Compositions and methods for sirna inhibition of angiogenesis
View Patent ↗RNA interference using small interfering RNAs which are specific for the vascular endothelial growth factor (VEGF) gene and the VEGF receptor genes Flt-1 and Flk-1/KDR inhibit expression of these genes. Diseases which involve angiogenesis stimulated by overexpression of VEGF, such as diabetic retinopathy, age related macular degeneration and many types of cancer, can be treated by administering the small interfering RNAs.
1. A pharmaceutical composition comprising an effective amount of an isolated siRNA comprising a sense RNA strand and an antisense RNA strand, wherein the sense and the antisense RNA strands form an RNA duplex, and wherein the sense RNA strand comprises SEQ ID NO: 77, and the antisense RNA strand comprises SEQ ID NO: 78.
2. An isolated siRNA comprising a sense RNA strand and an antisense RNA strand, wherein the sense and the antisense RNA strands form an RNA duplex, and wherein the sense RNA strand comprises a nucleotide sequence identical to a target sequence of about 19 to about 25 contiguous nucleotides in human VEGF mRNA, wherein the sense RNA strand comprises SEQ ID NO: 77, and the antisense strand comprises SEQ ID NO:78.
3. The pharmaceutical composition of claim 1 , wherein the sense and antisense RNA strands forming the RNA duplex are covalently linked by a single-stranded hairpin.
4. The pharmaceutical composition of claim 1 , wherein the siRNA further comprises non-nucleotide material.
5. The pharmaceutical composition of claim 1 , wherein the sense and antisense RNA strands are stabilized against nuclease degradation.
6. The siRNA of claim 2 , wherein the sense and antisense RNA strands forming the RNA duplex are covalently linked by a single-stranded hairpin.
7. The siRNA of claim 2 , wherein the siRNA further comprises non-nucleotide material.
8. The siRNA of claim 2 , wherein the sense and antisense RNA strands are stabilized against nuclease degradation.
9. The pharmaceutical composition of claim 1 , wherein the composition is suitable for enteral administration.
10. The pharmaceutical composition of claim 9 , wherein enteral administration is selected from oral administration, rectal administration, and intranasal administration.
11. The pharmaceutical composition of claim 1 , wherein the pharmaceutical composition is suitable for parenteral administration.
12. The pharmaceutical composition of claim 11 , wherein parenteral administration route is selected from intravascular administration, peri-tissue injection, intra-tissue injection, subcutaneous injection, subcutaneous infusion, direct application at or near the site of neovascularization, and inhalation.
13. The pharmaceutical composition of claim 12 , wherein intravascular administration is selected from intravenous bolus injection, intravenous infusion, intra-arterial bolus injection, intra-arterial infusion and catheter instillation into the vasculature.
14. The pharmaceutical composition of claim 12 , wherein the peri-tissue injection is selected from peri-tumoral injection and subretinal injection, and wherein the intra-tissue injection is selected from intra-tumoral injection and intra-retinal injection.
15. The pharmaceutical composition of claim 12 , wherein the direct application is selected from a catheter, retinal pellet, suppository, implant, or a pump.