Universal connectors or caps for male and female threaded fittings
A universal cap for vascular access devices addresses the limitation of single-type disinfection caps by integrating with both male and female connectors, enhancing disinfection efficacy and reducing infection risks.
Patent Information
- Application Number
- JP2024001960
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-01-30
- Filing Date
- 2024-01-10
- Publication Date
- 2025-12-24
- Estimated Expiration
- 2039-01-30
AI Technical Summary
Current disinfection caps for vascular access devices are designed for specific types of connectors, limiting their versatility and increasing the risk of catheter-related bloodstream infections due to inconsistent disinfection practices.
A universal cap design that accommodates both male and female threaded connectors, featuring a housing with integrated protrusions and removable inserts, incorporating absorbent materials and disinfectants to ensure thorough disinfection.
The universal cap streamlines disinfection processes, reducing the risk of catheter-related bloodstream infections by ensuring consistent disinfection of both male and female connectors with a single device.
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Abstract
Description
[Technical Field]
[0001] The present disclosure relates generally to devices for disinfecting and sterilizing access ports, for example, with male and female luer fittings, and more particularly to disinfection and sterilization devices that can accommodate multiple types of connectors. In general, exemplary embodiments of the present disclosure relate to the field of threaded fittings, including medical caps and medical antiseptic caps, and more particularly caps and / or antiseptic caps for use with fluid luer connectors. [Background technology]
[0002] Vascular access devices (VADs) are commonly used therapeutic devices and include intravenous (IV) catheters. There are two general classifications of VADs: peripheral catheters and central venous catheters. Bacteria and other microorganisms can enter a patient's vascular system through the access hub or port / valve when connected to a VAD to deliver fluids or medications. Each access hub (or access port / valve or connection) carries a risk of transmitting a costly and potentially fatal catheter-related bloodstream infection (CRBSI).
[0003] Codes of practice, including disinfection and cleaning procedures, have been developed to reduce cases of CRBSI and ensure VADs are used and maintained correctly.
[0004] Antiseptic caps have been added to the Society for Healthcare Epidemiology of America (SHEA) guidelines, and there are early indications that caps will also be incorporated into the 2016 Infusion Nursing Standards (INS) guidelines.
[0005] In developed markets, IV catheters typically use a needleless connector to close the system and then access the catheter to administer medications and other necessary fluids to the patient. The INS Standards of Practice recommend the use of needleless connectors and state that they should be consistently and thoroughly disinfected with alcohol, iodine tincture, or a chlorhexidine gluconate / alcohol combination before each access. Disinfection of needleless connectors ultimately aims to help reduce bacteria that may inhabit surfaces and cause various catheter-related complications, including CRBSI. Nurses typically accomplish this disinfection task by performing a process known as "hub scrubbing" using a 70% isopropyl alcohol (IPA) pad. However, adherence to this practice is typically very low. In addition to lack of adherence to "hub scrubbing," clinician interviews also noted frequent variability in scrubbing time, drying time, and the number of times needleless connectors are scrubbed.
[0006] There are many risks of contact or contamination throughout the sequence of steps associated with the transmission of microorganisms that can cause CRBSI. Contamination can occur during mixing of medications, attachment of the cannula, and insertion into the access hub. Because the procedure of connecting a VAD is so common and simple, the risks associated with entering the patient's vascular system are often overlooked. Currently, the risk to the hospital and patient is substantially the result of the diligence of the clinician performing the connection, and this diligence has little control.
[0007] Currently, caps for male needleless connectors, female needleless connectors, intravenous (IV) and hemodialysis lines use different designs, limiting the type of connector to which they can be attached. Currently, there are male disinfection cap devices for disinfecting ISO 594-2 type female threaded fluid luer connectors and female disinfection cap devices for disinfecting ISO 594-2 type male threaded fluid luer connectors. However, there is no single, universal disinfection cap device capable of being compatible with either male or female threaded connectors. Therefore, conventional disinfection caps are designed to fit only one type of connector and are specific to a particular size and / or connector shape. Thus, to streamline the disinfection process, there is a need for a disinfection device that can accommodate multiple types of connectors, including both male and female connectors.
[0008] In medical applications, various conventional caps are known for closing needleless connectors when not in use. An antiseptic cap for reducing catheter-related bloodstream infection (CRBSI) cases was first disclosed and introduced to the market in U.S. Patent Publication No. 2007 / 011233, which was issued as U.S. Patent No. 8,740,864 (the entire disclosures of both of which are incorporated herein by reference). An antiseptic cap such as that disclosed in U.S. Patent No. 8,740,864 is shown in FIGS. 1 and 2 of the present application. Here, cap 1 includes an antiseptic pad 2 and a lid 3, and cap 4 includes an antiseptic pad 5 and a lid 7, as well as a thread 6 on its inner periphery 8 for coupling with a needleless connector hub. Meanwhile, other conventional caps may have similar features but do not include an antiseptic pad. Summary of the Invention
[0009] A first aspect of the present disclosure relates to a cap including a housing and a protrusion. The housing can include a top wall, a substantially cylindrical sidewall forming a first cavity, and an open bottom formed by the cylindrical sidewall with an opening to the first cavity within the housing for receiving a hub of a female or male needleless connector. In one embodiment, the protrusion is integrally formed with the housing and disposed within the first cavity. The protrusion includes an inner surface and an outer surface, the inner surface of the protrusion defining a second cavity. The inner surface of the protrusion includes internal threads sufficient to mate with a mating feature of the female needleless connector. The outer surface of the protrusion includes external threads sufficient to mate with a mating feature of the male needleless connector. In one or more embodiments, the protrusion can include one or more cantilevered prongs, each separated by one or more gaps. In one or more embodiments, at least one of the prongs can be bent to facilitate an interference fit between the protrusion and a mating feature of the male or female needleless connector. In one or more embodiments, the protrusion can extend from essentially the inner surface of the top wall toward the open bottom of the housing. In one or more embodiments, the protrusion can extend essentially parallel to the side wall of the housing.
[0010] A second aspect of the present disclosure relates to a cap including a housing and a removable insert. The housing can include a top wall, a substantially cylindrical sidewall forming a first cavity, and an open bottom formed by the cylindrical sidewall with an opening to the first cavity within the housing for receiving the hub of a female needleless connector or a male needleless connector. The removable insert can be disposed within the first cavity. The removable insert can include a closed distal end with a distal wall, an open proximal end, and a sidewall extending proximally from the distal wall toward the open proximal end. The sidewall can include a split-threaded protrusion integrally formed with the distal wall, the split-threaded protrusion having an inner surface and an outer surface. The inner surface of the split-threaded protrusion defines a second cavity.
[0011] The split screw protrusion includes an inner surface with internal threads that are sufficiently capable of mating with a mating feature of a female needleless connector, and an outer surface with external threads that are sufficiently capable of mating with a mating feature of a male needleless connector.
[0012] In one or more embodiments, the split screw protrusion includes one or more cantilevered branches separated by one or more respective gaps, at least one of the cantilevered branches configured to flex to facilitate an interference fit between the protrusion and a mating feature of the male or female needleless connector. In one or more embodiments, the cap further includes one or more bridge portions positioned to span one or more gaps between the one or more cantilevered branches of the split screw protrusion.
[0013] The sidewall of the removable insert has an upper portion and a lower portion. In one or more embodiments, the upper portion of the sidewall slopes outward toward the distal wall, and the lower portion of the sidewall can be cylindrical.
[0014] A third aspect of the present disclosure relates to a cap including a housing, a removable insert, an absorbent material, a disinfectant or antimicrobial agent, and a septum. In one or more embodiments, the housing can include a top wall, a substantially cylindrical sidewall forming a first cavity, and an open bottom formed by the cylindrical sidewall with an opening to the first cavity within the housing for receiving the hub of a female needleless connector or a male needleless connector. In one or more embodiments, the removable insert can be disposed within the first cavity. In one or more embodiments, the removable insert can include a closed distal end having a distal wall, an open proximal end, and a sidewall extending proximally from the distal wall toward the open proximal end. In one or more embodiments, the sidewall can include a split-threaded protrusion integrally formed with the distal wall, the split-threaded protrusion having an inner surface and an outer surface. In one or more embodiments, the inner surface of the split-threaded protrusion defines the second cavity. In one or more embodiments, the split threaded protrusion includes an inner surface with internal threads that can sufficiently mate with a mating feature of the female needleless connector. In one or more embodiments, the split threaded protrusion includes an outer surface with external threads that can sufficiently mate with a mating feature of the male needleless connector. In one or more embodiments, an absorbent material can be configured within the second cavity. In one or more embodiments, a disinfectant or antibacterial agent disinfects the outer and inner surfaces of the female or male needleless connector when the female or male needleless connector is inserted into the second cavity. In one or more embodiments, a septum can be attached to the open bottom of the insert to form a seal to maintain the disinfectant or antibacterial agent within the second cavity prior to use of the cap. In one or more embodiments, the outer wall surface of the sidewall of the housing can include a plurality of gripping members.
