Stick pack packaging for test strips

The stick pack packaging with strategically positioned chemical pads and desiccants in an airtight foil tube addresses thermal and moisture protection issues, ensuring accurate test results and user convenience by minimizing damage and bulk packaging.

JP7841849B2Active Publication Date: 2026-04-07F HOFFMANN LA ROCHE & CO AG
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2019-05-03
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing stick pack packaging for disposable test strips fails to adequately protect the chemical pads from thermal and moisture damage during sealing, leading to potential interference with test results, especially in harsh environments, and requires bulk packaging that is inconvenient for users.

Method used

A single disposable test strip is packaged in an elongated foil tube with specific positioning of the chemical pad away from the seal joints, using a composite layer material with reference color markings for evaluation, and incorporating desiccants to maintain airtight and moisture-free conditions.

Benefits of technology

The solution provides enhanced protection against environmental influences, ensuring accurate test results and user convenience by minimizing damage to the chemical pad, allowing for single-use packaging and reducing bulk handling.

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Abstract

The present application relates to a stick pack type package comprising an elongated foil tube (12) having two transverse seal joints (16, 18), thereby providing a sealed fill space (20) within the foil tube (12) for storing a product. It is proposed that a single disposable test strip (22) is placed within the fill space (20), the test strip (22) having a chemical pad (26) for detecting an analyte in a sample, the chemical pad (26) being positioned away from at least one of the transverse seal joints (16, 18).
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Description

Technical Field

[0001] The present invention preferably comprises an elongated foil tube having a longitudinal seal joint, and two transverse seal joints are provided at the longitudinal ends of the foil tube, whereby an essentially airtight and moisture-free closed filling space is provided in the foil tube for storing a product, in a stick pack type packaging. The present invention further relates to a method for manufacturing and a method for using such a stick pack type packaging.

Background Art

[0002] Among various types of packaging of particulate products, a type called "stick pack" is widely commercially used. Such stick packs offer several advantages, particularly from the perspective of continuous production and administration of small amounts of products.

[0003] In the field of blood glucose testing, it is known to use disposable test strips for in-situ measurement. The user provides a fresh blood sample by pricking a finger and transferring a drop of blood to the test strip. For optically evaluated test strips, a chemical pad for an enzymatic reaction is provided on a carrier, enabling detection of glucose concentration via a color change. These test strips are usually sold in large quantities, for example, 50 strips in a vial or test strip container.

Summary of the Invention

[0004] Based on this, an object of the present invention is to further expand the manufacturing and application of the stick pack type packaging concept, and in particular, to provide enhanced user convenience and special product protection in problematic environments.

[0005] To achieve this object, a combination of features described in the independent claims is proposed. Advantageous embodiments and further developments of the present invention are derived from the dependent claims.

[0006] The present invention is based on the idea of ​​providing a single disposable test strip in easy-to-use packaging. Accordingly, a stick pack packaging is proposed in which a single disposable test strip is placed in a filling space, the test strip having a chemical pad for detecting an analyte in the sample, and the chemical pad being positioned away from at least one of the lateral sealing joints. This arrangement largely avoids damage to the reactive components within the chemical pad due to negative impacts, particularly thermal effects, during the sealing of the packaging. For this purpose, full-surface chemical coating of the test strip should be avoided, and the chemical pad should be provided at the end or middle of the test strip, away from at least one or both of the lateral sealing joints. The stick pack provides a compact container with enhanced protection against environmental influences, particularly moisture and dust in the surrounding air. This ensures the safety of test results even under harsh conditions. Furthermore, the single test quantity allows users to purchase and / or keep available only the number of tests required at a given time, without having to carry unnecessary bulk packaging.

[0007] Advantageously, the chemical pad is positioned near the first lateral seal joint and at a greater distance from the second lateral seal joint, and the first lateral seal joint is provided prior to the test strip in the foil tube such that the first lateral seal joint cannot affect the chemical pad nearby.

[0008] Further improvements in this direction are achieved when the test strip includes a carrier that is generally rectangular in shape, and the chemical pad is provided at one end and / or in the middle of the carrier.

