Claims
- 1. A method for detecting polymorphism of at least one analyte, said mehthod comprising:
providing a set of compositions, each said composition comprising at least one analyte, inducing or allowing each composition to adopt at least a first condition possibly influencing crystallization, and detecting any crystallization in at least one composition.
- 2. The method according to claim 1, additionally comprising
comparing detected crystallization in a composition with detected crystallization in other compositions.
- 3. The method according to claim 1 or 2, wherein the analyte crystallizes in different polymorphic forms.
- 4. A method for optimizing the conditions of the transformation of a first polymorphic form of an analyte into another polymorphic form of the analyte by subjecting the first polymorphic form of the analyte to a method as defined in claim 1.
- 5. The method according to any one of claims 1-3, wherein each member of said set of compositions differs in at least one condition from any other composition of said set.
- 6. The method according to claim 5, wherein said at least one condition involves a physical condition.
- 7. The method according to claim 5, wherein said at least one condition involves a chemical condition.
- 8. The method according to claim 5, wherein said set of compositions is provided on a solid support medium comprising of a multitude of separate cells, each comprising one composition.
- 9. The method according to claim 5, further comprising
changing at least one further condition after exposing the composition to said first condition.
- 10. The method according to claim 5, further comprising
identifying conditions under which desired size and homogeneity of analytes are obtained.
- 11. The method according to any one of claims 1 through 10 wherein said analyte is selected from the group consisting of a small organic molecule, an organometallic compound, a catalyst, a salt of an organic molecule or pharmaceutically active compound or a biomolecule.
- 12. The method to any one of claims 1 through 11, wherein the composition has a volume of less than 10 microliters.
- 13. A method for producing a composition comprising crystals of an analyte of a narrow size distribution, said method comprising
selecting crystallization conditions for said analyte by the method according to any one of the claims 1 through 12 and scaling up said conditions to a desired total volume.
- 14. A composition comprising crystals of an analyte of a narrow size distribution produced by a method according to claim 10.
- 15. A method for producing crystals of an analyte, comprising providing an oversaturated composition of said analyte and providing said oversaturated composition with the composition of claim 14.
- 16. A method for determining the structure of an analyte comprising
subjecting the composition or a crystal of claim 14 to neutron diffraction, electron diffraction and/or X-ray diffraction and determining its crystal structure.
- 17. A method for screening the polymorphic behavior of at least one analyte, said method comprising:
providing a solid support medium comprising of a multitude of separate cells; providing two or more of the separate cells with the at least one analyte and other components such that the total composition of an individual cell differs in at least one aspect from the composition of at least one other cell; and detecting changes in polymorphic behavior of the compositions in the separate cells by determining the crystal form of the analyte.
- 18. The method according to claim 17 further comprising:
modifying the conditions that lead to changes in crystallization behavior in individual compositions before detecting changes in polymorphic behavior of the compositions.
- 19. A method according to claim 17 or claim 18, wherein the composition of the cell is further modified.
- 20. A method according to claim 17, 18 or 19, wherein the crystal form is determined by neutron diffraction, electron diffraction or X-ray diffraction.
- 21. The method according to any one of claims 1-12 or 16-20, wherein the analyte is provided in the form of a crystalline or aggregated state, solution, emulsion or a suspension.
- 22. The method according to any one of claims 17-21, wherein the surface of the support medium comprises at least one crystallization nucleus comprising an inert crystal.
- 23. The method according to any one of claims 1-12 or 18-22, wherein the cells have a volume or are filled to a total volume selected from the group consisting of at most 1000 microliters, 100 microliters, and at most 10 microliters.
- 24. The method according to any one of claims 1-12 or 16-23, wherein the cells contain at most 100, preferably at most 10, more preferably at most 1 microgram of the analyte.
- 25. The method according to any one of claims 18-24, wherein the change in crystallization behavior of the analyte comprises the formation of crystalline material of the analyte.
- 26. The method according to claim 25, wherein the formation of crystalline material of the analyte comprises the formation of at least one polymorphic form of the crystalline material.
- 27. The method according to claim 25 or claim 26, wherein the crystalline material of the analyte comprises co-crystals of two or more analytes or of an analyte with a small molecule, like a salt or a solvate.
- 28. The method according to any one of claims 1-12 or 18-27, further comprising:
inducing nucleation by addition of nucleation centers, by agitation, vibration, micro-wave treatment, ultrasonic treatments, sonic treatments or a combination thereof.
- 29. The method according to claim 28, wherein the nucleation centers are in the form of small crystallites.
- 30. The method according to claim 29, wherein the small crystallites are salts or complexes of the analyte.
- 31. The method according to any one of claims 1-12 or 18-27, wherein changes in crystallization behavior are detected by measuring, continuously or intermittently, optical and/or diffraction characteristics of the individual cells.
- 32. The method according to any one of claims 1-12, or 18-30, wherein the analyte and/or components are added to the cells by piezo-electric dispensing techniques, bubble jet dispensing techniques, electrospray dispensing techniques, micro- and nano-dispensing techniques, or flood filling or combinations thereof.
- 33. Crystalline material produced by a method of any one of the previous method claims.
Priority Claims (1)
Number |
Date |
Country |
Kind |
00202500.5 |
Jul 2000 |
EP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of PCT International Patent Application PCT/NL01/0054, filed on Jul. 13, 2001, and published, in English, as PCT International Publication No. WO 02/06802 on Jan. 24, 2002, the contents of the entirety of which is incorporated herein by this reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/NL01/00541 |
Jul 2001 |
US |
Child |
10340573 |
Jan 2003 |
US |