tube 12. In use, and as described herein, liquid is brought into contact with the catheter tube 12 upon movement of the catheter tube 12 through the wetting chamber 23, and optionally via liquid entering the sleeve 18 of the catheter tube 12.

[0070] The wetting mechanism 20 includes a stopper in the form of a plug 26. As described herein, the plug 26 is configured to control (i.e., prevent or allow) movement of the catheter tube 12 through the wetting chamber 23. In the illustrated embodiment, the plug 26 is substantially cylindrical and, in use, defines an outlet 28 in the housing 16 through which the catheter tube 12 can move, although other profiles are equally applicable. As shown in FIGS. 1 and 2A , the plug 26 is initially positioned within the wetting chamber 23 with a portion of the plug 26 received within an inlet 43 of the wetting chamber 23. Specifically, the flexible ends, here cantilevered ends 39, are provided in contact with a surface 41 on the housing 16 at the inlet 43. The surface 41 is angled to urge the cantilevered portions 39 inward toward each other to partially block the inlet 43. This is referred to herein as the first position or first configuration of the plug 26, and corresponds to a position that prevents the catheter tube 12 from being introduced into the wetting chamber 23 through the inlet 43. The opposite end of plug 26 is provided with a lip 29 that defines an interaction point for the user, specifically, to provide leverage for the user to grasp lip 29 and move plug 26.

[0071] 2A-2B illustrate the operational use of the wetting mechanism 20. As described above, the wetting mechanism 20 is initially provided in a first configuration in which the plug 26 is in a first position blocking the inlet 43 of the wetting chamber 23 (FIG. 2A). To activate the wetting mechanism 20, the plug 26 is partially displaced (i.e., withdrawn) from the wetting chamber 23 to a second position (FIG. 2B). In doing so, the plug 26 is moved to a position where the inlet 43 is no longer blocked, specifically by withdrawing the cantilevered end 39 from the inlet 43. The flexibility and resilience of the end 39 biases the end into the configuration shown in FIG. 2B, where the end is more widely open, the inlet 43 is unobstructed, and the catheter tube 12 can move through the channel defined by the plug 26.

[0072] The outer periphery of the plug 26 includes a notch 36 that defines the area within which the plug 26 can be removed from the wet chamber 23. Specifically, the notch 36 provides a contact point between the plug 26 and a circumferentially inwardly extending flange 38 located at the end of the housing 16.

[0073] The catheter tube 12 is then moved through the wetting chamber 23, bringing the catheter tube 12 into contact with the wetting fluid, thereby wetting the exterior surface of the catheter tube 12. When the tip 13 of the catheter tube 12 is moved beyond the lip 29 of the plug 26 and out through the outlet 28 of the housing 16, the tip 13 becomes exposed for insertion by the user. The housing 16 then functions as a gripping element for the user to guide the catheter tube 12 in use, as the user can use the housing 16 to easily guide the exposed tip 13 of the catheter tube 12 without directly contacting the tube 12.

[0074] Withdrawing plug 26 from wet chamber 23 to a second position (FIG. 2B), i.e., withdrawing cantilever end 39 from inlet 43, may allow liquid contained within wet chamber 23 to flow through inlet 43 and into sleeve 18.

[0075] 3A-3C show a variation of wetting mechanism 20. Specifically, these figures show wetting mechanism 120, which is configured substantially similarly to wetting mechanism 20 shown in the previous figures. Wetting mechanism 120 differs in that it includes housing 116, which includes holding chamber 122, in addition to wetting chamber 123. Holding chamber 122 and wetting chamber 123 are fluidly connected to each other by opening 127 provided in the housing.

[0076] As shown, the holding chamber 122 contains a volume of liquid 124 therein for wetting the catheter tube 12, and in use, movement of the plug 126 may release the liquid 124 from the holding chamber 122 into the wetting chamber 123. By releasing the liquid 124 into the wetting chamber 123 and then moving the catheter tube 12 through the wetting chamber 123, the liquid 124 may be used to wet the exterior surface of the catheter tube 12.

