15 Results for "

inhibitory oligonucleotide

" in MedChemExpress (MCE) Product Catalog:
Products (15)

15 Results for "inhibitory oligonucleotide" in MCE Product Catalog:

5
5 Cited Publications
Cat. No.: HY-150751
CAS No.: 1801724-76-4
Purity:  93.80%
Synonyms: ODN A151
ODN TTAGGG (ODN A151), an inhibitory oligonucleotide (ODN), is a TLR9, AIM2, and cGAS antagonist. ODN TTAGGG inhibits AIM2 inflammasome activation and cGAS activation through competition with DNA. ODN TTAGGG blocks AIM2-mediated Pyroptosis and inhibits IL-18 production. ODN TTAGGG has immunosuppressive effects and can be used in research on related autoimmune diseases such as lupus erythematosus . ODN TTAGGG sequence: 5'-T-T-A-G-G-G-T-T-A-G-G-G-T-T-A-G-G-G-T-T-A-G-G-G-3'.
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5
5 Cited Publications
Cat. No.: HY-150751C
Purity:  93.80%
Synonyms: ODN A151 sodium
Research Areas:  

Inflammation/Immunology

ODN TTAGGG sodium, inhibitory oligonucleotide (ODN), is a TLR9, AIM2 and cGAS antagonist. ODN TTAGGG sodium is immunosuppressive and inhibits AIM2 inflammasome activation, as well as cGAS activation, by competing with DNA. ODN TTAGGG sodium can be used in the study of lupus erythematosus and other related autoimmune diseases. ODN TTAGGG sequence: 5'-T-T-A-G-G-G-T-T-A-G-G-G-T-T-A-G-G-G-T-T-A-G-G-G-3' .
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1
1 Cited Publications
Cat. No.: HY-150736
CAS No.: 1964506-29-3
Purity:  92.60%
ODN 20844, a guanine-modified inhibitory oligonucleotide (INH-ODN), is a TLR7 and TLR9 (Toll-like receptor) inhibitor, and its parent is INH-ODN 2088. ODN 20844 disrupts TLR7- and TLR9-mediated immune cell immune responses. ODN 20844 sequence: 5'-TCCTGGCGc7GGGAAGT-3' .
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1
1 Cited Publications
Cat. No.: HY-150736A
Purity:  96.52%
Research Areas:  

Infection

ODN 20844 sodium, a guanine-modified inhibitory oligonucleotide (INH-ODN), is a TLR7 and TLR9 (Toll-like receptor) inhibitor, and its parent is INH-ODN 2088. ODN 20844 sodium disrupts TLR7- and TLR9-mediated immune cell immune responses. ODN 20844 sequence: 5'-TCCTGGCGc7GGGAAGT-3' .
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Cat. No.: HY-150746
CAS No.: 1682661-49-9
Research Areas:  

Inflammation/Immunology

ODN 24991, a guanine-modified inhibitory oligonucleotide (INH-ODN), is a TLR3, TLR7 and TLR9 (Toll-like receptor) inhibitor, and its parent is INH-ODN 2088. ODN 24991 disrupts TLR3-, TLR7- and TLR9-mediated immune cell immune responses. ODN 24991 sequence: 5'-C-C-T-G-G-C-c7rGm-G-G-G-3' .
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Cat. No.: HY-150745A
Purity:  92.42%
Research Areas:  

Inflammation/Immunology

ODN 24987 sodium is a Guanine-modified inhibitory oligonucleotides (ODN), targeting TLR9. ODN 24987 can inhibit IL-6 and IFN-α release. ODN 24987 sodium can be used for research immune disorders. ODN 24987 sequence: 5’-C-C-T-G-G-C-c7G-G-G-G-3’ .
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Cat. No.: HY-150746A
Purity:  99.64%
Research Areas:  

