Optimized in vivo delivery system with endosomolytic agents for nucleic acid conjugates
The present invention relates to an optimized in vivo delivery system with endosomolytic agents for nucleic acid of therapeutic interest conjugated to molecules facilitating endocytosis, in particular for use in the treatment of cancer.
1. A conjugated nucleic acid molecule which has the following formula:
wherein N is a nucleotide, n is an integer from 15 to 195, the underlined N refers to a nucleotide having or not a modified phosphodiester backbone, the linker L′ is selected from the group consisting of hexaethyleneglycol, tetradeoxythymidylate (T4), 1,19-bis(phospho)-8-hydraza-2-hydroxy-4-oxa-9-oxo-nonadecane and 2,19-bis(phosphor)-8-hydraza-1-hydroxy-4-oxa-9-oxo-nonadecane; m is 1 and L is a carboxamido oligoethylene glycol, C is selected from the group consisting of single or double chain fatty acids, tocopherol, folates or folic acid, cholesterol, a sugar or oligosaccharide, a peptide, and protein.
2. The conjugated nucleic acid molecule of claim 1 , wherein n is 27.
3. The conjugated nucleic acid molecule according to claim 1 , wherein C is selected from the group consisting of tocopherol and cholesterol.
4. The conjugated nucleic acid molecule according to claim 2 , wherein C is selected from the group consisting of tocopherol and cholesterol.
5. The conjugated nucleic acid molecule according to claim 1 , wherein the molecule is
wherein the underlined nucleotide refers to a nucleotide having a phosphorothioate backbone.
6. A pharmaceutical composition comprising a conjugated nucleic acid molecule according to claim 1 .
7. The pharmaceutical composition of claim 6 , wherein said composition further comprises a DNA-damaging anti-tumoral agent and a pharmaceutically acceptable carrier.
8. A pharmaceutical composition comprising a conjugated nucleic acid molecule according to claim 2 .
9. The pharmaceutical composition of claim 8 , wherein said composition further comprises a DNA-damaging anti-tumoral agent and a pharmaceutically acceptable carrier.
10. A pharmaceutical composition comprising a conjugated nucleic acid molecule according to claim 3 .
11. The pharmaceutical composition of claim 10 , wherein said composition further comprises a DNA-damaging anti-tumoral agent and a pharmaceutically acceptable carrier.
12. A kit comprising a conjugated nucleic acid molecule according to claim 1 and a DNA-damaging anti-tumoral agent, as a combined preparation for simultaneous, separate or sequential use.
13. A kit comprising a conjugated nucleic acid molecule according to claim 2 and a DNA-damaging anti-tumoral agent, as a combined preparation for simultaneous, separate or sequential use.
14. A kit comprising a conjugated nucleic acid molecule according to claim 3 and a DNA-damaging anti-tumoral agent, as a combined preparation for simultaneous, separate or sequential use.
15. A method for treating a cancer in a subject in need thereof, comprising administering an effective amount of conjugated nucleic acid molecule of claim 1 .
16. The method of claim 15 , wherein the treatment further comprises radiotherapy or chemotherapy, optionally with a DNA damaging antitumoral agent.
17. A method for treating a cancer in a subject in need thereof, comprising administering an effective amount of conjugated nucleic acid molecule of claim 2 .
18. The method of claim 17 , wherein the treatment further comprises radiotherapy or chemotherapy, optionally with a DNA damaging antitumoral agent.
19. A method for treating a cancer in a subject in need thereof, comprising administering an effective amount of conjugated nucleic acid molecule of claim 3 .
20. The method of claim 19 , wherein the treatment further comprises radiotherapy or chemotherapy, optionally with a DNA damaging antitumoral agent.
21. The conjugated nucleic acid molecule of claim 1 , wherein C is an octodecyl or diolecyl fatty acid, folic acid, galactose, mannose, a RGD peptide, bombesin or integrin.