[0009] To illustrate the optical test evaluation, the foil tube has one or more, preferably two to six, most preferably three, reference color markings on its outer surface, and the reference colors are adapted to compare the color change of the chemical pad resulting from the reaction with the analyte in order to evaluate the test results.

[0010] For optimized color definitions, each reference color is provided by a premixed spot color before printing.

[0011] As an even more advantageous measure, the reference color defines a color scale and / or grayscale for comparing color variations in chemical pads.

[0012] According to a preferred embodiment, the mark includes two reference color scales of different sizes, the smaller size provided in a first area of ​​the foil tube, and the relatively larger size provided in a second area of ​​the foil tube, preferably located opposite the first area. Both scales should display the same reference color. Thus, various methods of testing and evaluation (e.g., visual or instrumental) can be used.

[0013] The foil tubes offer the following options, namely, i) A flexible flat web having a longitudinal sealing joint that joins mutually opposing longitudinal edges, ii) Two flexible flat webs provided overlapping each other, each having two longitudinal sealing joints along paired longitudinal edges, iii) Extruded pipe section without a longitudinal seal joint, It can be formed from any one of the following.

[0014] Advantageously, the foil tube is formed from a composite layer flat web, preferably containing an aluminum layer. This allows for a lightweight, highly flexible, tight, and strong containment.

[0015] To further suppress the effects of moisture, it may be advantageous if the foil tube contains a desiccant to dry the filling space. The desiccant can be placed within the filling space or within the foil material of the foil tube.

[0016] Further improvements in use would include providing the foil tube with an adhesive area or rubber lining on its outer surface for placing used test strips on it. It is also conceivable to provide a protective sheet over the adhesive area where the adhesive may partially adhere when peeled off, so that the sheet can be attached elsewhere, for example, as a label for clinical reports.

[0017] Another aspect of the present invention involves the following steps, namely: a) Preferably, the step of forming an elongated foil tube by joining the opposing longitudinal edges of a flexible flat web, b) sealing the foil tube with first and second heat-fixed transverse joints provided at the longitudinal end of the foil tube, thereby providing a closed, filled space for storing the product. c) A step of providing a disposable test strip having a chemical pad for detecting an analyte in a sample, d) Before closing the second lateral seal joint, the step of introducing a test strip into the filling space, e) In step d), position the test strip such that the chemical pad is positioned away from the second lateral seal joint. The present invention relates to a method for manufacturing stick pack type packaging, including the present invention.

[0018] In this way, the advantageous effects outlined above are achieved in relation to the process product.

[0019] To further reduce moisture, it is advantageous to purge the filling space with a dry gas and / or dry the test strip before introducing the dry gas into the filling space.

[0020] As a further advantage, one or more reference color markings are applied to the starting foil material so that the markings appear on the outer surface of the foil tube.

[0021] Advantageously, the foil tube follows the following steps, namely, i) Preferably, joining the opposing longitudinal edges of the flexible flat web by a longitudinally joined portion that is heat-fixed. ii) Providing two congruent portions of the flexible flat web that are overlapped with each other, and joining their pairs of longitudinal edges by respective longitudinal seal joints. iii) Cutting out a part from the extruded tube material. It is formed by any one of the above.

[0022] Yet another aspect of the present invention is the following steps, namely: a) Providing a stick pack type packaging including a single disposable test strip. b) Pulling out the test strip from the packaging by tearing the foil tube, preferably pre-weakened or with a serrated tear portion. c) Applying a sample, preferably a sample of body fluid, to the chemical pad. d) Comparing the color change of the chemical pad resulting from the reaction with the analyte to a reference color mark for evaluating the test result. It relates to the use of a stick pack type packaging including the above.

[0023] Advantageously, the color comparison is performed optically by a device, particularly preferably a mobile device including a digital camera (especially a smartphone), or visually by the user.

[0024] Hereinafter, the present invention will be further described based on examples of embodiments schematically shown in the drawings.

Brief Description of the Drawings

[0025] [Figure 1] A front view of a stick pack packaging including a single disposable test strip is shown. [Figure 2] It is a rear view of the stick pack of FIG. 1. [Figure 3]Figure 1 shows the opened stick pack and the test strip attached to the outside. [Figure 4] This is a schematic diagram of a machine for manufacturing stick packs containing test strips. [Modes for carrying out the invention]

[0026] As shown in Figures 1 to 3, an exemplary embodiment of the stick pack packaging 10 includes an elongated foil tube 12 that is closed by a longitudinal seal joint 14 and two transverse seal joints 16, 18 at the longitudinal end of the foil tube 12, and the filling space 20 is closed on all sides and contains a single disposable test strip 22.

