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  1. ERK Inhibitor

    Laxiflorin B-4 is a selective ERK1/2 inhibitor, demonstrating a higher affinity compared to its parent compound, Laxiflorin B. This enhanced binding significantly increases its potential for tumor suppression, making it a valuable tool in cancer research. Laxiflorin B-4 can aid in the study of ERK signaling pathways and their role in oncogenesis.
  2. KLK-10/ERK Inhibitor

    Picrasidine J is a selective inhibitor of KLK-10 protease and the ERK signaling pathway. It demonstrates significant anti-migratory and anti-invasive activities by upregulating E-Cadherin and ZO-1 while downregulating β-catenin and Snail. Additionally, it reduces KLK-10 expression and inhibits ERK phosphorylation. Picrasidine J is primarily utilized in research aimed at preventing metastasis in head and neck squamous cell carcinoma (HNSCC).
  3. ERK1/2 Inhibitor

    ERK1/2 inhibitor 6 is a selective inhibitor targeting extracellular signal-regulated kinases 1 and 2 (ERK1/2), key components of the mitogen-activated protein kinase (MAPK) signaling pathway. This compound exhibits significant activity in modulating signal transduction processes, making it a valuable tool in cancer research, inflammation studies, and the investigation of other proliferative diseases. Its potential applications include elucidating the role of ERK1/2 in cellular processes and exploring therapeutic strategies for related pathologies.
  4. ERK Inhibitor

    Sonvuterkib is a potent inhibitor of extracellular signal-regulated kinases (ERK), demonstrating IC50 values of 1.4 nM for ERK1 and 0.54 nM for ERK2. This orally active compound effectively inhibits cell proliferation, making it a valuable tool in cancer research. Its ability to target ERK signaling pathways highlights its potential for therapeutic applications in various cancer models.
  5. ERK-MAPK Pathway Inhibitor

    ITZ-1 is a selective inhibitor of the extracellular signal-regulated kinase (ERK) in the mitogen-activated protein kinase (MAPK) pathway, exhibiting an IC50 of 0.51 μM against interleukin-1β (IL-1β)-induced matrix metalloproteinase-13 (MMP-13) production. This compound effectively reduces MMP-13 expression and mitigates nitric oxide (NO)-induced chondrocyte apoptosis. ITZ-1 holds potential for advancing research in osteoarticular diseases.
  6. ERK1/2 Inhibitor

    ERK1/2 inhibitor 10 is a highly potent inhibitor of ERK1 and ERK2, exhibiting IC50 values of 0.11 nM and 0.08 nM, respectively. This compound effectively blocks the phosphorylation of downstream substrates, including p90RSK and c-Myc, leading to enhanced cell apoptosis and incomplete autophagy-related cell death. ERK1/2 inhibitor 10 demonstrates significant antitumor activity against triple-negative breast cancer and colorectal cancer models, particularly those with BRAF and RAS mutations, making it a valuable tool for cancer research.
  7. ERK1/2 Inhibitor

    ERK1/2 Inhibitor 12 is a selective inhibitor of the ERK1 and ERK2 signaling pathways. It effectively inhibits ERK-mediated phosphorylation of caspase-9 and p90Rsk-1 kinase, demonstrating significant anti-cancer activity. This compound is suitable for research applications focused on cancer biology and the modulation of ERK signaling in various cellular contexts.
  8. ERK5 Inhibitor

    ERK5-IN-4 is a selective inhibitor of extracellular signal-regulated kinase 5 (ERK5), demonstrating potent activity against both full-length and truncated ERK5 variants. In HEK293 cells, ERK5-IN-4 exhibits inhibitory effects with IC50 values of 77 nM for full-length ERK5 and 300 nM for ERK5 ΔTAD. This compound is valuable for research applications targeting signaling pathways involving ERK5, including studies on cell proliferation, differentiation, and stress response mechanisms.
  9. ERK5 Inhibitor

    ERK5-IN-6 is a kinase inhibitor targeting extracellular signal-regulated kinase 5 (ERK5). This compound demonstrates notable anticancer activity, exhibiting an IC50 value of 4.56 µg/mL against A549 lung cancer cells. ERK5-IN-6 is a valuable tool for research into the role of ERK5 in cancer biology and potential therapeutic applications.
  10. Erk2 Inhibitor

