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Pathways Recommended: MAPK/ERK Pathway
Results for "

MAPK inhibitor

" in MedChemExpress (MCE) Product Catalog:

696

Inhibitors & Agonists

2

Screening Libraries

6

Fluorescent Dyes

10

Biochemical Assay Reagents

19

Peptides

9

Inhibitory Antibodies

246

Natural
Products

15

Isotope-Labeled Compounds

2

Oligonucleotides

4

GMP Molecules

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-50846
    SCH772984
    180+ Cited Publications

    ERK Cancer
    SCH772984 is a highly selective and ATP-competitive ERK inhibitor, with IC50s of 4 and 1 nM for ERK1 and ERK2, respectively. SCH772984 has antitumor activity in MAPK inhibitor-na?ve and MAPK inhibitor-resistant cells containing BRAF or RAS mutations .
    SCH772984
  • HY-N1914
    Ergothioneine
    10+ Cited Publications

    L-(+)-Ergothioneine

    Endogenous Metabolite p38 MAPK Akt Keap1-Nrf2 NF-κB Others
    Ergothioneine is an imidazole-2-thione derivative with orally active histidine betaine. Ergothioneine is a specific inhibitor of p38-MAPK and Akt, which plays a protective role in cell apoptosis induced by stress. Ergothioneine has antioxidant activity .
    Ergothioneine
  • HY-13241
    Ralimetinib dimesylate
    10+ Cited Publications

    LY2228820 dimesylate

    p38 MAPK Autophagy Apoptosis Inflammation/Immunology Cancer
    Ralimetinib dimesylate (LY2228820 dimesylate) is a selective, ATP-competitive inhibitor of p38 MAPK α/β with IC50s of 5.3 and 3.2 nM, respectively. Ralimetinib (LY2228820) selectively inhibits phosphorylation of MK2 (Thr334), with no effect on phosphorylation of p38a MAPK, JNK, ERK1/2, c-Jun, ATF2, or c-Myc.
    Ralimetinib dimesylate
  • HY-158115

    Molecular Glues Raf MEK Cancer
    NST-628 is a brain-permeable MAPK pathway molecule glue that inhibits RAF phosphorylation and MEK activation. NST-628 also binds RAF and prevents the formation of BRAF-CRAF and BRAF-ARAF heterodimers, effectively inhibiting the RAS-MAPK pathway. NST-628 inhibits RAS- and RAF-driven cancers and demonstrated potent inhibition in mutant KRAS, NRAS, BRAF class II/III, and NF1-mutant tumors .
    NST-628
  • HY-B0466B
    Cloxacillin sodium
    3 Publications Verification

    Beta-lactamase Bacterial Antibiotic Infection Inflammation/Immunology Cancer
    Cloxacillin sodium is an orally active antibacterial agent and β-lactamase inhibitor with an IC50 of 0.04 µM. Cloxacillin sodium can suppress the S. aureus-induced inflammatory response by inhibiting the activation of MAPKs, NF-кB and NLRP3-related proteins .
    Cloxacillin sodium
  • HY-N9914

    D-Allulose

    p38 MAPK NF-κB Metabolic Disease
    D-psicose is an orally active rare sugar. D-psicose inhibits p38-MAPK phosphorylation and MCP-1 expression. D-psicose inhibits the AGEs/RAGE/NF-κB pathway. D-psicose protects pancreatic β-islets, improves hyperglycemia and high-fat diet-induced non-alcoholic fatty liver disease .
    D-Psicose
  • HY-B0466
    Cloxacillin sodium monohydrate
    3 Publications Verification

    Beta-lactamase Bacterial Antibiotic Infection Inflammation/Immunology Cancer
    Cloxacillin sodium monohydrate is an orally active antibacterial agent and β-lactamase inhibitor with an IC50 of 0.04 µM. Cloxacillin sodium monohydrate can suppress the S. aureus-induced inflammatory response by inhibiting the activation of MAPKs, NF-кB and NLRP3-related proteins .
    Cloxacillin sodium monohydrate
  • HY-120111

