Claims
- 2. Device according to claim 18, further comprising:
a spacer between the base plate and covering plate forming the receiving region.
- 3. Device according to claim 18, further comprising:
an inlet aperture and an outlet aperture in the covering plate.
- 4. Device according to claim 18, wherein the functional layer consists of fibrous material, cellulose, nitrocellulose, polypropylene, poly-carbonate, polyvinyl difluoride, or of a hydrogel, or of polyelectrolytes, or of track-etch membrane or glass fibre membranes, or is configured as a packed column.
- 5. Device according to claim 18, wherein at least one functional layer in the receiving region is in direct contact with the base plate.
- 6. Device according to claim 3, wherein a plurality of functional layers, separated by separating layers, are disposed alternating one above another, making possible a connection of the inlet and outlet apertures via the receiving region by means of openings.
- 7. Device according to claim 6, wherein at least two different functional layers are disposed beside one another in one plane.
- 8. Device according to claim 18, wherein a plurality of functional layers are disposed one directly above another.
- 9. Device according to claim 18, further comprising:
a sample container that defines a sample volume, the sample container so disposed that a connection is formed between the receiving region and sample container.
- 10. Device according to claim 9, wherein a solid phase is formed in the sample container, in an inflow region, in the receiving region, or as a functional layer.
- 11. Method of carrying out fluorescence immunoassays by means of evanescent field excitation, comprising:
guiding a sample volume by means of suction, pressure, or by capillary forces, through at least one functional layer and thereafter through a receiving region; emitting light with a wavelength causing fluorescence of marked chemical or biochemical components bound to a surface in the receiving region; and measuring fluorescence with a detector, the detector disposed to detect fluorescence passing through a base plate adjoining the receiving region and not disposed to detect fluorescence coupled into the base plate acting as a waveguide.
- 12. Method according to claim 11, wherein the at least one functional layer carries out a function from the group consisting of filtration, separation, elimination of interfering substances, and release of reagents.
- 13. Method according to claim 11, wherein a rise in a measured fluorescent light intensity correlates with and is used to determine an analyte concentration.
- 14. Method according to claim 11, wherein a difference between two fluorescence intensity signals, measured in intervals, is used to determine an analyte concentration.
- 15. Method according to claim 11, wherein with the sample volume are carried out biochemical assays of general receptor-ligand systems selected from the group consisting of antigen-antibody, lectin-carbohydrate, DNA- or RNA-complementary nucleic acid, DNA- or RNA-protein, hormone-receptor, enzyme-enzyme cofactors, and protein G or protein A-immunoglobin or avidin-biotin.
- 16. Method according to claim 11, wherein a sandwich assay is carried out by:
leading an analyte into the receiving region, at least some of the analyte binding to the bound chemical or biochemical components; and leading a marked antibody into the receiving region, at least some of the marked antibody binding to the analyte, wherein there is a direct correlation between an amount of measured fluorescent light and a concentration of the analyte in the receiving region.
- 17. Method according to claim 11, in which a competition assay is carried out by:
leading an analyte into the receiving region, at least some of the analyte binding to the bound chemical or biochemical components; and leading a marked test compound into the receiving region, at least some of the marked test compound binding to the bound chemical or biochemical components, wherein there is an inverse correlation between an amount of measured fluorescent light and a concentration of the analyte in the receiving region.
- 18. Device for carrying out fluorescence immunoassays by means of evanescent field excitation, comprising:
an optically transparent base plate; a receiving region for a sample; a boundary surface between the base plate and the receiving region, the base plate having a refractive index greater than that of a material above the boundary surface; a plate covering the receiving region on a side opposite the base plate; a functional layer between the base plate and covering plate or in an inflow region for the sample into the receiving region, flowed through laterally or transversally by means of suction, pressure, or capillary force; a light source, emitting practically monochromatic light, directing light rays with a wavelength causing fluorescence of a marking substance bound to a chemical or biochemical partner of a general receptor-ligand system onto the boundary surface on a side of the base plate opposite the covering plate; and a fluorescence detector disposed on the side of the base plate opposite the covering plate, the fluorescence detector disposed to detect fluorescence passing through the base plate and not disposed to detect fluorescence coupled into the base plate acting as a waveguide.
Priority Claims (1)
Number |
Date |
Country |
Kind |
197 11 281.1 |
Mar 1997 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a national stage application of PCT/DE98/00729, filed on Mar. 11, 1998, and claims the benefit of German Patent DE 197 11 281.1, filed on Mar. 18, 1997.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09381213 |
Nov 1999 |
US |
Child |
10212954 |
Aug 2002 |
US |