    ETP-45835 dihydrochloride is a selective inhibitor of Erk2, exhibiting an IC50 value of 18.7 μM. This compound demonstrates significant inhibitory effects on cell proliferation, with an EC50 value of 0.9 μM. ETP-45835 is valuable for research applications focused on cell signaling pathways and the modulation of Erk2 activity in various biological contexts.
  11. ERK2 Inhibitor

    Tizaterkib (hexanedioic acid) is a potent and selective inhibitor of ERK2, exhibiting an IC50 of 0.6 nM. This compound effectively disrupts ERK2 signaling pathways, making it valuable for investigating the role of ERK2 in various biological processes. Its application extends to cancer research and drug discovery, providing insights into therapeutic strategies targeting ERK2-associated pathways.
  12. ERK1/5 Inhibitor

    ADTL-EI1712 is a selective dual-target inhibitor of ERK1 and ERK5, demonstrating inhibition rates of 93.54% and 89.35%, respectively, at a concentration of 1 μM. It effectively induces regulated cell death by activating genetically encoded machinery, making it valuable for research focused on overcoming compensatory mechanisms in specific cancer cells. This compound is suitable for in vitro and in vivo studies exploring therapeutic strategies targeting the ERK signaling pathway.
  13. AP-1/STAT/ERK Inhibitor

    Methyllinderone is an inhibitor of the AP-1, STAT, and ERK signaling pathways. This compound exhibits anti-inflammatory properties and has been shown to reduce the invasion and migration rates of TPA-stimulated MCF-7 breast cancer cells. Methyllinderone serves as a valuable tool for research applications focused on breast cancer metastasis and the underlying mechanisms of cancer progression.
  14. ERK1/2 Inhibitor

    Ulixertinib hydrochloride is a potent, orally active inhibitor of the ERK1/2 kinases, functioning primarily through ATP competition and reversible covalent binding. With an IC50 of less than 0.3 nM against ERK2, this compound effectively inhibits phosphorylated ERK2 (pERK) and its downstream target, RSK (pRSK) in A375 melanoma cells. Ulixertinib hydrochloride is valuable for research aimed at understanding the role of ERK signaling in cancer biology and therapeutic strategies targeting this pathway.
  15. ERK Inhibitor

    Ravoxertinib hydrochloride is an orally bioavailable inhibitor that selectively targets ERK kinase activity, demonstrating IC50 values of 6.1 nM for ERK1 and 3.1 nM for ERK2. This compound exhibits significant inhibition of ERK signaling pathways, making it a valuable tool for research in cancer biology and targeted therapies. Its selective action on ERK kinases positions it as an important reagent for investigating therapeutic strategies in ERK-driven malignancies.
  16. ERK Inhibitor

    ZINC12409120 is a highly selective ERK inhibitor that targets the mitogen-activated protein kinase pathway. It disrupts the interaction between FGF23 and α-Klotho, leading to inhibition of ERK activity with an IC50 of 5.0 μM. This compound is valuable for research applications focused on cellular signaling pathways and their implications in various disease models.
  17. ERK1/2 Inhibitor

    ERK1/2 Inhibitor 9 is a covalent inhibitor targeting ERK1/2, exhibiting sub-micromolar activity in cellular assays with a GI50 of 0.47 μM in A375 cells. This compound effectively downregulates phospho-ERK1/2 levels, thereby impacting downstream signaling pathways. Additionally, ERK1/2 Inhibitor 9 is functionalized with trans-cyclo-octene (TCO) and Tz-Thalidomide, enabling the formation of ERK-CLIPTAC for targeted degradation of ERK1/2. This makes it a valuable tool for research into cancer signaling mechanisms and targeted protein degradation strategies.
  18. ERK/JNK Inhibitor

    Ambuic acid is a potent inhibitor targeting the ERK/JNK pathway, demonstrating notable anti-inflammatory effects. It displays significant antimicrobial activity against Staphylococcus aureus, with an IC50 value of 43.9 μM for the ATCC 6538 strain. Additionally, Ambuic acid inhibits the biosynthesis of cyclic peptide quorum sensing molecules in gram-positive bacteria, making it a valuable compound for research in antimicrobial and anti-inflammatory applications.
  19. ERK2 Inhibitor

    ERK2-IN-4 is a selective inhibitor of the ERK2 pathway, demonstrating a Ki of 0.006 μM. This compound effectively disrupts ERK signaling, making it a valuable tool in cancer research. Its specificity and potency allow for detailed studies of ERK2's role in tumorigenesis and related signaling pathways.
  20. ERK5 Inhibitor

