Hydrocolloid tape to be pasted on skin
The hydrocolloid tape addresses the issue of exudate leakage by using perforations with cutting portions less than 2.0 mm, effectively preventing leakage while allowing easy cutting for custom sizing.
Patent Information
- Application Number
- JP2025063370
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2025-06-26
AI Technical Summary
Hydrocolloid type skin patches face challenges in preventing exudate leakage when perforations are provided for easy cutting, as the cuts can lead to leakage.
A hydrocolloid tape is designed with a tape-shaped film and a hydrocolloid material laminated on one side, featuring perforations where the individual lengths of the cutting portions are less than 2.0 mm, and the non-cutting portions are alternately arranged to minimize leakage.
The solution effectively suppresses exudate leakage from the perforations, allowing for easy cutting of the tape without compromising the integrity of the hydrocolloid patch.
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Figure 2025096431000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a hydrocolloid tape for skin application.
Background Art
[0002] One of the treatments for wounds is to cover the wound site with gauze. In this case, the gauze is fixed to the wound site with tape or the like (see, for example, Patent Document 1). In recent years, a hydrocolloid type skin patch that can be directly attached to the wound site for wet therapy has been known (see, for example, Patent Document 2).
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0004] Since the hydrocolloid type skin patch is directly attached to the wound site, it is required to have a function of preventing the exudate oozing from the wound site from leaking to the outside. Therefore, when the hydrocolloid type skin patch is made into a long tape shape that is cut to a length according to the size of the wound site, for example, if perforations are provided to facilitate cutting with fingers, the cuts of the perforations will cause leakage of the exudate. Therefore, it has been practically difficult to provide perforations for easy cutting with fingers in a tape-shaped hydrocolloid type skin patch.
[0005] Therefore, the present application discloses a hydrocolloid tape for skin application that suppresses as much as possible the possibility of exudate leaking from the perforations.
Means for Solving the Problems
[0006] In order to solve the above problems, in the present invention, a hydrocolloid material is laminated on a film, and the individual lengths of the perforated cutting portions provided in the film are made less than at least 2.0 mm.
[0007] Specifically, the present invention is a hydrocolloid tape for skin attachment, comprising a tape-shaped film serving as a base material, a hydrocolloid material laminated on one side of the film, a cutting portion provided in the film and penetrating the film, and a perforation in which non-cutting portions that do not penetrate the film are alternately arranged, wherein the individual lengths of the cutting portions in the perforation are less than at least 2.0 mm.
[0008] Note that in the perforation, the individual lengths of the cutting portions may be 1.5 mm or less.
[0009] Also, in the perforation, the individual lengths of the cutting portions may be 1.0 mm or less.
[0010] Also, in the perforation, the individual lengths of the non-cutting portions may be less than 3.0 mm.
[0011] Also, in the perforation, the individual lengths of the non-cutting portions may be 2.0 mm or less.
[0012] Also, in the perforation, the individual lengths of the non-cutting portions may be 1.5 mm or less.
[0013] Also, in the perforation, the total length of the non-cutting portions may be 25% or more of the tape width.
[0014] Also, in the perforation, the total length of the non-cutting portions may be 48% or more of the tape width.
[0015] Also, in the above hydrocolloid tape for skin attachment, the value obtained by dividing the tensile strength by the peel force at the perforation may be 4.3×10 -1 or more.
[0016] Also, the above hydrocolloid tape for skin application may have a maximum shear stress at the perforations of less than 2.1×10 1 N.
Advantages of the Invention
[0017] According to the present invention, it is possible to suppress as much as possible the possibility of exudate leaking from the perforations.
Brief Description of the Drawings
[0018]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Modes for Carrying Out the Invention
[0019] Hereinafter, a hydrocolloid tape for skin application according to an embodiment of the present invention will be described with reference to the drawings. Note that the configurations of the following embodiments are examples, and the present invention is not limited to the configurations of these embodiments.
[0020] FIG. 1 is a view showing a hydrocolloid tape for skin application according to an embodiment. In FIG. 1, the hydrocolloid tape 1 is illustrated in a roll form in which a long tape is wound around a core, but it is not limited to the roll form and may be, for example, in a long strip shape.