[0015] In one or more embodiments, the split thread protrusion includes one or more cantilevered prongs separated by one or more respective gaps, and in one or more embodiments, at least one prong can be bent to facilitate an interference fit between the protrusion and a mating feature of the male or female needleless connector.
[0016] In one or more embodiments, the cap further includes one or more bridge portions positioned to span one or more gaps between one or more cantilevered branches of the split screw projection.
[0017] In one or more embodiments, the sidewall of the insert has an upper portion and a lower portion. In one or more embodiments, the upper portion of the sidewall can be slanted outwardly toward the distal wall, and the lower portion of the sidewall can be cylindrical.
[0018] In one or more embodiments, when the hub of the female needleless connector is received within the interior surface of the second cavity, the hub is secured within the interior surface of the second cavity by interlocking at least a portion of the internal threads with a mating feature on the hub of the female needleless connector. In one or more embodiments, when the hub of the male needleless connector is received within the interior surface of the second cavity, the hub is secured within the first cavity by coupling at least a portion of the external threads on the exterior surface of the protrusion with a mating feature on the collar of the male needleless connector when the collar is received within the exterior portion of the second cavity.
[0019] In one or more embodiments, the inner portion of the second cavity can extend further into the housing toward the top wall than the outer portion of the second cavity. In one or more embodiments, the profile of the inner threads can be essentially parallel to or coincident with the profile of the outer threads.
[0020] In one or more embodiments, the internal and external threads can include a canted thread pattern. In one or more embodiments, the internal and external threads can include a helical thread pattern. In one or more embodiments, the internal or external threads can include one or more gaps in the thread pattern.
[0021] In one or more embodiments, the inner surface of the protrusion can be essentially parallel to the outer surface of the protrusion.
[0022] In one or more embodiments, at least one absorbent material is configured within the second cavity. In one or more embodiments, the cap may include a removable peel seal at the opening to the second cavity to seal the absorbent material within the second cavity prior to use of the cap. In one or more embodiments, the absorbent material may be a foam or sponge. In one embodiment, the foam may be polyurethane foam. In one or more embodiments, the absorbent material may include a slit. In one or more embodiments, compression of the absorbent material toward the top wall of the housing occurs upon connection to the female needleless connector, whereby compression of the absorbent material sterilizes the female needleless connector. In one or more embodiments, the absorbent material may be radially compressed by internal threads on the inner surface of the split screw protrusion to retain the absorbent material within the second cavity.
[0023] In one or more embodiments, the antiseptic or antibacterial agent can be selected from the group consisting essentially of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorhexidine, chlorhexidine diacetate, chlorhexidine gluconate, povidone-iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotics, and mixtures thereof. In one or more specific embodiments, the antiseptic or antibacterial agent comprises at least one of chlorhexidine gluconate and chlorhexidine diacetate.
[0024] A fourth aspect of the present disclosure relates to a method for disinfecting a medical connector, the method including connecting a cap of one or more embodiments to the medical connector, the connecting including engaging threads of the medical connector with threads on an inner or outer surface of a second cavity of the cap when the medical connector is inserted into the cap, such that the medical connector comes into contact with an absorbent material and a disinfectant or an antimicrobial agent.
[0025] A fifth aspect of the present disclosure relates to an assembly comprising one or more embodiments of the cap connected to a medical connector, in one or more embodiments, the medical connector being selected from a male luer connector, a female luer connector, and a needleless connector.
[0026] This Summary is provided to introduce a selection of concepts in a simplified form that are further described below in the Detailed Description. This Summary is not intended to identify all key features or essential features of the claimed subject matter, nor is it intended to be used solely as an aid in determining the scope of the claimed subject matter.
[0027] Additional features and advantages of the present disclosure will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of the present disclosure. The features and advantages of the present disclosure may be realized and obtained by means of the instruments and combinations particularly pointed out in the claims. These and other features of the present disclosure will become more fully apparent from the following description and appended claims, or may be learned by the practice of the disclosure as set forth herein. [Brief explanation of the drawings]
[0028] [Figure 1] 1 illustrates an exemplary prior art. [Figure 2] 1 illustrates an exemplary prior art. [Figure 3A] 1A-1C show perspective bottom and top views of a cap according to an exemplary embodiment of the present disclosure. [Figure 3B] 1A-1C show perspective bottom and top views of a cap according to an exemplary embodiment of the present disclosure. [Figure 4A] 3C shows a top view, a side view, and a bottom view of the cap shown in FIGS. 3A and 3B. [Figure 4B] 3C shows a top view, a side view, and a bottom view of the cap shown in FIGS. 3A and 3B. [Figure 4C] 3C shows a top view, a side view, and a bottom view of the cap shown in FIGS. 3A and 3B. [Figure 5] 5 shows a cross-sectional view of the cap shown in FIGS. 3A to 4C taken along line 5-5 in FIG. 4A. [Figure 6A] 6A shows a perspective cross-sectional view of the cap shown in FIGS. 3A to 5 taken along line 6A-6A in FIG. 3A. [Figure 6B] 6B shows a perspective cross-sectional view of the cap shown in FIGS. 3A to 5 taken along line 6B-6B in FIG. 3B. [Figure 7A]Schematic cross-sectional and perspective cross-sectional views of the two caps shown in Figures 3A to 6B and a typical ISO 594-2 type needleless connector, showing one cap secured to a Q-Site male connector and the other cap secured to a Q-Site female connector. [Figure 7B] Schematic cross-sectional and perspective cross-sectional views of the two caps shown in Figures 3A to 6B and a typical ISO 594-2 type needleless connector, showing one cap secured to a Q-Site male connector and the other cap secured to a Q-Site female connector. [Figure 8] 1 shows an exploded perspective view of an exemplary cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 9] 1 shows an exploded perspective top view of an exemplary cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 10] 1 illustrates an exploded side view of an exemplary cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 11] 1 illustrates an exploded side view of an exemplary cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 12] 1 shows a perspective top view of an exemplary cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 13] 10 shows a perspective top view of an exemplary cap according to one or more alternative embodiments of the second aspect of the present disclosure. [Figure 14] 1 illustrates a perspective bottom view of an exemplary cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 15] 1 illustrates a perspective top view of an exemplary removable insert according to one or more embodiments of the second aspect of the present disclosure. [Figure 16] 1 illustrates a perspective side view of an exemplary removable insert according to one or more embodiments of the second aspect of the present disclosure. [Figure 17]1 illustrates a side view of an exemplary removable insert according to one or more embodiments of the second aspect of the present disclosure. [Figure 18] 1 illustrates a side view of an exemplary removable insert according to one or more embodiments of the second aspect of the present disclosure. [Figure 19] 1 illustrates a side view of an exemplary removable insert according to one or more embodiments of the second aspect of the present disclosure. [Figure 20] 10 illustrates a cross-sectional view of an exemplary removable insert internal thread pattern according to one or more embodiments of the second aspect of the present disclosure. [Figure 21] 10 illustrates a cross-sectional view of an exemplary removable insert external thread pattern according to one or more embodiments of the second aspect of the present disclosure. [Figure 22] FIG. 10 illustrates a side view of an exemplary removable insert external thread pattern according to one or more embodiments of the second aspect of the present disclosure. [Figure 23] FIG. 10 illustrates a side view of an exemplary removable insert external thread pattern according to one or more embodiments of the second aspect of the present disclosure. [Figure 24] 10A-10C show cross-sectional views of thread patterns to illustrate the shape of the thread pattern of an exemplary removable insert according to one or more embodiments of the second aspect of the present disclosure; [Figure 25] 10 shows a cross-sectional view of two inserts and a connecting member according to one or more embodiments of the second aspect of the present disclosure. [Figure 26] 10 shows a cross-sectional view of two inserts joined by a connection according to one or more embodiments of the second aspect of the present disclosure. [Figure 27] 10 shows a cross-sectional view of two inserts joined by a connection according to one or more embodiments of the second aspect of the present disclosure. [Figure 28] 10 shows a cross-sectional view of two inserts joined by a connection according to one or more embodiments of the second aspect of the present disclosure. [Figure 29]FIG. 10 illustrates a perspective view of a removable insert and absorbent material disposed within a first cavity according to one or more embodiments of the second aspect of the present disclosure. [Figure 30] FIG. 10 illustrates a perspective bottom view of a removable insert disposed within a first cavity according to one or more embodiments of the second aspect of the present disclosure. [Figure 31] FIG. 10 is a partial cross-sectional view of a removable insert disposed within a housing of a cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 32] 10A-10C illustrate shapes that may be present on the top or side walls of the housing or removable insert according to one or more embodiments of the second aspect of the present disclosure. [Figure 33] 10A-10C illustrate cross-sectional views of a removable insert having an exemplary bridge according to one or more embodiments of the second aspect of the present disclosure. [Figure 34] 10 illustrates a partial view of an exemplary bridge according to one or more embodiments of a second aspect of the present disclosure. [Figure 35] 10 illustrates a partial view of another exemplary bridge