    MW01-18-150SRM

    p38 MAPK Autophagy Neurological Disease Inflammation/Immunology
    MW150 (MW01-18-150SRM) is a selective, CNS penetrant, and orally active inhibitor of p38α MAPK with a Ki of 101 nM. MW-150 inhibits the ability of the endogenous p38α MAPK to phosphorylate an endogenous substrate MK2 in activated glia .
    MW-150
  • HY-144903

    GDC-1971

    SHP2 Phosphatase p38 MAPK ERK Cancer
    Migoprotafib (GDC-1971) (compound 199) is a SHP2 inhibitor. Migoprotafib inhibits the MAPK/ERK signaling pathway, and exhibits antitumor activity .
    Migoprotafib
  • HY-10406
    Talmapimod
    3 Publications Verification

    SCIO-469

    p38 MAPK TNF Receptor Interleukin Related VEGFR Apoptosis Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Talmapimod (SCIO-469) is an orally active and selective inhibitor of p38α MAPK with an IC50 of 9 nM. Talmapimod inhibits the secretion of inflammatory factors (such as TNFα, IL-1β, IL-6, and VEGF) by suppressing the p38α MAPK pathway, and it also inhibits angiogenesis and osteoclast activation. Talmapimod inhibits the growth of multiple myeloma cells and induces apoptosis. Talmapimod can be used to study various hematological malignancies (such as multiple myeloma, myelodysplastic syndrome) .
    Talmapimod
  • HY-105935
    Keracyanin chloride
    1 Publications Verification

    Cyanidin 3-rutinoside chloride; Cyanidin 3-O-rutinoside chloride; Sambucin chloride

    NF-κB PPAR Reactive Oxygen Species (ROS) FAK p38 MAPK ERK JNK Metabolic Disease Inflammation/Immunology
    Keracyanin chloride inhibits NF-κB/FAK/MAPK signaling pathway. Keracyanin chloride exhibits antioxidant, anti-inflammatory and hypoglycemic effects, and is orally active .
    Keracyanin chloride
  • HY-12839
    p38 MAPK-IN-1
    10+ Cited Publications

    p38 MAPK Autophagy Inflammation/Immunology
    p38 MAPK-IN-1 (Compound 4) is a novel potent and selective inhibitor of p38 MAPK with IC50 of 68 nM. p38 MAPK-IN-1 shows sustained levels, low clearance and good bioavailability.
    p38 MAPK-IN-1
  • HY-N0809
    Sesamolin
    2 Publications Verification

    p38 MAPK JNK Caspase Reactive Oxygen Species (ROS) NF-κB Neurological Disease Metabolic Disease Inflammation/Immunology
    Sesamolin, isolated from Sesamum indicum, has antioxidative activity, Sesamolin inhibits lipid peroxidation and shows neuroprotection effect. Sesamolinl potently inhibits MAPK cascades by preventing phosphorylation of JNK, p38 MAPKs, and caspase-3 but not ERK-MAPK expression. Sesamolin is orally active .
    Sesamolin
  • HY-18874
    p38-α MAPK-IN-1
    2 Publications Verification

    p38 MAPK Autophagy Others
    p38-α MAPK-IN-1 is an inhibitor of MAPK14 (p38-α), with IC50 of 2300 nM in EFC displacement assay, and 5500 nM in HTRF assay .
    p38-α MAPK-IN-1
  • HY-100114

    Casein Kinase p38 MAPK Autophagy Cardiovascular Disease
    TA-01 is a potent CK1 and p38 MAPK inhibitor, with IC50s of 6.4 nM, 6.8 nM, 6.7 nM for CK1ε, CK1δ and p38 MAPK, respectively. TA-01 acts as a cardiogenic inhibitor.
    TA-01
  • HY-N1966
    (E)-Osmundacetone
    2 Publications Verification

    p38 MAPK PPAR Cancer
    (E)-Osmundacetone is an inhibitor of the MAPK pathway. (E)-Osmundacetone inhibits the activation of the MAPK signaling pathway and restores the expression of PPARα/ACOX1. (E)-Osmundacetone abrogates abnormal cell proliferation, migration and liver metastasis induced by PTPRO silencing in colorectal cancer cells. (E)-Osmundacetone blocks OA-RD17-mediated activation of the MAPK signaling pathway, thereby reducing macrophage proliferation and migration. (E)-Osmundacetone is applicable to relevant research on colorectal cancer .
    (E)-Osmundacetone
  • HY-10404
    Dilmapimod
    1 Publications Verification

