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UM

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102

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17

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-132591
    Inclisiran
    Maximum Cited Publications
    7 Publications Verification

    ALN-PCSsc

    PCSK9 Small Interfering RNA (siRNA) Pyroptosis PPAR NOD-like Receptor (NLR) Caspase Interleukin Related Cardiovascular Disease Metabolic Disease
    Inclisiran is a double-stranded small interfering RNA (siRNA) molecule. Inclisiran inhibits the transcription of PCSK9. Inclisiran inhibits Pyroptosis, activates PPARγ, and reduces NLRP3, cleaved caspase-1, IL-1β, and IL-18. Inclisiran has anti-inflammatory, lipid-regulating and anti-atherosclerotic activities. Inclisiran can be used in researches of hyperlipidemia and cardiovascular disease (CVD) .
    Inclisiran
  • HY-15887
    MG 149
    10+ Cited Publications

    Tip60 HAT inhibitor

    Histone Acetyltransferase Epigenetic Reader Domain Apoptosis PINK1/Parkin Cardiovascular Disease Neurological Disease Inflammation/Immunology Cancer
    MG149 (Tip60 HAT inhibitor) is a selective and potent Tip60 inhibitor with IC50 of 74 uM, similar potentcy for MOF (IC50 = 47 uM); little potent for PCAF and p300 (IC50 >200 uM). MG 149 inhibits KAT8 and blocks PINK1 kinase activity. MG149 inhibits the phosphorylation of Parkin and ubiquitin, thereby suppressing the initiation of PINK1-dependent mitophagy. MG 149 can reverse chronic restraint stress (CRS) induced hypertension and related molecular changes. MG 149 commonly used in research on diseases such as hypertension and Parkinson's disease .
    MG 149
  • HY-12874
    CASIN
    5+ Cited Publications

    Ras Apoptosis Cancer
    CASIN is a selective GTPase Cdc42 inhibitor with an IC50 of 2 uM. CASIN can be used for the research of cancer .
    CASIN
  • HY-15858
    AP-III-a4
    15+ Cited Publications

    ENOblock

    Enolase Apoptosis Metabolic Disease Cancer
    AP-III-a4 (ENOblock) is a nonsubstrate analogue enolase inhibitor with an IC50 of 0.576 uM. AP-III-a4 can be used for the research of cancer and diabetic .
    AP-III-a4
  • HY-132609
    Patisiran sodium
    1 Publications Verification

    Small Interfering RNA (siRNA) Transthyretin (TTR) Neurological Disease
    Patisiran sodium is a double-stranded small interfering RNA that targets a sequence within the transthyretin (TTR) messenger RNA. Patisiran sodium specifically inhibits hepatic synthesis of mutant and wild-type TTR. Patisiran sodium can be used for the research of hereditary TTR amyloidosis .
    Patisiran sodium
  • HY-P9950
    Omalizumab
    1 Publications Verification

    OlizUMab; rhUMab-E25; IGE25; RG-3648

    Interleukin Related Inflammation/Immunology Cancer
    Omalizumab is a recombinant, humanized, monoclonal antibody against human immunoglobulin E (IgE) with a KD of 0.393 nM. Omalizumab binds to the human FcγRIIb receptors with a KD of 6.37 uM. Omalizumab has the potential for persistent allergic asthma research . The component ratio of this product is Active ingredient : Excipients = 1:1.3-1:1.5.
    Omalizumab
  • HY-12646
    Rhosin hydrochloride
    Maximum Cited Publications
    40 Publications Verification

    Ras Apoptosis Cancer
    Rhosin hydrochloride is a potent, specific RhoA subfamily Rho GTPases inhibitor. Rhosin hydrochloride specifically binds to RhoA to inhibit RhoA-GEF interaction with a Kd of ~ 0.4 uM, and does not interact with Cdc42 or Rac1, nor the GEF, LARG. Rhosin hydrochloride induces cell apoptosis . Rhosin hydrochloride promotes stress resiliency through enhancing D1-MSN plasticity and reducing hyperexcitability .
    Rhosin hydrochloride
  • HY-10172
    IMD-0354
    20+ Cited Publications

