Claims
- 1. A device for detection of Dirofilaria immitis, Borrelia burgdorferi, and Ehrlichia canis antigens, antibodies, or fragments thereof comprising:
(a) an antibody that specifically binds a D. immitis antigen immobilized on a solid support at a distinct location; (b) a polypeptide that specifically binds an antibody specific for B. burgdorferi immobilized on the solid support at a distinct location; (c) a polypeptide that specifically binds an antibody specific for E. canis immobilized on the solid support of at a distinct location.
- 2. The device of claim 1, wherein the antibody that specifically binds to a D. immitis antigen is a polyclonal antibody.
- 3. The device of claim 2, wherein the antibody that specifically binds to a D. immitis antigen is a monoclonal antibody.
- 4. The device of claim 1, wherein the polypeptide that specifically binds an antibody specific for B. burgdorferi is derived from an invariable region of a variable domain of a variable surface antigen of B. burgdorferi (VlsE).
- 5. The device of claim 4, wherein the polypeptide that specifically binds an antibody specific for B. burgdorferi is selected from the group consisting of polypeptides shown in SEQ ID NO:1 and SEQ ID NO:4.
- 6. The device of claim 1, wherein the polypeptide that specifically binds an antibody specific for E. canis is a P30 or P30-1 polypeptide or a fragment thereof.
- 7. The device of claim 6, wherein the polypeptide that specifically binds an antibody specific for E. canis is selected from the group consisting of SEQ ID NO:2, SEQ ID NO:3 and a combination thereof.
- 8. A method of determining the presence or absence of D. immitis, B. burgdorferi, and E. canis antigens, antibodies, or fragments thereof in a biological sample comprising: applying the sample to the device of claim 1 and detecting formation or lack of formation of immunocomplexes on the device.
- 9. A device for the detection of Dirofilaria immitis, Borrelia burgdorferi, and Ehrlichia canis antigens, antibodies, or fragments thereof comprising:
(a) an elongated solid phase flow matrix comprising
(i) a first region for the receipt of a fluid sample (ii) a second region wherein an antibody that specifically binds a D. immitis antigen is immobilized at a distinct location; a polypeptide that specifically binds an antibody specific for B. burgdorferi is immobilized at a distinct location, and a polypeptide that specifically binds an antibody specific for E. canis is immobilized at a distinct location; (iii) a third region for application of a liquid detector reagent capable of removing unbound substances from the second region; the second region being positioned intermediate to the first region and the third region; (b) an absorbent reservoir of high volume capacity, wherein prior to use of the device, the absorbent reservoir is not in fluidic contact with the flow matrix; the device further comprising means for establishing fluidic contact between the absorbent reservoir and the flow matrix at positions selected so that the second region is between the absorbent reservoir and the third region; (c) a sealed container of the liquid detector reagent positioned to be introduced at the third region of the matrix; whereby the flow matrix and the regions thereof are sized and positioned to cause the fluid sample to flow initially along the elongated flow matrix in one direction toward and through the second region, and subsequently, upon introduction of the liquid detector reagent into the third region of the flow matrix, the liquid detector reagent to flow along the elongated flow matrix in a second direction opposite the first direction, through the second region, and into the absorbent reservoir, drawing unbound substances with it.
- 10. The device of claim 9, wherein the antibody that specifically binds to a D. immitis antigen is a polyclonal antibody.
- 11. The device of claim 10, wherein the antibody that specifically binds to a D. immitis antigen is a monoclonal antibody.
- 12. The device of claim 9, wherein the polypeptide that specifically binds an antibody specific for B. burgdorferi is derived from an invariable region of a variable domain of a variable surface antigen of B. burgdorferi (VlsE).
- 13. The device of claim 12, wherein the polypeptide that specifically binds an antibody specific for B. burgdorferi is selected from the group consisting of polypeptides shown in SEQ ID NO:1 and SEQ ID NO:4.
- 14. The device of claim 12, wherein the polypeptide that specifically binds an antibody specific for E. canis is a P30 and P30-1 polypeptide or fragment thereof.
- 15. The device of claim 14, wherein the polypeptide that specifically binds an antibody specific for E. canis is selected from the group consisting of SEQ ID NO:2, SEQ ID NO:3 and a combination thereof.
