SYSTEMS AND METHODS FOR A LATERAL FLOW TEST STRIP HOLDER
20170087549 ยท 2017-03-30
Inventors
Cpc classification
B01L2300/041
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/0627
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/0609
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/069
PERFORMING OPERATIONS; TRANSPORTING
B01L3/5023
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01L3/00
PERFORMING OPERATIONS; TRANSPORTING
G01N33/52
PHYSICS
Abstract
A system of detecting a blood analyte includes a lateral flow test strip and a test strip holder, the lateral flow test strip located in the test strip holder. The system further includes a meter for receiving the test strip holder.
Claims
1. A system of detecting a blood analyte, comprising: a lateral flow test strip; a test strip holder, the lateral flow test strip located in the test strip holder; and a meter for receiving the test strip holder.
2. The system of claim 1, further comprising a wicking membrane located in the test strip holder.
3. The system of claim 2, wherein the test strip holder includes a lid and a base.
4. The system of claim 3, wherein the lid includes a dosing window, and the wicking membrane is located under the dosing window.
5. The system of claim 4, wherein the base includes a reading window.
6. The system of claim 5, wherein the base includes a base cavity that receives the lateral flow test strip and the wicking membrane.
7. The system of claim 6, wherein the base cavity includes a ledge that causes a sample to flow toward the lateral flow test strip from the wicking membrane.
8. The system of claim 7, wherein the lid is flush with a top of the lateral flow test strip when the lid is engaged with the base, such that excess fluid may not flow on top of the lateral flow test strip.
9. The system of claim 8, wherein the lid interfaces with the base in a pressure fit arrangement.
10. The system of claim 9, wherein the lid includes wings and snaps into the base.
11. The system of claim 10, wherein an underside of the lid includes ribs for holding the lateral flow test strip in place.
12. The system of claim 11, wherein the lid compresses the lateral flow test strip into the base.
13. The system of claim 12, wherein the meter includes a slot for receiving the lateral flow test strip and test strip holder combination, and the reading window aligns with a sensor of the meter.
14. A test strip assembly comprising: a lateral flow test strip; and a test strip holder, the lateral flow test strip located in the test strip holder.
15. The test strip assembly of claim 14, further comprising a wicking membrane located in the test strip holder.
16. The test strip assembly of claim 15, wherein the test strip holder includes a lid and a base.
17. The test strip assembly of claim 16, wherein the lid includes a dosing window, and the wicking membrane is located under the dosing window.
18. The test strip assembly of claim 17, wherein the base includes a reading window.
19. The test strip assembly of claim 18, wherein the base includes a base cavity that receives the lateral flow test strip and the wicking membrane.
20. The test strip assembly of claim 19, wherein the base cavity includes a ledge that causes a sample to flow toward the lateral flow test strip from the wicking membrane.
21. The test strip assembly of claim 20, wherein the lid is flush with a top of the lateral flow test strip when the lid is engaged with the base, such that excess fluid may not flow on top of the lateral flow test strip.
22. The test strip assembly of claim 21, wherein the lid interfaces with the base in a pressure fit arrangement.
23. The test strip assembly of claim 22, wherein the lid includes wings and snaps into the base.
24. The test strip assembly of claim 23, wherein an underside of the lid includes ribs for holding the lateral flow test strip in place.
25. The test strip assembly of claim 24, wherein the lid compresses the lateral flow test strip into the base.
26. A method of testing for a blood analyte, comprising: providing a test strip assembly, including a lateral flow test strip and a test strip holder, the lateral flow test strip located in the test strip holder; introducing a sample to the lateral flow test strip; flowing the sample along the lateral flow test strip; producing a colored response to the sample; and measuring the colored response with a meter.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0013] Certain terminology is used herein for convenience only and is not to be taken as a limitation on the embodiments of the systems and methods for a lateral flow test strip holder. In the drawings, the same reference letters are employed for designating the same elements throughout the several figures. The system presented provides for a test strip holder that can fit with a meter instead of a cassette, which is typically more cost effective, since test strip holders may be smaller and use less material, therefore reducing the cost.
[0014] Embodiments include a novel test strip design where a lateral flow membrane is accommodated. In some embodiments, the design is such that its footprint fits in the optical block of the CardioChek Plus Analyzer. The strip uses the already existing features of the CardioChek platform.
[0015] Embodiments of the test strip holder design provide for the opportunity for lateral flow test strips to be used with meters that currently do not receive lateral flow test strips because they are designed to receive cassettes. Specifically, in relation to some embodiments, currently an HbAlc and cotinine assays are offered in a lateral flow format by Polymer Technology Systems, Inc. (PTS). The system includes a lateral flow test strip that is in a cassette. Instead, the lateral flow test strips may be migrated to a test strip which allows it to be received by meters typically designed for vertical flow test strips, such as the CardioChek series of meters designed by Polymer Technology Systems, Inc. The CardioChek Plus meter provides for many features that may be desirable to integrate into a meter, including wireless communication, Bluetooth communication, a printer, and access to Health Risk Assessment programs offered by Polymer Technology Systems, Inc.
[0016] Additionally, embodiments of lateral flow test strips in test strip holders provide for reduced sample requirement; therefore, the buffer volume requirement in the sampler is reduced, resulting in additional cost savings.
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[0019] As is visible in
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[0022] A prototype test was performed with the above embodiment. Prototypes were created, and these prototypes showed that the lateral flow test strips from the PTS cotinine assay were capable of being imported and provide percent reflectance reading. The base was purposely made of transparent plastic to observe and determine the fluid movement in the strip.
[0023] While specific embodiments have been described in detail in the foregoing detailed description and illustrated in the accompanying drawings, it will be appreciated by those skilled in the art that various modifications and alternatives to those details could be developed in light of the overall teachings of the disclosure and the broad inventive concepts thereof. It is understood, therefore, that the scope of this disclosure is not limited to the particular examples and implementations disclosed herein but is intended to cover modifications within the spirit and scope thereof as defined by the appended claims and any and all equivalents thereof. Note that, although particular embodiments are shown, features of each may be interchanged between embodiments.