Claims
- 1. A method for synthesizing 2-halo-6-aminopurine derivatives, comprising the steps of:
admixing a nonpolar aprotic organic solvent with a polar aprotic organic solvent to produce a solvent mixture; dissolving in said solvent mixture a compound having the formula 24wherein R is selected from the group consisting of hydrogen, C1 to C20 alkyl, including linear and branched chain alkyl, cycloalkyl, alkoxyalkyl, alkylamino, ether, thioether, haloalkyl, a monocyclic aryl group, a multicyclic aryl group, a heterocyclic aryl group having from 1 to 20 carbon atoms and 1 to 10 heteroatoms, sugar moieties selected from the group consisting of β-D-ribofuranosyl, deoxy-β-D-furanosyl, xylofuranosyl, arabinofuranosyl, 2′-, 3′-, and 2′,3′-substituted or derivatized analogs of β-D-ribofuranosyl, deoxy-β-D-furanosyl, xylofuranosyl, and arabinofuranosyl sugar moieties; and reacting said compound in said solvent mixture with an organic nitrite and a metal halide, wherein said metal halide is a Lewis acid, to produce a reaction product.
- 2. The method of claim 1 wherein R is a sugar moiety.
- 3. The method of claim 1 wherein said non-polar aprotic solvent is a chlorine-containing solvent.
- 4. The method of claim 1 wherein said polar aprotic organic solvent is dimethylsulfoxide and said nonpolar aprotic organic solvent is dichloromethane or dichloroethane.
- 5. The method of claim 1 wherein the ratio of said polar aprotic organic solvent to said nonpolar aprotic organic solvent in said solvent mixture is between about 10:1 and 1:10.
- 6. The method of claim 5 wherein the ratio of said polar aprotic organic solvent to said nonpolar aprotic organic solvent in said solvent mixture is between about 4:1 and 1:4.
- 7. The method of claim 6 wherein the ratio of said polar aprotic organic solvent to said nonpolar aprotic organic solvent in said solvent mixture is about 1:4.
- 8. The method of claim 1 wherein said organic nitrite is RONO wherein R is C1 to C10 branched or unbranched alkyl.
- 9. The method of claim 8 wherein said organic nitrite is t-butyl nitrite.
- 10. The method of claim 1 wherein said metal halide has the formula M(X)n wherein M is a metal ion selected from the group consisting of Sb, Cu, Zn, X is an anion selected from the group consisting of fluoride, chloride, bromide, and iodide, and n is equivalent to the oxidation state of said metal ion.
- 11. The method of claim 10 wherein said metal halide is antimony (III) chloride or copper (II) chloride.
- 12. A method for stabilizing the reaction product of claim 1 which comprises subjecting said reaction product to chromatography through a column of resin.
- 13. The method of claim 12 were said resin is a polystyrene-divinylbenzene crosslinked polymeric resin.
- 14. A method for synthesizing 2-halonucleosides comprising the steps of:
admixing a nonpolar aprotic organic solvent with a polar aprotic organic solvent to produce a solvent mixture; dissolving in said solvent mixture a nucleoside having the formula 25wherein Q is O or S; wherein R1 and R2 together form a moiety with the formula O—A(Y)—O, wherein A is C, S, or P—R and wherein Y is O, S, N—R, or 2R; or wherein R1 and R2 are independently hydrogen, O—R, R, N-R2, N3, X, or S—R; wherein R is hydrogen, linear and branched chain C1 to C20 alkyl, cycloalkyl, alkoxyalkyl, alkylamino, ether, thioether, haloalkyl, a monocyclic aryl group, a multicyclic aryl group, or a heterocyclic aryl group having from 1 to 20 carbon atoms and 1 to 10 heteroatoms and wherein X is Cl, Br, F, or I; and reacting said nucleoside in said solvent mixture with an organic nitrite and a metal halide, wherein said metal halide is a Lewis acid, to produce a reaction product.
- 15. A method for synthesizing 2-halo-6-aminoalkyloxy derivatives comprising the steps of:
admixing a nonpolar aprotic organic solvent with a polar aprotic organic solvent to produce a solvent mixture; dissolving in said solvent mixture a nucleoside analog having the formula 26wherein R1 is hydrogen, CH2OH, or CH2OPOM; R2 is OH, OPh, or OPOM; and R3is OH, OPH, or OPOM; or wherein R1 and R2 form the moiety —CH2O— and R3 is OH, wherein POM is pivalyloxymethyl; and reacting said nucleoside analog in said solvent mixture with an organic nitrite and a metal halide, wherein said metal halide is a Lewis acid, to produce a reaction product.