[0027] Figure 1 shows a test strip 22 enclosed by a dotted line within a filled space 20. The test strip 22 has a rectangular carrier foil 24 and a chemical pad 26 provided on a portion of the carrier foil 24. The chemical pad 26 contains an enzyme and an auxiliary substance such as a mediator for detecting analytes in liquid samples, particularly glucose in blood samples. Such a test strip 22 is available, for example, known by its trade name ACCU-Chek. It is also conceivable that the test strip is intended for other purposes, such as measuring lactic acid or cholesterol levels.

[0028] Chemical pad 26 is susceptible to heat, moisture, and other influences.

[0029] Although the foil tube 12 is essentially airtight and moisture-free to protect it from environmental influences during storage, measures should be taken to avoid thermal damage to the chemical pad 26 during the manufacturing of the packaging 10, as will be described in more detail below. The foil tube 12 has first and second marks 28, 28' of several different reference colors 30 on its front and back sides, respectively. The reference colors 30 define a color scale and / or grayscale for comparing the color change of the chemical pad 26 resulting from the reaction with the analyte in order to evaluate the test results in situ in order to ensure color fastness, and spot colors are intentionally used that are premixed before the marks 28, 28' are created on the starting material of the foil tube 12.

[0030] As shown in Figure 1, the generally small markings 28 on the front are intended for optical comparisons performed by the instrument. Such instruments can be built as mobile devices, including smartphones combined with a digital camera, specifically a diagnostic software application. Due to the reduced size of the markings 28, the extended area on the front can be used for manufacturer labels or other information. Figure 2 shows the relatively large markings 28' on the back, which allow the user to perform device-independent visual color comparisons. Each of the markings 28 and 28' may contain three reference colors 30 representing low, medium, and high analyte concentrations.

[0031] The ends of the foil tube 12 may be provided with a pre-weakened tear line 32 running across the longitudinal axis of the tube. Another option for simply tearing the packaging 12 to open it longitudinally may be provided by a toothed transverse edge 34.

[0032] As shown in Figure 3, the test strip 22 can be used by tearing along the tear line 32, applying a blood sample to the chemical pad 26 of the pulled-out test strip 22, and comparing the color change caused by the reaction of the chemical pad 26 with the analyte to the mark 28. The final step can be performed by attaching the upper side of the test strip 22 to the adhesive area 36 on the foil tube 12 so that the position remains fixed while the camera captures the image. In this way, the color of the test field 26 can be evaluated from the back through the hole 38 of the carrier 24 and instrumentally compared with the mark 28.

[0033] Before use, the adhesive area 36 may be covered with a peelable label or sheet (not shown) on which the adhesive can partially adhere when peeled off from the foil tube 12, so that the label can be attached to another location, for example, a clinical report.

[0034] Figure 4 shows the production of packaging 10 in a continuous vertical operation mode in a stick packing machine 40. As a starting material, a flat web 42 is unrolled and formed into a tube on a forming shoulder 44. The starting material 42 consists of a composite layer material including an aluminum layer and an internal seal layer, and marks 28, 28' are already provided before forming the tube 12.

[0035] The internal seal layer may consist of a thermoplastic polymer, i.e., polyethylene (PE) or polypropylene (PP), a copolymer of both, or a combination with other plastic materials. Thus, the opposing seal layers can be fused together under the influence of heat and pressure over a given time. Advantageously, these parameters may be adjusted within the range of a seal temperature of 110–200°C, a seal pressure of 0.5–5 bar, and a seal time of 0.3–2 seconds. In this regard, the effects of seal temperature and time on the chemical pad 26 should be taken into consideration.

[0036] Therefore, the opposing longitudinal edges of the tubular foil body are heated and fixed by vertical heat shoes 46 used to form the longitudinal seal joint 14 before the test strip 22 is introduced.