according to one or more embodiments of the second aspect of the present disclosure. [Figure 36] 10A-10C illustrate cross-sectional views of a removable insert having an exemplary bridge according to one or more embodiments of the second aspect of the present disclosure. [Figure 37] FIG. 10 illustrates a partial view of an exemplary thread pattern according to one or more embodiments of the second aspect of the present disclosure. [Figure 38] FIG. 10 illustrates a partial view of another exemplary thread pattern according to one or more embodiments of the second aspect of the present disclosure. [Figure 39] FIG. 10 illustrates a perspective bottom view of a removable insert located within a housing of a cap, according to one or more embodiments of the second aspect of the present disclosure. [Figure 40] FIG. 10 is an exploded view of a removable insert disposed within a housing of a cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 41]FIG. 10 is a cross-sectional view of a removable insert disposed within a housing of a cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 42] FIG. 10 is a cross-sectional side view of a removable insert disposed within a housing of a cap according to one or more embodiments of the second aspect of the present disclosure. [Figure 43A] 10 shows a perspective view of an exemplary cap according to one or more embodiments of the third aspect of the present disclosure. [Figure 43B] 10 illustrates an exploded cross-sectional view of an exemplary cap according to one or more embodiments of the third aspect of the present disclosure. [Figure 44] 10 shows a perspective view of an exemplary cap according to one or more embodiments of the third aspect of the present disclosure. [Figure 45] 10 shows a perspective view of an exemplary cap according to one or more embodiments of the third aspect of the present disclosure. [Figure 46] 10 illustrates a perspective bottom view of an exemplary cap according to one or more embodiments of the third aspect of the present disclosure. [Figure 47] 10 illustrates an exploded view of an exemplary cap and medical connector according to one or more embodiments of the third aspect of the present disclosure. [Figure 48] 10 illustrates a cross-sectional view of an exemplary cap according to one or more embodiments of a third aspect of the present disclosure connected to an exemplary medical connector. [Figure 49] 10 shows a perspective view of an exemplary sealing sponge disposed at the tip of an exemplary medical connector according to one or more embodiments of the third aspect of the present disclosure. [Figure 50] 10 shows a cross-sectional view of an exemplary sealing sponge disposed at the tip of an exemplary medical connector, according to one or more embodiments of the third aspect of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0029] An embodiment of the present disclosure relates to a sterilized, universal cap for connecting and disinfecting medical connectors, including male and female connectors. The male and female connectors can be male and female Luer connectors. An embodiment of the cap includes a housing and a protrusion. The cap includes a one-piece body having a closed end and an open end. The sidewall of the housing has a length LC extending from the closed end to the open end and defines a chamber. In one or more embodiments, the open end includes a peripheral protrusion extending radially outward from an opening surface defining an end face and an engagement surface. The protrusion has an inner wall surface with one or more threads adapted to engage with a female Luer connector. The outer wall surface of the protrusion has one or more threads sized and adapted to receive a male Luer connector. The cap can further include an absorbent material, a disinfectant or antimicrobial agent, and a peelable seal and / or septum. The cap provides a mechanical barrier for the connector and contains an antimicrobial agent for disinfection. The cap of the present disclosure allows practitioners to streamline the disinfection process.
[0030] The following definitions are provided for terms used in this disclosure.
[0031] As used herein, the use of "a," "an," and "the" includes the singular and plural.
[0032] As used herein, the term "catheter-related bloodstream infection" or "CRBSI" refers to any infection resulting from the presence of a catheter or IV line.
[0033] As used herein, the term "Luer connector" refers to a connecting collar, a standard method for attaching syringes, catheters, hubbed needles, IV tubing, and the like. Luer connectors consist of male and female mating tubes, slightly tapered to allow for a secure connection with a simple press / twist fit. Luer connectors can optionally include a threaded outer rim, which allows for a more secure fit. The male end of a Luer connector is typically associated with an irrigation syringe and can mate with and connect to the female end located on a vascular access device (VAD). Luer connectors include a distal end, a proximal end, an irregularly shaped outer wall, and a shaped central passage for fluid communication from the chamber of the syringe container to the hub of the VAD. Luer connectors also have a distal end channel that detachably attaches the Luer connector to the hub of the VAD and a proximal end channel that detachably attaches the Luer connector to the container of the syringe.
[0034] As will be readily understood by one of ordinary skill in the relevant art, terms such as "bond," "hole," "tip," "hub," "screw," "sponge," "prong," "protrusion," "tab," "slope," "wall," "top," "side," "bottom," and other descriptive terms are used herein for ease of understanding, but are not intended to limit the components that may be used in combination or individually to implement various aspects of the embodiments of the present disclosure.
[0035] The matters exemplified in this description are provided to facilitate a comprehensive understanding of the exemplary embodiments of the present disclosure. Therefore, those skilled in the art will recognize that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of the present disclosure. In addition, descriptions of well-known functions and structures are omitted for clarity and conciseness.
[0036] Exemplary embodiments of the present disclosure provide a cap that can approximately halve the number of equipment types and logistics currently required in a hospital environment to connect, cap, and / or disinfect male and female threaded fluid luer connectors by including functionality for use with both male and female threaded fittings in a single cap or device.
[0037] In exemplary implementations of embodiments of the present disclosure, the cap, connection cap, or antiseptic cap includes integrated threads or multiple threads and other features in any and all combinations that allow it to mate with both male and female threaded fittings.
[0038] According to a further exemplary implementation of an embodiment of the present disclosure, the configuration of the structural elements that make up the cap includes one or more cantilevered prongs disposed in a cavity of the cap, the cantilevered prongs including internal threads for connecting to a female medical connector and external threads for connecting to a male medical connector to facilitate securing the cap to the female or male fitting, respectively.
[0039] According to yet another exemplary implementation of an embodiment of the present disclosure, both the male and female threads coincide with each other on the inner and outer surfaces of the threaded protrusion.
[0040] According to yet another exemplary implementation of an embodiment of the present disclosure, the cantilevered branch may be in the form of a protrusion and may be of a split thread type, which protrusion may be bent to allow for a better interference fit with the fitting.
[0041] According to yet another exemplary implementation of an embodiment of the present disclosure, the female threads are of a size and thread pattern that mates with a standard ISO 594-2 type male fitting and / or the male threads are of a size and thread pattern that mates with a standard ISO 594-2 type female fitting, an example of an ISO 594-2 type fitting is a Q-style fitting.
[0042] In one or more embodiments, the female connector can be selected from the group consisting essentially of a needleless connector, a catheter luer connector, a stopcock, and a hemodialysis connector. In one or more embodiments, the needleless connector is selected from a Q-Star connector, MaxPlus, MaxPlusClear, MaxZero, UltraSite, CareSite, InVisionPlus, SafeLine, OneLink, VLink, ClearLink, NutraClear, Kurabe, MicroKurabe, MicroKurabeClear, Neutron, NanoClear, Kendall, Nexus, InVision, BudSite, Bionecta, etc.
[0043] In one or more embodiments, the male connector can be an intravenous tubing end, a stopcock, or a male locking luer.
[0044] Before describing several example embodiments of the present disclosure, it is to be understood that the present disclosure is not limited to the details of construction or process steps set forth in the following description. The present disclosure is capable of other embodiments and of being practiced or carried out in various ways.
[0045] Referring to the drawings, wherein like reference numerals indicate identical or corresponding parts throughout the several views, embodiments of the present disclosure are now described.
[0046] A first aspect of the present disclosure relates to a cap 10 including a housing and a prong. As shown in FIGS. 3A through 7B , the housing 20 can include a top wall 22, a generally cylindrical sidewall 26 forming a first cavity, and an open bottom 23 formed by the cylindrical sidewall 26 with an opening 27 to the first cavity within the housing for receiving the hub of a female or male needleless connector. In one embodiment, a protrusion 30 is integrally formed with the housing 20 and located within the first cavity 28. The protrusion 30 includes an inner surface 31 and an outer surface 33, with the inner surface 31 of the protrusion 30 defining a second cavity 40. In one or more embodiments, the cap 10 of the present disclosure has internal threads 36 sized and pitched to engage the threaded portion of a female connector, such as a female Luer connector. Such connectors are commonly and typically used as catheters and other fluid-tight protective connectors in medical applications. In some embodiments, the cap 10 provides a protective cover for the female Luer connector when the threads of the female Luer connector engage with the internal threads 36 of the cap 10 to form a removable connection. The inner surface 31 of the protrusion 30 includes internal threads 36 sufficient to mate with a mating feature of a female needleless connector. The outer surface 33 of the protrusion 30 includes external threads 38 sufficient to mate with a mating feature of a male needleless connector. In one or more embodiments, the protrusion 30 includes one or more cantilevered prongs, each separated by one or more gaps. In one or more embodiments, at least one prong can be bent to facilitate an interference fit between the protrusion and a mating feature of the male or female needleless connector. In one or more embodiments, the protrusion 30 extends essentially from the inner surface of the top wall 22 toward the open bottom 23 of the housing 20. In one or more embodiments, the protrusion 30 extends essentially parallel to the sidewall of the housing.