    SB-681323; GW 681323

    p38 MAPK Autophagy Inflammation/Immunology Cancer
    Dilmapimod (SB-681323) is a potent p38 MAPK inhibitor that potentially suppresses inflammation in chronic obstructive pulmonary disease.
    Dilmapimod
  • HY-112181
    KO-947
    4 Publications Verification

    ERK Cancer
    KO-947 is a potent and selective inhibitor of ERK1/2 kinases with potential utility in MAPK pathway dysregulated tumors.
    KO-947
  • HY-112401

    p38 MAPK Inflammation/Immunology
    p38 MAP Kinase Inhibitor IV is a highly specific ATP-competitive p38α MAPK inhibitor with IC50s of 0.13 and 0.55 μM for p38α and p38β MAPK, respectively .
    p38 MAP Kinase Inhibitor IV
  • HY-146243

    Ras Apoptosis Cancer
    TH-Z835 is a mutant selective KRAS (G12D) inhibitor with an IC50 of 1.6 μM. TH-Z835 inhibits both mantGMPPNP/GPPNP exchange and GPPNP/mantGMPPNP exchange .
    TH-Z835
  • HY-W015445

    p38 MAPK Metabolic Disease
    SD-169 is an orally active ATP-competitive inhibitor of p38α MAPK, with an IC50 of 3.2 nM. SD-169 also weakly inhibits p38β MAPK with an IC50 of 122 nM. SD-169 prevents the development and progression of diabetes by inhibiting T cell infiltration and activation .
    SD-169
  • HY-18850
    MAPK13-IN-1
    4 Publications Verification

    p38 MAPK Autophagy Others
    MPAK13-IN-1 is a MAPK13 (p38δ) inhibitor, with an IC50 of 620 nM.
    MAPK13-IN-1
  • HY-N1921
    Edpetiline
    2 Publications Verification

    NF-κB p38 MAPK TNF Receptor Reactive Oxygen Species (ROS) COX Interleukin Related Inflammation/Immunology
    Edpetiline is an anti-inflammatory agent. Edpetiline inhibits the phosphorylation of IκB, nuclear transcription/translocation of NF-κB p65, as well as the phosphorylation of p38 MAPK and ERK MAPK. Edpetiline reduces intracellular ROS levels, inhibits the expression of TNF-α, IL-6, iNOS, COX-2, and promotes the expression of IL-4. Edpetiline is applicable to the research of diseases associated with inflammation and oxidative stress .
    Edpetiline
  • HY-146195
    MAPK-IN-1
    4 Publications Verification

    Toll-like Receptor (TLR) p38 MAPK JNK ERK Cholinesterase (ChE) Neurological Disease Inflammation/Immunology
    MAPK-IN-1 (Compound 2) is a MAPK signaling pathway inhibitor. MAPK-IN-1 exhibits AChE inhibitory activity with an IC50 of 23.84 μM. MAPK-IN-1 shows anti-neuroinflammatory and neuroprotective activity and can be used for Alzheimer's disease research .
    MAPK-IN-1
  • HY-147972

    NF-κB p38 MAPK NO Synthase COX Inflammation/Immunology
    NF-κB/MAPK-IN-1 (compound 11a) is a potent inhibitor of NF-κB and MAPK pathway. NF-κB/MAPK-IN-1 shows inhibitory activity against NO production, with an IC50 of 6.96 µM. NF-κB/MAPK-IN-1 suppresses LPS-induced iNOS, COX-2, ERΚ and P38 signaling activation. NF-κB/MAPK-IN-1 can prevent LPS induced inflammatory response in macrophages. NF-κB/MAPK-IN-1 can be used for rheumatoid arthritis (RA) research .
    NF-κB/MAPK-IN-1
  • HY-108643

