Claims
- 1. An analysis device comprising:
a slide-holder having a base in which a number of planar substrates can fit side by side; a hollow plate having a number of open cells, arranged in a honeycomb matrix; each hollow plate being able to engage with said base and be in contact with a corresponding slide; each cell in said hollow plate has a sealing mechanism, which forms a fluid-tight seal between said cell and a surface of said planar substrate, to create a well.
- 2. The device according to claim 1, wherein said slide-holder can accommodate four (4) microscope slides.
- 3. The device according to claim 2, wherein a corresponding number of hollow plates are engaged with said base.
- 4. The device according to claim 1, wherein said hollow plate is engaged with said base at a first end by a hinged mechanism.
- 5. The device according to claim 1, wherein said hollow plate is secured to said base plate at a second end.
- 6. The device according to claim 1, wherein in each hollow plate said cells are arranged in a 3×8 matrix.
- 7. The device according to claim 1, wherein in each hollow plate said cells are arranged in a 6×16 matrix.
- 8. The device according to claim 1, wherein said matrix of cells creates a virtual microplate of 24 wells on the surface of each slide.
- 9. The device according to claim 1, wherein said matrix of cells creates a virtual microplate of 96 wells on the surface of each slide.
- 10. The device according to claim 2, wherein a virtual microplate with an industry-standard footprint of 96 wells is formed with said four slides in combination.
- 11. The device according to claim 2, wherein a virtual microplate with an industry-standard footprint of 384 wells is formed with said four slides in combination.
- 12. The device according to claim 1, wherein said device can be assembled and disassembled with ease.
- 13. A device for performing biological or chemical assays, the device comprising: a slide-holder having a base with recesses that can accommodate a number of planar substrates; a hollow plate having a matrix of cells; said hollow plate engages with said base at a first end by an attachment mechanism, and at a second end with a securing mechanism, which holds in place each hollow plate against a surface of each substrate.
- 14. The device according to claim 13, wherein each cell is defined by at least a sidewall with a first and second terminal edge and is oriented with an open end directed toward a surface of each planar substrate.
- 15. The device according to claim 13, wherein said slide-holder can accommodate four (4) microscope slides.
- 16. The device according to claim 13, wherein in each hollow plate having a number of cells that are arranged in an 8×12 matrix to form 96 wells.
- 17. The device according claim 13, wherein in each hollow plate having a number of cells that are arranged in a 16×24 matrix to form 384 wells.
- 18. The device according to claim 13, wherein the device has two hollow plates, each with a matrix of 48 (6×8) or 192 (12×16) cells.
- 19. The device according to claim 13, wherein said hollow plate is molded by means of a two-shot injection molding process.
- 20. The device according to claim 13, wherein said hollow plate comprises a rigid frame enclosing an elastomeric block containing a matrix of open cells.
- 21. A method performing array-based assays, the method comprising:
a) either printing at least an array on a major surface of a slide, or providing a slide already with printed arrays; b) providing a device comprising: a slide-holder having a base in which a number of microscope-sized slides can fit side by side; a hollow plate having a number of open cells, arranged in a honeycomb matrix; each hollow plate being able to engage with said base and a corresponding slide; each cell in said hollow plate has a sealing mechanism, which forms a fluid-tight seal between said cell and a surface of said slide; c) placing said printed slide into a recess in said base of said device; d) closing and securing a corresponding hollow plate over said slide; e) forming a fluid-tight seal between a terminal edge of a sidewall of each open cell and said printed surface of said slide, wherein each open cell creates an individual well on the slide surface; f) loading samples of either biological analytes or chemical reagents into each well; g) performing an assay.
- 22. The method according to claim 21, wherein said samples can be all of the same material or each of a different material.
- 23. The method according to claim 21, further comprises opening and removing said slide from said slide-holder.
- 24. The method according to claim 21, further comprises washing and drying said slide.
- 25. The method according to claim 21, further comprises viewing and analyzing the results of said assay.
- 26. The method according to claim 21, wherein in each hollow plate said cells are arranged in a 3×8 matrix.
- 27. The method according to claim 21, wherein in each hollow plate said cells are arranged in a 6×16 matrix.
- 28. The method according to claim 21, wherein said matrix of cells creates a virtual microplate of 24 wells on the surface of each slide.
- 29. The method according to claim 21, wherein said matrix of cells creates a virtual microplate of 96 wells on the surface of each slide.
- 30. A method of performing an assay, the method comprising:
a) providing a planar substrate; b) providing a device that comprises: a slide-holder having a base with recesses that can accommodate a number of planar substrates; a hollow plate having a matrix of cells; said hollow plate engages with said base at a first end by an attachment mechanism, and at a second end with a securing mechanism, which holds in place each hollow plate against a surface of each planar substrate; c) assemblying said planar substrate in said device; d) printing at least an array on said planar substrate; e) performing an assay.
- 31. The method according to claim 30, wherein said samples can be all of the same material or each of a different material.
- 32. The method according to claim 30, further comprises opening and removing said slide from said slide-holder.
- 33. The method according to claim 30, further comprises analyzing the results of said assay.
- 34. The method according to claim 30, wherein either a single hollow plate or a combination of hollow plates has a matrix of cells, which forms a virtual microplate with an industry-standard footprint of 96 wells.
- 35. The method according to claim 30, wherein either a single hollow plate or a combination of hollow plates has a matrix of cells, which forms a virtual microplate with an industry-standard footprint of 384 wells.
RELATED APPLICATION
[0001] This application claims the benefit of priority from U.S. Provisional Application No. 60/418,101, filed, Oct. 10, 2002, the content of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60418101 |
Oct 2002 |
US |