[0047] 3A-6B, according to an exemplary embodiment of the present disclosure, cap 10 comprises housing 20 including top wall 22 having inner surface 25, side wall 26 (which may be essentially cylindrical) having inner surface 21, and opening 27 to first cavity 28. Opening 27 is disposed at bottom 23 of housing 20. Inner surface 25 of top wall 22 may form an upper portion of cavity 28. Disposed within cavity 28 is protrusion 30 (which may be essentially cylindrical and coaxial with side wall 26) having inner surface 31 defining an inner portion 32 of cavity 28 and outer surface 33 defining an outer portion 34 of cavity 28. Protrusion 30 includes internal threads 36 on its inner surface 31 for engaging a female connector and external threads 38 on its outer surface 33 for engaging a male connector.
[0048] In an exemplary embodiment, a peel seal 60 may be provided to seal the opening 27 prior to use of the cap 10, for example, by attaching it to the surface of the rim 29 of the open bottom 23 of the housing 20, as described in the above-referenced prior application.
[0049] 4B , in one or more embodiments, a peelable seal 60 is disposed on the mating surface of the open bottom 23 of the housing 20 to prevent the disinfectant or antimicrobial agent from exiting the cavity 28. With the absorbent material 50 properly inserted into the cavity 28 of the cap 10, the peelable seal 60 can be secured to the mating surface of the open bottom 23 of the housing 20. The peelable seal 60 minimizes the intrusion of potential particulate hazards, provides a substantially impermeable enclosure for the cap 10, provides a leak-proof and protective enclosure, protects the contents of the absorbent material 50 contained within the cavity 28, and / or maintains a sealed, sterile environment. The peelable seal 60 provides a sufficient seal over a range of temperatures, pressures, and humidity levels.
[0050] In one or more embodiments, the peelable seal 60 comprises a peel edge of aluminum or a multilayer polymer film. In certain embodiments, the peelable seal 60 is heat or induction sealed to the open end of the cap. In one or more embodiments, the peelable seal 60 comprises a moisture barrier.
[0051] 4C, in one or more embodiments, the absorbent material 50 is radially compressed by the internal threads 36 on the inner surface 31 of the protrusion 30, thereby retaining the absorbent material 50 within the cavity 28. In one or more embodiments, the absorbent material 50 is a nonwoven material, a foam, or a sponge. In certain embodiments, the foam is polyurethane foam. In certain embodiments, the absorbent material 50 is in the form of a foam plug. In one or more embodiments, the absorbent material 50 includes one or more slits.
[0052] In yet another exemplary embodiment, the sanitizing member or members, such as absorbent material 50, are in the form of an IPA soaked sponge and / or sponges. In one or more embodiments, the absorbent material 50 may also be formed together as a single cleaning member, or separate cleaning members may be provided within cavity 28, for example, near the inner surface 25 of upper wall 22 of inner portion 32, or near the top 39 of outer portion 34 of cavity 28, for example, as described in the prior applications mentioned above.
[0053] The cap 10 can be disinfected when used with a luer connector by incorporating a disinfectant or antimicrobial agent into the cavity 28 of the cap 10. The disinfectant or antimicrobial agent can be contained directly in the cavity 28, or the disinfectant or antimicrobial agent can be absorbed into a sponge or foam material that fills the chamber of the cap 10. The cap 10 is designed to accommodate interaction with a variety of disinfectants. In one or more embodiments, the disinfectant or antimicrobial agent can include various alcohols or chlorhexidine. In one or more embodiments, the disinfectant or antibacterial agent can be selected from the group consisting essentially of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorhexidine, chlorhexidine diacetate, chlorhexidine gluconate, povidone-iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotics, and mixtures thereof. In certain embodiments, the disinfectant or antibacterial agent comprises at least one of chlorhexidine gluconate and chlorhexidine diacetate. In one or more embodiments, the disinfectant or antibacterial agent is a fluid or gel.
[0054] Compression of the absorbent material 50 toward the top wall 22 of the housing 20 upon connection to the female or male luer connector allows the connector to come into contact with a disinfectant or antimicrobial agent to disinfect the female or male luer connector.
[0055] In exemplary implementations of embodiments of the present disclosure, protrusion 30 may be cantilevered, for example, by having one or more gaps or notches 35. In exemplary implementations, at least a portion of cantilevered protrusion 30 may bend, which allows for a better interference fit with a fitting, such as at least one of a male or female connector.
[0056] In yet another exemplary implementation, the protrusion 30 may extend essentially from the inner surface 25 of the top wall 22 toward the bottom of the housing 20 .
[0057] In yet another exemplary implementation, the protrusion 30 may extend essentially parallel to the sidewall 26 .
[0058] In yet another exemplary implementation, the inner portion 32 of the cavity 28 can extend further into the cap toward the inner surface 25 of the upper wall 22 than the outer portion 34, which terminates at the apex 39, as shown, for example, in the cross-sectional views of Figures 5-7B.
[0059] In yet another exemplary implementation, the shape of the inner threads 36 and / or inner surface 31 can essentially correspond to or match the shape of the outer threads 38 and / or outer surface 33, respectively.
[0060] 7A and 7B, according to an exemplary embodiment of the present disclosure, cap 20 can receive a tip or hub 72 of a female needleless connector 70 within interior portion 32 of cavity 28, e.g., after peel seal 60 sealing cavity 28 is removed or when a peel seal film is pierced, and secure the tip of needleless connector 70 within interior portion 32 of cavity 28, e.g., by threading. One or more threads 36 can be sufficient to mate with a mating feature 74 (e.g., one or more protrusions, projections, and / or screws) on hub or tip 72 of needleless connector 70, as described, for example, in related U.S. patent application Ser. Nos. 15 / 408,278 and 15 / 408,187, filed Jan. 17, 2017.
[0061] 7A and 7B, according to an exemplary embodiment of the present disclosure, cap 20 can secure tip or hub 82 of female needleless connector 80 within inner portion 32 of cavity 28 by receiving tip or hub 82 of female needleless connector 80 within inner portion 32 of cavity 28 and securing collar 84 of connector 80 within outer portion 34 of cavity 28, e.g., in a threaded manner, for example, after a peel sealing film sealing cavity 25 has been removed or pierced. One or more threads 38 can be sufficient to mate with mating feature 86 (e.g., one or more protrusions, projections, and / or threads) of collar 84 of needleless connector 80.
[0062] 3A-7B, protrusion 30 is shown as having two branches separated by notch 35 and essentially extending from surface 25 of top wall 22. However, within the scope of this disclosure, caps may include a single protrusion 30 without notch 35, or a cap with any number of identical and / or different protrusions 30 (in any dimensional characteristic, such as length, width, thickness, or shape), so long as protrusion 30 is configured to engage a female connector with respect to its inner surface and a male connector with respect to its outer surface.
[0063] 3A-4B, in one or more embodiments, the exterior surface of sidewall 26 includes a plurality of gripping members 90. As shown in FIG.
[0064] Cap 10 can be made from any of several types of plastic materials, such as polycarbonate, polypropylene, polyethylene, polyethylene terephthalate, polylactide, acrylonitrile butadiene styrene, or other moldable plastic materials used in medical devices. In one or more embodiments, cap 10 comprises a polypropylene or polyethylene material.
[0065] According to an exemplary implementation of the disclosed embodiments, cap 10 is as described above with reference to Figures 3A-7B and may further include an outer housing that implements the safety features and structures described in U.S. Patent Application Nos. 62 / 488,266, filed April 21, 2017, and 62 / 523,506, filed June 22, 2017, for example, by modifying wall 22 and / or wall 26 of housing 20.
[0066] According to yet another exemplary implementation of the presently disclosed embodiments, cap 10 described above with reference to Figures 3A-7B can be provided with various venting features and structures as described in U.S. Patent Application Nos. 15 / 408,278 and 15 / 408,187 (both filed January 17, 2017), for example, by varying the shape and / or size of protrusion 30, and / or the configuration (pitch, spacing, thickness, and / or other structural features) of threads 36 and / or threads 38, and / or the configuration of surfaces 31 and / or surfaces 33.
[0067] A second embodiment of the present disclosure relates to a cap including a housing, a removable insert, and an absorbent material, as shown in Figures 8-43. Exploded views of the cap of the second embodiment of the present disclosure relate to a cap 110 including a housing 120, a removable insert 130, and an absorbent material 150, as shown in Figures 8-11.
[0068] As shown in FIGS. 12-14 , housing 120 includes a top wall 122, a generally cylindrical side wall 126 (which may be generally cylindrical) having an inner surface 121 forming a first cavity 128, and an open bottom 123 formed by cylindrical side wall 126 having an opening 127 to first cavity 128 within housing 120, which can receive the hub of a female needleless connector or a male needleless connector. Opening 127 is located in bottom 123 of housing 120. An inner surface 125 of top wall 122 can form the top of cavity 128. With reference to FIGS. 12-14 , in one or more embodiments, the outer surface of side wall 126 includes a plurality of gripping members 90.
[0069] 13, the rim 129 at the open bottom 123 of the housing 120 may include a peripheral protrusion 129 extending radially outward from the annular sidewall 126. The surface of the rim 129 at the open bottom 123 of the housing 120 also defines an engagement surface to which the peelable seal 160 may be secured.