    MAPKAPK2 (MK2) Cancer
    CMPD1 is a selective and non-ATP-competitive p38 MAPK-mediated MK2 phosphorylation inhibitor with apparent Ki (Ki app) of 330 nM .
    CMPD1
  • HY-N4182
    Licochalcone E
    4 Publications Verification

    Akt p38 MAPK Autophagy Inflammation/Immunology
    Licochalcone E, a flavonoid compound isolated from Glycyrrhiza uralensis, inhibits NF-κB and AP-1 transcriptional activity through the inhibition of AKT and MAPK activation .
    Licochalcone E
  • HY-P10438

    Raf Cancer
    TAT-Braftide is a peptide inhibitor designed to block the dimerization of BRAF, thereby inhibiting its kinase activity. The destruction of BRAF dimer by TAT-Braftide makes BRAF protein more susceptible to proteasome degradation, directly inhibits the activity of BRAF kinase, and reduces the activation of MAPK signaling pathway. Tat-braftide can be used for the role of RAF kinase in MAPK signaling pathway and for the study of BRAF mutant cancers .
    TAT-Braftide
  • HY-N1260

    (-)-Scutebarbatine A

    Apoptosis Cancer
    Scutebarbatine A inhibits the proliferation of HCC cells and triggers their apoptosis via the activation of MAPK and ER stress .
    Scutebarbatine A
  • HY-118034
    MTBT
    1 Publications Verification

    p38 MAPK Apoptosis Cancer
    MTBT is an anticancer agent and p38 MAPK activator. MTBT can inhibit tumor cell proliferation, induce cell cycle arrest and apoptosis. MTBT increases the phosphorylation of histone H3 serine in cancer cells, thereby arresting the cell cycle in the M phase. The specific inhibitor of p38 MAPK, Adezmapimod (HY-10256), can abrogate the cell cycle arrest induced by MTBT .
    MTBT
  • HY-P10072A

    Hsp25 kinase inhibitor acetate; Mk2 pseudosubstrate acetate

    JNK HSP MAPKAPK2 (MK2) p38 MAPK ERK Others
    MK2-IN-5 (Hsp25 kinase inhibitor) acetate is a Mk2 pseudosubstrate (Ki= 8 μM). MK2-IN-5 acetate targets the protein interaction domain in the MAPK pathway. MK2-IN-5 acetate inhibits HSP25 and HSP27 phosphorylation .
    MK2-IN-5 acetate
  • HY-B0466A

    Beta-lactamase Antibiotic Bacterial Infection Inflammation/Immunology Cancer
    Cloxacillin is an orally active antibacterial agent and β-lactamase inhibitor with an IC50 of 0.04 µM. Cloxacillin can suppress the S. aureus-induced inflammatory response by inhibiting the activation of MAPKs, NF-кB and NLRP3-related proteins .
    Cloxacillin
  • HY-112466

    p38 MAPK Inflammation/Immunology
    p38 MAPK-IN-4 (compound 6) is a p38 MAPK inhibitor with an IC50 of 35 nM .
    p38 MAPK-IN-4
  • HY-155736

    p38 MAPK EGFR Raf CDK c-Met/HGFR Cancer
    MAPK-IN-2 (compound 3h) is a potent MAPK inhibitor with antineoplastic activity. MAPK-IN-2 inhibits cancer cell proliferation among serval cancer cell lines, and suppresses MAPK pathway with potant efficacy (EGFR WT IC50=281 nM, c-MET IC50=205 nM, B-RAF WT IC50=112 nM, and CDK4/6 IC50=95 and 184 nM, respectively). MAPK-IN-2 even shows a remarkable potency against mutated EGFR and B-RAF (EGFR T790M IC50=69 nM and B-RAF V600E IC50=83 nM) .
    MAPK-IN-2
  • HY-168482