[0077] Wetting mechanism 120 can function essentially similarly to wetting mechanism 20, being provided with a plug 126 movable between two positions to prevent or allow movement of the catheter tube 12 through wetting chamber 123, depending on the position of plug 126. Here, however, movement of plug 126 to the second position additionally controls the release of wetting liquid 124 from holding chamber 122. Specifically, movement of plug 126 to the second position unblocks opening 127, allowing the liquid 124 contained within holding chamber 124 to be released into wetting chamber 123. Advantageously, by storing liquid 124 in a separate holding chamber 122 until (or as close as possible to) the point of use of catheter 10, the contact time of most components of catheter 10 with liquid 124 is reduced, which can be advantageous in terms of the shelf life of catheter 10.

[0078] A variation of the wetting mechanism 120 is shown in Figures 4A-4C. Specifically, these figures show a wetting mechanism 220 that is configured substantially similarly to the wetting mechanism 120 shown in Figures 3A-3C. The wetting mechanism 220 differs in that it additionally includes a wetting applicator in the form of a foam conduit 240 disposed within the wetting chamber 223. As described in detail herein, the foam conduit 240 is configured to retain liquid released from the holding chamber 222 into the wetting chamber 240 and, in use, to control the application of liquid to the catheter tube 12 as the catheter tube 12 is moved through the wetting chamber 223.

[0079] The wetting mechanism 220 functions essentially similarly to the wetting mechanism 20, and is provided with a plug 226 movable between two positions to control both the movement of the catheter tube 12 through the wetting chamber 223 and the release of wetting liquid 224 from the holding chamber 222 to the wetting chamber 223. Here, when the plug 226 is moved to the second position, thereby unlocking the opening 227, the liquid 224 contained within the holding chamber 222 is released onto the foaming conduit 240. The foaming conduit 240 stores the released liquid 224 thereon for subsequent application to the catheter tube 12. Specifically, the foaming conduit 240 defines a channel within the wetting chamber 223 through which the catheter tube 12 can move and which is brought into contact with the foaming conduit 240. The foaming conduit 240 is configured so that the catheter tube 12 contacts and applies pressure to the foaming conduit 240, thereby releasing the liquid held therein upon movement of the catheter tube 12 through the defined channel. This type of wetting applicator can advantageously ensure that the wetting fluid 224 is applied evenly over the entire exterior surface of the catheter tube 12 .

[0080] 5-6B show a further embodiment of a catheter 310 and a wetting mechanism 320 operable to wet the tube 312 of the catheter 310 when in use.

[0081] Similar to catheter 10, catheter 310 includes a catheter tube 312 with a wetting mechanism 320 at the tip 313 of catheter tube 312 and a funnel 330 at the distal end 314 of catheter tube 312. A sleeve 318 is provided between wetting mechanism 320 and funnel 330, enclosing catheter tube 12 therebetween.

[0082] The tip 313 of the catheter 310 includes a tip portion for inserting the catheter tube 312 into a duct, blood vessel, passageway, body cavity, etc., to remove fluid therefrom. Here, the catheter 310 includes a male urinary catheter 310 configured for insertion into the bladder of a male patient. The distal end 314 of the catheter tube 312 is disposed within a funnel 330. Specifically, the distal end 314 of the catheter tube 312 is located within the funnel 330 and opens into the funnel 330, which defines a fluid outlet 332 that functions as an outlet for draining fluid from within the catheter tube 312. The funnel 330 is shaped to aid the user in controlling the direction of fluid drainage from the catheter tube 312. The catheter tube 312 itself includes a hydrophilic coating that acts to provide a low-friction outer surface of the catheter tube 312 upon application of a wetting fluid.

