This invention relates to a microbial scrub brush. More particularly, this invention relates to a microbial scrub brush for a female luer and any female luer type connector including a swabable valve connector.
As is known, in a normal hospital atmosphere, female luers are used on catheters and extension line sets for drug delivery and IV infusions. Many times, a catheter will be placed in a patient and an extension line attached to the catheter for the delivery of fluids to the patient via the catheter. Generally, over time, the extension line set requires replacement with a fresh extension line set. When this is required, a current procedure is to first remove the extension line set from the catheter. Next, the existing female catheter hub on the catheter is wiped with an alcohol prep pad to clean the contact surfaces of the female luer. Thereafter, a fresh extension line set is connected to the female luer.
If the female luer is not fully cleaned, the rate of infection increases. The same is true for connecting and disconnecting on the extension line set at different points of entry, for example, a connection at a needle-less connector.
At the present time, there is no known product on the market that specifically addresses the cleaning of the female luer prior to reconnection of a new sterile extension line set.
Accordingly, it is an object of the invention to provide a simple economical device for disinfecting a female luer to receive an extension set.
It is another object of the invention to provide a sterile device to clean a female luer or any similar swabable luer.
It is another object of the invention to provide a relatively simple sterile single use device to disinfect a female luer during connection of an extension set.
Briefly, the invention employs a swab in the form of a piece of foam material that is impregnated with an anti-bacterial disinfectant and into which a female luer or the like may be inserted for cleaning upon rotation of the piece of foam material about the luer.
In addition, the swab is disposed within a housing that allows a user to manipulate the swab using the fingers of a hand. In this respect, the swab is secured, for example, by an adhesive, within the housing so that after insertion of a female luer into the swab, the housing and, thus, the swab can be rotated by the user about the surfaces of the luer. The housing is also provided with indicia to indicate to the user the number of full turns of the housing about a luer when in use.
After securement of the swab in the housing, a removable lid is placed on the housing in order to maintain the sterility of the swab prior to use.
In particular, the invention provides a microbial scrub brush that is comprised of a housing that defines a cavity, an insert of foam material that is disposed in the cavity and an anti-bacterial disinfectant in the insert.
The housing is sized to be readily handled using two or three fingers of a hand. Further, the housing is sized so that a female luer may be readily inserted into the insert within the housing cavity.
In one embodiment, the insert is provided with an annular portion for enveloping an outer surface of the female luer as well as a central portion for insertion within a central passage of the female luer for sterilizing an interior of the female luer.
The insert of foam material may be of any suitable material such as a semi-closed hydrophilic polyurethane medical grade foam. The foam material may also be a closed foam, an open foam or a semi-closed foam.
The anti-bacterial disinfectant may be of any suitable type and is in any suitable amount depending upon the size of the insert of foam material. For example, use is made of an aqueous solution containing 2% chlorhexidine gluconate (chlorhexidine Solution) in an amount of from 0.20 cc to 0.75 cc, and preferably 0.50 cc.
The scrub brush is also provided with a lid to seal the cavity and insert from the surrounding environment and to maintain the insert within the housing in a sterile condition and to keep the insert from drying out. The lid may also be provided with a pull tab to facilitate removal of the lid from the housing when the brush is to be used.
In normal operations, the lid is removed from the brush in order to expose the end of the insert within the housing. The brush is then placed over an exposed female luer, i.e. a needle-less connector, and rotated, for example for two complete revolutions. While rotating, the brush will self thread onto the female luer until the luer bottoms out. After completion, for example, of two full rotations, the brush can be removed from the luer by sliding the brush off the luer and discarded according to standard hospital protocol.
These and other objects and advantages of the invention will become more apparent from the following detailed description taken in conjunction with the accompanying drawings wherein:
Referring to
Referring to
As indicated in
Referring to
Alternatively, the insert 22 may be adhesively secured against rotation within the housing 21.
Referring to
Referring to
Referring to
In addition, the ring 25′ is provided with an inwardly directed lip 33 at an end opposite the base 24′ in order to retain an insert 22 (not shown) therein.
Referring to
The distal end 34 of the insert 22 is flat and slightly recessed within the open end of the housing 21 and the proximal end of the insert 22 is flat and can be secured by way of a suitable adhesive onto the base 24 of the housing 21. Typically, the insert 22 has an outer diameter of 9/16 inch (0.5625 inches).
The insert 22 includes an annular portion 35 and a central portion 36 with a flat end within the annular portion 35. The flat end of the central portion 36 may be co-planar with the end of the annular portion 35 as indicated in
As illustrated in
The exterior of the insert 22 may be formed to match and interlock with the internal ribs 28 of the housing 21 (see
The insert 22 is made of a semi-closed cell, hydrophilic polyurethane medical grade foam with a moderate absorption rate. The foam configuration and size is such as to hold 0.5 cc of an anti-bacterial solution with no solution leak-out.
During assembly of the scrub brush 20, the insert 22 is first secured within the housing 21 and then impregnated with the anti-bacterial solution. Thereafter, the lid 23 is secured to the housing 21.
Referring to
In normal operation, the lid 23 is removed to expose the insert 22 and the brush 20 is placed over the female luer 40 with the luer 40 inserted into the gap 37 between the two portions 35, 36 of the insert 22. The conical entrance portion 38 of the insert 22 facilitates centering of the brush 20 on the luer 40.
Next, the brush 20 is rotated. The rotation of the brush 20 causes a self-threading of the insert 22 into the passage 42 of the luer 40 until the luer 40 bottoms at the base of the gap 37 defined by the annular portion 35 and the central portion 36 of the insert 22. Typically, the brush 20 is rotated 360° twice. Upon completion of two full rotations, the brush 20 can be removed by sliding the brush 20 off the luer 40 and discarded.
The housing 21 of the scrub brush 20, when sealed by the lid 23, protects against drying out of the insert 22 and after removal of the lid 23 serves as a convenient holder for wiping of the insert 22 about a female luer or the like.
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
The housing 51 has a short flange 53 at the open end that is also provided to form a surface 50 for receiving a lid 23 as described above.
In addition, the housing 51 has a cavity 26 that is of a polygonal shape complementary to the outer cross-section to provide a plurality of flat walls 54. The cavity 26 and walls 54 are sized to receive the insert 22 in a compressed condition. That is, for a cylindrical insert 22 of 9/16 inch diameter, the oppositely disposed walls 54 are spaced apart by 0.500 inches and the oppositely disposed corners 55 formed by the walls 54 are spaced apart 0.553 inches. The insert 22 is, thus, circumferentially compressed within the cavity 26.
When a luer is inserted into the insert 22 in the housing 51, the degree of compression imposed upon the insert 22 when placed in the housing 51 causes the insert to wipe the surfaces of the luer with a scrubbing action.
The scrub brush 20 may be modified in various manners. For example, where the device being cleaned does not have a central passage, the insert 22 of the scrub brush 20 may be made without a central portion 36. In this embodiment, the scrub brush would be placed over the end of the device and then rotated so as to thread the scrub brush onto the end of the device for disinfecting purposes. Also, in this embodiment, having the insert mounted in the housing in a circumferentially compressed manner would facilitate the disinfecting action of the scrub brush on the device.
The invention thus provides a device that is easily handled and that is able to disinfect a female luer in an easy manner. Further, invention provides a device that is able to disinfect the interior of a female luer. This is a particular advantage over a cloth type wipe that cannot be readily inserted into the passage of a female luer.
The invention further provides an insert that is impregnated with an anti-bacterial solution for decontamination of a luer site that is contained in a sterile condition until ready for use and that can be readily manipulated when in use.
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