Inflammation/Immunology

ODN 24991 sodium, a guanine-modified inhibitory oligonucleotide (INH-ODN), is a TLR3, TLR7 and TLR9 (Toll-like receptor) inhibitor, and its parent is INH-ODN 2088. ODN 24991 sodium disrupts TLR3-, TLR7- and TLR9-mediated immune cell immune responses. ODN 24991 sequence: 5'-C-C-T-G-G-C-c7rGm-G-G-G-3' .
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Cat. No.: HY-W570886
CAS No.: 163759-97-5
Target:  

DNA/RNA Synthesis

Research Areas:  

Cancer

2'-O-MOE-U is a nucleic acid modification group (Phosphoramidite) with 3'-exonuclease inhibitory activity. 2'-O-MOE-U also exhibits gene silencing activity and double-stranded oligonucleotide stability. By forming steric interactions with 3'-exonuclease residues, 2'-O-MOE-U anchors the 3'-end of the siRNA guide strand in the hAgo2 PAZ domain, thereby regulating double-stranded thermal stability and enhancing base-pairing specificity. 2'-O-MOE-U does not induce IFNα production, can be incorporated at multiple sites of siRNA to enhance RNAi activity, and produces a synergistic effect with 2'-F modification. 2'-O-MOE-U has been widely used in studies related to breast cancer and other diseases .
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Cat. No.: HY-150744A
Purity:  93.10%
Research Areas:  

Inflammation/Immunology

ODN 24888 sodium is an guanine-modified inhibitory oligonucleotides (INH-ODN), shows potent inhibition on TLR7/TLR9-mediated signaling. ODN 24888 sodium impairs IFN-α level and NF-κB activation, inhibits IL-6 release. ODN 24888 sodium involves in immune and inflammatory responses, can be used as a vaccine adjuvant .
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Cat. No.: HY-150745
CAS No.: 1682661-48-8
Research Areas:  

Inflammation/Immunology

ODN 24987 is a Guanine-modified inhibitory oligonucleotides (ODN), targeting TLR9. ODN 24987 can inhibit IL-6 and IFN-α release. ODN 24987 can be used for research immune disorders. ODN 24987 sequence: 5’-C-C-T-G-G-C-c7G-G-G-G-3’ .
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Cat. No.: HY-177636
CAS No.: 2857819-69-1
Target:  

HIV

Research Areas:  

Infection

GPI2A is a 20-mer antisense oligonucleotide sequence that is complementary to a region of the HIV-1 gag gene. GPI2A shows a significant inhibitory effect on p55 and its cleavage product p39/41.
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Cat. No.: HY-150744
CAS No.: 1964506-30-6
Research Areas:  

Inflammation/Immunology

ODN 24888 is an guanine-modified inhibitory oligonucleotides (INH-ODN), shows potent inhibition on TLR7/TLR9-mediated signaling. ODN 24888 impairs IFN-α level and NF-κB activation, inhibits IL-6 release. ODN 24888 involves in immune and inflammatory responses, can be used as a vaccine adjuvant .
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Cat. No.: HY-150751A
Research Areas:  

Inflammation/Immunology

Biotin-labeled ODN TTAGGG (sodium), a inhibitory oligonucleotide (ODN), is a TLR9, AIM2 and cGAS antagonist. Biotin-labeled ODN TTAGGG (sodium) can be used to evaluate CpG ODN cellular uptake and localization using a biotin detection system and light microscopy.
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Cat. No.: HY-177636A
Target:  

HIV

Research Areas:  

Infection

GPI2A sodium is a 20-mer antisense oligonucleotide sequence that is complementary to a region of the HIV-1 gag gene. GPI2A shows a significant inhibitory effect on p55 and its cleavage product p39/41.
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Cat. No.: HY-150751B
Research Areas:  

Inflammation/Immunology

FITC-labeled ODN TTAGGG (sodium), a inhibitory oligonucleotide (ODN), is a TLR9, AIM2 and cGAS antagonist. FITC-labeled ODN TTAGGG (sodium) can be used to evaluate CpG ODN cellular uptake and localization by confocal laser-scanning microscopy (excitation 495 nm, emission 520 nm) or flow cytometry.
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