- 16. The device of claim 9, further comprising reagents that undergo a detectable reaction such that analyte bound at the second region is detected, and wherein the liquid reagent comprises a predetermined limited quantity of an inhibitor of the detectable reaction, wherein flow of the liquid reagent transports the inhibitor to the second region and then transports the inhibitor and unbound substances away from the second region, wherein the detectable reaction takes place in the absence of the unbound substances.
- 17. The device of claim 9, wherein, prior to use of the device, the absorbent reservoir is positioned so as not to contact the flow matrix, and wherein the device further comprises means for moving the absorbent reservoir into fluidic contact with the flow matrix.
- 18. The device of claim 9, further comprising a housing comprising:
(a) the elongated flow matrix; (b) the sealed container of the liquid reagent; and (c) means for applying the liquid reagent from the container to the third region of the flow matrix.
- 19. The device of claim 18, wherein the means for applying the liquid reagent to the flow matrix comprises a lance positioned and adapted to pierce the container.
- 20. The device of claim 9, comprising a housing containing:
(a) the elongated flow matrix; (b) the sealed container of the liquid reagent; and (c) means for applying the liquid reagent from the container to the third region of the flow matrix, the means for moving the absorption reservoir into fluidic contact with the flow matrix being connected to the means for applying the liquid reagent, whereby an operator activates both the means in a single operation.
- 21. The device of claim 9, wherein the liquid reagent is a wash reagent and the flow matrix further comprises a fourth region for application of a detector reagent, wherein the third region is positioned intermediate to the second region and the fourth region.
- 22. The device of claim 21, the device comprising at least two sealed storage containers, one of the sealed storage containers containing a wash reagent, and one of the sealed storage containers containing the liquid detector reagent, both of the sealed containers being positioned proximal to the fourth region of the flow matrix.
- 23. The device of claim 22, wherein the device further comprises a means for applying the detector reagent and a means for applying the wash reagent, and the means for applying the detector reagent is connected to the means for applying the wash reagent, whereby an operator applies both the detector reagent and the wash reagent in a single operation.
- 24. The device of claim 23, wherein the means for applying the detector reagent and the wash reagent comprises a lance positioned and adapted to pierce both the containers.
- 25. The device of claim 9, further comprising at least one barrier comprising a soluble member positioned to block flow of the liquid reagent to the absorbent reservoir, whereby dissolution of the solid member permits fluid flow of the liquid reagent in the second direction to the absorbent reservoir after a predetermined time selected to be sufficient to permit sample to flow in the first direction through the second region.
- 26. The device of claim 25, wherein the barrier is positioned between the first region and the absorbent reservoir.
- 27. The device of claim 25, wherein the barrier is positioned between the third region and the second region.
- 28. The device of claim 25, comprising two of the barriers, one of the barriers being positioned between the first region and the absorbent reservoir, the second barrier being positioned between the third region and the second region.
- 29. A method for performing an assay that determines presence or absence of Dirofilaria immitis antigens, Borrelia burgdorferi antibodies, and Ehrlichia canis antibodies in a fluid sample by detecting binding of the antigens and antibodies to at least one immobilized antibody that specifically binds a D. immitis antigen, at least one immobilized polypeptide that specifically binds an antibody specific for B. burgdorferi, and at least one immobilized polypeptide that specifically binds an antibody specific for E. canis after washing unbound material from the immobilized antibody and polypeptides, the method comprising:
(a) providing
(i) an elongated solid phase flow matrix, the solid phase flow matrix capable of driving capillary fluid movement, the flow matrix comprising
(a) a first region for the receipt of a fluid sample; (b) a second region at which the at least one antibody and at least one polypeptides are immobilized; (c) a third region for application of a liquid detector reagent capable of removing unbound substances from the second region; the second region being positioned intermediate to the first region and the third region; (ii) an absorbent reservoir of high volume capacity, wherein, prior to performing the method, the absorbent reservoir is not in fluidic contact with the flow matrix; (b) applying the fluid sample to the first region of the flow matrix; (c) allowing the fluid sample to flow in first direction through the second region, and then introducing the liquid detector reagent into the flow matrix at the third region; (d) moving the absorbent reservoir into fluidic contact with the flow matrix, such that the sample and the liquid detector regent flow in a second direction, opposite to the first direction; and (e) detecting the D. immitis antigens, B. burgdorferi antibodies, and E. canis antibodies bound at the second region.
