Sealing film having peripheral weakened edge for tamper evident protection
Patent Information
- Application Number
- JP2024539256
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2022-12-28
- Publication Date
- 2026-01-14
AI Technical Summary
Existing tamper-evident solutions for medical access devices lack effective visual indicators of tampering, posing risks of unauthorized drug delivery and infections.
A sealing film with a peripheral weakened area that tears upon attempted removal, providing visual evidence of tampering through tearing, fraying, or breaking, and featuring a backing with aligned peripheries and adhesive bonds that prioritize adhesive integrity over backing rupture.
Ensures tamper-evident protection by visually indicating unauthorized access attempts, maintaining device security and integrity.
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Abstract
Description
[Technical field]
[0001] The present disclosure relates to a sealing film for tamper evident protection. In particular, the disclosure relates to a sealing film for surrounding a device, the sealing film having a peripheral weakened edge such that upon an attempt to peel, pull or open the sealing film, the sealing film tears, thereby providing tamper evident protection. [Background technology]
[0002] Patients receiving medical care typically have a medical access device, such as a vascular access device, inserted to assist the health care provider in delivering medications to the patient. Some medical access devices are for allowing fluids to be removed from the patient, such as a urinary catheter or a surgical drain line. When a person is under the care of a health care provider, it is important to control the medications delivered to the patient. Patients with psychiatric conditions, mentally retarded patients, pediatric patients, or intravenous drug users may tamper with intravenous access points or intentionally deliver drugs or medications to the vascular access device. If unprescribed medications enter the vascular access device, they may cause medical problems, drug interactions, and bloodstream infections. Summary of the Invention
[0003] The tamper-evident device can be used to encase a device, such as a medical access device, such that any attempt to access the encased device has a destructive effect on the tamper-evident device. For example, PCT Publication WO 2021 / 024139 describes various tamper-evident closures and adhesive-coated films. There remains a need for better visual indications when attempting to separate the adhesive-coated films. The disclosed sealing film includes a peripheral weakened portion such that when the sealing film surrounds a device, any attempt to peel, pull or open the sealing film will tear the sealing film, indicating tampering.
[0004] In one embodiment, the encapsulating film is for surrounding a device and includes a backing having a first major surface and a second major surface opposite the first major surface and having a periphery surrounding a central region. The backing forms a first backing portion and a second backing portion. The encapsulating film has an adhesive on the first major surface of the backing in at least the first backing portion of the periphery. The encapsulating film has a weakened region adjacent to and along a substantial portion of the periphery in both the first backing portion and the second backing portion.
[0005] To use the sealing film, the device is placed in the central region of the backing, and then the sealing film is wrapped around the device such that the adhesive on the first backing portion contacts the second backing portion, which may also have adhesive. In use, the peripheries of the first and second backing portions typically align. The force to break the adhesive bond is greater than the force to break the backing at the periphery because of the weakened areas. Tampering would be evident from a torn, frayed, or torn backing. [Brief description of the drawings]
[0006] [Figure 1] FIG. 2 is a perspective view of one embodiment of a sealing film for tamper-evident protection of the device. [Diagram 2] FIG. 2 is a perspective view of the sealing film of FIG. 1 closed around a device, showing an attempted tampering at the perimeter. [Diagram 3] FIG. 13 is an exploded perspective view of a second embodiment of a sealing film for tamper-evident protection of a device. [Figure 4] FIG. 2 is a cross-sectional side view of one embodiment of a seal film.
[0007] The above-identified drawings and figures illustrate embodiments of the invention; however, as noted in the discussion, other embodiments are also contemplated. In all cases, this disclosure presents the invention by way of representation and not limitation. Numerous other variations and embodiments can be devised by those skilled in the art that are within the scope and spirit of the invention. The drawings may not be drawn to scale. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0008] Various designs of sealing films 100 are disclosed for use around a device 200, such as a medical access device 200 having a fluid access line to a patient. The disclosed sealing films 100 surround the device 200, and an adhesive 130 on the sealing film 100 secures the sealing film 100 around the device. The sealing film 100 includes a weakened area 150 at the periphery 112 of the sealing film 100, such that in use, the force to break the adhesive bond formed by the adhesive 130 is greater than the force to break the backing 110 at the periphery 112 due to the weakened area 150 in the backing 110. Tampering is evident from tearing, fraying, or breaking of the backing 110.
[0009] Figure 1 shows one embodiment of a sealing film 100 for tamper-evident protection of a device 200. Figure 2 shows the sealing film 100 of Figure 1 closed around a device 200.