[0083] The wetting mechanism 320 may be of a similar configuration to the wetting mechanisms 120, 220 described herein and of a nature having the same features as any of the embodiments of the previous figures. It includes a housing 316 disposed (at least initially) at the distal end 313 of the catheter tube 312. The housing 316 includes a holding chamber (not shown) containing a volume of liquid therein for wetting the catheter tube 312. In use, and as described herein, the liquid may be released from the holding chamber into the wetting chamber (not shown) of the housing 316 under the operation of a plug 326. Furthermore, the plug 326, similar to plugs 26, 126, and 226 of the previous figures, is operable to control the ability of the catheter tube 312 to be moved through the wetting chamber of the housing 316. As with the other embodiments described herein, the exterior surface of the catheter tube 312 may be wetted with liquid by unblocking the catheter tube 312, releasing liquid into the wetting chamber, and then moving the catheter tube 312 through the wetting chamber.

[0084] The plug 326 is movable from the position shown in Figure 6A (first position) to the position shown in Figure 6B (second position). Movement from the first position to the second position both unblocks an inlet (not shown) in the housing 316, allowing the catheter tube 312 to be introduced and moved through the housing 316, and causes the expulsion of wetting fluid from the holding chamber into the wetting chamber.

[0085] In this embodiment, the plug 326 includes a conical cross-section, with a raised outer surface defining an interaction surface for the user. The housing 316 also has a substantially conical profile and is arranged to define an hourglass-shaped configuration for the housing 316 and plug 326. This arrangement is particularly beneficial because it may allow the plug 326 to be operated with only one hand, as shown in FIGS. 10A and 10B. Specifically, and as shown in these figures, the user can grasp the housing 316 and plug 326 between their thumb and index finger and then use their thumb to push or "pop" the plug 326 upward (in the direction shown in the figures). Additionally, the conical plug 326 has a cup-like end, which, in use, facilitates positioning the housing 316 over the tip of the penis to aid in the insertion of the catheter tube 312 into the urethra.

[0086] In a variant, the stopper (e.g., plug 26, 126, 326) may be alternatively rotatable between first and second positions / configurations. For example, rotation (rather than linear movement) of the plug 26, 126, 326 may unblock the inlet 43, 143, 243 of the wetting chamber 23, 123, 223, and optionally align an opening in the stopper to unblock an opening 127, 227 or valve in the housing 116, 316 to allow wetting fluid to be released into the wetting chamber.

[0087] In variations, the wetting mechanism (e.g., mechanism 20) may be configured to retain the plug 26 in the first position and / or the second position. For example, the wetting mechanism 20 may be configured to retain the plug 26 in the first position, prevent the introduction of the catheter tube 12, and optionally prevent the release of liquid from the retention chamber 22, unless actively acted upon by the user. This may be provided, for example, in the form of a bias between flexible portions on the plug 26 and / or on the housing 16 that are configured to break upon application of force by the user. In this manner, the plug 26 may "snap" or "click" upon overcoming the abutment, providing tactile and / or audible feedback to the user. The wetting mechanism 20 may be configured such that in the second position, at least a portion of the plug 26 is provided in abutting relationship with a further component of the wetting mechanism (e.g., the housing 16), preventing further movement of the plug 26 and thereby preventing the plug 26 from being returned to the first position.

[0088] In an alternative embodiment, the housing (e.g., housing 16) may include a valve arrangement or the like that prevents wetting fluid from escaping the housing. For example, the housing may include a valve arrangement at the inlet 43 and / or outlet 28. The valve arrangement may be configured to allow the catheter tube 12, 312 to travel therethrough.

[0089] Alternatively, the wetting applicator may comprise a sponge or wicking material operable to absorb wetting fluid in use, or may comprise a baffle arrangement.

[0090] Conditional language such as "can," "could," "might," or "could," unless otherwise specified or understood within the context in which it is used, is generally intended to convey that certain embodiments include certain features, elements, and / or steps and other embodiments do not. Thus, such conditional language is generally not intended to imply that the features, elements, and / or steps are somehow required for one or more embodiments, or that one or more embodiments necessarily include logic that determines, with or without user input or prompting, whether or not those features, elements, and / or steps are included in or should be performed in any particular embodiment.

