US2019117733A1PendingUtilityA1

Efficient protein expression in vivo using modified rna (mod-rna)

Assignee: MASSACHUSETTS GEN HOSPITALPriority: Apr 3, 2011Filed: Jun 22, 2018Published: Apr 25, 2019
Est. expiryApr 3, 2031(~4.7 yrs left)· nominal 20-yr term from priority
A61P 43/00A61P 9/00A61P 9/06A61P 37/06A61P 35/00A61P 37/02A61P 9/04A61P 9/10A61P 9/12A61P 29/00A61P 13/12A61P 11/00A61P 1/18A61P 21/00A61P 21/04C12N 2310/14A01K 2227/105A01K 2267/0393A61L 2300/258A61K 48/005A61K 31/519A61K 31/7068C12N 2310/11A01K 2267/03C12N 2800/30A01K 2207/05A61K 31/513A61K 38/1866A61K 31/517A61L 31/16A61K 31/7115A61K 31/555A01K 67/0276A61K 31/4745A01K 2217/075C12N 15/111A61L 31/10A61K 33/24A61K 33/243
51
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

Aspects of the invention described herein relate to synthetic, modified RNAs and their use in vivo to modulate gene expression. Aspects of the invention further relate to the use of these synthetic, modified RNAs in myocytes, cardiomyoctes, and tumors.

Claims

exact text as granted — not AI-modified
1 .- 147 . (canceled) 
     
     
         148 . A method for increasing capillary density in cardiac tissue in a subject by expressing a VEGF-A protein in a cardiac tissue in vivo, the method comprising contacting the cardiac tissue in vivo with a composition comprising a synthetic, modified RNA molecule encoding a VEGF-A polypeptide,
 wherein the synthetic, modified RNA molecule comprises at least one or more modification selected from the group consisting of: 2 (thio)pseudouridine, 4 (thio) pseudouridine 1,2,4-(dithio) pseudouridine, 5-(alkyl) pseudouridine, 5-(methyl) pseudouridine 1, 5-(alkyl)-2-(thio) pseudouridine, 5-(methyl)-2-(thio)pseudouridine, 5-(alkyl)-4 (thio)pseudouridine, 5-(methyl)-4 (thio)pseudouridine, 5-(alkyl)-2,4 (dithio)pseudouridine, 5-(methyl)-2,4 (dithio)pseudouridine, 1 substituted pseudouridine, 1-methylpseudouridine 5-triphosphate, 1-methylpseudouridine monophosphate, 1-methylpseudo-uridine triphosphate, 1 substituted 2(thio)-pseudouridine, 1 substituted 4 (thio)pseudouridine, 1 substituted 2,4-(dithio)pseudouridine, 1 (aminocarbonylethylenyl)-pseudouridine, 1 (aminocarbonylethylenyl)-2(thio)-pseudouridine, N1-methylpseudouridine 5-triphosphate, 1 (aminocarbonylethylenyl)-4 (thio)pseudouridine, N1-methylpseudo-uridine triphosphate, N1-methyl-pseudo-uridine monophosphate, 1 (aminocarbonylethylenyl)-2,4-(dithio)pseudouridine, 1 (aminoalkylaminocarbonylethylenyl)-pseudouridine, 1 (aminoalkylamino-carbonylethylenyl)-2(thio)-pseudouridine, 1 (aminoalkylaminocarbonylethylenyl)-4 (thio)pseudouridine and 1 (aminoalkylaminocarbonylethylenyl)-2,4-(dithio)pseudouridine,   such that introducing said synthetic, modified RNA molecule to a cell in the cardiac tissue in vivo results in increased capillary density in the cardiac tissue, and also results in a reduced innate immune response relative to a cell in the cardiac tissue in vivo contacted with a synthetic RNA molecule encoding the polypeptide not comprising said modification.   
     
     
         149 . The method of  claim 148 , wherein the cardiac tissue is in a subject having a disease or disorder. 
     
     
         150 . The method of  claim 149 , wherein the disease or disorder is selected from the group consisting of: acute coronary syndrome, congestive heart failure, cardiomyopathy, myocardial infarction, tissue ischemia, cardiac ischemia, vascular disease, acquired heart disease, atherosclerosis, dysfunctional conduction systems, pulmonary heart hypertension, structural heart disease, or disease or disorder characterized by insufficient cardiac function, coronary artery disease, myocardial ischemia, atherosclerosis, idiopathic cardiomyopathy, cardiac arrhythmias, muscular dystrophy, muscle mass abnormality, muscle degeneration, infective myocarditis, drug- or toxin-induced muscle abnormalities, hypersensitivity myocarditis, an autoimmune endocarditis and congenital heart disease or a symptom of hypertension; blood flow disorders; symptomatic arrhythmia; pulmonary hypertension; dysfunction in conduction system; dysfunction in coronary arteries; dysfunction in coronary arterial tree and coronary artery colaterization. 
     
     
         151 . The method of  claim 148 , wherein the cardiac tissue has a reduced capillary density and is in a subject with, or at risk of having heart failure. 
     
     
         152 . The method of  claim 148 , wherein the VEGF-A protein is a VEGF-A 165  protein.

Join the waitlist — get patent alerts

Track US2019117733A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.