[0021] The hydrocolloid tape 1 includes a tape-shaped film 2 serving as a base material and a hydrocolloid material 3 laminated on one side of the film 2 (the back surface of the film 2 in the plane of FIG. 1). The hydrocolloid tape 1 is not limited to a form in which the hydrocolloid material 3 does not exist at all on the other side of the film 2. For example, the hydrocolloid tape 1 may have the hydrocolloid material present on a part of the surface of the film 2 (the surface where the hydrocolloid material 3 is not laminated). A plurality of perforations 4 are provided at predetermined intervals in the longitudinal direction of the film 2. The hydrocolloid tape 1 is a hydrocolloid type skin adhesive material that can be directly attached to a wound site to perform wet therapy. Therefore, the perforations 4 are provided for the user to cut the hydrocolloid tape 1 with a finger to an appropriate length according to the size of the wound site. Accordingly, it is preferable that the perforations 4 can be cut by a finger aiming at a specific perforation 4 by the user and are provided in the film 2 at intervals that can be adjusted to an appropriate size for the wound site. Such an interval of the perforations 4 is preferably 5 to 80 mm, more preferably 10 to 70 mm, and more preferably 20 mm, for example.
[0022] Since the hydrocolloid tape 1 is a skin adhesive material that is directly attached to a wound site, it is preferable to use an adhesive material for the hydrocolloid material 3 that is less likely to cause wound adhesion and less likely to cause maceration of the skin around the wound. Examples of the material of the hydrocolloid material 3 include, for example, alg Hydrophilic synthetic polymers or natural polymers selected from the group consisting of phosphoric acid and its salts and derivatives thereof, chitin or its derivatives, chitosan or its derivatives, pectin, cellulose or its derivatives such as cellulose ether or cellulose ester, crosslinked or non-crosslinked carboxyalkyl cellulose or hydroxyalkyl cellulose, polyvinyl alcohol, polyvinyl pyrrolidone, agar, gum or gelatin may be mentioned. Further, the hydrocolloid material 3 may be in a semi-solid gel form or fibrous form, or may be in a form in which particles and fibers are mixed in the gel. Further, the hydrocolloid material 3 may be in a form having hydrocolloid particles in a sticky polymer.
[0023] For the film 2, it is preferable to use a material such that the hydrocolloid tape 1 is in a roll form and the hydrocolloid material 3 can easily peel off from the film 2 even when the hydrocolloid material 3 contacts the surface of the film 2, and the perforation 4 does not easily cut even when a certain load is applied to the perforation 4 in a state of being attached to the skin. Suitable materials for the film 2 include, for example, a PE film blended with a release agent, a PE film coated with a release agent, or a PE film laminated with a release agent by laminating.
[0024] FIG. 2 is a diagram showing an example of a method of using the hydrocolloid tape 1. When it is desired to attach the hydrocolloid tape 1 to a wound site on the skin, as shown in FIG. 2(A), take out the necessary amount of the hydrocolloid tape 1 from the roll. Then, as shown in FIG. 2(B), while pressing the vicinity of a specific perforation 4 with a finger, pull and cut the hydrocolloid tape 1 with the force of the finger. Then, as shown in FIG. 2(C), place the hydrocolloid tape 1 cut out from the roll on the wound T of the skin S. Then, as shown in FIG. 2(D), attach the hydrocolloid tape 1 to the skin S so that the wound T of the skin S is completely covered with the hydrocolloid tape 1.
[0025] Since the perforations 4 are provided at predetermined intervals in the hydrocolloid tape 1, the hydrocolloid tape 1 corresponding to the size of the wound T can be prepared without using a cutting tool such as scissors. However, since the perforations 4 are provided at predetermined intervals in the hydrocolloid tape 1, the perforations 4 may overlap the position of the wound T. Since exudate may gush out from the wound T, if the perforations 4 overlap the position of the wound T, there is a possibility that the exudate may leak out from the gap at the cut portion of the perforations 4.
[0026] FIG. 3 is an enlarged view of the perforations 4 seen obliquely. As shown in FIG. 3, the perforations 4 are perforations in which the cut portions 41 that penetrate the film 2 and the uncut portions 42 that do not penetrate the film 2 are arranged alternately. For the convenience of processing the perforations 4, the cut portions 41 that penetrate the film 2 are configured to penetrate not only the film 2 but also the hydrocolloid material 3. Therefore, if the perforations 4 overlap the position of the wound T, there is a possibility that the exudate may leak out from the gap of the cut portions 41. However, in the hydrocolloid tape 1 of the present embodiment, since the dimensions of the cut portions 41 and the uncut portions 42 are appropriately set as described later, the possibility that the exudate leaks out from the cut portions 41 of the perforations 4 is suppressed as much as possible.