[0091] One or more embodiments have been described above by way of example only, and many variations are possible without departing from the scope of protection afforded by the appended claims.

Claims

1. 1. A wetting mechanism for wetting a tube of a male urinary catheter, comprising: The wetting mechanism is a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber into which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the wet chamber includes an inlet through which the catheter tube can be introduced into the wet chamber, the stopper at least partially blocking the inlet in the first position; an end of the stopper is received in the inlet of the wet chamber with the stopper in the first position; the end portion includes one or more cantilevered portions that are capable of bending or flexing when at least partially received within the entrance of the wet chamber; Wetting mechanism.

2. The distal end of the catheter tube is, at least initially, positioned outside the wet chamber. The wetting mechanism of claim 1 .

3. The stopper is linearly movable between a first position and a second position. The wetting mechanism according to claim 1 or 2.

4. the stopper includes a plug configured to be at least partially withdrawn from the wetting mechanism by movement of the plug from the first position to the second position; The wetting mechanism according to any one of claims 1 to 3.

5. The stopper is configured so that movement from the first position to the second position unblocks the inlet, thereby allowing the catheter tube to be introduced into the wet chamber. The wetting mechanism according to any one of claims 1 to 4.

6. The end of the stopper comprises a flexible and / or compressible material configured to be compressed within the entrance of the wet chamber. The wetting mechanism according to any one of claims 1 to 5.

7. The end of the stopper includes a plurality of cantilever beam portions; the plurality of cantilevered beam portions are configured to bend or flex substantially toward one another when at least partially received within the inlet of the wet chamber; The wetting mechanism according to any one of claims 1 to 6.

8. In use, movement of the stopper from the first position to the second position withdraws the end of the stopper from the entrance of the wet chamber. The wetting mechanism according to any one of claims 1 to 7.

9. Pulling out the stopper releases any external force applied to the end of the stopper, thereby allowing the compressed, bent or deflected portion of the stopper to move to a position that does not prevent the tip of the catheter tube from being introduced into the wet chamber. The wetting mechanism of claim 8.

10. The stopper is tubular and defines a channel therethrough, the catheter tube being movable through the channel in use. The wetting mechanism according to any one of claims 1 to 9.

11. The wet chamber includes a volume of liquid contained therein. The wetting mechanism according to any one of claims 1 to 10.

12. The housing includes a holding chamber containing a volume of liquid therein. The wetting mechanism according to any one of claims 1 to 11.

13. The stopper forms a liquid release control element for the wetting mechanism configured to control the release of liquid contained within the holding chamber into the wetting chamber. The wetting mechanism of claim 12.

14. The stopper is configured such that, in a first position, the stopper prevents the release of liquid from the holding chamber, and in a second position, the stopper allows the liquid in the holding chamber to be released into the wet chamber. The wetting mechanism of claim 13.

15. Configured to hold the stopper in the first and / or second position. A wetting mechanism according to any one of claims 1 to 14.

16. A method for treating a septic tank comprising: the wetting applicator is configured to hold wetting fluid and, in use, to control the application of the fluid to the catheter tube as it moves through the wetting chamber; The wetting mechanism according to any one of claims 1 to 15.

17. A catheter tube having a tip and a distal end; a wetting mechanism according to any one of claims 1 to 16 operably coupled to or near the tip of the catheter tube for wetting the catheter tube in use; Male urethral catheters, including:

18. The catheter is provided in a sealed package, a wetting mechanism operably coupled to or near the tip of the catheter tube within the sealed package; 18. The male urethral catheter of claim 17.

19. A method for wetting a catheter tube using the wetting mechanism of any one of claims 1 to 16, comprising: moving the stopper from a first position to a second position; thereafter introducing the distal end of the catheter tube into a wetting chamber and moving the distal end therethrough to wet at least a portion of the exterior surface of the catheter tube; method.