    IKK2 Inhibitor V

    IKK Cancer
    IMD-0354 (IKK2 Inhibitor V) is a selective IKKβ inhibitor which inhibits NF-κB activity . IMD0354 inhibits TNF-α induced NF-κB transcription activity with an IC50 of 1.2 uM .
    IMD-0354
  • HY-132588

    ALN-G01

    Small Interfering RNA (siRNA) Glycolate Oxidase Metabolic Disease
    Lumasiran (ALN-G01), a siRNA product, reduces hepatic oxalate production by targeting glycolate oxidase. By silencing the gene encoding glycolate oxidase, Lumasiran depletes glycolate oxidase and thereby inhibits the synthesis of oxalate, which is the toxic metabolite that is directly associated with the clinical manifestations of Primary hyperoxaluria type 1 (PH1) .
    Lumasiran
  • HY-132589
    Vutrisiran
    2 Publications Verification

    ALN-TTRsc02

    Small Interfering RNA (siRNA) Transthyretin (TTR) Neurological Disease
    Vutrisiran (ALN-TTRsc02) is a liver-directed, investigational, small interfering ribonucleic acid (siRNA) agent. Vutrisiran can be used for transthyretin (TTR)-mediated amyloidosis research .
    Vutrisiran
  • HY-132610
    Givosiran
    1 Publications Verification

    ALN-AS1

    Small Interfering RNA (siRNA) Metabolic Disease
    Givosiran (ALN-AS1) is a small interfering RNA that targets hepatic aminolevulinate synthase 1 (ALAS1) messenger RNA. Givosiran downregulates ALAS1 mRNA and prevents accumulation of neurotoxic δ-aminolevulinic acid (ALA) and porphobilinogen (PBG) levels. Givosiran demonstrates potent inhibitory activity against ALAS1 in mouse, rat, and cynomolgus monkey models. Givosiran can be used for the research of acute hepatic porphyria (AHP) .
    Givosiran
  • HY-132587

    ALN-AT3SC; SAR439774

    Factor Xa Small Interfering RNA (siRNA) Thrombin Cardiovascular Disease
    Fitusiran (ALN-AT3SC) is a siRNA strategy. Fitusiran delivers siRNA targeting the SERPINC1 gene in hepatocytes to inhibit antithrombin synthesis. Fitusiran enhances thrombin activity and increases Thrombin generation, thereby restoring hemostatic function. Fitusiran can be used in hemophilia-related research .
    Fitusiran
  • HY-12646A
    Rhosin
    Maximum Cited Publications
    40 Publications Verification

    Ras Apoptosis Cancer
    Rhosin is a potent, specific RhoA subfamily Rho GTPases inhibitor, which specifically binds to RhoA to inhibit RhoA-GEF interaction with a Kd of ~ 0.4 uM, and does not interact with Cdc42 or Rac1, nor the GEF, LARG. Rhosin induces cell apoptosis . Rhosin promotes stress resiliency through enhancing D1-MSN plasticity and reducing hyperexcitability .
    Rhosin
  • HY-122611A
    CSRM617 hydrochloride
    1 Publications Verification

    Androgen Receptor Apoptosis Cancer
    CSRM617 hydrochloride is a selective small-molecule inhibitor of the transcription factor ONECUT2 (OC2, a master regulator of androgen receptor) with a Kd of 7.43 uM in SPR assays, binding to OC2-HOX domain directly. CSRM617 hydrochloride induces apoptosis by appearance of cleaved Caspase-3 and PARP. CSRM617 hydrochloride is well tolerated in the prostate cancer mouse model
    CSRM617 hydrochloride
  • HY-122723
    GOT1 inhibitor-1
    2 Publications Verification

    Reactive Oxygen Species (ROS) Cancer
    GOT1 inhibitor-1 (compound 2c), a tryptamine-based derivative, acts as a novel, potent and non-covalent inhibitor of glutamate oxaloacetate transaminase 1 (GOT1) with an IC50 of 8.2 uM. GOT1 plays an important role in energy metabolism and Reactive Oxygen Species (ROS) balance. GOT1 inhibitor-1 can be used for the research of pancreatic ductal adenocarcinoma (PDAC) .
    GOT1 inhibitor-1
  • HY-132613

