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US20040116685A1 - Method for solution phase synthesis of oligonucleotides - Google Patents

Method for solution phase synthesis of oligonucleotides
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US20040116685A1
US20040116685A1US09/907,125US90712501AUS2004116685A1US 20040116685 A1US20040116685 A1US 20040116685A1US 90712501 AUS90712501 AUS 90712501AUS 2004116685 A1US2004116685 A1US 2004116685A1
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oligonucleotide
compound
solid support
product
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US09/907,125
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Wolfgang Pieken
Danny McGee
Alecia Settle
Yansheng Zhai
Jianping Huang
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Sigma Aldrich Co LLC
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Proligo LLC
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Abstract

This invention discloses an improved method for the sequential solution phase synthesis of oligonucleotides. The method lends itself to automation and is ideally suited for large scale manufacture of oligonucleotides with high efficiency.

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Claims (82)

6. The method ofclaim 2 wherein A and A′ are independently selected from the group consisting of H,2H,3H, Cl, F, OH, NHOR1, NHOR3, NHNHR3, NHR3, ═NH, CHCN, CHCl2, SH, SR3, CFH2, CF2H, CR22Br, —(OCH2CH2)nOCH3, OR4and imidazole; wherein
R1is selected from the group consisting of H and an alcohol protecting group;
R2is selected from the group consisting of ═O, ═S, H, OH, CCl3, CF3, halide, optionally substituted C1-C20alkyl (including cyclic, straight chain, and branched), alkenyl, aryl, C1-C20acyl, benzoyl, OR4and esters;
R3is selected from the group consisting of R2, R4, CN, C(O)NH2, C(S)NH2, C(O)CF3, SO2R4, amino acid, peptide and mixtures thereof; and
R4is selected from the group consisting of an optionally substituted hydrocarbon (C1-C20alkyl, C2-C20alkenyl, C2-C20alkynyl), an optionally substituted heterocycle, t-butyldimethylsilyl ether, triisopropylsilyl ether, nucleoside, carbohydrate, fluorescent label and phosphate.
Figure US20040116685A1-20040617-C00028
wherein D is independently selected from the group consisting of H, OR4, an alkyl or substituted alkyl group bearing a diene unit, an alkyl or substituted alkyl group bearing a dienophile unit, an alkoxy or substituted alkoxy group bearing a diene unit, an alkoxy or substituted alkoxy group bearing a dienophile unit. CH2═CHCH═CHCH2CH2O—, maleimide substituted alkoxy groups, alkoxy groups, an alkylamino or substituted alkylamino group bearing a diene unit, maleimide substituted alkylamino groups or substituted alkylamino groups, an alkylamino group or substituted alkylamino group bearing a dienophile moiety, disulfides, aldehydes, and metal chelators, silyl ethers bearing dienophile or diene units, wherein
R4is selected from the group consisting of an optionally substituted hydrocarbon (C1-C20alkyl, C2-C20alkenyl, C2-C20alkynyl), an optionally substituted heterocycle, t-butyldimethylsilyl ether, triisopropylsilyl ether, nucleoside, carbohydrate, fluorescent label and phosphate.
Figure US20040116685A1-20040617-C00031
wherein D is independently selected from the group consisting of H, OR4, an alkyl or substituted alkyl group bearing a diene unit, an alkyl or substituted alkyl group bearing a dienophile unit, an alkoxy or substituted alkoxy group bearing a diene unit, an alkoxy or substituted alkoxy group bearing a dienophile unit, CH2═CHCH═CHCH2CH2O—, maleimide substituted alkoxy groups, alkoxy groups, an alkylamino or substituted alkylamino group bearing a diene unit, maleimide substituted alkylamino groups or substituted alkylamino groups, an alkylamino group or substituted alkylamino group bearing a dienophile moiety, disulfides, aldehydes, and metal chelators, silyl ethers bearing dienophile or diene units, wherein
R4is selected from the group consisting of an optionally substituted hydrocarbon (C1-C20alkyl, C2-C20alkenyl, C2-C20alkynyl), an optionally substituted heterocycle, t-butyldimethylsilyl ether, triisopropylsilyl ether, nucleoside, carbohydrate, fluorescent label and phosphate.
Figure US20040116685A1-20040617-C00034
wherein D is independently selected from the group consisting of H, OR4, an alkyl or substituted alkyl group bearing a diene unit, an alkyl or substituted alkyl group bearing a dienophile unit, an alkoxy or substituted alkoxy group bearing a diene unit, an alkoxy or substituted alkoxy group bearing a dienophile unit, CH2═CHCH═CHCH2CH2O—, maleimide substituted alkoxy groups, alkoxy groups, an alkylamino or substituted alkylamino group bearing a diene unit, maleimide substituted alkylamino groups or substituted alkylamino groups, an alkylamino group or substituted alkylamino group bearing a dienophile moiety, disulfides, aldehydes, and metal chelators, silyl ethers bearing dienophile or diene units, wherein
R4is selected from the group consisting of an optionally substituted hydrocarbon (C1-C20alkyl, C2-C20alkenyl, C2-C20alkynyl), an optionally substituted heterocycle, t-butyldimethylsilyl ether, triisopropylsilyl ether, nucleoside, carbohydrate, fluorescent label and phosphate.