    NF-κB p38 MAPK Cancer
    NF-κB/MAPK-IN-2 (compound 14) is a potent NF-κB and MAPK Inhibitor. NF-κB/MAPK-IN-2 decreases the protein expression of p-p65, p-IκB, p-p38, p-JNK, and p-ERK. NF-κB/MAPK-IN-2 reduces the LPS-induced release of TNF-α and IL-6. NF-κB/MAPK-IN-2 inhibits nuclear translocation of p65 and c-Fos. NF-κB/MAPK-IN-2 has the potential for the research of sepsis .
    NF-κB/MAPK-IN-2
  • HY-161462

    ERK p38 MAPK Cancer
    ERK2/p38α MAPK-IN-1 (Compound 1, In silico Hit-2) is a potent and selective ERK2 and p38α MAPK inhibitor, with an IC50 of 82 μM for ERK2. ERK2/p38α MAPK-IN-1 binds to the allosteric site of ERK2 and p38α MAPK in distinct manners. ERK2/p38α MAPK-IN-1 can be used for the research of type 2 diabetes .
    ERK2/p38α MAPK-IN-1
  • HY-110103

    p38 MAPK Inflammation/Immunology
    ML3403 is a potent p38 MAPK inhibitor with an IC50 of 0.38 μM .
    ML3403
  • HY-118612

    p38 MAPK Others
    RO3201195 (compound 1) is an inhibitor of p38 MAPK. RO3201195 inhibits WS cell proliferation with IC50 value of 190 nM .
    RO3201195
  • HY-175655

    p38 MAPK Cholinesterase (ChE) Interleukin Related Neurological Disease Inflammation/Immunology
    BChE/p38-α MAPK-IN-1 is a selective dual inhibitor of hBChE (IC50 = 772 nM) and p38α MAPK (IC50 = 191 nM). BChE/p38-α MAPK-IN-1 reduces the production of pro-inflammatory cytokines (IL-1β, IL-6, IL-8, TNF-α) in cells. BChE/p38-α MAPK-IN-1 improves Scopolamine (HY-N0296)-induced cognitive impairment, as well as alleviates LPS (HY-D1056)-induced spatial learning impairment and exerts anti-neuroinflammatory effects in mice. BChE/p38-α MAPK-IN-1 can be used for the study of Alzheimer’s disease (AD) by targeting both cholinergic deficit and neuroinflammation .
    BChE/p38-α MAPK-IN-1
  • HY-145025

    ERK Inflammation/Immunology Cancer
    ERK1/2 inhibitor 3 is a potent inhibitor of ERK1/2. Mitogen-activated protein kinase (MAPK) plays an extremely important role in the signal transduction pathway, and extracellular signal regulated kinase (ERK) is a member of the MAPK family. ERK1/2 inhibitor 3 has the potential for the research or prevention of cancer, inflammation or other proliferative diseases (extracted from patent WO2021218912A1, compound 1) .
    ERK1/2 inhibitor 3
  • HY-P10072

    Hsp25 kinase inhibitor; Mk2 pseudosubstrate

    ERK JNK p38 MAPK HSP MAPKAPK2 (MK2) Others
    MK2-IN-5 is a Mk2 pseudosubstrate (Ki= 8 μM). MK2-IN-5 targets the protein interaction domain in the MAPK pathway. MK2-IN-5 inhibits HSP25 and HSP27 phosphorylation .
    MK2-IN-5
  • HY-175236

    PD-1/PD-L1 Apoptosis ERK JNK Cadherin p38 MAPK GSK-3 IFNAR Caspase Bcl-2 Family Cancer
    SF-9-2 is a PD-L1/PD-1 binding inhibitor (IC50 = 24.9 nM). SF-9-2 inhibits epithelial-mesenchymal transition, migration, invasion, and proliferation of SK-N-SH cells, and also induces apoptosis and cell cycle arrest. SF-9-2 blocks PD-L1-induced SK-N-SH cell growth through the MAPK signaling pathway. SF-9-2 restores GSK-3β activity and enhances PD-L1 degradation through the ubiquitin-proteasome pathway. SF-9-2 inhibits tumor growth in the SK-N-SH NOG mouse model without significant toxicity. SF-9-2 also acts as an immune checkpoint inhibitor, blocking PD-L1 to restore T cell function. SF-9-2 can be used in neuroblastoma research .
    SF-9-2
  • HY-175175

