IP Library › Patent Application 16357018
Patent Application
App. No. 16/357,018

COMPOSITIONS AND METHODS FOR MODULATING COMPLEMENT FACTOR B EXPRESSION

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Patent No.
US None
App. No.
16/357,018
Abstract

The present embodiments provide methods, compounds, and compositions for treating, preventing, or ameliorating a disease associated with dysregulation of the complement alternative pathway by administering a Complement Factor B (CFB) specific inhibitor to a subject.

Claims (36)

1 - 263 . (canceled)

264 . A modified single-stranded oligonucleotide covalently attached to a conjugate group, wherein the modified single-stranded oligonucleotide consists of 10 to 30 linked nucleosides and has a nucleobase sequence comprising at least 8 contiguous nucleobases of any of the nucleobase sequences of SEQ ID NOs: 455, 453, 448, 237, 444, 450, 228, 549, or 198, and wherein the conjugate group covalently attached to the modified single stranded oligonucleotide comprises:

265 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the modified single-stranded oligonucleotide consists of 20 to 30 linked nucleosides and has a nucleobase sequence comprising the nucleobase sequence of any of SEQ ID NOs: 455, 453, 448, 237, 444, 450, 228, or 198.

266 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the modified single-stranded oligonucleotide consists of the nucleobase sequence of any of SEQ ID NOs: 455, 453, 448, 237, 444, 450, 228, 549 or 198.

267 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the modified single-stranded oligonucleotide has:

a gap segment consisting of linked deoxynucleosides;

a 5′ wing segment consisting of linked nucleosides; and

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.

268 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the modified single-stranded oligonucleotide consists of 20 linked nucleosides and has a nucleobase sequence consisting of the nucleobase sequence of any of SEQ ID NOs: 455, 453, 448, 237, 444, 450, 228, or 198, and wherein the modified single-stranded oligonucleotide has:

a gap segment consisting of ten linked deoxynucleosides;

a 5′ wing segment consisting of five linked nucleosides; and

a 3′ wing segment consisting of five linked nucleosides;

wherein the gap segment is positioned between the 5′ wing segment and the 3′ wing segment, wherein each nucleoside of each wing segment comprises a 2′-O-methoxyethyl sugar; wherein each internucleoside linkage of the modified single-stranded oligonucleotide is a phosphorothioate linkage, and wherein each cytosine is 5-methylcytosine.

269 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 268 , wherein the modified single-stranded oligonucleotide has a nucleobase sequence consisting of the nucleobase sequence of SEQ ID NO: 455.

270 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 268 , wherein the modified single-stranded oligonucleotide has a nucleobase sequence consisting of the nucleobase sequence of SEQ ID NO: 453.

271 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 268 , wherein the modified single-stranded oligonucleotide has a nucleobase sequence consisting of the nucleobase sequence of SEQ ID NO: 448.

272 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 268 , wherein the modified single-stranded oligonucleotide has a nucleobase sequence consisting of the nucleobase sequence of SEQ ID NO: 237.

273 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the modified single-stranded oligonucleotide is at least 85% complementary to SEQ ID NO: 1.

274 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the modified single-stranded oligonucleotide comprises at least one modified internucleoside linkage, at least one modified sugar, or at least one modified nucleobase.

275 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 274 , wherein the modified single-stranded oligonucleotide comprises at least one modified internucleoside linkage.

276 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 275 , wherein the modified internucleoside linkage is a phosphorothioate internucleoside linkage.

277 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 276 , wherein the modified single-stranded oligonucleotide comprises at least 1 phosphodiester internucleoside linkage.

278 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 277 , wherein each internucleoside linkage of the modified single-stranded oligonucleotide is selected from a phosphodiester internucleoside linkage and a phosphorothioate internucleoside linkage.

279 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 274 , wherein each internucleoside linkage of the modified single-stranded oligonucleotide comprises a phosphorothioate internucleoside linkage.

280 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 274 , wherein the modified sugar is a bicyclic sugar.

281 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 280 , wherein the bicyclic sugar is selected from the group consisting of: 4′-(CH 2 )—O-2′ (LNA); 4′-(CH 2 ) 2 —O-2′ (ENA); and 4′-CH(CH 3 )—O-2′ (cEt).

282 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 274 , wherein the modified sugar is 2′-O-methoxyethyl.

283 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 274 , wherein the modified nucleobase is 5-methylcytosine.

284 . A modified double-stranded oligonucleotide comprising the modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , and a second single stranded oligonucleotide hybridized to said modified single stranded oligonucleotide.

285 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the conjugate group is linked to the modified oligonucleotide at the 5′ end of the modified oligonucleotide.

286 . The modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , wherein the conjugate group is linked to the modified oligonucleotide at the 3′ end of the modified oligonucleotide.

287 . A method of treating a disease associated with dysregulation of the complement alternative pathway in a subject comprising administering to the subject the modified single-stranded oligonucleotide covalently attached to a conjugate group of claim 264 , or a pharmaceutically acceptable salt thereof, thereby treating the disease.

288 . The method of claim 287 , wherein the disease is macular degeneration, age related macular degeneration (AMD), wet AMD, dry AMD, or Geographic Atrophy.

289 . The method of claim 287 , wherein the disease is a kidney disease.

290 . The method of claim 289 , wherein the kidney disease is lupus nephritis, systemic lupus erythematosus (SLE), dense deposit disease (DDD), C3 glomerulonephritis (C3GN), CFHR5 nephropathy, or atypical hemolytic uremic syndrome (aHUS).