10 Results for "

sense strand

" in MedChemExpress (MCE) Product Catalog:
Products (10)

10 Results for "sense strand" in MCE Product Catalog:

Cat. No.: HY-143219
Purity:  98.88%
Target:  

PCSK9

Research Areas:  

Cardiovascular Disease

SS-Inclisiran sodium is a sense strand of Inclisiran (HY-132591) .
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Cat. No.: HY-153491
CAS No.: 2097587-83-0
Synonyms: ISIS 678354; IONIS-APOCIII-LRx; AKCEA-APOCIII-LRx
Target:  

Apolipoprotein

Research Areas:  

Cardiovascular Disease

Olezarsen (ISIS 678354;IONIS-APOCIII-LRx) is a GalNAc-modified antisense oligonucleotide. Olezarsen binds to APOC3 mRNA and induces its degradation via ribonuclease H1-mediated sense strand cleavage, thereby reducing hepatic apolipoprotein C-III (apoC-III) synthesis. Olezarsen reduces plasma triglyceride, apolipoprotein B and non-high-density lipoprotein cholesterol levels. Olezarsen is applicable to research related to familial chylomicronemia syndrome, hypertriglyceridemia and atherosclerotic cardiovascular disease .
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Cat. No.: HY-153491A
CAS No.: 2298451-31-5
Purity:  91.44%
Synonyms: ISIS 678354 sodium; IONIS-APOCIII-LRx sodium; AKCEA-APOCIII-LRx sodium
Target:  

Apolipoprotein

Research Areas:  

Cardiovascular Disease

Olezarsen (ISIS 678354;IONIS-APOCIII-LRx) sodium is a GalNAc-modified antisense oligonucleotide. Olezarsen sodium binds to APOC3 mRNA and induces its degradation via ribonuclease H1-mediated sense strand cleavage, thereby reducing hepatic apolipoprotein C-III (apoC-III) synthesis. Olezarsen sodium reduces plasma triglyceride, apolipoprotein B and non-high-density lipoprotein cholesterol levels. Olezarsen sodium is applicable to research related to familial chylomicronemia syndrome, hypertriglyceridemia and atherosclerotic cardiovascular disease .
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Cat. No.: HY-143220
Purity:  95.81%
SS (no Galnac)-Inclisiran sodium is the sense strand of Inclisiran (HY-132591) without GalNAc modification. Inclisiran is a double-stranded small interfering RNA (siRNA) molecule that inhibits the transcription of PCSK-9. SS (no Galnac)-Inclisiran sodium can be used in cardiovascular disease research .
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Cat. No.: HY-158305
CAS No.: 2764770-62-7
Research Areas:  

Others

SM51a is a small molecule targeting ligand. SM51a can be linked to the 3' or 5' end of a sense strand or an antisense strand of a DUX4 RNAi agent for promoting it entry into cells .
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Cat. No.: HY-158306
CAS No.: 2764770-56-9
Research Areas:  

Others

SM45a is a small molecule targeting ligand. SM45a can be linked to the 3' or 5' end of a sense strand or an antisense strand of a DUX4 RNAi agent for promoting it entry into cells .
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Cat. No.: HY-180474
CAS No.: 3024403-65-1
Target:  

Liposome

Research Areas:  

Neurological Disease

LP293-p is a lipid with activated ester groups, which can be used for the synthesis of ATXN2 RNAi. LP293-p can be utilized to enhance the targeting of the central nervous system (CNS) .
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Cat. No.: HY-76705S
CAS No.: 2562378-12-3
Methyl N-methylanthranilate-d3 is the deuterated-labeled Methyl N-methylanthranilate (HY-76705). Methyl N-methylanthranilate is an N-alkylated anthranilate with a sweet citrus aroma, which is commonly used in perfume manufacturing. Methyl N-methylanthranilate is the dominant component in the defensive secretion of the millipede Typhloiulus orpheus. Methyl N-methylanthranilate exhibits quorum sensing inhibition and anti-biofilm activity against P. aeruginosa; it interferes with PQS synthesis via competitive inhibition of PqsA, but lacks bactericidal activity. Methyl N-methylanthranilate is sensitive to UVA/sunlight in human skin cells, and generates O2- through type I photodynamic reactions, leading to lysosomal/mitochondrial damage, double-strand DNA breaks and apoptosis, with potential phototoxicity .
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Cat. No.: HY-L264
1,544 compounds

DNA damage response (DDR) is a fundamental mechanism for maintaining genomic stability. When DNA damage occurs, such as single- or double-strand breaks or replication fork stalling, cells rely on key proteins including ATM, ATR, PARP, and DNA-PK to sense the damage and transmit signals, thereby regulating DNA repair, cell-cycle arrest, and cell death. Inhibition of specific DNA repair or checkpoint pathways can prevent tumor cells from effectively repairing accumulated DNA damage, ultimately leading to tumor cell death.

MCE DNA Damage Repair Inhibitor Library contains 1,544 compounds, focusing on key nodes involved in DNA damage response and DNA repair. The library covers multiple DNA repair and cell-cycle checkpoint pathways, providing a systematic compound screening tool for research on precision oncology, synthetic lethality, drug resistance mechanisms, and chemo- or radiosensitization.

Cat. No.: HY-188056
CAS No.: 121714-70-3
Biotin-11-UTP is a biotinylated uridine triphosphate that can be incorporated into short RNA strands via co-transcription with T7 RNA polymerase, and is used for synthesizing labeling reagents and detection markers. After binding to streptavidin, Biotin-11-UTP generates characteristic downward ionic current peaks during nanopore translocation, which allows the differentiation between modified and unmodified RNA. Biotin-11-UTP enables site-specific labeling of short RNA, and is suitable for single-molecule solid-state nanopore sensing detection. Biotin-11-UTP can serve as a raw material for synthesizing biotinylated single-stranded RNA probes, which is applied to rotavirus nucleic acid detection; it can also label single-stranded RNA probes targeting and immobilizing 28S ribosomal RNA in leukemia cells. Biotin-11-UTP can alter the electrophoretic mobility of transcribed RNA in agarose gels, and can be used to monitor the biotinylation degree of RNA probes .
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