    p38 MAPK Bcl-2 Family Caspase Reactive Oxygen Species (ROS) PARP Apoptosis Cancer
    MAPK-IN-5 is a potent MAPK inhibitor with an IC50 of 1.35 μM against HeLa cells. MAPK-IN-5 inhibits HeLa cell proliferation by inducing ROS-mediated DNA damage and mitochondrial apoptosis via the MAPK pathway. MAPK-IN-5 significantly inhibits colony formation, reduces the number of live cells, suppresses cell migration, and causes cell cycle arrest in the G2/M phase in HeLa cells. MAPK-IN-5 can be used for the study of cervical cancer .
    MAPK-IN-5
  • HY-178433

    Cholinesterase (ChE) p38 MAPK Neurological Disease
    BChE/p38-α MAPK-IN-2 is a BChE and p38-α MAPK dual inhibitor. BChE/p38-α MAPK-IN-2 inhibits hBChE with an IC50 of 5.1 nM, showing 1000-fold selectivity over hAChE. BChE/p38-α MAPK-IN-2 inhibits p38α MAPK with an IC50 of 8.12 μM. BChE/p38-α MAPK-IN-2 exhibits neuroprotective effect and can be used for the research of neurological disease, such as Alzheimer’s disease .
    BChE/p38-α MAPK-IN-2
  • HY-N8453

    Methyl 3,5-dicaffeoyl quinic acid

    p38 MAPK Neurological Disease
    Macranthoin G is an inhibitor of p38 MAPK. Macranthoin G protects the cytotoxicity induced by Aβ or hydrogen peroxide in neuronal cells by downregulating p38 MAPK. Macranthoin G can used in study Alzheimer’s Disease .
    Macranthoin G
  • HY-N8835

    p38 MAPK Neurological Disease
    Cannabisin D inhibits proliferation and migration of glioblastoma cells through MAPKs signaling .
    Cannabisin D
  • HY-112367
    SB 202474
    1 Publications Verification

    p38 MAPK Cancer
    SB 202474, a negative analog of SB203580. SB 202474, which has no ability to inhibit p38 MAPK activity and is widely used as a negative control compound in p38 MAPK studies, also suppressed melanin synthesis induction .
    SB 202474
  • HY-120111A

    MW01-18-150SRM hydrochloride

    p38 MAPK Autophagy Neurological Disease Inflammation/Immunology
    MW-150 hydrochloride (MW01-18-150SRM hydrochloride) is a selective, CNS penetrant, and orally active inhibitor of p38α MAPK with a Ki of 101 nM. MW-150 hydrochloride (MW01-18-150SRM hydrochloride) inhibits the ability of the endogenous p38α MAPK to phosphorylate an endogenous substrate MK2 in activated glia .
    MW-150 hydrochloride
  • HY-145026

    ERK Inflammation/Immunology Cancer
    ERK1/2 inhibitor 5 is a potent inhibitor of ERK1/2. Mitogen-activated protein kinase (MAPK) plays an extremely important role in the signal transduction pathway, and extracellular signal regulated kinase (ERK) is a member of the MAPK family. ERK1/2 inhibitor 5 has the potential for the research or prevention of cancer, inflammation or other proliferative diseases (extracted from patent WO2020238776A1) .
    ERK1/2 inhibitor 4
  • HY-145027

    ERK Cancer
    ERK1/2 inhibitor 5 is a potent inhibitor of ERK1/2. Mitogen-activated protein kinase (MAPK) plays an extremely important role in the signal transduction pathway, and extracellular signal regulated kinase (ERK) is a member of the MAPK family. ERK1/2 inhibitor 5 has the potential for the research or prevention of cancer, inflammation or other proliferative diseases (extracted from patent WO2020238776A1) .
    ERK1/2 inhibitor 5

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