- 30. The method of claim 29, wherein the D. immitis antigens, B. burgdorferi antibodies, and E. canis antibodies bound at the second region is detected by reagents that undergo a detectable reaction, and the liquid reagent comprises a predetermined limited quantity of an inhibitor of the detectable reaction, whereby flow of the liquid reagent transports the inhibitor initially to the second region, and when the inhibitor and unbound substances are transported away from the second region, the detectable reaction takes place in the absence of the unbound substances.
- 31. The method of claim 29, wherein, prior to use of the method, the absorbent reservoir is positioned so as not to contact the flow matrix, and after the fluid sample flows in a first direction through the second region, the absorbent reservoir is moved into fluidic contact with the flow matrix such that the sample and the liquid reagent flow in a second direction opposite to the first direction, through the second region, and into the absorbent reservoir, drawing unbound substances with it.
- 32. The method of claim 29, wherein the liquid reagent is contained in a sealed container and is applied to the third region of the flow matrix by piercing the container.
- 33. The method of claim 31, wherein the absorbent reservoir is brought into fluidic contact with the flow matrix and the liquid reagent is applied to the third region of the flow matrix by a single operator action.
- 34. The method of claim 29 or 30, wherein the liquid reagent is a wash reagent and the flow matrix further comprises a fourth region for the application of a detector reagent, the third region being positioned intermediate to the second region and the fourth region.
- 35. The method of claim 34, wherein the wash reagent and the detector reagent are each contained in separate sealed containers and are applied to the flow matrix by simultaneously piercing each of the containers with at least one lance.
- 36. The method of claim 29, the method further comprising providing at least one barrier comprising a soluble member positioned to block flow of the liquid reagent to the absorbent reservoir, whereby dissolution of the solid member permits fluid flow of the liquid reagent in the second direction to the absorbent reservoir after a predetermined time selected to be sufficient to permit sample to flow in the first direction through the second region.
- 37. The method of claim 36, wherein the barrier is positioned between the first region and the absorbent reservoir.
- 38. The method of claim 36, wherein the barrier is positioned between the third region and the second region.
- 39. The method of claim 36, comprising two of the barriers, one of the barriers being positioned between the first region and the absorbent reservoir, the second of the barriers being positioned between the third region and the second region.
- 40. A device for performing an assay that determines presence or absence of Dirofilaria immitis antigens, Borrelia burgdorferi antibodies, and Ehrlichia canis antibodies in a fluid sample by detecting binding of the antigens and antibodies to at least one immobilized antibody that specifically binds a D. immitis antigen, at least one immobilized polypeptide that specifically binds an antibody specific for B. burgdorferi, and at least one immobilized polypeptide that specifically binds an antibody specific for E. canis by detecting binding of the D. immitis antigens, B. burgdorferi antibodies, and E. canis antibodies to at least one immobilized antibody or polypeptide after washing unbound material from the immobilized antibody and polypeptides, the device comprising:
(a) an elongated fluid flow matrix comprising,
(1) a first segment for receiving a fluid sample, (2) a second region at which the antibody and polypeptides are immobilized, (3) a third region for application of a liquid detector reagent capable of removing unbound substances from the second region, (b) an absorbent reservoir of high volume capacity, (c) a sealed container of the liquid detector reagent positioned to be introduced at the third region of the flow matrix, (d) at least one soluble barrier positioned to block flow of the liquid detector reagent from the container to the absorbent reservoir, the second region being positioned intermediate to the third region and the absorbent reservoir, the soluble barrier blocking flow of the liquid detector reagent to the absorbent reservoir until after the sample has flowed from the first region through the second region, at which point the barrier dissolves permitting the liquid detector reagent to flow.
- 41. The device of claim 40, wherein the barrier is positioned between the liquid reagent container and the second region.
- 42. The device of claim 40, wherein the barrier is positioned between the first region and the absorbent reservoir.
- 43. The device of claim 41, wherein the barrier is positioned between the first region and the absorbent reservoir.
PRIORITY INFORMATION
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/335,367 filed Oct. 31, 2001, which is incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60335367 |
Oct 2001 |
US |