Claims
- 1. A polymeric separation medium for recovery of a polyelectrolyte from a liquid, which separation medium contains pendant, pH-dependent groups exhibiting a pKa value in the range of about 5 to about 7.
- 2. The separation medium of claim 1 wherein the pH-dependant groups are basic groups.
- 3. The separation medium of claim 2 wherein the pendant basic groups are derived from a base which is a member of the group consisting of pyridine, quinoline, imidazole, and pyrimidine.
- 4. The separation medium of claim 1 wherein the pendant groups are acid groups.
- 5. The separation medium of claim 4 wherein the pendant acidic groups are a member of the group consisting of a carboxylic group and a phenolic group.
- 6. The separation medium of claim 1 wherein the polymer is a polysaccharide.
- 7. The separation medium of claim 6 wherein the polysaccharide is a member of the group consisting of agarose, dextran, and cyclodextrin.
- 8. The separation medium of claim 1 wherein the separation medium is a water-insoluble substrate.
- 9. The separation medium of claim 8 wherein the substrate includes magnetizable particles.
- 10. A method for recovery of a polynucleotide from a liquid containing said polynucleotide using a polymeric separation medium which contains pendant groups exhibiting a pKa value of less than about 7, which method comprises:
(a) adjusting the pH of the liquid containing the polynucleotide to at least neutral pH and above the pKa of the pendant groups; (b) contacting the liquid containing the polynucleotide sample with the polymeric separation medium for a time period sufficient to cause the polynucleotide to form a water-insoluble polynucleotide-separation medium composite; (c) separating the liquid from the polynucleotide-separation medium composite; (d) washing the polynucleotide-separation medium composite with a buffer solution having at least neutral pH and above the pKa of the pendant groups, and; (e) contacting the separated composite with a buffer solution having at least neutral pH and at least 2 pH units above the pKa value of the pendant groups for a period of time sufficient to release the polynucleotide from separation medium.
- 11. The method in accordance with claim 10 wherein the pH of the liquid containing the polynucleotide is adjusted to decrease the number of positive charges on the pendant groups.
- 12. The method in accordance with claim 10 wherein the polynucleotide-separation medium composite is washed in multiple steps with buffer solutions of increasing pH values.
- 13. The method in accordance with claim 10 wherein the polymeric separation medium includes a magnetizable substrate and the polynucleotide-separation medium composite is separated from the liquid by the application of a magnetic field.
- 14. A method for extracting nucleic acids from microorganisms and biological cells present in a biological sample, which method comprises:
(a) adding a nuclease inactivating substance to said sample in an amount sufficient to inhibit nucleic acid degradation; (b) lysing the microorganisms and biological cells in said sample to release nucleic acids; (c) adjusting the pH of the lysed sample to a at least neutral and within about 2 pH units of the pKa of the pendant groups present in step (d); (d) contacting the lysed sample with a polymeric separation medium which contains pendant groups exhibiting a pKa value of less than about 7 for a time period sufficient to cause the nucleic acids to form a nucleic acid-separation medium composite; (e) separating the liquid from the nucleic acid-separation medium composite, and; (f) contacting the nucleic acid-separation medium composite with a buffer solution having at least neutral pH value and at least 2 units above the pKa value of the pendant groups for a period of time sufficient to release the nucleic acid from separation medium.
- 15. The method in accordance with claim 14 wherein the pH of the lysed sample containing the nucleic acid is adjusted to decrease the number of positive charges on the pendant groups.
- 16. The method in accordance with claim 14 wherein the nucleic acid-separation medium composite is washed in multiple steps with buffer solutions of increasing pH values.
- 17. The method in accordance with claim 14 wherein the polymeric separation medium includes a magnetizable substrate and the nucleic acid-separation medium composite is separated from the liquid by the application of a magnetic field.
- 18. The method in accordance with claim 14 wherein the sample is diluted with a buffer solution having a pH value within about 2 pH units of the pKa of the pendant groups in an amount sufficient to prevent sample coagulation and enhance binding of nucleic acids to the separation medium.
- 19. A composition suitable for recovery of a polyelectrolyte from a liquid by convective flow, which composition includes:
(a) a liquid permeable porous support; (b) a porous separation medium contained within the pores of the porous support, said medium having pendant, pH-dependent groups exhibiting a pKa value in the range of about 5 to about 7.
- 20. The composition of claim 19 wherein an inert casing encloses the composition, which casing includes an inlet and outlet ports.
- 21. The composition of claim 19 wherein the pH-dependent groups are organic bases.
- 22. The composition of claim 21 wherein the bases are selected from the group consisting of pyridine quinoline, imidazole, and pyrimidine.
- 23. The separation medium of claim 19 wherein the pendant groups are organic acid groups.
- 24. The separation medium of claim 23 wherein the acids are members of the group consisting of a carboxylic group and a phenolic group.
- 25. The composition of claim 19 wherein the polymeric separation medium is a polysaccharide.
- 26. The composition of claim 22 wherein the polysaccharide is a member of the group consisting of agarose, dextran, and a cyclodextrin.
- 27. A method for purification of a polynucleotide in liquid medium at a pH of at least 7 and comprising:
(a) contacting the liquid medium with a composition which includes a liquid permeable porous support and a separation medium contained within the pores of the porous support and having pendant, pH-dependent groups exhibiting a pKa value in the range of about 5 to about 7, under pressure, at a flow rate sufficient to cause the polynucleotide to come in contact with the separation medium for a period of time sufficient to cause the polynucleotide to form a polynucleotide-separation medium composite, thus separating the polynucleotide from the liquid, and; (b) thereafter contacting the formed composite with a buffer solution having at least neutral pH value and at least 2 pH units above the pKa value of the pendant groups, under pressure, and at a flow rate sufficient to cause the buffer to contact the polynucleotide-separation medium composite for a period of time sufficient to release the polynucleotide from separation medium.
- 28. The method in accordance with claim 27 wherein the pH of the liquid containing the polynucleotide is adjusted to decrease the number of positive charges on the pendant groups.
- 29. The method in accordance with claim 27 wherein the polynucleotide-separation medium composite is washed in multiple steps with buffer solutions of increasing pH values.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. Ser. No. 09/238,343 filed on Jan. 27, 1999, which in turn is a continuation-in-part of U.S. Ser. No. 07/772,346 filed on Oct. 7, 1991, now abandoned.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09238343 |
Jan 1999 |
US |
Child |
09840570 |
Apr 2001 |
US |