IP Library Granted Patent US 12,616,611
Granted Patent B2
US 12,616,611 · App. 18/018,353 · Granted May 5, 2026

Fluid indicators for wound dressing systems and negative pressure treatment

Inventor: Christopher Brian Locke (Bournemouth, GB)
Assignee: Solventum Intellectual Properties Company
A61F13/00055A61F13/0226A61F13/025A61F13/05A61M1/91
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Quick Facts
Patent No.
US 12,616,611
App. No.
18/018,353
Granted
May 5, 2026
Kind
B2
Abstract

An indicator, wound dressing system, and negative pressure wound treatment kit configured to provide near real-time, dynamic indication of the fluid status (e.g., fill level, fluid absorbency capacity) of an article is described according to various embodiments. The indicator for detecting a fluid status of a wound dressing may include at least (i) a top side comprising PVDF and one or more markings configured to show fluid levels (ii) a bottom side comprising a pattern-printed adhesive, and (iii) a buffer layer, wherein the buffer layer has a top side comprising a polyurethane film and a bottom side comprising a film retention adhesive. Methods of using the indicator, wound dressing system, and kit are also provided herein.

Claims (32)

1 . A wound dressing system, comprising:

an uncrosslinked silicone polymer adhesive; and

an indicator comprising a top side, a bottom side, and a buffer layer, wherein the top side comprises polyvinylidene difluoride (PVDF) and one or more markings configured to show fluid levels, the bottom side comprises a pattern-printed adhesive, and the buffer layer is positioned between the silicone polymer adhesive and the top side of the indicator, wherein the buffer layer further comprises a top side comprising a polyurethane film and a bottom side comprising a film retention adhesive.

2 . The wound dressing system of claim 1 , wherein the indicator further comprises a layer of wicking material.

3 . The wound dressing system of claim 2 , wherein the wicking material does not wick at least one of silicone oil, silicone gel, or a silicone derivative that when contacted with PVDF results in a change of states.

4 . The wound dressing system of claim 2 , wherein the wicking material is configured to wick exudate from a wound and the buffer layer is sized to prevent wicking from the uncrosslinked silicone polymer adhesive.

5 . The wound dressing system of claim 1 , wherein:

(i) in a first state, the marking is blocked by the top side PVDF and not visible to a user under ambient or natural light;

(ii) wherein in a second state, the marking is visible through the top side under ambient or natural light; and

(iii) wherein in a third state, the marking is blocked by the top side and not visible to a user under ambient or natural light, the third state occurring at a point in time subsequent to the second state.

6 . The wound dressing system of claim 5 , wherein the first state is representative of an absence of absorbed wound fluid, the second state is representative of a presence of absorbed wound fluid, and the third state is representative of a reduction by evaporation of the wound fluid present in the second state.

7 . The wound dressing system of claim 1 , wherein the indicator is configured to reversibly undergo a first transition between a first visual configuration and a second visual configuration in response to the indicator being exposed to a first quantity of fluid, and to undergo a second transition between the second visual configuration and the first visual configuration in response to the indicator being exposed to a second quantity of fluid.

8 . The wound dressing system of claim 1 , wherein the indicator further comprises a portion comprising a fluid-impermeable material having a high moisture vapor transmission rate.

9 . The wound dressing system of claim 1 , wherein the buffer layer is about 10 μm in thickness.

10 . The wound dressing system of claim 1 , wherein the pattern-printed adhesive is spaced to create a direct contact area of over 60% between the buffer layer and the indicator and only about 40% coverage of adhesive to retain the buffer layer in place.

11 . The wound dressing system of claim 1 , wherein the buffer layer comprises a spray coating to the top side of the indicator in lieu of the film retention adhesive.

12 . The wound dressing system of claim 1 , wherein the top side of the indicator comprises a polyurethane film extruded onto the PVDF.

13 . The wound dressing system of claim 1 , wherein the PVDF further comprises a hydrophobic coating.

14 . A method of monitoring a fluid status using the wound dressing system of claim 5 , wherein the method comprises:

providing the indicator in fluid communication with a wicking layer of the wound dressing system;

exposing the wound dressing system to a first amount of fluid during the first state upon an initial application of the wound dressing system to a wound;

exposing the wound dressing system to a second amount of fluid during the second state after the initial application of the wound dressing system to the wound; and

exposing the wound dressing system to a third amount of fluid during the third state after at least a portion of the second amount of fluid in the second state has been removed or evaporated from the wicking layer of the wound dressing system.

15 . A wound treatment kit, comprising:

(i) a negative pressure source;

(ii) a wound dressing configured to be attached to a patient, wherein the wound dressing comprises: (a) an uncrosslinked silicone polymer adhesive; and (b) an indicator comprising a top side, a bottom side, and a buffer layer, wherein the top side comprises polyvinylidene difluoride (PVDF) and one or more markings configured to show fluid levels along a lower surface thereof, the bottom side comprises a pattern-printed adhesive, and the buffer layer is positioned between the silicone polymer adhesive and the top side of the indicator layer, wherein the buffer layer further comprises a top side comprising a polyurethane film and a bottom side comprising a film retention adhesive; and

(iii) a conduit configured to fluidly couple the negative pressure source to a treatment space defined underneath the wound dressing upon application of the wound dressing to the patient.

16 . The wound treatment kit of claim 15 , wherein the kit further comprises:

a manifolding layer configured to distribute negative pressure generated by the negative pressure source to a wound located beneath the wound dressing; and

a drape layer configured to secure the manifolding layer relative to the patient;

wherein the bottom side of the indicator directly contacts the manifolding layer.

17 . The wound treatment kit of claim 16 , wherein the top side of the indicator directly contacts a lower surface of the drape layer and the bottom side of the indicator directly contacts periwound upon application of the wound dressing to the patient.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066438/0301 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2023
From: LOCKE, CHRISTOPHER BRIAN
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 064946/0056 →
Continuity (2)
Provisional Application 63057383 · Jul 28, 2020
Related Publication 20230285193A1 · Sep 14, 2023
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