Claims
- 1. A compound of formula I:
- 2. The compound of claim 1, wherein R is, or is a combination of, a saturated straight chain of 1 to 20 carbon atoms, a chain of 2 to 2000 ethyleneoxide moieties, or a saturated or unsaturated carbocyclic moiety of 3 to 20 carbon atoms.
- 3. The compound of claim 1 that is:
- 4. The compound of claim 1 that is:
- 5. A compound of formula II:
- 6. The compound of claim 5, wherein R is, or is a combination of, a saturated straight chain of 1 to 20 carbon atoms, a chain of 2 to 2000 ethyleneoxide moieties, or a saturated or unsaturated carbocyclic moiety of 3 to 20 carbon atoms.
- 7. The compound of claim 5 that is:
- 8. A compound of formula III:
- 9. The compound of claim 8, wherein R is, or is a combination of, a saturated straight chain of 1 to 20 carbon atoms, a chain of 2 to 2000 ethyleneoxide moieties or a saturated or unsaturated carbocyclic moiety of 3 to 20 carbon atoms.
- 10. A compound that has one of formulae VII or VIII:
- 11. The compound of claim 10, wherein R is a straight chain, branched or cyclic aliphatic moiety, a aromatic, heteroaromatic, polyaromatic or polyheteroaromatic moiety, a saturated straight chain of 2 to 20 carbon atoms, a chain of 2 to 2000 ethyleneoxide moieties, a saturated or unsaturated carbocyclic moiety of 3 to 20 carbon atoms, or or a combination thereof.
- 12. The compound or claim 10, wherein R is a divalent aliphatic group.
- 13. The compound of claim 10, selected from:
- 14. A compound that has any of formulae XI:
- 15. The compound of claim 14, wherein R is a straight chain, branched or cyclic alkyl group of 2-15 carbons, a polyethyleneglycol moiety of 2-2000 monomers or an aromatic group, or a combination thereof.
- 16. The compound of claim 14 that is:
- 17. A compound that has one of formulae XII:
- 18. The compound of claim 17, wherein R is a straight chain, branched or cyclic alkyl group of 2-15 carbons, a polyethyleneglycol moiety of 2-2000 monomers or an aromatic group, or a combination thereof.
- 19. A compound that has any of formulae XIII:
- 20. The compound of claim 19 that is:
- 21. A compound that has one of formulae XII:
- 22. The compound of claim 1, wherein X is a halide or trifluoroacetate.
- 23. The compound of claim 1, wherein B is an amino reactive moiety selected from succininimidyl ester, hydroxybenzotriazolyl ester, or pentafluorophenol ester.
- 24. The compound of claim 1, wherein B is a thiol reactiv moiety selected from maleimido, α-bromoacetyl or pyridyidisulfide.
- 25. A conjugate, comprising the compound of claim 1 bound to a natural or synthetic biological molecule.
- 26. The conjugate of claim 25, wherein the natural or synthetic molecule is selected from a protein, a glycoprotein, a peptide, an oligonucleotide, an RNA, a DNA and a synthetic polymer.
- 27. The conjugate of claim 26, wherein the protein is an antibody.
- 28. A method of immobilizing a natural or synthetic biological molecule, comprising:
(i) preparing the conjugate of claim 25; and (ii) applying the conjugate to a surface wherein the surface has at least one carbonyl moiety for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the surface forming a hydrazone bond to the surface.
- 29. A method of crosslinking, a natural or synthetic biological molecule, comprising:
(i) preparing the conjugate of claim 25; and (ii) applying the conjugate to a surface wherein the surface has at least one amino or one thiol reactive moiety for a time and under conditions such that the conjugate reacts with the amino moiety or thiol moiety of the surface forming a bond to the surface.
- 30. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing the conjugate of claim 25; and (ii) mixing the conjugate with a natural or synthetic biological molecule wherein the molecule has at least one carbonyl moiety for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the molecule forming a hydrazone bond to the molecule.
- 31. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula IVa: 21 or a derivative thereof, wherein:
A is NH(C═O), NH(C═S), NH(C═NH), NHNH(C═O), NHNH(C═S), NHNH(C═NH) or a direct bond; B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; and X is a negative counter ion, oxygen, sulfur or —NH; and (ii) applying the conjugate to a surface wherein the surface has at least one carbonyl moiety for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the surface forming a hydrazone bond to the surface.
- 32. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula Va: 22 or a derivative thereof, wherein:
A is NH(C═O), NH(C═S), NH(C═NH), NHNH(C═O), NHNH(C═S), NHNH(C═NH) or a direct bond; B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; R1 is hydrogen or a saturated straight chain of 1 to 12 carbon atoms; and R2 is hydrogen or a saturated straight chain of 1 to 12 carbon atoms; and (ii) applying the conjugate to a surface wherein the surface has at least one amino or one thiol reactive moiety for a time and under conditions such that the conjugate reacts with the amino or thiol reactive moiety of the surface forming a bond to the surface.
- 33. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of the formula VIa: 23 or a derivative thereof, wherein:
B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; and X is a negative counter ion, oxygen, sulfur or —NH; and (ii) applying the conjugate to a surface wherein the surface has at least one carbonyl moiety for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the surface forming a hydrazone bond to the surface.
