SINGLE USE CAPS AND COVERS FOR VASCULAR ACCESS DEVICES, AND KITS AND METHODS FOR USING THE SAME
20220370782 · 2022-11-24
Assignee
Inventors
Cpc classification
A61M39/162
HUMAN NECESSITIES
A61M5/14
HUMAN NECESSITIES
A61M39/165
HUMAN NECESSITIES
A61M39/0208
HUMAN NECESSITIES
A61M39/20
HUMAN NECESSITIES
A61M2039/0229
HUMAN NECESSITIES
A61M5/50
HUMAN NECESSITIES
International classification
Abstract
This invention concerns improved single use caps or covers for vascular access devices such as needlefree connectors that are used, for example, in intravenous administration sets and extension sets. Removal of a single use cap or cover according to the invention from a vascular access device destroys the cap such that it cannot be reused. Such single use caps and covers will help ensure compliance with infection prevention protocols in healthcare settings, which will assist in reducing the incidence of healthcare-associated infections (HAIs), particularly catheter-related blood stream infections. Assemblies and kits its including such caps and covers, for example, IV administration and extension sets that include one or more needlefree connectors, as well as methods for using such caps and covers, are also described.
Claims
1. A single use vascular access port cap configured to prevent reuse of the single use cap after removal from a vascular access port of a vascular access device, the single use cap comprising: a. a cap body comprising an optionally substantially cylindrical sidewall that, with a closed end wall, forms a cavity, wherein the sidewall is configured to cover an exterior portion of a vascular access port of a vascular access device to which the cap is attached and wherein the closed end wall is connected to the sidewall so as to form the cavity and prevent access to a needlefree valve portion or injection portion of the vascular access port when the cap is attached to the vascular access port; b. an opening defined by a first edge of the sidewall and opposite the closed end wall, which opening is sized to allow the single use cap to be placed over the vascular access port such that at least a needlefree valve portion or injection portion of the vascular access port is disposed inside the cavity when the cap is removably attached to the vascular access port; c. at least one separating region in the cap body, optionally a tear strip bounded by two spaced tearable regions, configured to allow the sidewall to be separated as so to allow the cap to be removed from the vascular access port to which it has been attached and to prevent functional reattachment to the same or different vascular access port; and d. a pull tab connected to a portion of the sidewall proximate to the first edge of the sidewall and at least one separating region, wherein the pull tab is configured for grasping by a user and, when pulled, to cause the sidewall to separate in at least a portion of the separating region so as to allow the user to then remove the cap from the vascular access port.
2. A single use cap according to claim 1 wherein the cavity is substantially cylindrical.
3. A single use cap according to claim 1 configured to be press-fit to the vascular access port.
4. A single use cap according to claim 4 that further comprises a (i) a circumferential channel formed into an interior surface of the sidewall and configured to matingly engage a complementary collar or flange on the vascular access port, (ii) a plurality of protrusions extending from an interior surface of the sidewall, or (iii) threads or thread tabs to engage complementary threads on the vascular access port.
5. A single use cap according to claim 4 wherein the plurality of protrusions extend toward the closed end wall, wherein at least some of the protrusions optionally are configured to engage portions of threads or thread tabs disposed on an outer surface of the vascular access port.
6. A single use cap according to claim 1 wherein the separating region comprises a tear strip bounded by a pair of spaced, optionally substantially parallel, separating lines, the tear strip extending at least from the first edge of the sidewall toward, and optionally into, the closed end wall and wherein the pull tab is connected to the tear strip.
7. A single use cap according to claim 1 comprised of a thermoplastic resin, wherein the cap optionally is formed by injection molding.
8. A single use cap according to claim 1 further comprising a vent, wherein the vent optionally includes a gas-permeable barrier to allow gas but not microorganisms to pass through the vent.
9. A single use cap according to claim 1 that further comprises a port-engaging element that engages the needlefree valve portion or injection portion of the vascular access port, wherein the port-engaging element optionally provides continuing antimicrobial action when the cap is attached to a vascular access port.
10. A single use cap according to claim 1 wherein the vascular access device is selected from the group consisting of a needlefree connector, a Y-site comprising a needlefree connector portion, a Y-site comprising a needle injection port, a T-site comprising a needlefree connector portion, and a T-site comprising a needle injection port.
11. An assembly that comprises a single use cap according to claim 1 attached to a vascular access port of a vascular access device.
12. An assembly according to claim 11 wherein the vascular access device is included in an IV set, optionally a primary IV administration set, a secondary IV administration set, an IV extension set, a needlefree connector, or a vascular access connector that comprises a needle injection port.
