IP Library Patent Application 10543048
Patent Application
App. No. 10/543,048

Lipophilic derivatives of double-stranded ribonucleic acid

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Quick Facts
Patent No.
US None
App. No.
10/543,048
Abstract

The present invention relates to a double-stranded ribonucleic acid (dsRNA) having improved efficiency of inhibition of gene expression, methods of making the dsRNA, and pharmaceutical compositions comprising the dsRNA. The dsRNA comprises an RNA strand (complementary RNA strand) having a region which is complementary to an RNA transcript of at least a part of a target gene, and at least one covalently linked lipophilic group. The dsRNA are useful for inhibiting the expression of a target gene, as well as for treating diseases caused by expression of the target gene. The invention also relates to methods for inhibiting the expression of a target gene, as well as methods for treating diseases caused by the expression of the gene.

Claims (29)

1 - 85 . (canceled)

86 . A double-stranded ribonucleic acid (dsRNA) having a strand S1 which is complementary at least in segments to a target gene (the antisense strand), a strand S2 which is at least substantially complementary to the strand S1 (the sense strand), wherein the dsRNA is capable of inhibiting the expression of the target gene upon introduction into a cell expressing said target gene, and wherein at least one lipophilic group is linked only to the strand S1, or only to the strand S2.

87 . The dsRNA of claim 86 , wherein the link between the lipophilic group and the dsRNA strand is a covalent bond.

88 . The dsRNA of claim 87 , wherein the lipophilic group is covalently attached to a 5′-end of the strand S1 or a 5′-end of the strand S2.

89 . The dsRNA of claim 87 , wherein the linkage between the lipophilic group and the dsRNA strand comprises a phosphodiester group.

90 . The dsRNA of claim 87 , wherein the linkage between the lipophilic group and the dsRNA strand does not comprise a phosphodiester group.

91 . The dsRNA of claim 88 , wherein the lipophilic group is covalently attached to the 5 ′-end of the strand S1.

92 . The dsRNA of claim 88 , wherein the lipophilic group is covalently attached to the 5′-end of the strand S2.

93 . The dsRNA of claim 86 , wherein the dsRNA is between 16 and 30 nucleotides in length.

94 . The dsRNA of claim 86 , wherein the lipophilic group is a steroid or a branched aliphatic hydrocarbon, or a combination thereof.

95 . The dsRNA of claim 94 , wherein the lipophilic group is a sterol.

96 . The dsRNA of claim 95 , wherein the sterol is cholesterol or a cholesterol derivative.

97 . The dsRNA of claim 96 , wherein the lipophilic group is cholesteryl (6-hydroxyhexyl) carbamate

98 . The dsRNA of claim 86 , wherein the lipophilic group is 12-hydroxydodecanoic acid bisdecylamide.

99 . The dsRNA of claim 86 , wherein the target gene is a viral gene.

100 . The dsRNA of claim 86 , wherein the lipophilic group has a logK ow exceeding 2.

101 . The dsRNA of claim 86 , wherein the lipophilic group has a logK ow exceeding 3.

102 . The dsRNA of claim 86 , wherein the lipophilic group has a logK ow exceeding 5.

103 . A pharmaceutical composition for inhibiting the expression of a target gene in a mammal, comprising:

a. a double-stranded ribonucleic acid (dsRNA) having a strand S1 which is complementary at least in segments to a target gene (the antisense strand), a strand S2 which is at least substantially complementary to the strand S1 (the sense strand), wherein the dsRNA is capable of inhibiting the expression of the target gene upon introduction into a cell expressing said target gene, and wherein at least one lipophilic group is linked only to the strand S1, or only to the strand S2; and

b. a pharmaceutically acceptable carrier.

104 . The pharmaceutical composition of claim 103 , wherein the pharmaceutically acceptable carrier is an aqueous solution.

105 . The pharmaceutical composition of claim 103 , wherein the pharmaceutically acceptable carrier does not contain an agent that mediates the uptake of the dsRNA into a cell.

106 . A method for inhibiting the expression of a target gene in a mammal, which comprises administering a pharmaceutical composition comprising a double-stranded ribonucleic acid (dsRNA) and a pharmaceutically acceptable carrier, wherein the dsRNA comprises a strand S1 which is complementary at least in segments to a target gene (the antisense strand), a strand S2 which is at least substantially complementary to the strand S1 (the sense strand), wherein the dsRNA is capable of inhibiting the expression of the target gene upon introduction into a cell expressing said target gene, and wherein at least one lipophilic group is linked only to the strand S1, or only to the strand S2.

107 . A method for making a double-stranded ribonucleic acid (dsRNA), comprising the steps of:

a. preparing a first RNA strand S1 and a second RNA strand S2, wherein strand S1 is complementary at least in segments to a target gene, strand S2 is at least substantially complementary to the strand S1, wherein the dsRNA is capable of inhibiting the expression of the target gene upon introduction into a cell expressing said target gene, and wherein at least one lipophilic group is linked only to the strand S1, or only to the strand S2; and

b. mixing strand S1 and strand S2 to form a dsRNA.

108 . The method of claim 107 , further comprising the step of attaching the lipophilic group to strand S1 or strand S2, wherein the step comprises reacting a lipophilic molecule having a phosphoramidite group with a 5′-hydroxyl group of strand S1 or strand S2.

109 . The method of claim 108 , wherein the lipophilic molecule having a phosphoramidite group is cholesteryl N-[6-(2-cyanoethoxy)-N,N-diisopropylaminophosphanyloxy]-hexyl carbamate or 12-[(2-cyanoethoxy)-N,N-diisopropylamino-phosphanyloxy]dodecanoic acid bisdecylamide.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2009
From: ALNYLAM EUROPE AG
To: ALNYLAM PHARMACEUTICALS, INC.
Reel/Frame 023120/0064 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2006
From: HADWIGER, PHILIPP; JOHN, MATTHIAS; LORENZ, CHRISTINA; VORNLOCHER, HANS-PETER; LIMMER, STEFAN
To: ALNYLAM EUROPE AG
Reel/Frame 017216/0009 →