[0070] 12 and 13 , in one or more embodiments, a peelable seal 160 is disposed on the mating surface of the open bottom 123 of the housing 120 to prevent the disinfectant or antimicrobial agent from escaping from the cavity 128. With the absorbent material 150 properly inserted into the cavity 128 of the cap 10, the peelable seal 160 can be secured to the mating surface of the open bottom 123 of the housing 20. The peelable seal 160 minimizes the ingress of potentially hazardous particles, provides a substantially impermeable enclosure for the cap 110, and provides a leak-proof and protective enclosure to protect the contents of the absorbent material 50 contained within the cavity 128 and / or maintain a sealed, sterile environment. The peelable seal 160 provides a sufficient seal over a range of temperatures, pressures, and humidity levels.
[0071] In one or more embodiments, the peel seal 160 comprises a peel edge of aluminum or a multilayer polymer film. In certain embodiments, the peel seal 160 is heat-sealed or induction-sealed to the end face or cap open end of the mating lid. In one or more embodiments, the peel seal 60 comprises a moisture barrier.
[0072] 15-19, removable insert 130 can include a closed distal end with a rimmed distal wall 132, an open proximal end 134, and a sidewall extending proximally from distal wall 132 toward open proximal end 134. Removable insert 130 in the form of a split threaded protrusion having distal wall 132, split threaded protrusion having an inner surface 131 and an outer surface 133. Inner surface 131 of split threaded protrusion 130 defines a second cavity 140.
[0073] As shown in FIGS. 20-24 , internal threads 136 can be provided on the inner surface 131 of the split threaded protrusion 130, and the internal threads 136 can be sufficiently coupled with a mating feature of a female needleless connector. In one or more embodiments, the cap 110 of the present disclosure has internal threads 136 sized and pitched to engage with the threads of a female connector, such as a female Luer connector. Such connectors are commonly and typically used as catheters and other fluid-tight protective connectors in medical applications. In some embodiments, the cap 110 provides a protective cover for the female Luer connector when the threads of the female Luer connector engage with the internal threads 136 of the cap 110 to form a removable connection. In one or more embodiments, the inner wall surface includes internal threads 136 adjacent the open end. The internal threads 136 are adapted and sized to engage with the female Luer connector. In one or more embodiments, the internal threads 136 adjacent the open end of the cap 110 extend partially along the length of the inner surface 131 of the split thread protrusion 130. The inner surface 131 of the split thread protrusion 130 includes one or more gaps 135. The function of the one or more gaps 135 is to accommodate and facilitate engagement with a male luer connector. In one or more embodiments, the thread pattern on the inner surface 131 of the split thread protrusion 130 is beveled. In one or more embodiments, the thread pattern on the inner surface 131 of the split thread protrusion 130 is helical.
[0074] The outer surface 133 of the split threaded protrusion 130 is provided with external threads 138 which are sufficient to mate with mating features of a male needleless connector.
[0075] In one or more embodiments, as shown in Figures 15-18, the split screw protrusion 130 includes one or more cantilevered branches separated by one or more respective gaps 135, at least one of the cantilevered branches configured to bend, thereby facilitating an interference fit between the protrusion 130 and a mating feature of the male or female needleless connector. In one or more embodiments, the cap 110 further includes one or more bridge portions 143 positioned to span one or more gaps between the one or more cantilevered branches of the split screw protrusion 30.
[0076] The sidewall of the removable insert 130 has an upper portion and a lower portion. In one or more embodiments, the upper portion of the sidewall can slope outward toward the distal wall, and the lower portion of the sidewall can be cylindrical, as shown in Figures 15-19.
[0077] As shown in FIGS. 15-18 , to achieve better rigidity, in embodiments according to the present disclosure, bridge portions 143 can be disposed between at least some of the branches 144, or optionally between all of the branches 144. The bridge portions 143 are generally formed from the same material as the branches 144 and the housing 120. In one or more embodiments, the branches 144 and bridge portions 143 are integrally molded. The bridge portions 143 improve rigidity, thereby providing structural integrity to the branches 144 and allowing for less material to be used during the cap manufacturing process. Good rigidity is achieved when the bridge portions are disposed substantially between the distal ends of the branches 144.
[0078] 19 shows the cap as viewed from above, along central axis A. As noted above, the sidewalls of split thread insert 130 have a radius R1, which substantially corresponds to the radius of the neck element of the male or female connector. The sidewalls of split thread insert 130 slope outward and expand to a radius R2, which is larger than radius R1 of split thread insert 130. Radius R2 substantially corresponds to the maximum radius of split thread insert 130, at which point a lip is formed for mounting split thread insert 130 into a recess formed in the inner surface of housing 120.
[0079] In an exemplary implementation of an embodiment of the present disclosure, the protrusion 130 can be cantilevered, for example, by having one or more gaps or notches 135. In an exemplary implementation, at least a portion of the cantilevered protrusion 130 can bend, which allows for a better interference fit with a fitting, such as at least one of a male connector or a female connector.
[0080] In yet another exemplary implementation, the protrusion 130 can extend essentially from the inner surface 125 of the top wall 122 toward the bottom of the housing 120 .
[0081] In yet another exemplary implementation, the protrusion 130 may extend essentially parallel to the sidewall 126 .
[0082] In yet another exemplary implementation, the inner portion 32 of the cavity 128 can extend further into the cap toward the inner surface 25 of the upper wall 122 than the outer portion 134, which terminates at the top, as shown in cross section in FIG. 33, for example.
[0083] In yet another exemplary implementation, the shape of the inner threads 136 and / or inner surface 131 can essentially correspond to or match the shape of the outer threads 138 and / or outer surface 133, respectively.
[0084] 15-18, protrusion 130 is shown as including two branches separated by notch 135 and essentially extending from surface 125 of top wall 122. However, within the scope of the present disclosure, the cap may include a single protrusion 30 without notch 135, or may have any number of identical and / or different protrusions 130 (in any dimensional characteristic, such as length, width, thickness, or shape), so long as protrusion 130 is configured to engage a female connector with respect to its inner surface and to engage a male connector with respect to its outer surface.
[0085] 20-24 show cross-sectional views of split thread projection 130 showing the thread patterns of inner threads 136 and outer threads 138. FIG.
[0086] As shown in Figures 20-28, the external threads 138 on the outer sidewall of the split threaded insert 130 extend in a helical pattern.
[0087] As shown in Figures 24 and 27, the internal threads 136 on the inner sidewall of the split threaded insert 130 extend in a helical pattern.
[0088] As shown in FIGS. 25-28, two or more removable inserts 130 may be joined together by a connecting member 139.
[0089] As shown in Figures 29-30, a removable insert 130 can be positioned within first cavity 128. As shown in Figures 29-30, a split-threaded insert in the form of a protrusion 130 (which can be essentially cylindrical and coaxial with sidewall 126) is disposed within cavity 128. The protrusion 130 has an inner surface 131 that defines an inner portion 132 of cavity 128 and an outer surface 133 that defines an outer portion 134 of cavity 128. Split-threaded insert 130 is in the form of protrusion 130 and includes internal threads 136 on its inner surface 131 to engage the female connector and external threads 138 on its outer surface 133 to engage the male connector.
[0090] As shown in FIG. 31 , in one or more embodiments, the split thread insert 130 and the housing 120 can be bonded together by ultrasonic welding or a solvent-resistant biocompatible adhesive. As shown in FIGS. 31-38 , the split thread insert 130 and the housing 120 can also be bonded together by an interference fit or a snap fit. A protrusion or wedge can be located on the distal end of the split thread insert 130 to provide a snap-on connection to the cap housing. The inner surface 125 of the top wall 122 of the housing 120 can have a recess into which the protrusion or wedge of the insert can be inserted.
[0091] The protrusion or wedge portion of the split thread insert 130 is adapted to temporarily or permanently couple to the recess 124 in the inner surface 125 of the top wall 122 of the housing 120. When the wedge portion of the split thread insert 130 is attached to the recess 124 in the inner surface 125 of the top wall 122 of the housing 120, the recess is deformed and pushed sideways. As the wedge portion of the split thread insert 130 passes the edge of the recess, the edge of the recess attempts to return to its original position, catching the protrusion or wedge portion of the split thread insert 130, thereby holding the split thread insert 130 in place in the housing 120.
[0092] As shown in FIG. 32, to prevent the insert from rotating relative to the cap body, protrusions such as pins 30A, slots 30B, or other shapes such as tetrahedrons may be present on the top wall 122 or side wall 126 of the housing, or on the removable insert 130, while corresponding shapes may be present on the other to receive the protrusions.