13. A kit that comprises an assembly according to claim 11 packaged in a sealed container, wherein the kit optionally is sterilized, optionally by gamma irradiation, an electron beam, or by a sterilizing gas, optionally ethylene oxide.
14. A method of capping, covering, or protecting a vascular access port of a vascular access device, comprising attaching a single use cap according to claim 1 to the vascular access port to be capped, covered, or protected, thereby capping, covering, or protecting the vascular access port.
15. A method of uncapping, uncovering, or de-protecting the vascular access port of an assembly according to claim 11, comprising using the pull tab to tear a seam in the single use cap's sidewall and removing the cap to thereby uncap, uncover, or de-protect the vascular access port.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Unless otherwise indicated, it is understood that the drawings are not to scale, as they are intended merely to facilitate understanding of the invention as opposed to specific dimensions, etc. In the drawings, like numbers in two or more drawings represent like elements. The illustrative embodiments described herein are not meant to be limiting. Other embodiments may be utilized, and other changes may be made, without departing from the spirit or scope of the subject matter presented here.
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[0048] A more complete understanding can be obtained by reference to the following descriptions of specific embodiments of the invention, which are provided herein for purposes of illustration only and are not intended to limit the scope of the invention.
DETAILED DESCRIPTION OF THE INVENTION
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[0053] As described, this invention concerns single-use disinfecting caps or covers for vascular access devices (e.g., needlefree connectors) as are found, for example, intravenous administration sets, extension sets, and needlefree connectors. Such caps can be threaded or snap-fit onto the vascular access ports of vascular access devices and provide for both active disinfection of valve surfaces via rotation of the cap in relation to the capped or covered valve as well as passive capping. Removal of a single-use cap or cover according to the invention destroys the cap such that it cannot be reused. This will help ensure compliance with infection prevention protocols in healthcare settings, which in turn will help reduce the incidence of healthcare-associated infections (HAIs), particularly catheter-related blood stream infections.
[0054]
[0055] With reference to
[0056]
[0057] In the embodiment shown in
[0058] In some embodiments of this sort, a thread-on cap of the invention includes only one separating region formed in the sidewall. For example, the separating region can be a groove or channel that begins at the open, lower edge of the sidewall and then curves so as to become substantially parallel with the sidewall's lower edge at a position above the retaining channel so that when the separating region is activated by a user applying sufficient pulling force to the pull or removal tab (39), the sidewall separates at least in part along the separating region, allowing the user to remove the cap from the vascular access port to which it had been attached.
[0059] With reference to
[0060] In many preferred embodiments, the sidewall also includes a fluid seal (59) configured to engage a second region of the exterior surface of the vascular access port below its threaded valve portion, wherein the second region of the exterior surface of the vascular access port is optionally disposed between the threaded valve portion and the first region (i.e., retaining element) of the exterior surface of the vascular access port. In other words, in some preferred embodiments, the fluid seal (59) formed on the interior surface of the sidewall (51) is disposed further into the interior of the cap (50) than the retaining channel (55). In some preferred embodiments, and as shown in
[0061] In some embodiments, the cap of the invention includes only one separating region formed in the sidewall. For example, the separating region can be a groove or channel that begins at the open, lower edge of the sidewall and then curves so as to become substantially parallel with the sidewall's lower edge at a position above the retaining channel so that when the separating region is activated by a user applying sufficient pulling force to the pull or removal tab (60), the sidewall separates at least in part along the separating region, allowing the user to remove the cap from the vascular access port to which it had been attached.
[0062] In the embodiment shown in
[0063] With reference to
[0064] In the embodiment shown in
[0065] In some embodiments, the sidewall of the cap shown in
[0066] In some embodiments, the cap of the invention includes only one separating region formed in the sidewall. For example, the separating region can be a groove or channel that begins at the open, lower edge of the sidewall and then curves so as to become substantially parallel with the sidewall's lower edge at a position above the retaining channel so that when the separating region is activated by a user applying sufficient pulling force to the pull or removal tab, the sidewall separates at least in part along the separating region, allowing the user to remove the cap from the vascular access port to which it had been attached.
