Patent classifications
C12N2310/3521
Compositions and methods for inhibiting nuclear receptor subfamily 1 group H member 3 (NR1H3) expression
Oligonucleotides are provided herein that inhibit NR1H3 expression. Also provided are compositions including the same and uses thereof, particularly uses relating to treating diseases, disorders and/or conditions associated with NR1H3 expression.
Compositions and methods for inhibiting nuclear receptor subfamily 1 group H member 3 (NR1H3) expression
Oligonucleotides are provided herein that inhibit NR1H3 expression. Also provided are compositions including the same and uses thereof, particularly uses relating to treating diseases, disorders and/or conditions associated with NR1H3 expression.
Interfering RNA molecules
The present invention is related to a ribonucleic acid comprising a double stranded structure whereby the double-stranded structure comprises a first strand and a second strand, whereby the first strand comprises a first stretch of contiguous nucleotides and whereby said first stretch is at least partially complementary to a target nucleic acid, and the second strand comprises a second stretch of contiguous nucleotides whereby said second stretch is at least partially identical to a target nucleic acid, and whereby the double stranded structure is blunt ended.
Interfering RNA molecules
The present invention is related to a ribonucleic acid comprising a double stranded structure whereby the double-stranded structure comprises a first strand and a second strand, whereby the first strand comprises a first stretch of contiguous nucleotides and whereby said first stretch is at least partially complementary to a target nucleic acid, and the second strand comprises a second stretch of contiguous nucleotides whereby said second stretch is at least partially identical to a target nucleic acid, and whereby the double stranded structure is blunt ended.
COMPOSITIONS AND METHODS FOR SILENCING DNAJB1-PRKACA FUSION GENE EXPRESSION
The disclosure relates to double-stranded ribonucleic acid (dsRNA) compositions targeting the DNAJB 1-PRKAC A fusion gene, and methods of using such dsRNA compositions to alter (e.g., inhibit) expression of DNAJB 1-PRKAC A fusion.
COMPOSITIONS AND METHODS FOR SILENCING DNAJB1-PRKACA FUSION GENE EXPRESSION
The disclosure relates to double-stranded ribonucleic acid (dsRNA) compositions targeting the DNAJB 1-PRKAC A fusion gene, and methods of using such dsRNA compositions to alter (e.g., inhibit) expression of DNAJB 1-PRKAC A fusion.
Compositions and Methods Comprising a TTR Guide RNA and a Polynucleotide Encoding an RNA-Guided DNA Binding Agent
Compositions and methods for editing, e.g., introducing double-stranded breaks, within the TTR gene are provided. Compositions and methods for treating subjects having amyloidosis associated with transthyretin (ATTR), are provided.
Compositions and Methods Comprising a TTR Guide RNA and a Polynucleotide Encoding an RNA-Guided DNA Binding Agent
Compositions and methods for editing, e.g., introducing double-stranded breaks, within the TTR gene are provided. Compositions and methods for treating subjects having amyloidosis associated with transthyretin (ATTR), are provided.
CTGF GENE-SPECIFIC DOUBLE-STRANDED OLIGONUCLEOTIDE, AND A COMPOSITION FOR PREVENTING AND TREATING FIBROTIC DISEASES AND RESPIRATORY-RELATED DISEASES COMPRISING SAME
The present invention relates to a double-stranded oligonucleotide capable of inhibiting CTGF expression with a very specific and high efficiency, a double-stranded oligonucleotide structure and nanoparticles comprising the double-stranded oligonucleotide, and a use thereof in preventing or treating of fibrotic or respiratory diseases.
CTGF GENE-SPECIFIC DOUBLE-STRANDED OLIGONUCLEOTIDE, AND A COMPOSITION FOR PREVENTING AND TREATING FIBROTIC DISEASES AND RESPIRATORY-RELATED DISEASES COMPRISING SAME
The present invention relates to a double-stranded oligonucleotide capable of inhibiting CTGF expression with a very specific and high efficiency, a double-stranded oligonucleotide structure and nanoparticles comprising the double-stranded oligonucleotide, and a use thereof in preventing or treating of fibrotic or respiratory diseases.