[0093] As shown in FIGS. 33-35 , the bridge 143 connecting the gap 142 between the branches 144 can limit the bending angle of the branches 144 and improve the security of the engagement when the antiseptic cap is connected to a male or female connector. As shown in FIGS. 33-35 , the thickness and width of the bridge 143 can be adjusted to adjust / control the apparent stiffness and change the desired displacement angle, taking into account the specific material properties of the branches. The thickness of the bridge 143 can be the thickness of a full or partial cross section of the branch 144, with or without the thread shape. With reference to FIG. 33 , the shape of the split thread insert 130 can vary. The split thread insert 130 can have various shapes, including, but not limited to, a trapezoid, an inverted trapezoid, a convex inner surface (e.g., a paraboloid), a concave inner surface, or a linear shape (i.e., a cylindrical or semi-conical shape). In one or more embodiments, the shape of the split thread insert 130 and / or the opening of the split thread insert 130 can vary. In one or more embodiments, as shown in FIG. 33 , the angle α between the distal wall of the split thread insert 130 and the branches of the split thread insert 130 can be in the range of 80-100° or 85-95°, and the split thread insert 130 can have a shape including, but not limited to, a trapezoidal or an inverted trapezoidal shape. In one or more embodiments, as shown in FIG. 33 , the angle α between the distal wall of the split thread insert 130 and the branches is 90°. In one or more embodiments, the inner diameter of the split thread insert 130 is cylindrical. In one or more embodiments, the diameter of the cavity between the branches of the split thread insert 130 increases in the direction from the distal wall of the split thread insert 130 to the open proximal end of the split thread insert. In one or more embodiments, the diameter of the cavity between the branches of the split thread insert 130 decreases in the direction from the distal wall of the split thread insert 130 to the open proximal end of the split thread insert. In one or more embodiments, the sidewalls of the split thread insert 130 slope outward from the distal wall toward the open proximal end. In one or more embodiments, the sidewalls of the split thread insert 130 slope inward from the distal wall toward the open proximal end.
[0094] As shown in Figures 36-38, prong 144 may be threaded along its entire length or a portion of its length to control the depth to which the connector can be threaded into the cavity. This facilitates controlling the amount of compression of the IPA-impregnated sponge and, therefore, the amount of IPA used when engaging the connector.
[0095] In yet another exemplary implementation, as shown in Figure 29, the absorbent material 150 functions as a sanitizing member, such as an IPA soaked sponge and / or sponge. In one or more embodiments, the absorbent material 150 may be in the form of one or more sponges, formed together as a single cleaning member or separately as multiple cleaning members, and may be provided within the cavity 128, for example, adjacent the inner surface 125 of the top wall 122 of the inner portion 132 and / or toward the top end of the outer portion 134 of the cavity 128.
[0096] The cap 110 can be disinfected when used with a luer connector by incorporating a disinfectant or antimicrobial agent into the cavity 128 of the cap 110. The disinfectant or antimicrobial agent can be contained directly in the chamber 112, or the disinfectant or antimicrobial agent can be absorbed into a sponge or foam material that fills the chamber of the cap 110. The cap 110 is designed to accommodate interaction with a variety of disinfectants. In one or more embodiments, the disinfectant or antimicrobial agent can include various alcohols or chlorhexidine. In one or more embodiments, the disinfectant or antibacterial agent can be selected from the group consisting essentially of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorhexidine, chlorhexidine diacetate, chlorhexidine gluconate, povidone-iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotics, and mixtures thereof. In certain embodiments, the disinfectant or antibacterial agent comprises at least one of chlorhexidine gluconate and chlorhexidine diacetate. In one or more embodiments, the disinfectant or antibacterial agent is a fluid or gel.
[0097] Compression of the absorbent material 50 towards the top wall 122 of the housing 120 upon connection to the female or male luer connector allows the connector to come into contact with a disinfectant or antimicrobial agent to disinfect the female or male luer connector.
[0098] In an exemplary implementation, a peel seal 160 can be provided to seal the opening 127 prior to use of the cap 110, for example, by attaching it to the surface of the edge 129 of the open bottom 123 of the housing 120, as described in the above-mentioned prior application.
[0099] 29-30, according to an exemplary embodiment of the present disclosure, cap 110 can receive the tip or hub of a female needleless connector within interior portion 132 of cavity 128, for example, after peel seal 160 has been removed or when the peel seal has been pierced, and can secure (e.g., by screws) the tip of the needleless connector within interior portion 132 of cavity 128. One or more screws 136 can be sufficient to mate with a mating feature (e.g., one or more protrusions, projections, and / or screws) on the hub or tip of the needleless connector.
[0100] According to an exemplary embodiment of the present disclosure, cap 110 can receive the tip or hub of a male needleless connector within interior portion 132 of cavity 128 and secure the tip or hub of the needleless connector within the interior portion of cavity 128 by securing (e.g., by screws) a collar of the connector within the exterior portion of cavity 128, for example, after peel seal 150 is removed or when the peel sealing film is pierced. One or more screws 138 can be sufficient to mate with a mating feature 186 (e.g., one or more protrusions, projections, and / or screws) of collar 184 of needleless connector 180.
[0101] Cap 110 can be made of any of several types of plastic materials, such as polycarbonate, polypropylene, polyethylene, polyethylene terephthalate, polylactide, acrylonitrile butadiene styrene, or other moldable plastic materials used in medical devices. In one or more embodiments, cap 110 comprises a polypropylene or polyethylene material.
[0102] In one or more embodiments, the female connector can be selected from the group consisting essentially of a needleless connector, a catheter luer connector, a stopcock, and a hemodialysis connector. In one or more embodiments, the needleless connector is selected from a Q-Star connector, MaxPlus, MaxPlusClear, MaxZero, UltraSite, CareSite, InVisionPlus, SafeLine, OneLink, VLink, ClearLink, NutraClear, Kurabe, MicroKurabe, MicroKurabeClear, Neutron, NanoClear, Kendall, Nexus, InVision, BudSite, Bionecta, etc.
[0103] In one or more embodiments, the male connector can be an intravenous tubing end, a stopcock, or a male locking luer.
[0104] A third aspect of the present disclosure relates to a cap 210 including a housing 220, a removable insert 230, an absorbent material 250, a disinfectant or antibacterial agent, and a septum 262, as shown in FIGS.
[0105] In one or more embodiments, the embodiments of the housing, removable insert, absorbent material, disinfectant or antimicrobial agent may be the same as those described above for the second aspect of the present disclosure.
[0106] In one or more embodiments, as shown in FIGS. 44-46 , the housing 220 can include a top wall 222, a generally cylindrical sidewall 226 that defines a first cavity 228, and an open bottom 223 formed by the cylindrical sidewall 226 with an opening to the first cavity 228 within the housing 222 for receiving the hub of a female needleless connector or a male needleless connector. In one or more embodiments, a removable insert 230 can be disposed within the first cavity 228. In one or more embodiments, the removable insert 230 includes a closed distal end having a distal wall, an open proximal end, and a sidewall extending proximally from the distal wall toward the open proximal end. In one or more embodiments, the sidewall can include a split threaded protrusion integrally formed with the distal wall, the split threaded protrusion having an inner surface 231 and an outer surface 233. In one or more embodiments, the inner surface 231 of the split threaded protrusion defines a second cavity 240. In one or more embodiments, the inner surface 231 of the split threaded protrusion includes internal threads 236 that are sufficient to mate with a mating feature of a female needleless connector. In one or more embodiments, the outer surface 233 of the split threaded protrusion 230 includes external threads 238 that are sufficient to mate with a mating feature of a male needleless connector.
[0107] In one or more embodiments, as shown in Figure 43, the split thread protrusion 230 includes one or more cantilevered prongs separated by one or more respective gaps 235. In one or more embodiments, at least one prong can be bent to facilitate an interference fit between the protrusion and a mating feature of the male or female needleless connector.
[0108] |In one or more embodiments, the cap 210 further includes one or more bridge portions 243 positioned to span one or more gaps 235 between one or more cantilevered branches of the split screw protrusion.
[0109] In one or more embodiments, the sidewall of the insert 230 has an upper portion and a lower portion. In one or more embodiments, the upper portion of the sidewall may slope outward toward the distal wall, and the lower portion of the sidewall may be cylindrical.
[0110] 43-50 , according to an exemplary embodiment of the present disclosure, a cap 210 comprises a housing 220 including a top wall 222 with an inner surface 225, a side wall 226 (which may be essentially cylindrical) with an inner surface 221, and an opening 227 to a cavity 228. The opening 227 is disposed at a bottom 223 of the housing 220. The inner surface 225 of the top wall 222 may form an upper portion of the cavity 228. Disposed within the cavity 228 is a protrusion 30 (which may be essentially cylindrical and coaxial with the side wall 226) having an inner surface 231 that defines an inner portion 232 of the cavity 228 and an outer surface 233 that defines an outer portion 234 of the cavity 228. The protrusion 230 includes internal threads 236 on its inner surface 231 for engaging a female connector and external threads 238 on its outer surface 233 for engaging a male connector.
[0111] In an exemplary implementation, as shown in FIG. 46 , peel seal 260 can be in the form of a film and can be provided to seal opening 227 prior to use of cap 210, for example, by attaching it to the surface of edge 229 of open bottom 223 of housing 220, as described in the above-referenced prior application.
[0112] The rim 229 of the open bottom 223 of the housing 220 may include a peripheral protrusion extending radially outward from the annular sidewall 226 at the open bottom 223 defining an end surface. The surface of the rim 229 of the open bottom 223 of the housing 220 also defines an engagement surface against which the peelable seal 260 may be secured.
