Claims
- 1. A chromatographic strip adapted to the performance of a pre selected enzyme-driven assay for a selected analyte, which strip is
(a) adapted to be placed laterally in a supporting device, ensuring lateral flow along its length (b) constructed from a material that permits lateral chromatographic flow through its interstices, and (c) comprises at least two pads sequentially positioned on an adhesive backing, namely,
(1) a sample receiving pad adapted to receive a liquid sample which flows laterally and chromatographically therethrough and (2) a substrate pad on which has been movably deposited within an area near its interface with the preceding pad a dry mixture of components that have heretofore been utilized in wet chemistry assays for the same analyte.
- 2. A chromatographic strip according to claim 1 wherein the sample receiving pad is adapted to permit the addition of a lysing agent to a liquid blood sample introduced thereto, and to allow said lysed blood sample to flow chromatographically, in a lateral manner, into the second such pad.
- 3. A chromatographic strip according to claim 1 wherein a region of said first pad has been pretreated to remove from, or reduce the concentration in the liquid sample as it flows therethrough of a substance known to interfere with, obscure the result of or otherwise hinder the performance of the intended assay if present therein.
- 4. A chromatographic strip according to claim 1 wherein a region of said first pad has been treated to concentrate the liquid sample as it flows there through by removing a portion of its liquid content.
- 5. A chromatographic strip according to claim 1 wherein an intermediate pad is interposed between the sample receiving pad and the pad and said intermediate pad has been treated with an immovable deposit of at least one substance that removes and binds at least one sample component that would otherwise interfere with or obscure the result of the assay.
- 6. A chromatographic strip according to claim 2, the subtrate pad of which contains dry components that, when reconstructed by chromatographic lateral forward flow with a liquid sample of fresh human blood perform an enzyme driven assay for G6PD activity on said sample.
- 7. A chromatographic lateral flow assay for G6PD activity in human blood comprising the steps of
a) applying to the sample receiving end of a laterally positioned chromatographic strip comprising at least two abutting pads positioned on an adhesive strip, each constructed from a material that permits lateral chromatographic flow therethrough, a liquid sample of fresh human blood, b) applying to the sample a lysing agent to split open the red blood cells thereof, c) allowing the lysed blood sample to flow along said strip, into said the second pad, where the momentum of its forward flow picks up a movable predeposited dry substrate mixture containing dry components heretofore utilized in wet chemistry clinical assays for G6PD activity, d) allowing the lysed blood sample containing the dry substrate components in its forward flow front to flow together along said strip to the terminal end thereof, and e) when the lysed blood sample and the dried substrate components reach the terminal end of said strip, noting the appearance of a distinct purplish blue color in the forward flow front due to the formation of formazan.
- 8. An assay according to claim 6 wherein, in step (e) the time required for development of purplish blue color after the sample and reconstituted substrate reach the end of the strip is measured and a determination is made, based upon the measured time and the ambient temperature during performance of the assay, of whether the person from whom the blood sample was obtained has normal or subnormal G6PD activity, based on known time-temperature relationships to G6PD activity levels.
- 9. An assay according to claim 6 which is performed at ambient temperature of approximately 37° C., wherein step (e) is permitted to proceed for 70 seconds from the time the sample and reconstituted substrate reach the terminal end of the chromatographic strip and if no purplish blue color has yet formed, the individual whose blood sample was assayed is classified has having G6PD activity deficiency, but if such color forms before the 70 second limit, the individual whose blood sample was assayed is classified as having normal G6PD activity.
- 10. A chromatographic lateral flow assay for a preselected analyte that is enzyme-driven and performed
(a) by applying to the sample receiving end of a laterally positioned chromatographic strip comprising at least two pads positioned in abutting relationship on an adhesive backing, a liquid sample; (b) allowing said sample to flow through the first pad and into the second pad, where the forward flow momentum of the sample picks up and carries with it to the opposite end of said pad a mixture of dry components which have been utilized in performing wet chemistry assays for the preselected analyte and (c) whereby the dry components are reconstituted by contact with the liquid sample and a color indicative of the endpoint of the assay forms at the flow front position.