20. A wetting mechanism for wetting a tube of a male urethral catheter, comprising: The wetting mechanism is a housing forming a gripping element for the catheter and configured to be initially positioned at or proximal to the distal end of the catheter tube; the housing includes a wetting chamber into which at least a portion of the catheter tube can be introduced and moved to wet the catheter tube in use; the wetting mechanism includes a stopper movable between a first position in which the stopper prevents the distal end of the catheter tube from being moved through the wetting chamber and a second position in which the stopper does not prevent the distal end of the catheter tube from being moved through the wetting chamber; the stopper being tubular and defining a channel therethrough, the catheter tube being movable through the channel in use; Wetting mechanism.

21. The distal end of the catheter tube is, at least initially, positioned outside the wet chamber.

21. The wetting mechanism of claim 20.

22. The stopper is linearly movable between the first position and the second position.

22. The wetting mechanism of claim 20 or 21.

23. The stopper includes a plug configured to be at least partially withdrawn from the wetting mechanism by movement of the plug from the first position to the second position. The wetting mechanism according to any one of claims 20 to 22.

24. The wet chamber includes an inlet through which the catheter tube can be introduced into the wet chamber, and the stopper at least partially blocks the inlet in the first position. The wetting mechanism according to any one of claims 20 to 23.

25. The stopper is configured so that movement from the first position to the second position unblocks the inlet, thereby allowing the catheter tube to be introduced into the wet chamber.

25. The wetting mechanism of claim 24.

26. At least a portion of the stopper is received within the inlet of the wet chamber with the stopper in the first position.

26. The wetting mechanism of claim 24 or 25.

27. An end of the stopper is received at the inlet of the wet chamber when the stopper is in the first position.

27. The wetting mechanism of claim 26.

28. The end of the stopper comprises a flexible and / or compressible material configured to be compressed within the entrance of the wet chamber.

28. The wetting mechanism of claim 27.

29. In use, movement of the stopper from the first position to the second position withdraws the end of the stopper from the entrance of the wet chamber.

29. The wetting mechanism of claim 27 or 28.

30. Pulling out the stopper releases any external force applied to the end of the stopper, thereby allowing the compressed, bent or deflected portion of the stopper to move to a position that does not prevent the tip of the catheter tube from being introduced into the wet chamber.

30. The wetting mechanism of claim 29.

31. The wet chamber includes a volume of liquid contained therein. The wetting mechanism according to any one of claims 20 to 30.

32. The housing includes a holding chamber containing a volume of liquid therein. The wetting mechanism according to any one of claims 20 to 31.

33. The stopper forms a liquid release control element for the wetting mechanism configured to control the release of liquid contained within the holding chamber into the wetting chamber.

33. The wetting mechanism of claim 32.

34. The stopper is configured such that, in a first position, the stopper prevents the release of liquid from the holding chamber, and in a second position, the stopper allows the liquid in the holding chamber to be released into the wet chamber.

34. The wetting mechanism of claim 33.

35. The stopper is configured to hold the stopper in the first and / or second position. A wetting mechanism according to any one of claims 20 to 34.

36. A method for treating a wound comprising: the wetting applicator is configured to hold wetting fluid and, in use, to control the application of the fluid to the catheter tube as it moves through the wetting chamber; A wetting mechanism according to any one of claims 20 to 35.

37. A catheter tube having a tip and a distal end; a wetting mechanism according to any one of claims 20 to 36 operably coupled to or near the tip of the catheter tube for wetting the catheter tube in use; Male urethral catheters, including:

38. The catheter is provided in a sealed package, a wetting mechanism operably coupled to or near the tip of the catheter tube within the sealed package; 38. The male urethral catheter of claim 37.

39. A method for wetting a catheter tube using the wetting mechanism of any one of claims 20 to 36, comprising: moving the stopper from a first position to a second position; thereafter introducing the distal end of the catheter tube into a wetting chamber and moving the distal end therethrough to wet at least a portion of the exterior surface of the catheter tube; method.

Citation Information

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