[0067] In the embodiment shown in
[0068]
[0069] In the embodiment shown in
[0070] When press-fit onto the threaded female portion of the vascular access port the cap is retained by a circumferential groove that is complementary to a collar or flange below the threaded region of the vascular access port. In this embodiment, the cap body is preferably substantially cylindrical (or a truncated slightly tapered cone) and has a sidewall that, with a closed end wall, forms a cavity accessible from an open end opposite the closed end wall. The sidewall (i) is configured to cover a threaded valve portion of a vascular access port of a vascular access device to which the cap is attached, (ii) include a retaining channel configured for snap-fit engagement of a retaining element (e.g., a collar or flange) disposed on a first region of the exterior surface of the vascular access port below its threaded valve portion, wherein the retainer is optionally a collar or a plurality of circumferentially arrayed, spaced retaining elements, (iii) includes at least one sidewall separating region configured to allow separation of at least a portion of the sidewall in which a portion of the retaining channel is formed, wherein the sidewall separating region is optionally a tear strip bounded by two spaced tearable regions in the sidewall, and (iv) accommodate and retain the port-engaging element in the cavity opposite the opening. In many embodiments, inner surface of the sidewall in the region extending upward from the lower edge (which forms the open end of the cap) to the retaining channel is inwardly tapered over at least a portion of its length so as to facilitate press- or snap-fit engagement of the cap with a vascular access port of a vascular access device.
[0071] Preferably, the sidewall also includes a fluid seal configured to engage a second region of the exterior surface of the vascular access port below its threaded valve portion, wherein the second region of the exterior surface of the vascular access port is optionally disposed between the threaded valve portion and the first region (i.e., retaining element) of the exterior surface of the vascular access port. In other words, the fluid seal is preferably formed on the interior surface of the sidewall disposed further inside the interior of the cap than the retaining channel. Advantageously, and as shown in
[0072] In the embodiment shown in
Other Considerations
[0073] The instant invention also includes methods for making and using the single use caps and covers described herein. The caps and covers of the invention can be made of any suitable material or combination of materials. In some embodiments, a cap or cover comprises a thermoplastic resin. Such caps and covers can also include metal, ceramics, fibers, resins, and/or other suitable materials, such as waxes and other polymers.
[0074] In other embodiments, materials such as cold- or heat-shrinking thermoplastics can be used to cap or cover a vascular access port (or injection site) of a vascular access device, particularly those that are incorporated into IV sets. As is known in the art, heat-shrink materials are typically shrinkable plastic tubes made by an extrusion process.
[0075] The single use caps and covers of the invention can be made using any suitable process, or combination of processes. Particularly preferred are injection-molding processes that utilize a thermoplastic resin (or combination of such resins). For other cover materials, different processes are preferred. For example, for waxes and certain polymers, dipping or spray-coating can be used to apply the single use cover, preferably in combination with a tear strip or other material configured for easy removal of the associated cover.
[0076] In some embodiments, the caps and covers of the invention are preferably individually sealed and sterilized in suitable packaging. In some of these embodiments, a plurality of caps (e.g., 2-20 or more) are aligned and sealed adjacent to one another on a single foil strip that can be hung, for example, from an IV pole. In this way a user, for example, a nurse, can remove one cap at a time from the strip immediately prior to connecting the cap to a vascular access port on, for example, an IV set connected to peripheral IV or central line in order to provide intravenous fluids, nutrition, and/medication to a hospitalized patient. In other embodiments, a single use cover of the invention is attached to each uncovered vascular access port on an IV set (e.g., a primary or secondary IV administration set) or other vascular access device (e.g., an NC) prior to packaging and sterilization.
[0077] After packaging, the sealed caps and covers of the invention (or devices or assemblies to which such caps and and/covers are connected or otherwise attached, e.g., vascular access ports on IV sets) are preferably sterilized using a sterilization method compatible with the materials used to make the single use caps and covers. Examples of such methods include gamma irradiation, e-beam bombardment, and ethylene oxide gas exposure.
[0078] Unless the context clearly requires otherwise, throughout the description above and the appended claims, the words “comprise,” “comprising,” and the like are to be construed in an inclusive sense as opposed to an exclusive or exhaustive sense; that is to say, in a sense of “including, but not limited to.” Words using the singular or plural number also include the plural or singular number, respectively. Additionally, the words “herein,” “hereunder,” “above,” “below,” and words of similar import refer to this application as a whole and not to any particular portions of this application. When the word “or” is used in reference to a list of two or more items, that word covers all of the following interpretations of the word: any of the items in the list, all of the items in the list, and any combination of the items in the list.
[0079] The foregoing description, for purpose of explanation, has been described with reference to specific embodiments. However, the illustrative discussions above are not intended to be exhaustive or to limit the invention to the precise forms disclosed. Many modifications and variations are possible in view of the above descriptions. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated. As such, the invention extends to all functionally equivalent structures, methods, and uses, such as are within the scope of the appended claims, and it is intended that the invention be limited only to the extent required by the applicable rules of law.
[0080] The above disclosure generally describes the present invention. All references, patents, and patent applications disclosed herein are expressly incorporated by reference.