- 16. The method of claim 14, wherein Q is O, and R2 is OH.
- 17. The method of claim 14, wherein Q is O, and R1 is OH.
- 18. The method of claim 14, wherein Q is O, and R1 and R2 are both hydrogen.
- 19. A method for synthesizing 2-halo-6-aminopurine-4-thionucleosides comprising the steps of:
admixing a nonpolar aprotic organic solvent with a polar aprotic organic solvent to produce a solvent mixture; dissolving in said solvent mixture a 4-thionucleoside having the formula 27wherein R1 and R2 are independently hydrogen, OR, R, NR2, N3, X, or SR; wherein R is linear or branched chain alkyl, cycloalkyl, alkoxyalkyl, ether, thioether, haloalkyl, a monocyclic aryl group, a multicyclic aryl group, or a heterocyclic aryl group having from 1 to 20 carbon atoms and 1 to 10 heteroatoms, and X is Cl, Br, F, or I; and reacting said nucleoside in said solvent mixture with an organic nitrite and a metal halide, wherein said metal halide is a Lewis acid, to produce a reaction product.
- 20. A method for producing 2-halo-6-aminopurine-2′,3′-derivatized nucleosides comprising the steps of:
admixing a nonpolar aprotic organic solvent with a polar aprotic organic solvent to produce a solvent mixture; dissolving in said solvent mixture a nucleoside having the formula 28wherein Q is O or S; wherein R1 and R2 are a moiety with the formula O—A(Y)—O, wherein A is C, S, or P—R and wherein Y is O, S, N—R, or 2R; or wherein R1 and R2 are independently hydrogen, O—R, R, N—R2, N3, X, or S—R; wherein R is linear or branched chain alkyl, cycloalkyl, alkoxyalkyl, ether, thioether, haloalkyl, aryl group, a multicyclic aryl group, or a heterocyclic aryl group having from 1 to 20 carbon atoms and 1 to 10 heteroatoms, and X is Cl, Br, F, or I; reacting said nucleoside in said solvent mixture with an organic nitrite and a metal halide, wherein said metal halide is a Lewis acid, to produce a reaction product.
- 21. A method for producing 2-halo-6-aminopurine-2′-deoxy or 2′-substituted N-7 glycosylated nucleosides comprising the steps of:
admixing a nonpolar aprotic organic solvent with a polar aprotic organic solvent to produce a solvent mixture; dissolving in said solvent mixture an unprotected N-7 glycosylated nucleoside having the formula 29wherein Q is O or S; wherein R1 and R2 are a moiety with the formula O-A(Y)-O, wherein A is C, S, or P—R and wherein Y is O, S, N—R, or 2R; or wherein R1 and R2 are independently hydrogen, O—R, R, N—R2, N3, X, or S—R; wherein R is linear or branched chain alkyl, cycloalkyl, alkoxyalkyl, ether, thioether, haloalkyl, a monocyclic aryl grup, a multicyclic aryl group, or a heterocyclic aryl group having from 1 to 20 carbon atoms and 1 to 10 heteroatoms, and X is Cl, Br, F, or I; and reacting said unprotected nucleoside in said solvent mixture with an organic nitrite and a metal halide, wherein said metal halide is a Lewis acid, to produce a reaction product.
- 22. A 2-halo-6-aminopurine-morpholino nucleoside of the formula:
- 23. A method for synthesizing 2-halo-6-aminopurine morpholino nucleosides which comprises:
reacting a compound of the formula: 31wherein X is F, Cl, Br, or I, and R1 is alkyl, aryl, substituted aryl, aryloxy, or substituted aryloxy, with sodium periodate thereby cleaving ribose sugar ring of said compound to form a dialdehyde; contacting said dialdehyde with ammonia, to produce a morpholino ring having 2′ and 3′ hydroxyl groups; and contacting said morpholino ring having 2′ and 3′ hydroxyl groups with sodium cyanoborohydride to reduce said 2′ and 3′ hydroxyl groups.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. § 119 from provisional application Ser. No. 60/079,059, filed Mar. 23, 1998, the disclosure of which is incorporated herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
|
60079059 |
Mar 1998 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09274518 |
Mar 1999 |
US |
Child |
09803765 |
Mar 2001 |
US |