    Small Interfering RNA (siRNA) Glycolate Oxidase Metabolic Disease
    Lumasiran sodium, an investigational RNA interference (RNAi) therapeutic agent, reduces hepatic oxalate production by targeting glycolate oxidase. Lumasiran sodium reduces urinary oxalate excretion, the cause of progressive kidney failure in primary hyperoxaluria type 1 (PH1) .
    Lumasiran sodium
  • HY-117535
    CDK2-IN-4
    3 Publications Verification

    CDK Cancer
    CDK2-IN-4 (compound 73) is a potent and selective CDK2 inhibitor with an IC50 of 44 nM for CDK2/cyclin A, shows 2,000-fold selectivity over CDK1/cyclin B (IC50=86 uM) .
    CDK2-IN-4
  • HY-112182
    UM-164
    1 Publications Verification

    DAS-DFGO-II

    Src p38 MAPK Autophagy Cancer
    UM-164 (DAS-DFGO-II) is a highly potent inhibitor of c-Src with a Kd of 2.7 nM. UM-164 also potently inhibits p38α and p38β.
    UM-164
  • HY-17357

    AHR 9434; AL 6515

    COX Prostaglandin Receptor Neurological Disease Inflammation/Immunology Endocrinology Cancer
    Nepafenac (AHR 9434; AL 6515), a nonsteroidal anti-inflammatory agent, is a topically administered COX-2 inhibitor with an IC50 of 0.12 μM. Nepafenac exhibits only weak COX-1 inhibitory activity (IC50 = 64.3 μM). Nepafenac possesses unique prodrug properties, which enable it to rapidly convert into the active metabolite Amfenac (HY-17479) in the ocular tissues, thereby achieving high concentrations in the retina and choroid. Nepafenac reduces inflammation and pain by inhibiting the activity of cyclooxygenase (COX) enzymes and thereby decreasing the production of prostaglandin PGE. Nepafenac can delay the metastasis of uveal melanoma (UM) in rabbit eyes. Nepafenac is mainly used for pain management and inflammation control after ophthalmic surgeries .
    Nepafenac
  • HY-145720

    ALN-CC5

    Complement System Small Interfering RNA (siRNA) Metabolic Disease
    Cemdisiran (ALN-CC5) is an N-acetylgalactosamine-conjugated RNAi agent and also a complement component C5 inhibitor. Cemdisiran targets C5 mRNA, cleaves C5 mRNA via the endogenous RNA interference pathway, and inhibits the production of C5 protein in the liver. Cemdisiran exerts a dose-dependent inhibitory effect on total C5 concentrations in cynomolgus monkeys. When used in combination with Pozelimab (HY-P99786) in cynomolgus monkeys, Cemdisiran achieves a more sustained and complete inhibitory effect on complement activity. Cemdisiran can be used in the research of paroxysmal nocturnal hemoglobinuria and other complement-mediated diseases .
    Cemdisiran
  • HY-145724

    Kyndrisa; GSK2402968A; PRO051

    DNA/RNA Synthesis Dystrophin Neurological Disease
    Drisapersen (Kyndrisa) is a 2 '-O-methyl phosphorothioate RNA antisense oligonucleotide that induces exon 51 skipping. Drisapersen induces skipping of exon 51 during Dystrophin pre-mRNA splicing, allowing the synthesis of partially functional Dystrophin. Drisapersen can be used in research related to Duchenne muscular dystrophy .
    Drisapersen
  • HY-15839
    UNC 669
    2 Publications Verification

    Epigenetic Reader Domain Cancer
    UNC 669, a ligand for a methyl-lysine binding domain, is a potent L3MBTL1 (IC50=4.2 uM) and L3MBTL3 (3.1 uM) inhibitor .
    UNC 669
  • HY-147425