38. A method for the solution phase synthesis of oligonucleotides comprising:
a) reacting a 5′-protected monomer unit with a starling material to form a reaction mixture containing a product, the 5′-protected monomer unit and the starting material;
b) oxidizing the reaction mixture of step a).
c) adding the oxidized reaction mixture of step b) to an extraction vessel.
d) extracting said reaction mixture with an organic solvent;
e) eluting said organic solvent containing the extract from step d) through a chromatography resin chamber containing a solid support, wherein said oxidized 5′-protected monomer unit is retained on the solid support and the oxidized product and the starting material remains in the eluted solvent;
f) separating the oxidized product from the starting material by eluting the organic effluent obtained in step e) through a second solid support, wherein the oxidized product is retained on the solid support and the starting material is eluted with the solvent; and
g) eluting said oxidized product from said second solid support by washing said second solid support with a dilute acid.
52. The compound ofclaim 50 wherein A and A′ are independently selected from the group consisting of H,2H,3H, Cl, F, OH, NHOR1, NHOR3, NHNHR3, NHR3, ═NH, CHCN, CHCl2, SH, SR3, CFH2, CF2H, CR22Br, —(OCH2CH2)nOCH3, OR4and imidazole; wherein
R′ is selected from the group consisting of H and an alcohol protecting group;
R2is selected from the group consisting of ═O, ═S, H, OH, CCl3, CF3, halide, optionally substituted C1-C20alkyl (including cyclic, straight chain, and branched), alkenyl, aryl, C1-C20acyl, benzoyl, OR4and esters;
R3is selected from the group consisting of R2, R4, CN, C(O)NH2, C(S)NH2, C(O)CF3, SO2R4, amino acid, peptide and mixtures thereof;
R4is selected from the group consisting of an optionally substituted hydrocarbon (C1-C20alkyl, C2-C20alkenyl, C1-C20alkynyl, an optionally substituted heterocycle, t-butyldimethylsilyl ether, triisopropylsilyl ether, nucleoside, carbohydrate, fluorescent label and phosphate.
60. The compound ofclaim 59 wherein
A and A′ are independently selected from the group consisting of H,2H,3H, Cl, F, OH, NHOR1, NHOR3, NHNHR3, NHR3, ═NH, CHCN, CHCl2, SH, SR3, CFH2, CF2H, CR22Br, —(OCH2CH2)nOCH3, OR4and imidazole; wherein
R1is selected from the group consisting of H and an alcohol protecting group;
R2is selected from the group consisting of ═O, ═S, H, OH, CCl3, CF3, halide, optionally substituted C1-C20alkyl (including cyclic, straight chain, and branched), alkenyl, aryl, C1-C20acyl, benzoyl, OR4and esters;
R3is selected from the group consisting of R2, R4, CN, C(O)NH2, C(S)NH2, C(O)CF3, SO2R4, amino acid, peptide and mixtures thereof; and
R4is selected from the group consisting of an optionally substituted hydrocarbon (C1-C20alkyl, C2-C20alkenyl, C2-C20alkynyl), an optionally substituted heterocycle, t-butyldimethylsilyl ether, triisopropylsilyl ether, nucleoside, carbohydrate, fluorescent label and phosphate.
75. A method for the solution phase synthesis of oligonucleotides, comprising:
a) reacting a 5′-protected monomer unit containing a protecting group at the 5′ position which is capable of reacting with a first solid support, with a starting material to form a reaction mixture containing a product, the 5′-protected monomer unit and the starting material;
b) circulating said reaction mixture through a chromatography resin chamber containing said first solid support, wherein said 5′-protected monomer unit and said product covalently react with said first solid support and are thereby retained on the solid support;
c) washing said first solid support with a first solvent to elute the starting material;
d) washing said first solid support containing the retained 5′-protected monomer unit and product with a dilute acid followed by eluting a second organic solvent to release and isolate the product together with the 5′-protected monomer unit; and
e) separating the product from the 5′-protected monomer unit by passing the organic effluent obtained in step d) through a second solid support, wherein the 5′-protected monomer unit is retained by the second solid support and the product is eluted with the second solvent.
US09/907,1251995-10-192001-07-17Method for solution phase synthesis of oligonucleotidesAbandonedUS20040116685A1 (en)

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US10870667B2 (en)2017-12-192020-12-22Sekisui Medical Co., Ltd.Alkyldiphenylmethane protective agent
US10981940B2 (en)2016-11-112021-04-20SEKISUl MEDICAL CO., LTD.Trityl protecting agent
US11485747B2 (en)*2016-06-202022-11-01Sekisui Medical Co., Ltd.Diphenylmethane protective agent
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US11548910B2 (en)2015-11-172023-01-10Nissan Chemical CorporationOligonucleotide production method
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WO1997014706A1 (en)1997-04-24
KR19990064332A (en)1999-07-26
JP2000500740A (en)2000-01-25
US6262251B1 (en)2001-07-17
AU712779C (en)2002-02-07
AU7451896A (en)1997-05-07
AU712779B2 (en)1999-11-18
EP0863910A1 (en)1998-09-16
CA2234159A1 (en)1997-04-24

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