- 11. A chromatographic lateral flow assay according to claim 2 for measuring total serum cholesterol in mammalian blood, which strip has a substrate pad on which has been movably deposited within an area near its interface with the preceding pad a dry mixture of components that have heretofore been utilized in wet chemistry assays for total serum cholesterol and a dye forming ingredient.
- 12. A chromatographic lateral flow assay according to claim 1 for the measurement β-lactamase activity in bacteria cultures, which strip has a substrate pad on which has been movably deposited within an area near its interface with the preceding pad a dry mixture of components heretofore utilized in wet chemistry assays for beta-lactamase activity and a dye-forming ingredient.
- 13. A chromatographic lateral flow assay according to claim 2 for measuring peroxidase activity in human serum or whole blood, which strip has a substrate pad on which has been movably deposited within an area near its interface with the preceding pad a dry mixture of components previously utilized in wet chemistry assays for peroxidase activity, plus a dye forming ingredient and sodium nitrite in sufficient quantity to eliminate pseudoperoxidase activity.
- 14. A process for performing a preselected enzyme-driven assay for a selected analyte wherein the enzyme generally occurs in very small concentrations in milieus where it is known to be present, which process comprises the steps of
(a) adding to a milieu in which the said enzyme is known to occur sufficient aqueous-based liquid to provide a medium within which migration of said enzyme and/or particulate support material impregnated with or conjugated to, a ligand for said enzyme can take place, (b) adding to said medium an increment of particulate support materials of a size larger than any naturally occurring particles that may be present in said medium, which particulate support materials have been conjugated to or impregnated with a ligand for said enzymes, (c) allowing said particulate support materials which have been conjugated or impregnated with a ligand for said enzyme and said enzyme to incubate for a time sufficient to enable said enzyme to react with said ligand conjugated to or impregnated with said particulate support materials under conditions which are conducive to promoting contact between said enzyme and said ligand, (d) recovering from said medium said particulate support materials upon which ligand-enzyme conjugates have formed, (e) dispersing said particulate support materials upon which ligand-enzyme conjugates have formed that were recovered in step (d) hereof in a volume of aqueous based medium of requisite sample size for conducting an assay, on a chromatographic strip adapted to the performance of an assay driven by the enzyme present in said ligand-enzyme conjugates, (f) applying said volume of aqueous based medium containing said particulate support material upon which ligand-enzyme conjugates have formed to the sample pad of a chromatographic strip according to claim 1 that is adapted to the performance of an assay driven by the enzyme present in said ligand-enzyme conjugates, (g) allowing the assay to proceed and (h) reading its results using predetermined color standards
- 15. A process according to claim 14 in which particulate support material is a porous paper or plastic material and step (d) is performed by filtering out said particulate support materials upon which ligand-enzyme conjugates have formed.
- 16. A process according to claim 14 in which the particulate support material is a porous paper or plastic material and step (d) is performed by centrifuging said medium, separating out the layer in which said particulate support materials upon which ligand-enzyme conjugates have formed and aspirating or filtering off any liquid that is present in said layer.
- 17. A process according to claim 14 in which the particulate support material is a porous paper or plastic material and step (d) is performed by allowing said medium containing said particulate support materials upon which ligand-enzyme conjugates have formed to rest and separate into layers by natural sedimentation, followed by separating out the layer containing said particulate support materials upon which ligand-enzyme conjugates have formed and removing any liquid present therein by aspiration or filtration.
- 18. A process according to claim 14 wherein the particulate support material is superparamagnetic particles and step (d) is performed by exposing said medium to the action of a magnetic field of sufficient strength to draw to it the particles on which ligand-enzyme conjugates have formed, the medium is removed by decantation or aspiration, and the isolated particles are released from the magnet and immediately subjected to step (e).
- 19. A process according to claim 18 wherein the magnet is a rare earth magnet.
Parent Case Info
[0001] This application is a continuation-in-part of U.S. application Ser. No. 10/370,574 filed Feb. 24, 2003.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10370574 |
Feb 2003 |
US |
Child |
10784155 |
Feb 2004 |
US |