Modulation of angiopoietin-like 3 expression
View Patent ↗Provided herein are methods, compounds, and compositions for reducing expression of an ANGPTL3 mRNA and protein in an animal. Also provided herein are methods, compounds, and compositions for reducing plasma lipids, plasma glucose and atherosclerotic plaques in an animal. Such methods, compounds, and compositions are useful to treat, prevent, delay, or ameliorate any one or more of cardiovascular disease or metabolic disease, or a symptom thereof.
1. A method of reducing angiopoietin-like protein 3 (ANGPTL3) ANGPTL3 expression in an animal comprising administering to the animal a compound comprising a modified oligonucleotide 10 to 30 linked nucleosides in length targeted to ANGPTL3, wherein expression of ANGPTL3 is reduced by at least 40% in the animal.
2. The method of claim 1 , wherein reducing ANGPTL3 expression in the animal
(a) reduces apoC-III expression levels;
(b) reduces triglyceride levels;
(c) reduces cholesterol levels;
(d) reduces LDL levels;
(e) reduces glucose levels;
(f) improves insulin sensitivity; and/or
(g) ameliorates a metabolic or cardiovascular disease.
3. The method of claim 1 , wherein the modified oligonucleotide has a nucleobase sequence at least 90% complementary to SEQ ID NO:4 as measured over the entirety of said modified oligonucleotide.
4. The method of claim 1 , wherein the animal is a human.
5. The method of claim 1 , wherein the compound is a first agent and further comprising administering a second agent.
6. The method of claim 1 , wherein at least one internucleoside linkage of said modified oligonucleotide is a modified internucleoside linkage, at least one nucleoside of said modified oligonucleotide comprises a modified sugar and/or at least one nucleoside of said modified oligonucleotide comprises a modified nucleobase.
7. The method of claim 6 , wherein each internucleoside linkage is a phosphorothioate internucleoside linkage.
8. The method of claim 6 , wherein at least one modified sugar is a bicyclic sugar.
9. The method of claim 6 , wherein at least one modified sugar comprises a 2′-O-methoxyethyl, a (4′-CH(CH 3 )—O-2′) BNA, a (4′-CH 2 —O-2′) BNA, or a 4′-(CH 2 ) n —O-2′ bridge, wherein n is 1 or 2.
10. The method of claim 6 , wherein the modified nucleobase is a 5-methylcytosine.
11. The method of claim 1 , wherein the modified oligonucleotide consists of 20 linked nucleosides.
12. The method of claim 1 , wherein the modified oligonucleotide comprises:
a. a gap segment consisting of linked deoxynucleosides;
b. a 5′ wing segment consisting of linked nucleosides;
c. a 3′ wing segment consisting of linked nucleosides;
wherein the gap segment is positioned between the 5′ wing segment and the 3′ wing segment and wherein each nucleoside of each wing segment comprises a modified sugar.
13. The method of claim 2 , wherein the levels are independently reduced by at least 5%, 10%, 20%, 30%, 35%, or 40%.
14. The method of claim 1 , wherein the modified oligonucleotide has a nucleobase sequence at least 90% complementary to SEQ ID NO:1 as measured over the entirety of said modified oligonucleotide.
15. The method of claim 1 , wherein the modified oligonucleotide has a nucleobase sequence at least 90% complementary to SEQ ID NO:2 as measured over the entirety of said modified oligonucleotide.
16. The method of claim 1 , wherein the modified oligonucleotide has a nucleobase sequence at least 90% complementary to SEQ ID NO:3 as measured over the entirety of said modified oligonucleotide.
17. The method of claim 1 , wherein the modified oligonucleotide has a nucleobase sequence at least 90% complementary to SEQ ID NO:5 as measured over the entirety of said modified oligonucleotide.