[0010] The backing 110 has a perimeter 112 surrounding a central region 114. The backing 110 has a first major surface 116 and a second major surface 118 opposite the first surface 116. The backing 110 generally has a first backing portion 120 and a second backing portion 122. Typically, the backing 110 is symmetric across the first backing portion 120 and the second backing portion 122 such that when the backing 110 is folded onto the device 200, as shown in FIG. 2, the perimeter 112 can be substantially aligned at the first backing portion 120 and the second backing portion 122.
[0011] In some embodiments, and similar to those described in PCT Publication WO 2021 / 024139, the disclosure of which is incorporated herein by reference, the backing can include a tear strip 170. The tear strip 170 is a portion of the seal film 100 that is used to inwardly open the seal film 100 after the seal film 100 is wrapped around the device 200. In this embodiment, there is a perforation between the tear strip 170 and the backing 110 so that the tear strip 170 can be easily separated from the backing 110. To use the tear strip 170, when the seal film 100 is wrapped around the device 200 as in FIG. 2 to gain access to the device 200, the tear strip 170 is irreversibly removed from the backing 110 and the seal film 100 cannot be closed again on the device 200. This allows access to the device 200. In some embodiments, when the backing 110 is a very thin flexible material, the tear strip 170 may include a reinforcement or reinforcing layer to make the tear strip 170 easier to grip during removal.
[0012] The backing 110 is generally thin, flexible, conformable, and drapeable. The backing 110 may be formed from many different materials. Typically, the backing 110 is not easily punctured or, if punctured, the puncture is obvious. Typically, the backing 110 has structural integrity so that it does not easily tear or rip. The backing 110 may be made from polymeric films, foams, papers, nonwoven and woven fibrous webs, knits. In some embodiments, the backing 110 is hydrophobic and water resistant, preventing fluids and other contaminants from being absorbed into the backing. In some embodiments, the backing 110 is transparent to allow viewing of the enclosed device 200.
[0013] Polymeric films are well suited for the backing 110 due to their strength, toughness, and elasticity. For example, polymeric backings can be formed from polyurethanes, polyesters, polyether block amides, polyethylene, LDPE, metallocene polyolefins, and SBS and SIS block copolymer materials.
[0014] Having the backing 110 relatively thin and elastomeric allows the backing 110 to be wrapped around the device 200 with the backing 110 fitting snugly around the various shapes of the device 200, as seen in Figure 2. If the backing 110 is slightly elastomeric, the backing 110 can stretch, pull, and expand to fit snugly while surrounding the device 200 without tearing, tearing, or puncturing the backing 110. This snug fit prevents the inserted device 200 from falling out or being pulled out of the surrounding sealing film 100.
[0015] Elasticity can be measured by any number of means commonly used to evaluate the elongation and recovery of a material. In one embodiment, the backing 110 has an elongation to break of at least 200%. In one embodiment, the backing 110 has an elongation to break of less than 500%. In one embodiment, the backing 110 has an elongation to break of greater than 20% and less than 100%. Elasticity can be measured by the initial modulus, which is the force required to apply a specific amount of extension. In one embodiment, the backing layer 110 has a modulus of less than 5 Newtons at 10% elongation. In one embodiment, the backing layer 110 has a modulus of greater than 2 at 10% elongation.
[0016] Thinner materials tend to be more conformable. In one embodiment, the backing 110 has a thickness of less than 100 micrometers. In one embodiment, the backing 110 has a thickness of less than 10 micrometers. In one embodiment, the backing 110 has a thickness of less than 1 micrometer.
[0017] The adhesive 130 is on the first major surface 116 of the backing 110. In use, the backing 110 is folded around the device 200 and the adhesive 130 on the first major surface 116 of the first backing portion 120 contacts the second backing portion 122. The second backing portion 122 on the first major surface may also optionally have the adhesive 130. When the sealing film 100 is wrapped around the device 200, the adhesive 130 bonds the first backing portion 120 to the second backing portion 122.
[0018] The adhesive 130 is typically a permanent adhesive. Permanent adhesives are strong and do not easily break the bond when the adhesive touches the contacting surfaces. In this embodiment, the integrity of the underlying material breaks before the adhesive bond breaks.
[0019] In one embodiment, the adhesive 130 may be a pressure sensitive adhesive, where the adhesive 130 feels wet or sticky to the touch and can be secured to a target surface upon contact. 3M VHB™ Tape, available from 3M Company, has a permanent pressure sensitive adhesive. If a pressure sensitive adhesive is used, to prevent the adhesive 130 from strongly adhering to the wrapped device 200, the central region 114 of the first major surface 116 is free of the adhesive 130, has the adhesive 130 detackified, or is covered with the adhesive 130 as shown in FIG. 4.
