Diagnostic sanitary test strip

6991940
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Inventors

Carroll, Patrick
Jon (Weston, FL), Bell, Douglas E.

Application #

09/984,948

Filed

Oct-31-2001

Published

Jan-31-2006

Current US Class

422/55
422/56
422/57
422/58
422/61
435/11
435/14
435/174
435/180
435/287.1
435/287.2
435/287.7
435/287.8
435/287.9
435/805
435/810
435/970
436/164
436/169
436/170
436/514
436/518
436/531
436/66
436/71
436/805
436/810
436/815

International Classes

G01N 33/558 (20060101)

Field of Search

422/55-58 422/61 435/11 435/14 435/174 435/180 435/287.1 435/287.2 435/287.7 435/287.8 435/287.9 435/805 435/81 435/970 436/66 436/71 436/164 436/169 436/170 436/514 436/518 436/531 436/805 436/810 436/815 436/827

Assignee

Home Diagnostics, Inc. (Fort Lauderdale, FL)

Examiners

Chin; Christopher L.

Attorney, Agent or Firm

Finnegan, Henderson, Farabow, Garrett & Dunner, L.L.P.

Referenced by:

View Backward References

Citation

Cite This Patent

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Abstract
An improved multi-layered diagnostic sanitary test strip for receiving a heterogenous fluid, such as whole blood, to test for presence and/or amount of a suspected analyte in the fluid by facilitating a color change in the strip corresponding to the amount of the analyte in the fluid, wherein the test strip includes fluid volume control dams to prevent spillage of the fluid from the strip and a chemical reagent solution that facilitates end-point testing. The improved test strip comprises no more than two operative layers and: (a) a reaction membrane containing a reagent capable of reacting with the analyte of interest to produce a measurable change in said membrane; (b) an upper support layer defining a sample receiving port for receiving the fluid sample thereat; (c) one or more structures for directing the sample containing the analyte of interest through at least a portion of said reaction membrane; and (d) a lower support layer having a reaction viewing port in vertical alignment with said membrane for displaying said measurable change, said lower support being associated with said upper support to secure said reaction membrane in said test strip.
 
Claims
What is claimed is:

1. A diagnostic sanitary test strip device having a unitary construction for measuring an analyte of interest in a heterogeneous fluid sample, said test strip comprising: no more than two operative layers, one of said no more than two operative layers comprising a reaction membrane containing a reagent capable of reacting with the analyte of interest to produce a measurable change in said membrane; said test strip further comprising: an upper support layer defining a sample receiving port for receiving the fluid sample thereat; one or more structures for directing the sample containing the analyte of interest through at least a portion of said reaction membrane; and a lower support layer having a reaction viewing port in vertical alignment with said membrane for displaying said measurable change, said lower support layer being associated with said upper support layer to secure said reaction membrane in said test strip.



Description
DESCRIPTION OF THE INVENTION

1. Field of the Invention

This invention relates generally to analytical test strip devices, and more particularly to an improved diagnostic sanitary test strip device for determining the presence, absence, and/or amount of a predetermined analyte, and having a fluid sample volume control, structure to facilitate proper orientation of the strip in a corresponding meter, and an improved agent treatment solution for facilitating end-point testing.

2. Description of the Background Art

Analytical test strips for testing analytes in heterogeneous fluid samples are well known in the art and comprise various structures and materials. These test strips typically single or multi-layered fibrous membrane devices which receive a heterogeneous fluid, such as whole blood, and undergo a color change in response to interaction with agents/reactants imbibed into the membrane. Prior to reaching the reactants, the fluid sample is filtered to facilitate accurate testing of the analyte. For instance, a blood sample being treated for glucose levels requires the removal of red blood cells before testing the plasma. Some test strips include additional layers that provide the requisite filtering. Other test strips attempt to filter and test a sample for a suspected analyte in a single membrane. Terminiello et al., U.S. Pat. No. 4,774,192, teaches such a dry chemistry reagent system which comprises a porous anisotropic (asymmetrical) membrane having a porosity gradient from one planar surface to the other for filtering a fluid sample and includes an indicator, flow control agent, and reagent cocktail imbibed therein for initiating the chemical reaction with the fluid sample. Anisotropic membranes, however, provide inadequate filtering and can have a tendency to produce unreliable results.
 
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