18 Results for "

complementary RNA

" in MedChemExpress (MCE) Product Catalog:
Products (18)

18 Results for "complementary RNA" in MCE Product Catalog:

1
1 Cited Publications
Cat. No.: HY-W105970
CAS No.: 7758-16-9
Synonyms: Disodium pyrophosphate; Sodium acid pyrophosphate; SAPP
Sodium pyrophosphate (Disodium pyrophosphate) is an orally active reverse transcriptase ribonuclease H inhibitor. Sodium pyrophosphate forms soluble complexes with iron from ferric pyrophosphate to promote intestinal iron absorption. Sodium pyrophosphate increases the β-sheet content of oxidatively damaged myofibrillar protein gels and enhances the gastric digestibility and antioxidant activity of their digestion products. Sodium pyrophosphate prevents the degradation of RNA-DNA hybrids, inhibits antisense complementary DNA synthesis, induces phage DNA leakage, and causes random mutations in temperate phages .
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Cat. No.: HY-148505
CAS No.: 1197033-17-2
Purity:  98.92%
5'-ODMT cEt N-Bzm5 C Phosphoramidite Amidite is a potent nucleic acid analog. 5'-ODMT cEt N-Bzm5 C Phosphoramidite Amidite blongs to modified antisense oligonucleotide. 5'-ODMT cEt N-Bzm5 C Phosphoramidite Amidite allows the formation of a specific conformation of the furanose ring of the oligonucleotide through the introduction of a cEt modification, enhancing the ability to hybridize to complementary RNA. 5'-ODMT cEt N-Bzm5 C Phosphoramidite Amidite is mainly used in the research of regulation of gene expression related to metabolic diseases, cardiovascular diseases, cancers and the development of antisense compounds .
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Cat. No.: HY-148503
CAS No.: 1197033-19-4
Purity:  98.55%
Research Areas:  

Others

5'-ODMT cEt N-Bz A Phosphoramidite (Amidite) is a nucleoside phosphoramidite monomer used to synthesize locked nucleic acid (LNA) analog oligonucleotides. It can be used as a building block of antisense oligonucleotides (ASOs) to target complementary RNA sequences. 5'-ODMT cEt N-Bz A Phosphoramidite (Amidite) locks the furanose ring into an N-type conformation through 2',4'-constrained ethyl (cEt) modification, enhancing hybridization affinity and mismatch discrimination with RNA, while significantly improving the resistance of oligonucleotides to exonuclease digestion. 5'-ODMT cEt N-Bz A Phosphoramidite (Amidite) mediates RNase H-dependent mRNA degradation or inhibits translation by forming a stable hybrid with RNA, thereby achieving gene expression regulation. 5'-ODMT cEt N-Bz A Phosphoramidite (Amidite) is mainly used in the development of antisense drugs, gene function research and oligonucleotide synthesis related to disease treatment .
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Cat. No.: HY-173189
CAS No.: 65954-93-0
Synonyms: 2′,5′-ApApA; 2′,5′-trioligoadenylate; 5'-O-Triphosphoryladenylyl-(2'→5')-adenylyl-(2'→5')-adenosine
Target:  

RSV DNA/RNA Synthesis

2-5A (2′,5′-ApApA) is a 5'-triphosphorylated (2',5') oligoadenylate. When covalently linked to an antisense molecule complementary to the target sequence, 2-5A activates RNase L, which subsequently degrades the target RNA bound to the 2-5A chimera. 2-5A can be used in research related to respiratory syncytial virus infection, colorectal adenocarcinoma and melanoma .
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Cat. No.: HY-173189A
Synonyms: 2′,5′-ApApA pentasodium; 2′,5′-trioligoadenylate pentasodium; 5'-O-Triphosphoryladenylyl-(2'→5')-adenylyl-(2'→5')-adenosine pentasodium
Target:  