[0020] In one embodiment, the adhesive 130 is a contact adhesive. Contact adhesives are particularly suitable for use with sealing films because they are adhesives that adhere strongly to themselves but typically do not adhere well to other materials. Sometimes contact adhesives are called tackifiers when the bond is stronger than the integrity of the underlying material. Contact adhesives work well because they do not adhere strongly to the device 200, the user's hand, the doctor's glove, or tubing. Contact adhesives typically set quickly upon contact and form an instant bond. In embodiments where a contact adhesive is used, the entire first major surface 116 can be covered with the adhesive 130 because the adhesive 130 does not adhere strongly to the device 200. Completely coating the first major surface 116 with the adhesive 130 simplifies the manufacture of the sealing film 100.
[0021] Materials suitable for providing adhesive properties may be either elastomeric or non-elastomeric polymer binders. Elastomeric polymer binders typically provide long term flexibility, extensibility and / or elasticity. Suitable elastomeric polymer binders may include natural rubber latex, synthetic latexes such as acrylic, butadiene, styrene / butadiene rubber, chloroprene, ethylene (e.g., vinyl acetate / ethylene), isoprene, nitrile and urethane homopolymer and copolymer latexes, or mixtures thereof. Examples of suitable polymeric elastomer binders are disclosed in, for example, U.S. Patents 3,575,782, 4,984,585 and 6,156,424, as well as in textbooks such as Neoprene Latex: Principles of Compounding and Processing, JC Carl, 1962, Delaware, EI: DuPont de Nemours (e.g., page 100 in the chapter entitled Contact Bond Adhesives) and Handbook of Adhesives 3rd Edition, Ed. I. Skeist, 1990, New York, Van Nostrand Reinhold (e.g., page 305). It may be desirable for the outer dressing to be free of natural rubber latex. 3M Scotchflex & Seal Packing Rolls available from 3M Company is an example of a suitable contact adhesive.
[0022] Figure 4 is a cross-sectional side view of one embodiment of the seal film 100 of Figure 3. In this embodiment, the backing 110 has an adhesive 130 on a first backing portion 120 on the first major surface 116 and a second backing portion 122 on the first major surface 116, and is free of adhesive 130 in the central region 114.
[0023] In use, the device 200 is placed in the central region 114 of the backing 110. The adhesive 130 on the first major surface 116 of the first backing portion 120 is then contacted with the adhesive 130 on the first major surface 116 of the second backing portion 122. The backing 110 substantially surrounds the device 200 as shown in FIG. 2. Also, as shown, when folded, the perimeter 112 of the first backing portion 120 and the perimeter 112 of the second backing portion 122 typically align. When the perimeter 112 is aligned in the folded position, the adhesive 130 is not exposed for contact with the surroundings.
[0024] The backing 110 may be tightly wrapped around the device 200, as shown in Figure 2. It is particularly useful for the backing 110 to wrap as closed as possible around the device 200 without allowing gaps or openings through which the device 200 may be removed. For example, in Figure 2, the encapsulation film 100 completely closes on all sides of the device 200, with the closure narrowing around the portions of the device 200 that extend out from the encapsulation film 100.
[0025] The device 200 contained within the sealing film 100 may be any device where a tamper attempt to gain access to the device 200 is desirable. For example, if the device 200 is a device for vascular access to a patient, it may be desirable to restrict the patient from accessing the device 200 to introduce undesirable drugs into the patient's vascular system. In some instances, a user may wish to access the device 200. The user attempts to break or tear the backing 110 to gain access to the device 200. If the backing 110 is completely torn, it is visually evident that the user has gained access to the device 200. If a torn tear strip 170 is present, it is visually evident that the user has gained access to the device 200. Another possibility is when the user attempts to separate the backing 110 with the adhesive 130 encasing the medical device. In such a case, it may be possible for the user to separate the adhesive 130 between the first backing portion 120 and the second backing portion 122 to open the sealing film 100, access the device, and then reclose the adhesive.
[0026] To address the issue of attempting to separate the adhesive 130 between the first backing portion 120 and the second backing portion 122 to open the sealing film 100, access the device 200, and then reseal the adhesive 130, the sealing film 100 further includes a weakened area 150. The weakened area 150 is adjacent to and along a substantial portion of the perimeter 112 in both the first backing portion 120 and the second backing portion 122. The adhesive 130 in the first backing portion 120 contacts the second backing portion 122 to form an adhesive bond. The force to break the adhesive bond is greater than the force to break the backing 110 at the weakened area 150 of the backing 110. Thus, if a user attempts to remove the adhesive 130 at the periphery 112 by pinching, pulling, or pulling the backing 110 away from the adhesive 130, the weakened area 150 will cause a tear, tear, or break in the backing 110 before the adhesive 130 separates from the backing. The tear, tear, or break in the backing 110 will reveal that the user has attempted tampering.
