Claims
- 1. A multi-well assembly, comprising:
a multi-well block having a plurality of wells, each well having a fluid-impermeable bottom surface; and a guide plate defining a plurality of fluid passageways, each fluid passageway corresponding to a respective well of the multi-well block, the guide plate being configured such that, whenever the guide plate is registered with the multi-well block, fluid communication is established between each well and an associated fluid passageway.
- 2. The assembly of claim 1, wherein the guide plate has upwardly extending projections that open the bottom surfaces of the wells whenever the guide plate is registered with the multi-well block.
- 3. The assembly of claim 2, wherein each projection is configured to perforate the bottom surface of a well.
- 4. The assembly of claim 2, wherein each projection is formed with a longitudinally extending passageway.
- 5. The assembly of claim 1, further comprising a filter disposed in each well.
- 6. The assembly of claim 1, further comprising a filter disposed in each fluid passageway.
- 7. The assembly of claim 1, further comprising a receptacle block having a plurality of wells each corresponding to a respective fluid passageway of the guide plate such that, whenever the receptacle block is registered with the guide plate and the guide plate is registered with the multi-well block, fluid communication is established between each well of the multi-well block, a respective fluid passageway of the guide plate, and a respective well of the receptacle block.
- 8. The assembly of claim 1, further comprising a cover for covering the open tops of the wells of the multi-well block.
- 9. A multi-well assembly comprising:
a first plate having a plurality of wells; and a second plate having a plurality of upwardly extending fluid conduits; whereby, whenever the first plate is registered with the second plate, each fluid conduit extends upwardly into a respective well to receive fluid therefrom.
- 10. The assembly of claim 9, wherein:
each well has a fluid-tight bottom surface; and whenever the first plate is registered with the second plate, each fluid conduit perforates a bottom surface of a respective well so that the fluid conduit is in fluid communication with the well.
- 11. The assembly of claim 9, further comprising a receptacle block having a plurality of containers, each container being registerable with a respective fluid conduit of the second plate for receiving and collecting fluid from the second plate.
- 12. The assembly of claim 9, wherein, whenever the first plate is registered with the second plate, each well and a corresponding fluid conduit define a substantially fluid-tight passageway.
- 13. The assembly of claim 9, wherein each fluid conduit comprises a respective projection formed with a longitudinally extending channel.
- 14. The assembly of claim 9, wherein the second plate comprises an upwardly extending wall circumscribing each fluid conduit, each wall being configured to matingly fit around a lower portion of a respective well whenever the first plate is registered with the second plate.
- 15. A multi-well testing apparatus, comprising:
a multi-well device comprising a plurality of wells each having a fluid-impervious lower surface; and a guide tray comprising a plurality of fluid passageways, each fluid passageway corresponding to a well of the multi-well device, the guide tray comprising means for fluidly connecting each fluid passageway with a corresponding well whenever the guide tray is registered with the multi-well device.
- 16. The apparatus of claim 15, wherein said means for fluidly connecting each fluid passageway with a corresponding well comprises a plurality of upwardly extending projections configured to perforate the lower surfaces of the respective wells whenever the guide tray is registered with the multi-well device.
- 17. The apparatus of claim 15, further comprising a respective filter disposed in each well.
- 18. The apparatus of claim 15, wherein the guide tray further comprises an upwardly extending wall circumscribing each fluid passageway, each wall being configured to press-fit around a lower portion of a respective well whenever the guide tray is registered with the multi-well device.
- 19. The apparatus of claim 15, further comprising a receptacle block comprising a plurality of wells each corresponding to a respective fluid passageway of the guide tray such that, whenever the receptacle block is registered with the guide tray and the guide tray is registered with the multi-well device, fluid communication is established between each well of the multi-well device, a respective fluid passageway of the guide tray, and a respective well of the receptacle block.
- 20. A guide plate for use with a multi-well device, the guide plate comprising:
a body having upper and lower major surfaces; a plurality of projections depending from the upper major surface; a plurality of outlet spouts depending from the lower major surface, each outlet spout being positioned below a respective projection; and a respective fluid passageway extending through each projection and outlet spout.
- 21. The guide plate of claim 20, further comprising a respective upwardly extending wall concentrically disposed about each projection.
- 22. The guide plate of claim 20, further comprising a respective downwardly extending wall concentrically disposed about each outlet spout.
- 23. The guide plate of claim 20, wherein each projection defines a respective cutting surface.
- 24. A guide plate for use with a multi-well device having a plurality of wells, the guide plate comprising:
a body having first and second major surfaces; and a plurality of projections depending from one of the first and second major surfaces, each projection being configured to perforate the bottom surface of a respective well of the multi-well device.
- 25. The guide plate of claim 24, wherein each projection defines a passageway to receive the contents of a corresponding well of the multi-well device.
- 26. The guide plate of claim 25, wherein each projection is formed generally in the shape of an ungula.
- 27. The guide plate of claim 24, further comprising a plurality of upstanding walls, each surrounding a respective projection and being configured to matingly fit around a bottom portion of a corresponding well of the multi-well device.
- 28. A method of carrying out multiple chemical reactions, the method comprising:
providing a multi-well device comprising a plurality of wells having fluid-impervious bottom surfaces; providing a guide plate defining a plurality of passageways corresponding to the wells; introducing reagents into the wells to initiate respective chemical reactions in the wells; and registering the guide plate with the multi-well device so that each well is in flow-through communication with a respective passageway to permit products of the respective chemical reactions to flow through the passageways.
- 29. The method of claim 28, further comprising registering a receptacle plate with the guide plate to collect the products of the chemical reactions flowing from the passageways.
- 30. The method of claim 28, further comprising providing respective filters in the wells for filtering the reagents.
- 31. The method of claim 28, further comprising creating a pressure differential across the passageways to facilitate the flow of the respective products of the respective chemical reactions through the passageways.
- 32. The method of claim 28, wherein registering the guide plate with the multi-well device comprises pressing the guide plate and the multi-well device together using a pressing apparatus.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to U.S. Provisional Application No. 60/274,262, filed on Mar. 8, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60274262 |
Mar 2001 |
US |