[0027] FIG. 4 is a diagram showing the path through which the exudate leaks out. In FIG. 4, for the sake of convenience of explanation, the same reference numerals are given in both the embodiment shown in FIG. 4(A) and the comparative example shown in FIG. 4(B). In the present embodiment in which the dimensions of the cut portions 41 and the uncut portions 42 are appropriately set, as shown in FIG. 4(A), even if the cut portions 41 are provided in the film 2, the flow path of the exudate F passing through the cut portions 41 is blocked by the hydrocolloid material 3. Therefore, in the present embodiment, the possibility that the exudate F leaks out from the cut portions 41 is suppressed as much as possible. On the other hand, in the comparative example in which the dimensions of the cut portions 41 and the uncut portions 42 are not appropriately set, the flow path of the exudate F passing through the cut portions 41 is not sufficiently blocked by the hydrocolloid material 3, a gap 43 is formed, and there is a possibility that the exudate may leak out from the cut portions 41 of the perforations 4.
[0028] A plurality of types of prototypes with alternating dimensions of the cut portion 41 and the uncut portion 42 were prepared and various evaluations were conducted, and the results are shown below. FIG. 5 is a diagram showing the evaluation results.
[0029] In this evaluation, a roll-shaped hydrocolloid tape with a width of 25 mm and a total length of 3 m was prepared. This hydrocolloid tape uses a PE film containing a release agent with a thickness of 40 μm as the film serving as the base material when laminating the hydrocolloid material, and a hydrocolloid material with a thickness of 80 to 104 μm is laminated on this film. As methods for laminating the hydrocolloid material on the film, there are methods such as directly coating the film, attaching a material coated on a base material other than the film to the film (transfer), and various other methods. On this hydrocolloid tape, perforations with alternating dimensions of the cut portion and the uncut portion were provided at intervals of approximately 20 mm. As the dimensions of the cut portion, four types of 1.0 mm, 1.5 mm, 2.0 mm, and 3.0 mm were set. Also, as the dimensions of the uncut portion, four types of 1.0 mm, 1.5 mm, 2.0 mm, and 3.0 mm were set. Appropriate combination patterns were prepared from these, and as shown in FIG. 5, in the notation of "Prototype Name (Dimension of Cut Portion / Dimension of Uncut Portion)", six types of "Prototype 1 (1.0 mm / 1.0 mm)", "Prototype 2 (1.0 mm / 1.5 mm)", "Prototype 3 (1.0 mm / 3.0 mm)", "Prototype 4 (1.5 mm / 1.5 mm)", "Prototype 5 (2.0 mm / 2.0 mm)", and "Prototype 6 (3.0 mm / 1.0 mm)" were prepared in this evaluation. Since the width of the hydrocolloid tape is 25 mm, the total dimension of the cut portion (total cut portion) and the total dimension of the uncut portion (total uncut portion) in each prototype are as shown in FIG. 5.
[0030] In this evaluation, evaluations were conducted on the following three items. <Difficulty of Tearing During Unwinding> This is an evaluation item to confirm that the hydrocolloid tape does not accidentally tear at the perforation part during the process of unwinding the roll-shaped hydrocolloid tape from the roll. <Ease of tearing> This is an evaluation item to confirm that the hydrocolloid tape can be easily cut with a finger at the perforation part. <Leakage resistance> This is an item to confirm that exudate is difficult to leak during use. In this evaluation, instead of exudate, a hydrocolloid tape was attached so that the perforations overlapped the position of the water droplets placed on the back of the hand, and the presence or absence of water droplets adhering to the finger was confirmed by pressing the perforations with a finger (sensory evaluation). Since exudate is a secretion, it is considered to be more viscous than water. Therefore, it is considered that water is more likely to leak from fine parts than exudate. Therefore, in this application, if there is no water leakage at the perforations, it is considered that there is no leakage of exudate at the perforations.
[0031] As can be seen from the evaluation results in Fig. 5, when the total length of the uncut part is 6 mm, it was found that it would tear during feeding. Also, when the total length of the uncut part is 12 mm or more, it was found that there would be no problem in practical use without tearing during feeding. From this result, it can be understood that the total length of the uncut part needs to be at least 25% or more of the tape width, and more preferably 48% or more of the tape width.
[0032] Also, as can be seen from the evaluation results in Fig. 5, when the individual length of the uncut part is 3.0 mm or more, it was found that it was not easy to cut the perforations with a finger. Also, when the individual length of the uncut part is 2.0 mm, it was found that it was possible to cut the perforations with a finger. Also, when the individual length of the uncut part is 1.5 mm or less it was found that it was easy to cut the perforations with a finger. From this result, it can be understood that the individual length of the uncut part needs to be at least less than 3.0 mm, preferably 2.0 mm or less, and more preferably 1.5 mm or less.