[0027] The weakened area 150 can be formed in a variety of ways, so long as it results in a structural force to break the backing 110 that is less than the force to separate the adhesive 130 from the backing 110. For example, suitable methods to reduce the strength, structural integrity, or force to break the backing 110 include adding slits, breaks, punctures, or openings that at least partially or completely pass through the backing. In another embodiment, the backing 110 can be a film that is oriented such that its tear strength in one direction is significantly greater than its tear strength in a second direction. In another embodiment, the backing 110 can be a polymeric material that is fully or partially filled with a filler material to reduce the force to break the backing 110 in a defined area.
[0028] 1 and 2, the areas of weakness 150 are a plurality of slits extending partially or entirely through the film. In this embodiment, the areas of weakness 150 are at the periphery 112 of both the first backing portion 120 and the second backing portion 122. Thus, as shown in FIG. 2, when the first backing portion 120 overlaps the second backing portion 122 in use, an attempt to separate the first backing portion 120 from the second portion 122 of the backing will cause the backing 110 in both the first backing portion 120 and the second backing portion 122 to break before the adhesive 120 separates from either the first backing portion 120 or the second backing portion 122.
[0029] FIG. 3 is a diagram of a second embodiment of a sealing film 100 for tamper-evident protection of a device (not shown). This embodiment is substantially similar to the embodiment described in FIG. 1 and FIG. 2, but in this embodiment, the weakened areas 150 are distributed throughout the sealing film 100. The weakened areas 150 are not directly at the periphery, but adjacent to and along a substantial portion of the periphery. The advantage of this configuration is that the construction of the sealing film 100 is easier to achieve when the weakened areas 150 are distributed throughout the sealing film 100. The weakened areas 150 do not have to be selectively included only in certain areas of the sealing film 100, as shown in FIG. 2.
[0030] The encapsulant film 100 may further include a release liner 190 that covers the adhesive 130 prior to application of the encapsulant film 100 to the device 200. The release liner 190 protects the adhesive 130 from contaminants or premature setting.
[0031] The sealing film 100 may be colored, clear, or opaque. The sealing film 100 may include a filler such that upon stretching or tensioning, the film changes from clear to opaque to further aid in tamper indicating. The sealing film 100 may include indicia printed on the first major surface 116 to indicate proper location or placement of the inserted device 100.
[0032] Although specific embodiments have been shown and described herein, it is understood that these embodiments are merely illustrative of the many possible specific configurations that can be devised in application of the principles of the present invention. Numerous and varied other configurations can be devised in accordance with these principles by those skilled in the art without departing from the spirit and scope of the present invention. The scope of the present invention should not be limited to the structures described in this application, but only by the structures described by the language of the claims and the equivalents of those structures.
Claims
1. An encapsulation film for surrounding a device, a backing having a first major surface, a second major surface opposite the first major surface, a periphery surrounding a central region, a first backing portion, and a second backing portion; an adhesive on at least the periphery of the first backing portion and on the first major surface of the backing; an area of weakness adjacent to and along a substantial portion of the periphery of both the first backing portion and the second backing portion; The sealing film comprises:
2. the adhesive on the first backing portion contacts the second backing portion to form an adhesive bond; 10. The seal film of claim 1, wherein the amount of force required to break the adhesive bond is greater than the amount of force required to break the backing at the weakened area of the backing.
3. A sealing film as described in claim 1, further comprising an opening strip separating the first backing portion from the second backing portion, the opening strip being detachably connected to the first backing portion and the second backing portion.
4. The seal film of claim 1 , wherein the first backing portion and the second backing portion are symmetrical.
5. The seal film of claim 1 , wherein the adhesive is a permanent pressure-sensitive adhesive.
6. The seal film of claim 1 , wherein the adhesive is a contact adhesive.
7. The seal film of claim 1 , wherein the central region is substantially free of adhesive.
8. The seal film of claim 1 , wherein the weakened area is adjacent to and extends along the entire perimeter of the backing.
9. The seal film of claim 1 , wherein the area of weakness comprises a slit in the backing.
10. The seal film of claim 1 , wherein the area of weakness comprises a plurality of adjacent openings through the backing.
11. The seal film of claim 10 , wherein the plurality of adjacent openings are symmetrically disposed on the first backing portion and the second backing portion.
12. The seal film of claim 10 , wherein the plurality of adjacent openings extend across substantially the entire surface of the backing.
13. The seal film of claim 1 further comprising a release liner on the adhesive on the first major surface.
14. The seal film of claim 1 , further comprising indicia printed on the first major surface of at least one of the first backing portion or the second backing portion.