    SLN360

    Small Interfering RNA (siRNA) Apolipoprotein Cardiovascular Disease
    Zerlasiran (SLN360) is a siRNA targeting apolipoprotein A (ApoA). Zerlasiran targets hepatic ApoA synthesis via RNA interference to degrade encoding mRNA. Zerlasiran can be used for the research of atherosclerotic cardiovascular disease and elevated ApoA levels .
    Zerlasiran
  • HY-15485
    Zardaverine
    1 Publications Verification

    Phosphodiesterase (PDE) Apoptosis Inflammation/Immunology Cancer
    Zardaverine is an orally active and selective PDE3/4 inhibitor (IC50)=0.58 uM/0.17 uM) with potent bronchodilator activity. Zardaverine also selectively inhibits the proliferation of HCC cells and induces apoptosis and cycle arrest (G0/G1 phase). Zardaverine has good antitumor potential and is effective in both bronchial relaxation and reduction of inflammation in asthma .
    Zardaverine
  • HY-12834A
    MK2-IN-1 hydrochloride
    5 Publications Verification

    MAPKAPK2 (MK2) HSP Cancer
    MK2-IN-1 hydrochloride (compound 1) is a potent and selecitve MAPKAPK2 (MK2) inhibitor with an IC50 of 0.11 uM for MK2 and an EC50 of 0.35 uM for pHSP27. MK2-IN-1 hydrochloride impaires the phosphorylation level of serine residues in the Tfcp2l1 protein .
    MK2-IN-1 hydrochloride
  • HY-122577

    Aldehyde Dehydrogenase (ALDH) Cancer
    EN40 is a potent, selective aldehyde dehydrogenase 3A1 (ALDH3A1) inhibitor as a covalent ligand, exhibits an IC50 value of 2 uM
    EN40
  • HY-15600
    UPF-648
    1 Publications Verification

    Aryl Hydrocarbon Receptor Neurological Disease
    UPF-648 is a potent kynurenine 3-monooxygenase (KMO) inhibitor; exhibits highly active at 1 uM (81 ± 10% KMO inhibition); ineffective at blocking KAT activity.
    UPF-648
  • HY-15858A
    AP-III-a4 hydrochloride
    15+ Cited Publications

    ENOblock hydrochloride

    Enolase Apoptosis Metabolic Disease Cancer
    AP-III-a4 (ENOblock) hydrochloride is a nonsubstrate analogue enolase inhibitor with an IC50 of 0.576 uM. AP-III-a4 hydrochloride can be used for the research of cancer and diabetic .
    AP-III-a4 hydrochloride
  • HY-14454
    TPh A
    2 Publications Verification

    Triphenyl Compound A

    Biochemical Assay Reagents Cancer
    TPh A (Triphenyl Compound A) is a potent inhibitor of the nuclear protein pirin and binds specifically to pirin with a Ki of 0.6 uM. TPh A disrupts the formation of the bcl3–pirin complex. TPh A can be used as a novel small molecule tool to regulate pirin in cells .
    TPh A
  • HY-162386

    Cuproptosis Mitochondrial Metabolism Cancer
    UM4118 is a potent copper-selective non-genotoxic copper ionophore that induces cuproptosis in acute myeloid leukemia cells. UM4118 exhibits stronger activity against SF3B1G12C mutant acute myeloid leukemia cells. UM4118 transports extracellular copper into cells, elevates intracellular and mitochondrial copper levels, and triggers lipoylated DLAT aggregation, proteotoxic stress, iron-sulfur cluster protein depletion, reduced lipoylated protein levels, and maximal mitochondrial respiratory damage. UM4118 cytotoxicity can be enhanced by supplementation with extracellular copper, abolished by copper chelation, and shows synthetic lethal effects in the absence of iron-sulfur cluster biosynthesis/transport genes. UM4118 can be used for the study of acute myeloid leukemia .
    UM4118
  • HY-12834
    MK2-IN-1
    5 Publications Verification

