Claims
- 1. A method for biochemical analysis, using a microreaction array with at least two reaction chambers for receiving substances which chemically or biochemically react with one another, comprising the following measures:
locally delimited reaction chambers are used as a first volume, the reaction chambers are connected to one another via a second volume, known as the supply volume, chemical or biochemical reactions take place in the individual reaction chambers differentiated by species and/or quantitatively, the mass transfer between reaction chambers and the supply volume is permitted or prevented in one or both directions as required.
- 2. The method as claimed in claim 1, characterized in that at a first time (t1), a defined mass transfer takes place between the reaction chambers and the supply volume, and, at a second time (t2), mass transfer between the reaction chambers is as far as possible suppressed or prevented (FIG. 2, 3).
- 3. The method as claimed in claim 1, characterized in that mass transfer in one direction is selectively prevented by means of different solubility characteristics of chemical substances in different liquids in the reaction chambers and the supply volume (FIG. 4).
- 4. The method as claimed in claim 2, characterized in that the reaction chambers are mechanically opened and closed for the purpose of defined mass transfer (FIG. 2).
- 5. The method as claimed in claim 4, characterized in that the reaction chambers are closed by displacement of the supply volume.
- 6. The method as claimed in claim 2, characterized in that for the purpose of temporally defined mass transfer, the phase boundaries between the substances located in the reaction chambers and the supply volume are temporarily made permeable (FIG. 3).
- 7. The method as claimed in claim 5, characterized in that the closing of the phase boundaries is effected by displacement of the supply volume by means of a barrier medium.
- 8. The method as claimed in claim 7, characterized in that the liquid in the supply volume is displaced by a gas, for example air, or by an immiscible liquid, for example silicone oil.
- 9. The method as claimed in claim 3, characterized in that the phase boundaries between the substances located in the reaction chambers and the supply volume become impermeable as a result of different dissolution characteristics of the reaction partners.
- 10. The method as claimed in claim 3, characterized in that starting materials for a chemical reaction which takes place in a hydrogel layer diffuse out of the supply volume into the hydrogel layer, but at least one product of the chemical reaction does not diffuse out of the hydrogel layer.
- 11. The method as claimed in claim 1, characterized in that
a combinatorial analysis and/or synthesis of the substances takes place in individual reaction chambers which are separate from one another.
- 12. The method as claimed in one of the preceding claims, characterized by its use in Redox recycling.
- 13. The method as claimed in one of the preceding claims, characterized by its use in enzyme-linked reactions.
- 14. An arrangement for carrying out the method as claimed in claim 1 or one of claims 2 to 13 using a planar array, characterized in that the planar array (8, 8′, . . . ) has at least two reaction chambers (10, 10′, . . . ) for receiving substances from a supply volume (4), there being means for closing the reaction chambers (10, 10′, . . . ).
- 15. The arrangement as claimed in claim 14, characterized in that the reaction chambers (10, 10′, . . . ) each have a volume of less than 1 μl.
- 16. The arrangement as claimed in claim 14, characterized in that the planar array (8, 8′, . . . ) is applied to a silicon substrate (1).
- 17. The arrangement as claimed in claim 16, characterized in that the reaction chambers (10, 10′, . . . ) are separated from one another by a polymer layer (11) applied to silicon.
- 18. The arrangement as claimed in claim 16, characterized in that the reaction chambers (10, 10′, . . . ) are introduced into the silicon substrate by microstructuring technology.
- 19. The arrangement as claimed in claim 4, characterized in that the reaction chambers (10, 10′, . . . ) are liquid-filled cavities which are open for the purpose of mass transfer, so that they are in contact with a supply volume (4) and can therefore be filled simultaneously.
- 20. The arrangement as claimed in claim 14, characterized in that the mass transfer between the liquid-filled reaction cavities (10, 10′, . . . ) and the supply volume (4) is suppressed by closure, in which case no further medium, such as for example air, can reach the cavities (10, 10′, . . . ).
- 21. The arrangement as claimed in claim 14, characterized in that a closure layer is provided for the purpose of closing the reaction chambers (10, 10′, . . . ).
- 22. The arrangement as claimed in claim 21, characterized in that the closure is effected by a planar, partially elastic polymer layer (5), such as for example silicone rubber.
- 23. The arrangement as claimed in claim 22, characterized in that the closure of the opening of the reaction chambers (10, 10′, . . . ) is effected by displacement of the supply volume (4).
- 24. The arrangement as claimed in claim 23, characterized in that gas, for example air, or an immiscible liquid (9) is present for the purpose of displacing the supply volume (4).
- 25. The arrangement as claimed in one of claims 14 to 24, characterized in that the reaction chambers (10, 10′, . . . ) are formed by gel-filled cavities (3) which have a gel/supply volume phase boundary for the purpose of mass transfer.
- 26. The arrangement as claimed in claim 25, characterized in that mass transfer between the gel-filled reaction chambers (10, 10′, . . . .) can be suppressed by closure of the phase boundary.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10058394.6 |
Nov 2000 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is based on and hereby claims priority to PCT Application No. PCT/DE01/04437 filed on Nov. 26, 2001 and German Application No. 100 58 394.6 filed on Nov. 24, 2000, the contents of which are hereby incorporated by reference.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/DE01/04437 |
11/26/2001 |
WO |
|