[0037] The formation of the lateral seal joints 16 and 18 is achieved in pairs by engaging with a horizontal heat shoe 48, which also includes a corrugated knife for cutting the end 34. In this way, the upper lateral seal joint 18 of the preceding packaging 10 is provided simultaneously with the lower lateral seal joint 20 of the following foil tube 12.

[0038] The vertical supply pipe 46 extends into the packing space 20, allowing for the introduction of a test strip 22 carrying the chemical pad 26. To keep the packing space 20 moisture-free, it is conceivable to purge the packing space with a dry gas and / or pre-dry the test strip 22. Another option is to provide a desiccant with the starting material 42. As described above, the chemical pad 26 should not be subjected to thermal stress by the heat shoes 46, 48. This can be achieved by the proper placement and supply of the test strip 22 such that the chemical pad 26 is positioned away from at least one of the lateral seal joints 16, 18.

[0039] In the configuration shown in Figure 4, the longitudinal seal joint 14 and the lower transverse seal joint 16 are formed before the introduction of the test strip 22. After removing the heat shoes 46, 48, the chemical pad 26 may be positioned first at the lower end of the carrier 24 so as to have the maximum distance to the thermal shock during the closing of the upper transverse seal joint 18 in the next stage. Of course, it is also possible for the chemical pad 26 to be positioned in the center of the carrier 24, as shown in Figure 1, on the other hand, it should be avoided to chemically coat the entire surface of the chemical pad 26 or to position it at the upper end without leaving any distance to the transverse seal joint 18 while it is closing.

Claims

1. A method for manufacturing stick pack type packaging (10), a) A step of forming an elongated foil tube (12) from a flexible flat web (42), b) sealing the foil tube (12) with first and second heat-fixed transverse joints (16, 18) provided at the longitudinal end of the foil tube (12), thereby providing a closed filling space (20) for storing the product. c) Providing a disposable test strip (22) having a chemical pad (26) for detecting an analyte in a sample, d) step b) providing the first heat-fixed lateral joint (16) prior to the test strip (22) inside the foil tube (12), e) step b), before closing the second heat-fixed lateral joint (18), introduce the test strip (22) into the filling space (20), f) Step e) Positioning the test strip (22) such that the chemical pad (26) is located near the first heat-fixed transverse joint (16) and at a greater distance from the second heat-fixed transverse joint (18), wherein the test strip includes a substantially rectangular carrier (24), and the chemical pad is provided at one end and / or in the middle of the carrier, Includes, The method described above is The steps of applying one or more marks (28) of reference color (30) to the web (42) such that the marks (28) appear on the outer surface of the foil tube (12), and i) A step of joining the mutually opposing longitudinal edges of the web (42), ii) A step of providing two corresponding portions of the web (42) overlapping each other and joining these longitudinal edges by each longitudinal sealing joint (14), The step of forming the foil tube (12) by one of the following A method characterized by further comprising:

2. The method according to claim 1, further comprising the steps of purging the packed space (20) with a dry gas and / or drying the test strip (22) before introducing the dry gas into the packed space (20).

3. The method according to claim 1, wherein the foil tube in step b) of claim 1 includes the heat-fixed longitudinal joint portion (14) at the edge.

4. The method according to any one of claims 1 to 3, wherein the foil tube (12) includes an adhesive area (36) or rubber lining on its outer surface for placing a used test strip (22) thereon.

5. The method according to claim 1, wherein the opposing longitudinal edges of the flexible flat web (42) are joined by a heat-fixed longitudinal joint (14).

6. A method for using stick pack type packaging, a) To provide a stick pack type packaging (10) containing a single disposable test strip (22), perform the method according to claim 1. b) Pulling the test strip (22) out of the packaging (10) by tearing the foil tube (12), c) Apply the sample to the chemical pad (26), d) A method comprising comparing the color of the chemical pad (26) resulting from the reaction with the analyte to the mark (28) of the reference color (30) in order to evaluate the test result, wherein the color comparison is performed optically by a mobile device including a digital camera.

7. The method according to claim 6, wherein the foil tube (12) is torn at a pre-weakened or tooth-shaped tearing portion (32).

8. The method according to claim 6 or 7, wherein the sample is a sample of bodily fluids.

Citation Information

Patent Citations

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