    ERK5-IN-5 is an inhibitor of the ERK5 kinase, showcasing significant anti-cancer properties. This compound demonstrates notable anti-proliferative effects, with an IC50 value of 6.23 µg/mL against A549 lung cancer cells. ERK5-IN-5 is suitable for research applications focused on cancer biology and signaling pathways involving ERK5 modulation.
  21. ERK/Insulin Receptor Inhibitor

    ERK Inhibitor II (Negative Control) is a selective inhibitor of extracellular signal-regulated kinase (ERK) primarily affecting the insulin receptor pathway. This compound serves as a tool for investigating the role of ERK in various biological processes, particularly in the research of diabetes and insulin signaling mechanisms. Its application extends to studying the modulation of ERK activity and understanding associated cellular responses.
  22. ERK1/2 Inhibitor

    Methyl helicterate is a triterpenoid compound that functions as an inhibitor of the ERK1/2 signaling pathway. It demonstrates significant biological activity by inhibiting hepatic stellate cell activation and promoting apoptosis in these cells. This manipulation of the ERK1/2 pathway positions methyl helicterate as a valuable reagent for research focused on liver fibrosis and related conditions.
  23. ERK1/2 Inhibitor

    ERK1/2 inhibitor 13 is a potent dual inhibitor of ERK1 and ERK2, exhibiting IC50 values of 91.71 nM and 97.87 nM, respectively. This compound demonstrates significant activity in inhibiting the proliferation of tumor cell lines, including MCF-7, 4T1, MDA-MB-468, and HCC1970, with IC50 values ranging from 0.67 to 2.76 μM. Additionally, ERK1/2 inhibitor 13 effectually inhibits cancer cell migration and induces apoptosis and autophagy in MCF-7 cells, while also displaying antitumor and anti-metastatic properties in a 4T1 xenograft mouse model, making it a valuable reagent for cancer research applications.
  24. ERK1/2 Inhibitor

    SF-3-030 is a selective, non-ATP competitive inhibitor of ERK1/2, targeting the MAPK signaling pathway. It has demonstrated the ability to induce apoptosis specifically in melanoma cells with mutated BRAF and activated ERK1/2 signaling. Additionally, SF-3-030 has shown potential in alleviating several characteristics of asthma in murine models, making it valuable for research focused on both melanoma and asthma pathophysiology.
  25. NF-κB inhibitor

    Urolithin B is one of the gut microbial metabolites of ellagitannins, and has anti-inflammatory and antioxidant effects. Urolithin B is also a regulator of skeletal muscle mass.
  26. CDK Inhibitor

    Aloisine A is a potent cyclin-dependent kinase (CDK) inhibitor, exhibiting IC50 values of 0.15 μM for CDK1/cyclin B, 0.12 μM for CDK2/cyclin A, 0.4 μM for CDK2/cyclin E, and 0.16 μM for CDK5/p35. In addition to its CDK inhibitory effects, Aloisine A also inhibits GSK-3α and GSK-3β with IC50 values of 0.5 μM and 1.5 μM, respectively. Notably, it enhances the activity of wild-type and mutant CFTR with submicromolar affinity through a cAMP-independent mechanism, making it a valuable tool for research related to cystic fibrosis and CFTR-related disorders.
  27. COX-2/MMP-7/TLR4 Inhibitor

    Isofraxidin is a coumarin compound derived from *Acanthopanax senticosus* that exhibits anti-invasive and anti-inflammatory properties. It inhibits MMP-7 expression and suppresses cell invasion in human hepatoma cells by reducing ERK1/2 phosphorylation. Isofraxidin also downregulates the expression of iNOS and COX-2 and inhibits the formation of the TLR4/myeloid differentiation protein-2 (MD-2) complex.
  28. ERK2 inhibitor

    Cafestol is an orally active diterpenoid and an inhibitor of ERK2. It exhibits multiple biological activities, including elevation of blood lipids, anti-inflammatory, anti-angiogenic, and anti-diabetic effects. Additionally, cafestol induces apoptosis and autophagy in tumor cells, making it a potential candidate for cancer research.
  29. Gαq/11/14 Inhibitor

    FR900359 is a cyclic depsipeptide and a selective inhibitor of Gαq/11/14 proteins in mammals. By targeting Gαq signaling, it effectively inhibits downstream pathways such as the ERK cascade. FR900359 has demonstrated the ability to suppress melanoma cell proliferation, lower blood pressure, and protect against airway hyperreactivity in murine models of allergen sensitization, such as the ovalbumin-induced asthma model.
  30. Erk Inhibitor