[0033] Also, as can be seen from the evaluation results in Fig. 5, it was found that when the individual length of the cut portion is 2.0 mm or more, water easily leaks from the gap of the cut portion. Also, when the individual length of the cut portion is 1.5 mm, it was found that water may leak from the gap of the cut portion. Also, when the individual length of the cut portion is 1.0 mm, it was found that water does not leak from the gap of the cut portion. From this result, it can be understood that the individual length of the cut portion needs to be at least less than 2.0 mm, preferably 1.5 mm or less, and more preferably 1.0 mm or less.
[0034] Therefore, from this evaluation result, in the case of a hydrocolloid tape in which a hydrocolloid material with a thickness of 80 - 104 μm is laminated on a PE film with a release agent having a thickness of 40 μm, for the perforations, if the total length of the uncut portion is at least 25% or more of the tape width, the individual length of the uncut portion is at least less than 3.0 mm, and the individual length of the cut portion is at least less than 2.0 mm, it can be understood that the tape can be cut by tearing the perforations with fingers without tearing during feeding, and water does not easily leak from the gap of the cut portion. Also, from this evaluation result, in the case of a hydrocolloid tape in which a hydrocolloid material with a thickness of 80 - 104 μm is laminated on a PE film with a release agent having a thickness of 40 μm, for the perforations, if the total length of the uncut portion is at least 48% or more of the tape width, the individual length of the uncut portion is 1.0 mm or less, and the individual length of the cut portion is 1.0 mm or less, it can be understood that the tape can be easily cut by tearing the perforations with fingers without tearing during feeding, and water does not leak from the gap of the cut portion. Therefore, in this evaluation, it can be said that Prototypes 1, 2, and 4 shown in Fig. 5 are qualified as embodiments.
[0035] This evaluation result depends on the material and thickness of the film, and the composition and thickness of the hydrocolloid material laminated on the film. However, considering that the exudate is less likely to leak than water, for example, in the case of a hydrocolloid tape using a PE film with a release agent having a thickness of about 20 - 60 μm and laminating a hydrocolloid material having a thickness of about 40 - 200 μm, it is considered that the same effect as the above verification is exhibited.
[0036] In this evaluation, as shown in Fig. 5, the physical properties of the hydrocolloid tape such as tensile strength, peel strength, and maximum shear stress were also measured. Also, for reference, the physical properties of commercially available plastic tapes and commercially available adhesive bandages that can be torn by hand were measured. Therefore, the measurement results will be described in detail below.
[0037] First, the physical properties related to the difficulty of tearing during unwinding will be explained. The difficulty of tearing when unwinding a roll-shaped hydrocolloid tape from the roll is considered to be greatly related to the tensile strength of the tape itself and the peel strength when the tape separates from the roll (peels off). For example, if the tensile strength is sufficient relative to the peel strength, it can be said that the tape is difficult to tear at the perforations when unwinding from the roll. Therefore, as shown in the table of Fig. 5, in the evaluation of <difficulty of tearing during unwinding>, the tensile strength and peel strength when pulling out the roll-shaped hydrocolloid tape from the roll were also measured. Since the tensile strength of the tape varies depending on the state of the perforations (the length of the cut part and the uncut part), as shown in the table of Fig. 5, Prototypes 1 to 6 show alternating values. On the other hand, since the peel strength of the tape is uniform regardless of the state of the perforations, as shown in the table of Fig. 5, all of Prototypes 1 to 6 show the same value.
[0038] As can be seen from the evaluation results in Fig. 5, for Prototype 6 that was torn during unwinding, the value obtained by dividing the tensile strength by the peel strength was 0.43. On the other hand, for Prototypes 1 to 5 that were not torn during unwinding, the values obtained by dividing the tensile strength by the peel strength were 0.64 to 0.82, all of which were larger than 0.43 of Prototype 6. Therefore, from this measurement result, regarding the difficulty of tearing during unwinding, the value obtained by dividing the tensile strength by the peel strength (= tensile strength / peel strength) should be 4.3×10 -1 or more, and more preferably 6.4×10 -1 or more.
[0039] Next, the physical properties related to cutability will be described. When cutting a hydrocolloid tape with a finger at the perforated part, the ease of cutting is considered to be greatly related to the shear stress applied to the tape at the perforated part as a physical property. For example, if the maximum shear stress of the tape at the perforated part is too high, it can be said that it is not easy to cut with a finger. Therefore, as shown in the table of Fig. 5, in the evaluation of <cutability>, the maximum shear stress of the tape at the perforated part was also measured. Since the maximum shear stress of the tape at the perforated part varies depending on the state of the perforation (the lengths of the cut part and the uncut part), as shown in the table of Fig. 5, Prototypes 1 to 6 show alternating values.