RSV DNA/RNA Synthesis

2-5A pentasodium solution (100 mM) (2′,5′-ApApA pentasodium solution (100 mM)) is a 5'-triphosphorylated (2',5') oligoadenylate. When covalently linked to an antisense molecule complementary to the target sequence, 2-5A pentasodium solution (100 mM) activates RNase L, which subsequently degrades the target RNA bound to the 2-5A pentasodium solution (100 mM) chimera. 2-5A pentasodium solution (100 mM) can be used in research related to respiratory syncytial virus infection, colorectal adenocarcinoma and melanoma .
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Cat. No.: HY-E70090
CAS No.: 9014-24-8
Target:  

DNA/RNA Synthesis

Research Areas:  

Infection

T7 RNA polymerase is a polymerase expressed by Escherichia coli from the RNA polymerase gene of T7 bacteriophage. T7 RNA polymerase is highly specific and involved in in vitro transcription (IVT) of mRNA. In the presence of Mg 2+, T7 RNA polymerase only uses the single-stranded or double-stranded DNA containing the T7 promoter sequence as a template, and uses NTP as a substrate to synthesize RNA complementary to the single-stranded DNA downstream of the promoter .
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ISIS 626112 sodium
0 Images
ION-626112 (sodium)
Cat. No.: HY-159693A
Synonyms: ION-626112 sodium
ISIS 626112 sodium (ION-626112 sodium) is a blood-brain barrier-permeable MOE-gapmer antisense oligonucleotide and also an inhibitor of the Malat1 long non-coding RNA. ISIS 626112 sodium triggers RNase H1-mediated cleavage and degradation of complementary Malat1 RNA. ISIS 626112 sodium dose-dependently reduces Malat1 RNA levels in all tested central nervous system regions and major central nervous system cell types in mice, with glial cells showing higher sensitivity than neurons .
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Cat. No.: HY-W570888
CAS No.: 206055-69-8
Synonyms: LNA-C(Bz)
Research Areas:  

Cancer

2'-O,4'-C-Methylenecytidine (LNA-C(Bz)) is a bicyclic nucleoside analogue with fixed N-type conformation. 2'-O,4'-C-Methylenecytidine can be used to synthesize oligonucleotides. 2'-O,4'-C-Methylenecytidine forms duplexes with complementary DNA and RNA strands .
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ISIS 626112
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ION-626112
Cat. No.: HY-159693
CAS No.: 2091995-55-8
Synonyms: ION-626112
ISIS 626112 (ION-626112) is a blood-brain barrier-permeable MOE-gapmer antisense oligonucleotide and also an inhibitor of the Malat1 long non-coding RNA. ISIS 626112 triggers RNase H1-mediated cleavage and degradation of complementary Malat1 RNA. ISIS 626112 dose-dependently reduces Malat1 RNA levels in all tested central nervous system regions and major central nervous system cell types in mice, with glial cells showing higher sensitivity than neurons .
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Cat. No.: HY-21286
CAS No.: 63264-29-9
Target:  

Drug Intermediate

Research Areas:  

Others

N2-Isobutyryl-2'-O-methylguanosine is a nucleic acid synthesis intermediate (e.g., used in antisense oligonucleotides, mRNA modification), for example, it is a key monomer for the synthesis of 2'-O-methyl oligoribonucleotides. N2-Isobutyryl-2'-O-methylguanosine enables the final product to form stable double strands with complementary RNA and is not easily degraded by nucleases. N2-Isobutyryl-2'-O-methylguanosine is mainly used in molecular biology research, and can be used to prepare RNA hybridization probes or participate in related biochemical research such as pre-mRNA splicing mechanisms .
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Cat. No.: HY-159709
CAS No.: 2765519-47-7
Target:  

Liposome

Research Areas:  