    Edaxeterkib is a potent inhibitor of extracellular signal-regulated kinase (ERK), designed for cancer research. By targeting the ERK signaling pathway, Edaxeterkib interferes with tumor cell proliferation and survival, making it a valuable tool for studying ERK-driven malignancies.
  31. Osteoclast formation inhibitor

    ABD56 is a bioactive compound that inhibits osteoclast formation and induces osteoclast apoptosis. Its mechanism of action involves suppression of the NFκB and ERK signaling pathways, making it a promising candidate for research in bone metabolism and osteolytic diseases.
  32. ERK inhibitor

    26-Deoxyactein, a bioactive constituent isolated from *Cimicifuga racemosa*, protects against TCDD-induced osteoblast damage. It exerts its effects by inhibiting the upregulation of aryl hydrocarbon receptor (AhR), CYP1A1, and ERK signaling, making it a potential agent for bone health and toxicology research.
  33. fMLP inhibitor

    Larixol is an fMLP inhibitor that also suppresses key signaling pathways involved in immune regulation, including Src kinase, ERK1/2, p38, and AKT phosphorylation. It disrupts the interaction between the βγ subunit of the fMLP receptor Gi protein and downstream effectors, thereby inhibiting fMLP-induced respiratory burst. Larixol effectively inhibits fMLP (0.1 μM)-induced superoxide anion production (IC50: 1.98 μM), cathepsin G release (IC50: 2.76 μM), and neutrophil chemotaxis. It mitigates neutrophil hyperactivation and helps reduce inflammation and tissue damage. Additionally, Larixol derivatives have shown inhibitory activity against TRPC6 functional mutants associated with focal segmental glomerulosclerosis (FSGS).
  34. ERK1/2 inhibitor

    SHR2415 is a highly potent, selective, and orally active ERK1/2 inhibitor with IC50 values of 2.8 nM for ERK1 and 5.9 nM for ERK2. It demonstrates strong antiproliferative activity in Colo205 cells with an IC50 of 44.6 nM. SHR2415 is a promising compound for cancer research, particularly in targeting the MAPK/ERK signaling pathway.
  35. LSF inhibitor

    FQI1 is a selective inhibitor of Late SV40 Factor (LSF), a transcription factor implicated in oncogenesis. It suppresses cell proliferation with IC50 values of 3 μM in NIH/3T3 cells, 0.79 μM in HeLa cells, and 6.3 μM in A549 cells. FQI1 is a valuable tool for cancer research targeting LSF-driven pathways.
  36. SHP2 inhibitor

    Migoprotafib (GDC-1971; compound 199) is a selective SHP2 inhibitor that suppresses the MAPK/ERK signaling pathway. It exhibits antitumor activity and is under investigation for its potential in targeting SHP2-driven cancers.
  37. PGAM1 inhibitor

    HKB99 is an allosteric inhibitor of phosphoglycerate mutase 1 (PGAM1) that induces apoptosis and suppresses cell migration by inhibiting the formation of invasive pseudopodia. It increases oxidative stress, activates the JNK/c-Jun pathway, and downregulates AKT and ERK signaling. HKB99 is a promising compound for the study of non-small cell lung cancer (NSCLC).
  38. ALK/ROS1 inhibitor

    Iruplinalkib (WX-0593) is an orally active and selective ALK/ROS1 inhibitor that effectively blocks tyrosine autophosphorylation of ALK, mutant ALK, and EGFR, with IC50 values ranging from 5.38 to 16.74 nM. Additionally, it inhibits the transport activity of MATE1, MATE2K, P-gp, and BCRP. Iruplinalkib is under investigation for the treatment of non-small cell lung cancer (NSCLC).
  39. MEK1/2 inhibitor

    MAP855 is a highly potent, selective, ATP-competitive, and orally active MEK1/2 kinase inhibitor, with an IC50 of 3 nM for the MEK1–ERK2 cascade and a pERK EC50 of 5 nM. It exhibits equipotent inhibitory activity against both wild-type and mutant forms of MEK1/2, making it a valuable tool for MAPK pathway research.
  40. PDGFR Inhibitor

    Methylnissolin (Astrapterocarpan), a natural compound isolated from *Astragalus membranaceus*, inhibits PDGF-BB-induced vascular smooth muscle cell proliferation with an IC50 of 10 μM. It exerts its effects by suppressing PDGF-BB-induced phosphorylation of ERK1/2, thereby blocking activation of the ERK1/2 MAP kinase signaling cascade.
  41. STAT inhibitor

