Claims
- 1. A method for separating a mixture of polynucleotide fragments comprising
a) applying a solution of said fragments and counterion reagent to a column containing, separation media having a non-polar surface, wherein said separation media have a pore size greater than 30 Angstroms and an average diameter of 1-100 microns; b) eluting said fragments with a gradient eluting solvent of increasing organic component concentration containing a counterion agent; wherein surfaces which are contacted by the solution of the fragments and the eluting solvent are materials which do not trap or release multivalent metal cations therefrom.
- 2. A method of claim 1 wherein the solution of said fragments and the eluting solvent are contacted with a multivalent cation capture resin to remove any multivalent cations therein before entering the column.
- 3. A method of claim 2 wherein said separation media have been treated to remove residual traces of multivalent cations from the surfaces thereof.
- 4. A method of claim 3 wherein the solution or said fragments and eluting solvent have been contacted with a multivalent cation capture resin before entering the column.
- 5. A method of claim 4 wherein the polynucleotide fragments are double stranded or single stranded.
- 6. A method of claim 5 wherein the fragments having more than 5 base pairs are separated on the basis of size or polarity.
- 7. A method of claim 4 wherein said separation media are organic polymer.
- 8. A method of claim 4 wherein said separation media have inorganic substrates selected from the group consisting of inorganic substrates, silica, zirconia, and alumina.
- 9. A method of claim 8 wherein the non-polar surface is an organic polymer supported on the inorganic substrate.
- 10. A method of claim 8 wherein the non-polar surface includes long chain hydrocarbon groups having from 8 to 24 carbons bound to the inorganic substrate.
- 11. A method of claim 10 wherein residual polar groups of the inorganic substrate have been end capped with trimethylsilyl chloride or hexamethyldisilazane.
- 12. A method of claim 4, wherein the surfaces contacted by the solution of polynucleotide fragments and eluting solvent are titanium, coated stainless steel, organic polymer or combinations thereof.
- 13. A method of claim 12 wherein traces of residual multivalent metal cations have been removed from said surfaces by treating said surfaces with a solution comprising aqueous acid and chelating agent.
- 14. A method of claim 12 wherein organic contaminants have been removed from said surfaces.
- 15. A method of claim 1 wherein said solution of polynucleotide mixture and eluting solvent contain a chelating agent, whereby any trace of multivalent metal cations in the solutions are captured.
- 16. A method of claim 4 wherein said solution of polynucleotide mixture and eluting solvent contain a chelating agent, whereby any trace of multivalent metal cations in the solutions are captured.
- 17. A method of claim 4 wherein the eluting solvent has been treated to remove oxygen therefrom.
- 18. A method of claim 4 wherein said method for separating said mixture of polynucleotides comprises Matched Ion Polynucleotide Chromatography.
- 19. A batch process for separating polynucleotide fragments having a selected size from a mixture of polynucleotide fragments including fragments of said selected size comprising
a) applying a solution of said polynucleotide fragments and a counterion agent to non-polar separation media having a non-polar surface, wherein said separation media have a pore size greater than 30 Angstroms and an average diameter of 1-100 microns; b) contacting the separation media with a first eluting solvent and counterion agent, the first eluting solvent having a concentration of organic component sufficient to release from the separation media all polynucleotide fragments having a size smaller than the selected size and removing the first eluting solvent from the separation media; and c) contacting the separation media with a second eluting solvent having a concentration of organic component sufficient to release from the separation media the polynucleotide fragments having the selected size and removing the second eluting solvent from the separation media; wherein surfaces which are contacted by the solution of polynucleotide fragments and the eluting solvent are material which does not trap or release multivalent metal cations therefrom.
- 20. A batch process of claim 19 wherein the separation media are rinsed with fresh first eluting solvent following step b) to remove residual released polynucleotide fragments therefrom.
- 21. A batch process of claim 19 wherein the separation media are rinsed with fresh second eluting solvent following step c) to remove residual released polynucleotide fragments of selected size therefrom.
- 22. A batch process of claim 19 wherein the solution of polynucleotide mixture and eluting solvent have been contacted with a multivalent cation capture resin before contacting the separation media.
- 23. A batch process of claim 19 wherein the polynucleotide mixture is double stranded or single stranded.
- 24. A batch process of claim 22 wherein said separation media have been treated to remove residual traces of multivalent cations therefrom.
- 25. A batch process of claim 24 wherein the solution of polynucleotide mixture and eluting solvent have been contacted with a multivalent cation capture resin before contacting the separation media.
- 26. A batch process of claim 25 wherein the separation media are contained in a column, a web, a membrane, or container.
- 27. A batch process of claim 26 wherein said separation media are organic polymer or inorganic substrates selected from the group consisting of inorganic substrates, silica, zirconium, and alumina.
- 28. A batch process of claim 27 wherein the non-polar surface is an organic polymer supported on the inorganic substrate.
- 29. A batch process of claim 27 wherein the non-polar surface includes long chain hydrocarbons having from 8-24 carbons bonded the inorganic substrate.
- 30. A batch process of claim 29 wherein any residual polar groups of the inorganic substrate have been end capped with trimethylsilyl chloride or hexamethyldisilazane.
- 31. A batch process of claim 26, wherein the surfaces contacted by the solution of polynucleotide fragments and eluting solvent are comprised of material selected from the group consisting of titanium, coated stainless steel, and organic polymer, or combinations thereof.
- 32. A batch process of claim 31 wherein traces of residual multivalent metal cations have been removed from said surfaces by treating said surfaces with a solution comprising aqueous acid and chelating agent.
- 33. A batch process of claim 31 wherein organic contaminants have been removed from said surfaces.
- 34. A batch process of claim 25 wherein said solution of polynucleotide mixture and eluting solvent contain a chelating agent whereby any trace of multivalent metal cations in the solution are captured.
- 35. A batch process of claim 19 wherein the eluting solvent has been treated to remove oxygen therefrom.
Parent Case Info
[0001] This is a continuation-in-part application of Ser. No. 08/748,376 filed Nov. 13, 1996. This application is filed under 35-U.S.C. §111(a) and claims priority from copending, commonly assigned provisional applications Serial No. 60/049,123 filed Jun. 10, 1997; and Serial No. 60/063,835 filed Oct. 30, 1997 under 35 U.S.C. §111(b).
Divisions (2)
|
Number |
Date |
Country |
Parent |
09081039 |
May 1998 |
US |
Child |
09324350 |
Jun 1999 |
US |
Parent |
08748376 |
Nov 1996 |
US |
Child |
09324350 |
Jun 1999 |
US |
Continuations (2)
|
Number |
Date |
Country |
Parent |
09705084 |
Nov 2000 |
US |
Child |
10282855 |
Oct 2002 |
US |
Parent |
09324350 |
Jun 1999 |
US |
Child |
09705084 |
Nov 2000 |
US |