[0113] Referring to FIG. 46 , in one or more embodiments, a peelable seal 260 is positioned on the mating surface of the open bottom 223 of the housing 220 to prevent the disinfectant or antimicrobial agent from escaping from the cavity 228. With the absorbent material 250 properly inserted into the cavity 228 of the cap 210, the peelable seal 260 can be secured to the mating surface of the open bottom 123 of the housing 220. The peelable seal 260 minimizes the ingress of potentially hazardous particles, provides a substantially impermeable enclosure for the cap 210, and provides a leak-proof and protective enclosure to protect the contents of the absorbent material 250 contained within the cavity 228 and / or maintain a sealed, sterile environment. The peelable seal 260 provides a sufficient seal over a range of temperatures, pressures, and humidity levels. In one or more embodiments, the peelable seal 260 comprises a peel edge of aluminum or a multilayer polymer film. In certain embodiments, the peelable seal 260 is heat-sealed or induction-sealed to the end face of a mating lid or the open end of a cap. In one or more embodiments, the peelable seal 260 includes a moisture barrier layer.
[0114] In yet another exemplary implementation, the absorbent material 250 is a disinfecting member in the form of an IPA-soaked sponge provided within the cavity 228, for example, near the inner surface 225 of the upper wall 222 of the inner portion 232 and / or toward the upper portion 239 of the outer portion 234 of the cavity 228, as described in the second aspect of the present disclosure.
[0115] The cap 210 can be disinfected when used with a luer connector by incorporating a disinfectant or antimicrobial agent into the cavity 228 of the cap 210. The disinfectant or antimicrobial agent can be contained directly in the chamber 212, or the disinfectant or antimicrobial agent can be absorbed into a sponge or foam material that fills the chamber of the cap 210. The cap 210 is designed to accommodate interaction with a variety of disinfectants. In one or more embodiments, the disinfectant or antimicrobial agent can include various alcohols or chlorhexidine. In one or more embodiments, the disinfectant or antibacterial agent can be selected from the group consisting essentially of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorhexidine, chlorhexidine diacetate, chlorhexidine gluconate, povidone-iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotics, and mixtures thereof. In certain embodiments, the disinfectant or antibacterial agent comprises at least one of chlorhexidine gluconate and chlorhexidine diacetate. In one or more embodiments, the disinfectant or antibacterial agent is a fluid or gel.
[0116] Compression of the absorbent material 250 towards the top wall 222 of the housing 220 upon connection to the female or male luer connector allows the connector to come into contact with a disinfectant or antimicrobial agent to disinfect the female or male luer connector.
[0117] In an exemplary implementation of an embodiment of the present disclosure, the protrusion 230 can be cantilevered, for example, by having one or more gaps or notches 235. In an exemplary implementation, at least a portion of the cantilevered protrusion 230 can bend, which allows for a better interference fit with a fitting, such as at least one of a male connector or a female connector.
[0118] In yet another exemplary implementation, the protrusion 230 extends essentially from the inner surface 225 of the top wall 222 toward the bottom of the housing 220 .
[0119] In yet another exemplary implementation, protrusion 230 can extend essentially parallel to sidewall 226. In yet another exemplary embodiment, inner portion 232 of cavity 228 can extend further into the cap toward inner surface 225 of top wall 222 than outer portion 234, which terminates at apex 239. In yet another exemplary implementation, the shape of inner threads 236 and / or inner surface 231 can essentially correspond to or match the shape of outer threads 238 and / or outer surface 233, respectively.
[0120] 48 , according to an exemplary embodiment of the present disclosure, the cap 220 can receive a tip or hub 272 of a female needleless connector 270 within the interior portion 232 of the cavity 228 and secure (e.g., with screws) the tip of the needleless connector 270 within the interior portion 232 of the cavity 228, for example, after the cavity 228 is sealed by a peel seal film or when the peel seal film is pierced. The one or more threads 236 can be sufficient to mate with a mating feature 274 (e.g., one or more protrusions, projections, and / or screws) on the hub or tip 272 of the needleless connector 270, for example, as described in related U.S. patent application Ser. Nos. 15 / 408,278 and 15 / 408,187, filed Jan. 17, 2017.
[0121] 47-48 , according to an exemplary embodiment of the present disclosure, cap 220 can receive tip or hub 282 of male needleless connector 280 within outer portion 234 of cavity 228 and secure (e.g., by screws) collar 284 of connector 280 within outer portion 234 of cavity 228, for example, after cavity 228 is sealed by a peel seal film or when the peel seal film is pierced, thereby securing tip or hub 282 of needleless connector 280 within inner portion 232 of cavity 228. One or more screws 238 can be sufficient to mate with mating feature 286 (e.g., one or more protrusions, projections, and / or screws) of collar 284 of needleless connector 280.
[0122] 43, protrusion 230 is shown as essentially including two branches separated by a notch or gap 235 and extending from surface 225 of top wall 222. However, within the scope of this disclosure, the cap may include a single protrusion 230 without a notch 135, or may have any number of identical and / or different protrusions 230 (in any dimensional characteristic such as length, width, thickness, or shape), so long as protrusion 230 is configured to engage a female connector on its inner surface and a male connector on its outer surface.
[0123] 44-46, in one or more embodiments, the exterior surface of the sidewall 226 includes a plurality of gripping members 290.
[0124] Cap 210 can be made from any of several types of plastic materials, such as polycarbonate, polypropylene, polyethylene, polyethylene terephthalate, polylactide, acrylonitrile butadiene styrene, or other moldable plastic materials used in medical devices. In one or more embodiments, cap 210 comprises a polypropylene or polyethylene material.
[0125] In one or more embodiments, when the hub of the female needleless connector is received within the interior surface of the second cavity (40, 140, 240), the hub is secured within the interior surface of the second cavity (40, 140, 240) by interlocking at least a portion of the internal threads with a mating feature on the hub of the female needleless connector. In one or more embodiments, when the hub of the male needleless connector is received within the interior surface of the second cavity (40, 140, 240), the hub is secured within the first cavity by interlocking at least a portion of the external threads on the exterior surface of the protrusion with a mating feature on the collar of the male needleless connector when the collar is received within the exterior portion of the second cavity (40, 140, 240).
[0126] In one or more embodiments, the inner portion of the second cavity (40, 140, 240) can extend further into the housing toward the top wall than the outer portion of the second cavity (40, 140, 240). In one or more embodiments, the shape of the inner threads can be essentially parallel to or coincident with the shape of the outer threads.
[0127] In one or more embodiments, the internal and external threads can include an oblique thread pattern. In one or more embodiments, the internal and external threads can include a helical thread pattern. In one or more embodiments, the internal or external threads can include one or more gaps in the thread pattern.
[0128] In one or more embodiments, the inner surface of the protrusion can be essentially parallel to the outer surface of the protrusion.
[0129] In one or more embodiments, at least one antiseptic sponge is configured within the second cavity (40, 140, 240).
[0130] In one or more embodiments, the cap includes a removable cover that seals the opening of the second cavity, thereby allowing the disinfecting sponge to be sealed within the second cavity prior to use of the cap.
[0131] In one or more embodiments, the absorbent material 250 can be configured within the second cavity 240. As shown in FIGS. 49 and 50 , the top surface of the absorbent material 250 has a recessed opening contoured to accommodate the tip of a corresponding male or female medical connector when placed over the tip of the medical connector. In one or more embodiments, a disinfectant or antimicrobial agent disinfects the exterior and interior surfaces of the female or male needleless connector when the female or male needleless connector is inserted into the second cavity 240. In one or more embodiments, as shown in FIG. 43 , a septum 262 can be attached to the open bottom of the insert adjacent to the recessed opening in the top surface of the absorbent material 250, thereby forming a seal to maintain the disinfectant or antimicrobial agent within the second cavity 240 prior to use of the cap 210. In one or more embodiments, the absorbent material 250 can be a foam or sponge. In one embodiment, the foam can be polyurethane foam. In one or more embodiments, the absorbent material 250 can include slits. In one or more embodiments, compression of the absorbent material 250 toward the upper wall of the housing occurs upon connection to the female needleless connector, whereby compression of the absorbent material sterilizes the female needleless connector. In one or more embodiments, the absorbent material 250 can be subjected to radial compression by the internal threads on the internal surface of the split screw protrusion to retain the absorbent material within the second cavity. In one or more embodiments, the absorbent material 250 is a closed-cell foam sponge having surface roughness and shape characteristics effective for sealing the flow path opening of the IV Luer connector when the antiseptic cap 210 is applied. Sealing the connector when the antiseptic cap is applied is particularly advantageous for the antiseptic cap 210 for the following reasons:1) The sealing effect of the absorbent material and / or the septum limits the amount of disinfectant solution entering the flow path opening of the IV Luer connector; 2) When the disinfectant cap is applied to the Luer connector, the sealing effect of the absorbent material and / or the septum limits the amount of fluid that will leak from the Luer connector and the IV line to which it is attached if a clamp or valve on the IV line is inadvertently left open.