    Mogrol, a biometabolite of mogrosides, exerts its biological activity by inhibiting the ERK1/2 and STAT3 signaling pathways, suppressing CREB activation, and activating AMPK signaling.
  42. ADAM17 inhibitor

    JG26 is a potent ADAM inhibitor with IC50 values of 12 nM for ADAM8, 1.9 nM for ADAM17, and 150 nM for ADAM10. It also inhibits MMP-12 with an IC50 of 9.4 nM. JG26 suppresses AngII-induced EGFR transactivation and ERK activation, upregulates ACE2 expression, inhibits CD23 shedding, and reduces SARS-CoV-2 infection. Additionally, JG26 demonstrates anti-metastatic effects in colorectal cancer and holds research potential in Hodgkin lymphoma and vascular diseases.
  43. CK2/ERK8 inhibitor

    TMCB (CK2/ERK8-IN-1) is a dual inhibitor of casein kinase 2 (CK2) and ERK8 (MAPK15/ERK7), with a Ki of 0.25 µM for CK2 and IC50 values of 0.50 µM for both targets. It also exhibits binding affinity for PIM1 (Ki = 8.65 µM), HIPK2 (Ki = 15.25 µM), and DYRK1A (Ki = 11.9 µM). CK2/ERK8-IN-1 demonstrates pro-apoptotic activity and is a useful tool for studying kinase-mediated cell survival pathways.
  44. ERK inhibitor

    Magnolin, a major bioactive compound from *Magnolia liliiflora*, targets the active sites of ERK1 and ERK2, inhibiting the Ras/ERKs/RSK2 signaling pathway with IC50 values of 87 nM and 16.5 nM, respectively.
  45. NF-κB inhibitor

    Asperulosidic Acid (ASPA) is a bioactive iridoid glycoside isolated from the herb Hedyotis diffusa Willd., exhibiting anti-tumor, antioxidant, and anti-inflammatory properties. Its anti-inflammatory effects are associated with the downregulation of proinflammatory cytokines such as TNF-α and IL-6, mediated through inhibition of the NF-κB and MAPK signaling pathways.
  46. ERK1/2 inhibitor

    ASN007 (ERK-IN-3) benzenesulfonate is a potent, orally active ERK1/2 inhibitor with low single-digit nanomolar IC50 values. It is under investigation for the treatment of cancers driven by RAS mutations.
  47. ERK1/2 Inhibitor

    ERK1/2 Inhibitor 7 is a highly potent ERK inhibitor, exhibiting an IC50 of 0.94 nM against ERK2. It is referenced in patent WO2021110168A1 (compound WX006).
  48. VEGFR-3 inhibitor

    EVT801 is an orally active, selective VEGFR-3 inhibitor (IC50=11 nM) with potent antitumor properties. It suppresses VEGF-C-induced human endothelial cell proliferation and tumor-associated lymphatic angiogenesis in mouse models. EVT801 reduces tumor hypoxia, immunosuppressive cytokines (CCL4, CCL5), and myeloid-derived suppressor cell (MDSC) production. When combined with immune checkpoint therapy (ICT), EVT801 enhances response rates and improves tumor inhibition in cancer mouse models. Additionally, EVT801 is a click chemistry reagent containing an alkyne group, enabling copper-catalyzed azide-alkyne cycloaddition (CuAAC) with azide-containing molecules.
  49. PAR2 inhibitor

    I-287 is an orally active and selective protease-activated receptor 2 (PAR2) inhibitor that functions as a negative allosteric modulator, specifically targeting Gαq and Gα12/13 signaling pathways and their downstream effectors. By disrupting PAR2-mediated signaling, I-287 effectively reduces inflammation in preclinical models, including Complete Freund's Adjuvant (CFA)-induced inflammation in mice.
  50. NSAID/COX inhibitor

    Fenoprofen (LILLY-53858) is a nonsteroidal anti-inflammatory drug (NSAID) that functions primarily by inhibiting cyclooxygenase (COX) enzymes, thereby reducing the synthesis of pro-inflammatory prostaglandins. In addition to its classical NSAID activity, Fenoprofen has been identified as a positive allosteric modulator (PAM) of melanocortin receptors (MCRs), enhancing MCR-mediated signaling. Fenoprofen also promotes ERK1/2 activation in HEK293T cells, suggesting additional modulation of intracellular signaling pathways involved in inflammation and cellular proliferation.

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