Metabolic Disease

VL-422 is an ionizable cationic lipid. VL-422 delivers CRISPR complementary single-guide RNA (sgRNA) and Cas9 mRNA to enable in vitro and in vivo gene editing. LNPs containing VL-422 loaded with Cas9 mRNA and sgRNA targeting the ANGPTL3 gene induce the deletion of premature stop codons within the ANGPTL3 gene in the liver of cynomolgus monkeys. Loss-of-function of ANGPTL3 leads to decreased levels of LDL, HDL and cholesterol in plasma. The VL-422 delivery system can be used for the research of gene editing strategies targeting lipid metabolism diseases .
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Cat. No.: HY-173189B
CAS No.: 72351-33-8
Synonyms: 2′,5′-ApApA TEA; 2′,5′-trioligoadenylate TEA; 5'-O-Triphosphoryladenylyl-(2'→5')-adenylyl-(2'→5')-adenosine TEA
Target:  

RSV DNA/RNA Synthesis

Research Areas:  

Infection Cancer

2-5A TEA (2′,5′-ApApA TEA) is a 5'-triphosphorylated (2',5') oligoadenylate. When covalently linked to an antisense molecule complementary to the target sequence, 2-5A TEA activates RNase L, which subsequently degrades the target RNA bound to the 2-5A TEA chimera. 2-5A TEA can be used in research related to respiratory syncytial virus infection, colorectal adenocarcinoma and melanoma .
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Cat. No.: HY-137660
CAS No.: 68892-47-7
Target:  

DNA/RNA Synthesis

Research Areas:  

Infection

pppApG is a starting product of both vRNA (viral RNA) and cRNA (complementary RNA) synthesis. pppApG can be used for influenza virus research .
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Cat. No.: HY-153836
CAS No.: 959716-29-1
Target:  

Factor Xa

Research Areas:  

Others

Anivamersen is an RNA aptamer to reverse the anticoagulant effect of the parenteral factor IXa inhibitor pegnivacogin. REG1 is a novel anticoagulation system consisting of pegnivacogin, an RNA aptamer inhibitor of coagulation factor IXa, and anivamersen, a complementary sequence reversal oligonucleotide.
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Cat. No.: HY-153836A
CAS No.: 959716-31-5
Target:  

Factor Xa

Research Areas:  

Others

Anivamersen sodium is an RNA aptamer to reverse the anticoagulant effect of the parenteral factor IXa inhibitor pegnivacogin. REG1 is a novel anticoagulation system consisting of pegnivacogin, an RNA aptamer inhibitor of coagulation factor IXa, and anivamersen, a complementary sequence reversal oligonucleotide.
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Cat. No.: HY-E70400
Target:  

DNA/RNA Synthesis

Research Areas:  

Infection

Thermostable T7 RNA Polymerase is a thermostable version of T7 RNA Polymerase (HY-E70090). Compared with T7 RNA Polymerase, it has high temperature resistance and stable activity. T7 RNA polymerase is a polymerase expressed by Escherichia coli from the RNA polymerase gene of T7 bacteriophage. T7 RNA polymerase is highly specific and involved in in vitro transcription (IVT) of mRNA. In the presence of Mg 2+, T7 RNA polymerase only uses the single-stranded or double-stranded DNA containing the T7 promoter sequence as a template, and uses NTP as a substrate to synthesize RNA complementary to the single-stranded DNA downstream of the promoter .
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Cat. No.: HY-137660A
Target:  

Others

Research Areas:  

Infection

pppApG tetrasodium is a starting product of both vRNA (viral RNA) and cRNA (complementary RNA) synthesis. pppApG tetrasodium can be used for influenza virus research .
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Cat. No.: HY-P11686
CAS No.: 1052677-90-3
Target:  

DNA/RNA Synthesis

Research Areas:  

Others

Fmoc-PNA-G(Boc)-OH is a synthetic peptide nucleic acid (PNA) modified with Fmoc and Boc protecting groups, designed for precise synthesis and targeted binding to complementary DNA or RNA sequences. Fmoc-PNA-G(Boc)-OH serves as a versatile tool in molecular biology, offering robustness, specificity, and applicability across various research and diagnostic fields.
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