[0132] In one or more embodiments, the female connector can be selected from the group consisting essentially of a needleless connector, a catheter luer connector, a stopcock, and a hemodialysis connector. In one or more embodiments, the needleless connector is selected from a Q-style connector, MaxPlus, MaxPlusClear, MaxZero, UltraSite, CareSite, InVisionPlus, SafeLine, OneLink, VLink, ClearLink, NutraClear, Kurabe, MicroKurabe, MicroKurabeClear, Neutron, NanoClear, Kendall, Nexus, InVision, BudSite, Bionecta, etc.
[0133] In one or more embodiments, the male connector can be an intravenous tubing end, a stopcock, or a male locking luer.
[0134] In some embodiments, the connector comprises a needleless infusion site, which may also be referred to as a needleless infusion port, hub, valve, or device, or a needleless access site, port, hub, valve, or device, such as, for example, Clave® (available from ICU Medical, Inc.), SmartSite® (available from Cardinal health, INC.), Q-Syte TM(available from Becton, Dickinson, and Company). In some embodiments, the cap can be connected to any of a variety of different needleless injection sites, such as those listed above. In one or more embodiments, after the cap is coupled to the connector, the connector remains uncontaminated while coupled to the cap, eliminating the need to disinfect the connector (e.g., treat with alcohol swabs) before reconnecting it to another connector. The use of the cap can replace standard wiping procedures for cleaning connectors.
[0135] A fourth aspect of the present disclosure relates to a method for disinfecting a medical connector, the method comprising connecting a cap of one or more embodiments to the medical connector, the connecting comprising engaging threads of the medical connector with threads on an inner surface or an outer surface of a second cavity of the cap when the medical connector is inserted into the cap, such that the medical connector comes into contact with an absorbent material and a disinfectant or an antimicrobial agent.
[0136] The exemplary caps (10, 110, 210) of the present disclosure allow for continuous disinfection of the connector and minimize the ingress of microbial agents.
[0137] Currently available disinfection caps are capable of disinfecting only one of three types of Luer fittings: female Luer connectors for needleless connectors, female Luer connectors for stopcocks, and male Luer connectors for intravenous injection sites. Therefore, to avoid the need to use different types of disinfection caps to clean different types of connectors, the exemplary caps (10, 110, 210) engage both male and female Luer connectors, thereby allowing users to disinfect different types of connectors with a single device. When the exemplary caps (10, 110, 210) are attached to the female Luer connector, the female Luer connector is inserted into the second cavity (40, 140, 240) and threaded onto the internal threads (36, 136, 236) of the exemplary caps (10, 110, 210). When the cap is attached to the male luer connector, the male luer connector is inserted into the second cavity (40, 140, 240) and threaded onto the external threads (38, 138, 238) of the exemplary cap (10, 110, 210). After inserting the female luer connector into the second cavity (40, 140, 240) of the exemplary cap (10, 110, 210), the absorbent material (50, 150, 250) and the disinfectant or antimicrobial agent contact the female luer connector. The absorbent material (50, 150, 250) and the disinfectant or antimicrobial agent contact the male luer connector, the female luer connector, and the hemodialysis connector after the connector is inserted into the second cavity (40, 140, 240) of the exemplary cap (10, 110, 210).
[0138] Thus, the devices of the present disclosure can be attached to both male and female luer connectors, thereby meeting the current need in the art.
[0139] A fifth aspect of the present disclosure relates to an assembly comprising one or more embodiments of the cap connected to a medical connector, in one or more embodiments, the medical connector being selected from a male luer connector, a female luer connector, and a needleless connector.
[0140] While the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the embodiments of the present disclosure. For example, the disinfecting sponge may include any suitable disinfecting or other application-specific substance and may be made of any suitable material. Also, the inner and / or outer housing of the cap may be one-off molded or made by other suitable processes. Furthermore, the features or elements of the exemplary implementations of the embodiments of the present disclosure described above and illustrated in the drawings may be implemented individually or in any combination, as will be readily understood by those skilled in the art, without departing from the spirit and scope of the embodiments of the present disclosure.
[0141] Additionally, the included drawings further illustrate non-limiting examples of the implementation of certain exemplary embodiments of the present disclosure and aid in the explanation of the technology related thereto. Any specific or relative dimensions or measurements shown in the above drawings or elsewhere are exemplary and are not intended to limit the scope or content of the inventive designs or methods as would be understood by one of ordinary skill in the relevant art of the invention.
[0142] Other objects, advantages and salient features of the present disclosure will become apparent to those skilled in the art from the provided details, which, taken in conjunction with the accompanying drawings, disclose illustrative embodiments of the present disclosure.
[0143] References throughout this specification to "one embodiment," "a particular embodiment," "one or more embodiments," or "an embodiment" mean that a particular feature, structure, material, or characteristic described in connection with an embodiment is included in at least one embodiment of the disclosure. Thus, the appearances of phrases such as "in one or more embodiments," "in a particular embodiment," "in one embodiment," or "in an embodiment" in various places throughout this specification are not necessarily all referring to the same embodiment of the disclosure. Furthermore, particular features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments.
[0144] Although the present disclosure has been described with reference to particular embodiments, it is to be understood that these embodiments are merely illustrative of the principles and applications of the present disclosure. It will be apparent to those skilled in the art that various modifications and variations can be made to the method and apparatus of the present invention without departing from the spirit and scope of the invention. Therefore, it is intended that the present disclosure cover modifications and variations that come within the scope of the appended claims and their equivalents.
Claims
1. A housing, The upper wall and a sidewall defining a first cavity; a housing including an open bottom defined by the sidewalls and having an opening to a first cavity within the housing for receiving a hub of a needleless connector; a protrusion disposed within the first cavity of the housing and having an inner surface and an outer surface, the inner surface defining a second cavity; internal threads on the inner surface of the protrusion; a protrusion having external threads on an outer surface of the protrusion; A cap comprising:
2. 2. The cap of claim 1, wherein when a hub of a female needleless connector is received within the inner surface of the second cavity, the hub is secured within the inner surface of the second cavity by interlocking at least a portion of the internal threads with a mating feature of the hub of the female needleless connector, the mating feature being selected from one or more protrusions, projections, or screws.
3. 2. The cap of claim 1, wherein when a hub of a male needleless connector is received within the inner surface of the second cavity, the hub is secured within the first cavity by engaging at least a portion of the external threads on the outer surface of the protrusion with a mating feature on a collar of the male needleless connector when the collar is received within the outer portion of the second cavity.
4. 3. The cap of claim 2, wherein the protrusion includes one or more cantilevered branches each separated by one or more gaps, and at least one of the branches is configured to bend to facilitate an interference fit between the protrusion and a mating feature of the female needleless connector.
5. 4. The cap of claim 3, wherein the protrusion includes one or more cantilevered prongs each separated by one or more gaps, and at least one of the prongs is configured to bend to facilitate an interference fit between the protrusion and a mating feature of the male needleless connector.
6. 2. The cap of claim 1, wherein the protrusion extends from the inner surface of the top wall toward the open bottom of the housing.
7. The cap of claim 1 , wherein the protrusion extends parallel to the side wall of the housing.
8. 2. The cap of claim 1, wherein the inner portion of the second cavity extends further into the housing toward the top wall than the outer portion of the second cavity.
9. 10. The cap of claim 1, wherein the internal thread profile corresponds or matches the external thread profile.
10. The cap of claim 1 , wherein the internal threads and the external threads include an oblique thread pattern.
11. The cap of claim 1 , wherein the internal threads and the external threads include a helical thread pattern.
12. The cap of claim 1 , wherein the internal threads or the external threads include one or more gaps in the thread pattern.
13. The cap of claim 1 , wherein the inner surface of the protrusion is parallel to the outer surface of the protrusion.
14. 10. The cap of claim 1, wherein at least one disinfecting sponge is configured within the second cavity.
15. 15. The cap of claim 14, further comprising a removable cover that seals the opening to the second cavity, enclosing the disinfecting sponge within the second cavity prior to use of the cap.
16. The cap of claim 1 , wherein an outer surface of the side wall of the housing includes a plurality of gripping members.
17. The cap of claim 1 including an absorbent material configured within the second cavity.
18. 18. The cap of claim 17, wherein the absorbent material includes slits.
19. 18. The cap of claim 17, further comprising a disinfectant or antibacterial agent.
20. 20. The cap of claim 19, wherein the disinfectant or antimicrobial agent is selected from the group consisting essentially of isopropyl alcohol, ethanol, 2-propanol, butanol, methylparaben, ethylparaben, propylparaben, propyl gallate, butylated hydroxyanisole (BHA), butylated hydroxytoluene, t-butyl-hydroquinone, chloroxylenol, chlorhexidine, chlorhexidine diacetate, chlorhexidine gluconate, povidone-iodine, alcohol, dichlorobenzyl alcohol, dehydroacetic acid, hexetidine, triclosan, hydrogen peroxide, colloidal silver, benzethonium chloride, benzalkonium chloride, octenidine, antibiotics, and mixtures thereof.
21. The cap of claim 1 , wherein the protrusion is a split thread protrusion.
Citation Information
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