- 34. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula IVa: 24 or a derivative thereof, wherein:
A is NH(C═O), NH(C═S), NH(C═NH), NHNH(C═O), NHNH(C═S), NHNH(C═NH) or a direct bond; B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; and X is a negative counter ion, oxygen, sulfur or —NH; and (ii) applying the conjugate to a surface wherein the surface has at least one amino or one thiol reactive moiety for a time and under conditions such that the conjugate reacts with the amino or thiol reactive moiety of the surface forming a bond to the surface.
- 35. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula Va: 25 or a derivative thereof, wherein:
A is NH(C═O), NH(C═S), NH(C═NH), NHNH(C═O), NHNH(C═S), NHNH(C═NH) or a direct bond; B is a natural or synthetic biological molecule; D is a carbon or nitrog n atom; E is a carbon or nitrogen atom; R1 is hydrogen or a saturated straight chain of 1 to 12 carbon atoms; and R2 is hydrogen or a saturated straight chain of 1 to 12 carbon atoms; and (ii) applying the conjugate to a surface wherein the surface has at least one amino or one thiol reactive moiety for a time and under conditions such that the conjugate reacts with the amino or thiol reactive moiety of the surface forming a bond to the surface.
- 36. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula VIa: 26 or a derivative thereof, wherein:
B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; and
X is a negative counter ion, oxygen, sulfur or —NH; and (ii) applying the conjugate to a surface wherein the surface has at least one amino or one thiol reactive moiety for a time and under conditions such that the conjugate reacts with the amino or thiol reactive moiety of the surface forming a bond to the surface.
- 37. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula IVa: 27 or a derivative thereof, wherein:
A is NH(C═O), NH(C═S), NH(C═NH), NHNH(C═O), NHNH(C═S), NHNH(C═NH) or a direct bond; B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; and X is a negative counter ion, oxygen, sulfur or —NH; and (ii) mixing the conjugate to a natural or synthetic biological molecule, wherein the molecule has at least one carbonyl moiety, for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the molecule forming a hydrazone bond to the molecule.
- 38. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula Va: 28 or a derivative thereof, wherein:
A is NH(C═O), NH(C═S), NH(C═NH), NHNH(C═O), NHNH(C═S), NHNH(C═NH) or a direct bond; B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; R1 is hydrogen or a saturated straight chain of 1 to 12 carbon atoms; and R2 is hydrogen or a saturated straight chain of 1 to 12 carbon atoms; and (ii) mixing the conjugate with a natural or synthetic biological molecule, wherein the molecule has at least one carbonyl moiety, for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the molecule forming a hydrazone bond to the molecule.
- 39. A method of crosslinking a natural or synthetic biological molecule, comprising:
(i) preparing a conjugate of formula VIa: 29 or a derivative thereof, wherein:
B is a natural or synthetic biological molecule; D is a carbon or nitrogen atom; E is a carbon or nitrogen atom; and X is a negative counter ion, oxygen, sulfur or —NH; and (ii) mixing the conjugate with a natural or synthetic biological molecule, wherein the molecule has at least one carbonyl moiety for a time and under conditions such that the hydrazine moiety of the conjugate reacts with the carbonyl moiety of the molecule forming a hydrazone bond to the molecule.
- 40. The method of claim 28, wherein the surface is selected from glass, polymer, latex and colloidal metal.
- 41. The method of claim 30, wherein the natural or synthetic biological molecule is selected from a protein, a glycoprotein, a peptide, an oligonucleotide, an RNA and a DNA.
- 42. The method of claim 41, wher in the protein is an antibody.
- 43. A surface prepared by the method of claim 28.
- 44. A composition prepared by the method of claim 30.
- 45. The compound of claim 8, wherein X is a halide or trifluoroacetate.
- 46. The compound of claim 10, wherein X is a halide or trifluoroacetate.
- 47. The compound of claim 19, wherein X is a halide or trifluoroacetate.
- 48. The compound of claim 21, wherein X is a halide or trifluoroacetate.
- 49. The compound of claim 5, wherein B is an amino reactive moiety selected from succininimidyl ester, hydroxybenzotriazolyl ester, or pentafluorophenol ester.
- 50. The compound of claim 8, wherein B is an amino reactive moiety selected from succininimidyl ester, hydroxybenzotriazolyl ester, or pentafluorophenol ester.
- 51. The compound of claim 10, wherein B is an amino reactive moiety selected from succininimidyl ester, hydroxybenzotriazolyl ester, or pentafluorophenol ester.
- 52. The compound of claim 5, wherein B is a thiol reactive moiety selected from maleimido, α-bromoacetyl or pyridyidisulfide.
- 53. The compound of claim 10, wherein B is a thiol reactive moiety selected from maleimido, α-bromoacetyl or pyridyidisulfide.
RELATED APPLICATIONS
[0001] Benefit of priority under 35 U.S.C. §119(e) is claimed to U.S. provisional patent application No. 60/191,186, filed Mar. 22, 2000, to Schwartz, entitled “NOVEL HYDRAZINE-BASED AND CARBONYL-BASED BIFUNCTIONAL CROSSLINKING REAGENTS.” The disclosure of the above-referenced application is incorporated herein in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60191186 |
Mar 2000 |
US |
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09815978 |
Mar 2001 |
US |
| Child |
10720843 |
Nov 2003 |
US |