    MAPKAPK2 (MK2) HSP Cancer
    MK2-IN-1 (compound 1) is a potent and selecitve MAPKAPK2 (MK2) inhibitor with an IC50 of 0.11 uM for MK2 and an EC50 of 0.35 uM for pHSP27. MK2-IN-1 impaires the phosphorylation level of serine residues in the Tfcp2l1 protein .
    MK2-IN-1
  • HY-112398

    Epigenetic Reader Domain Others
    GSK1379725A is a selective BPTF ligand with a Kd of 2.8 uM, showing no binding activity for Brd4 .
    GSK1379725A
  • HY-129042
    Cibacron Blue 3G-A
    1 Publications Verification

    Fluorescent Dye Beta-lactamase Infection
    Cibacron Blue 3G-A is an anthraquinone dye, inhibits the R46 β-lactamase with a Ki value of 1.2 uM .
    Cibacron Blue 3G-A
  • HY-12881

    SL-820715

    iGluR Neurological Disease
    Eliprodil(SL-820715) is a non-competitive NR2B-NMDA receptor antagonist(IC50=1 uM), less potent for NR2A- and NR2C-containing receptors(IC50> 100 uM).
    Eliprodil
  • HY-123824

    Sodium Channel Neurological Disease
    GNE-0439 is a novel Nav1.7-selective inhibitor with IC50 of 0.34 uM and inhibits Nav1.5 with an IC50 of 38.3 μM. GNE-0439 inhibits mutant N1742K channels (IC50=0.37 uM) in membrane potential assays. GNE-0439 possesses a carboxylic acid group, binds outside of the channel pore, and is unique compared with known selective VSD4 binders .
    GNE-0439
  • HY-115570
    GW406108X
    1 Publications Verification

    GW108X

    Kinesin ULK Autophagy Cancer
    GW406108X is a specific Kif15 (Kinesin-12) inhibitor with an IC50 of 0.82 uM in ATPase assays. GW406108X, a potent autophagy inhibitor, shows ATP competitive inhibition against ULK1 with a pIC50 of 6.37 (427 nM). GW406108X inhibits ULK1 kinase activity and blocks autophagic flux, without affecting the upstream signaling kinases mTORC1 and AMPK .
    GW406108X
  • HY-18598

    Insecticide Infection
    Chitinase-IN-1 is an insecticide that can inhibit the activity of chitinase and N-acetylglucosaminidase. The inhibition percentages for glycosidase and N-acetylglucosaminidase at concentrations of 50 uM and 20 uM are 75% and 67%, respectively.
    Chitinase-IN-1
  • HY-125236

    BET-IN-19

    Epigenetic Reader Domain Cancer
    ZEN-3694 (Compound 146) is a BET inhibitor. ZEN-3694 inhibits hlL-6 mRNA transcription (IC50 ≤0.3 uM), and c-myc activity in human AML MV4-11 cell (IC50 ≤0.3 uM). ZEN-3694 inhibits tetra-acetylated histone H4 binding to BRD4 bromodomain 1 (IC50 ≤0.3 uM) .
    ZEN-3694
  • HY-15612

    CDK Cancer
    CDK4 inhibitor is a novel and specific CDK4/Cyclin D1 inhibitor with an IC50 of 10 nM; 1500 and 500 fold than CDK1/Cyclin B (IC50>15 uM) and CDK2/Cyclin A (IC50=5.265 uM) respectively.
    CDK4-IN-1
  • HY-164143

    Topoisomerase Cancer
    T638 is a topoisomerase II (TOP2) inhibitor. T638 inhibits TOP2A activity with a IC50 of 0.7 uM. T638 strongly inhibits cancer cell growth .
    T638
  • HY-102019
    NSC61610
    1 Publications Verification

    Interleukin Related Inflammation/Immunology
    NSC61610 disrupts hIL-18 binding to the ectromelia virus IL-18BP. NSC61610 inhibits hIL-18:ectvIL-18BP complex formation with an IC50 about 6 uM .
    NSC61610
  • HY-178049