[0040] As can be seen from the evaluation results in Fig. 5, in Prototype 3 (the individual length of the uncut part is 3.0 mm or more) where it was possible to cut the perforation with a finger, the maximum shear stress was 2.2 N. On the other hand, in Prototypes 1, 2, 4 to 6 (the individual length of the uncut part is 2.0 mm or less) where it was easy to cut the perforation with a finger, the maximum shear stress was 0.8 to 1.4 N. Also, in Prototypes 1, 2, 4, 6 (the individual length of the uncut part is 1.5 mm or less) where it was even easier to cut the perforation with a finger, the maximum shear stress was 0.8 to 1.4 N. Also, for a commercially available adhesive bandage that is touted as being cut by hand, the maximum shear stress was 20.6 N. Therefore, from this measurement result, regarding cutability, the maximum shear stress is at least less than 2.1×10 1 N, preferably less than 2.2×10 0 N, and more preferably less than 1.3×10 0 N.
[0041] And it can be said that such numerical ranges of physical properties do not depend on the individual thicknesses of the film and hydrocolloid material that constitute the hydrocolloid tape. For example, since the above numerical range of the physical property related to the difficulty of tearing during feeding is a relative value obtained by dividing the tensile strength by the peeling force, if there is no significant difference in the strength of the film material itself, the thickness of the film, whether large or small, cannot affect the numerical range from an engineering perspective. Also, for example, since the above numerical range related to cutability is an absolute value indicating whether a person can cut the tape with hand strength, regardless of whether the film thickness is large or small, it is sufficient for breakage to occur at any point within the film thickness, and the numerical range of the maximum shear stress that can be cut by hand cannot be affected by the film thickness.
[0042] Therefore, regardless of the individual thicknesses of the film and hydrocolloid material that constitute the hydrocolloid tape, the value obtained by dividing the tensile strength at the perforation by the peeling force (= tensile strength / peeling force) is 4.3×10 -1 or more, and more preferably 6.4×10 -1 or more of the hydrocolloid tape can be said to be difficult to tear during feeding. Also, regardless of the individual thicknesses of the film and hydrocolloid material that constitute the hydrocolloid tape, the maximum shear stress at the perforation is at least 2.1×10 1 N or less, preferably 2.2×10 0 N or less, and more preferably 1.3×10 0 N or less of the hydrocolloid tape can be said to have good cutability.
Explanation of Symbols
[0043] S ··· Skin T ··· Wound F ··· Exudate 1 ··· Hydrocolloid tape 2 ··· Film 3 ··· Hydrocolloid material 4 ··· Perforation 41 ··· Cut part 42 ··· Uncut part 43 ··· Gap
Claims
1. A tape-like film serving as a substrate; a hydrocolloid material laminated to one side of the film; The film has perforations, the perforations including alternating cut portions that penetrate the film and non-cut portions that do not penetrate the film; The perforations are such that each of the cut portions has a length of at least 2.0 mm or less. A hydrocolloid tape for application to the skin.
2. The perforations have individual cut portions each having a length of 1.5 mm or less.
2. The hydrocolloid tape for application to the skin according to claim 1.
3. The perforations have individual cut portions each having a length of 1.0 mm or less.
3. A hydrocolloid tape for application to the skin according to claim 1 or 2.
4. The perforations are such that each of the uncut portions has a length of less than 3.0 mm.
4. A hydrocolloid tape for application to the skin according to any one of claims 1 to 3.
5. The perforations are such that each of the uncut portions has a length of 2.0 mm or less.
5. A hydrocolloid tape for application to the skin according to any one of claims 1 to 4.
6. The perforations are such that each of the uncut portions has a length of 1.5 mm or less.
6. A hydrocolloid tape for application to the skin according to any one of claims 1 to 5.
7. The total length of the uncut portion of the perforation is 25% or more of the tape width.
7. A hydrocolloid tape for application to the skin according to any one of claims 1 to 6.
8. The total length of the uncut portion of the perforation is 48% or more of the tape width. A hydrocolloid tape for application to the skin according to any one of claims 1 to 7.
9. The tensile strength at the perforation divided by the peel strength is 4.3 x 10 -1 That's all. A hydrocolloid tape for application to the skin according to any one of claims 1 to 8.
10. The maximum shear stress at the perforation is 2.1 x 10 1 is less than N, A hydrocolloid tape for application to the skin according to any one of claims 1 to 9.
Citation Information
Patent Citations
JP1974040385A
Hydrocolloid type adhesive composition for skin patches, and patches using the same
JP2017039706A