    STING IFNAR Interleukin Related Neurological Disease Inflammation/Immunology
    UM-259 is a STING inhibitor, with an EC50 of 1.50 μM in THP1-Dual cells expressing wild-type STING. UM-259 blocks STING oligomerization and inhibits diABZI-induced phosphorylation of TBK1 and IRF3, thereby suppressing the transcription of IFNβ and IL6 and reducing IFNβ secretion. UM-259 can be used for the study of STING-dependent inflammatory and neurological diseases .
    UM-259
  • HY-160755

    Endogenous Metabolite Others
    UM-2 is the urinary 3-hydroxy metabolite of DX-8951 (HY-13631) in human .
    UM-2
  • HY-108556A

    Protease Activated Receptor (PAR) Apoptosis Cardiovascular Disease
    RWJ-56110 dihydrochloride is a potent, selective, peptide-mimetic inhibitor of PAR-1 activation and internalization (binding IC50=0.44 uM) and shows no effect on PAR-2, PAR-3, or PAR-4. RWJ-56110 dihydrochloride inhibits the aggregation of human platelets induced by both SFLLRN-NH2 (IC50=0.16 μM) and thrombin (IC50=0.34 μM), quite selective relative to U46619 (HY-108566). RWJ-56110 dihydrochloride blocks angiogenesis and blocks the formation of new vessels in vivo. RWJ-56110 dihydrochloride induces cell apoptosis .
    RWJ-56110 dihydrochloride
  • HY-D2401F1

    Fluorescent Dye Others
    Cy5-Polystyrene microsphere (20um) is a Cy5 (HY-D0821)-labeled microsphere that can be used for bioimaging and drug delivery .
    Cy5-Polystyrene microsphere (20um)
  • HY-132595

    QPI-1002

    Small Interfering RNA (siRNA) MDM-2/p53 Cancer
    Teprasiran (QPI-1002) is a small interfering RNA that temporarily inhibits p53-mediated cell death that underlies acute kidney injury (AKI) .
    Teprasiran
  • HY-132604

    ARO-AAT

    Small Interfering RNA (siRNA) Metabolic Disease
    Fazirsiran (ARO-AAT) is a second-generation RNAi agent. Fazirsiran consistes of a cholesterol-conjugated RNAi trigger (chol-RNAi) to selectively reduce Alpha1-antitrypsin (AAT) synthesis and a melittin-derived peptide conjugated to N-acetylgalactosamine (NAG) formulated as the excipient EX1 to promote endosomal escape of the chol-RNAi in hepatocytes . Fazirsiran can be used in the study of Alpha-1 Antitrypsin Deficiency (AATD) liver disease. Alpha-1 antitrypsin deficiency (AATD) is caused by mutations in the alpha-1 antitrypsin (SERPINA1) gene.
    Fazirsiran
  • HY-132602

    MRG-201

    MicroRNA Inflammation/Immunology
    Remlarsen (MRG-201), a miR-29b mimic, acts a miR-29b agonist. Remlarsen has the potential for preventiong formation of a fibrotic scar or cutaneous fibrosis .
    Remlarsen
  • HY-147278

    Divesiran; SLN124

    Ser/Thr Protease Small Interfering RNA (siRNA) TMPRSS6 Cardiovascular Disease
    Manusiran (Divesiran) is a GalNac-siRNA targeting liver and transmembrane serine protease 6 (Serine protease 6). Manusiran increases hepatic Hepcidin synthesis and plasma levels by silencing TMPRSS6, a negative regulator of hepcidin production, and limits the availability of iron required for erythropoiesis. Combined use of Manusiran with Deferiprone (HY-B0568) reduces ineffective erythropoiesis and hepatic iron overload in a mouse model of β-thalassemia. Manusiran can be used for research on polycythemia vera, type 1 hereditary hemochromatosis, and β-thalassemia .
    Manusiran
  • HY-122611

    Androgen Receptor Apoptosis Cancer
    CSRM617 is a selective small-molecule inhibitor of the transcription factor ONECUT2 (OC2, a master regulator of androgen receptor) with a Kd of 7.43 uM in SPR assays, binding to OC2-HOX domain directly. CSRM617 induces apoptosis by appearance of cleaved Caspase-3 and PARP. CSRM617 is well tolerated in the prostate cancer mouse model
    CSRM617

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