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J774A.1 macrophages

" in MedChemExpress (MCE) Product Catalog:

23

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1

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2

Peptides

1

Inhibitory Antibodies

4

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2

Oligonucleotides

Cat. No. 상품명 Target 연구분야 Chemical Structure
  • HY-N2041
    Myristic acid
    5+ Cited Publications

    Environmental Pollutants Endogenous Metabolite Bacterial NF-κB Infection Inflammation/Immunology
    Myristic acid is an orally active saturated 14-carbon fatty acid found in most animal and plant fats, especially milk fat coconut oil, palm oil and nutmeg oil. Myristic acid exerts anti-inflammatory activity through the NF-κB pathway. Myristic acid has antibacterial, anti-inflammatory and analgesic properties .
    Myristic acid
  • HY-149992
    MyD88-IN-1
    5 Publications Verification

    MyD88 Inflammation/Immunology Cancer
    MyD88-IN-1 (Compound c17) is an orally active MyD88 inhibitor. MyD88-IN-1 inhibits the interaction of TLR4 and MyD88 and suppressed the NF-κB pathway. MyD88-IN-1 can be used in research of cancer and inflammatory .
    MyD88-IN-1
  • HY-W040128

    Antibiotic Autophagy JNK Bcl-2 Family Infection
    Kanamycins sulfate is a blood-brain barrier-permeable JNK1 and Bcl-2 modulator as well as an antibiotic, with broad-spectrum antibacterial, and biofilm-inhibiting activities, and it induces autophagy. Kanamycins sulfate promotes Bcl-2 phosphorylation to upregulate autophagy levels, triggering changes such as mitochondrial swelling and endoplasmic reticulum expansion. Consequently, it causes reversible neuronal damage in the dorsal cochlear nucleus without inducing significant neuronal apoptosis. In the presence of exogenous alanine or glucose, Kanamycins sulfate effectively kills drug-resistant bacteria, restores drug sensitivity of multidrug-resistant bacteria, and alleviates urinary tract and kidney infections in mice. Kanamycins sulfate can be applied to scientific research related to Mycobacterium tuberculosis, salmonellosis, brucellosis, shigellosis, urinary tract infections, and reversible neurotoxicity .
    Kanamycins sulfate
  • HY-131521

    Oxalomalate trisodium

    Isocitrate Dehydrogenase (IDH) Cancer
    Oxalomalic acid (Oxalomalate) trisodium is a aconitase and NADP-dependent isocitrate dehydrogenase inhibitor. Oxalomalic acid trisodium inhibits nitrite production and iNOS protein expression in lipopolysaccharide (HY-D1056)-activated J774 macrophages .
    Oxalomalic acid trisodium
  • HY-N6801

    Caspase Apoptosis Bcl-2 Family Infection Inflammation/Immunology Cancer
    Nivalenol, a trichothecene mycotoxin that can be produced by Fusarium graminearum, is a fungal metabolite present in agricultural product. Nivalenol modulates apoptotic pathway, cell cycle regulation, Bax, ERK, caspase-3, and poly-ADP-ribose synthase activity in macrophages. Nivalenol inhibits ribosomal peptidyltransferase site, protein synthesis, DNA synthesis, and cell proliferation. Nivalenol induces late-stage apoptotic morphological changes, reduces cellular metabolism, and decreases cell proliferation in erythroleukemia cells. Nivalenol induces lymphocyte apoptosis in murine thymus, spleen, and Peyer's patches. Nivalenol can be used for the research of erythroleukemia .
    Nivalenol
  • HY-P10086
    TREM-1 inhibitory peptide GF9
    1 Publications Verification

    Human TREM-1(213-221)

    TREM receptor TNF Receptor Interleukin Related c-Fms Neurological Disease Inflammation/Immunology Cancer
    TREM-1 inhibitory peptide GF9 (Human TREM-1 (213-221)) is a TREM-1 inhibitor. TREM-1 inhibitory peptide GF9 blocks the TREM-1 signaling pathway via a ligand-independent mechanism, spontaneously inserts into the cell membrane to dissociate TREM-1 from DAP-12, and functions through the Signaling Chain Homooligomerization (SCHOOL) model. TREM-1 inhibitory peptide GF9 reduces the levels of TNFα, IL-1β, IL-6, and M-CSF. TREM-1 inhibitory peptide GF9 inhibits tumor growth, prolongs the survival of mice with pancreatic cancer models, ameliorates collagen-induced arthritis, and exerts protective effects on bone and cartilage simultaneously. TREM-1 inhibitory peptide GF9 can be used in research related to arthritis, pancreatic cancer, retinopathy, alcoholic liver disease, and liver cancer .
    TREM-1 inhibitory peptide GF9
  • HY-117432

    NOD-like Receptor (NLR) Inflammation/Immunology
    JC-171 is a selective NLRP3 inflammasome inhibitor, with an IC50 of 8.45 μM for inhibiting LPS/ATP-induced interleukin-1β (IL-1β) release from J774A.1 macrophages .
    JC-171
  • HY-N16039

    β-glucuronidase Inflammation/Immunology
    TAN-1030A is an indolocarbazole alkaloid with macrophage-activating properties. TAN-1030A induces spreading of a murine macrophage cell line, Mm 1, and augmentes the phagocytic activity, Fc gamma receptor expression and β-glucuronidase activity of murine macrophage cell lines, Mm 1 and J774A.1. TAN-1030A can activate macrophage functions in mice .
    TAN-1030A
  • HY-N2041R

    Reference Standards Endogenous Metabolite NF-κB Bacterial Infection Inflammation/Immunology
    Myristic acid (Standard) is the analytical standard of Myristic acid. This product is intended for research and analytical applications. Myristic acid is an orally active saturated 14-carbon fatty acid found in most animal and plant fats, especially milk fat coconut oil, palm oil and nutmeg oil. Myristic acid exerts anti-inflammatory activity through the NF-κB pathway. Myristic acid has antibacterial, anti-inflammatory and analgesic properties .
    Myristic acid (Standard)
  • HY-W1000105

    (E)-3,7-Dimethylocta-2,6-dienal

    TNF Receptor Interleukin Related ERK JNK IKK COX NO Synthase Reactive Oxygen Species (ROS) Inflammation/Immunology
    Geranial is an aromatic compound. It can be isolated from the fruits of Litsea cubeba Lour and the rhizomes of ginger (Zingiber officinale). Geranial inhibits LPS-induced phosphorylation of ERK1/2, JNK1/3 and IκB in macrophages. It suppresses the secretion of IL-1β, TNF-α and IL-6, as well as the expression of pro-IL-1β, iNOS and COX-2. Geranial increases ROS. It can be used in the research of inflammatory diseases .
    Geranial
  • HY-158741

    APG-2 Acetoxymethyl ester

    Fluorescent Dye Potassium Channel Others
    IPG-2 AM (APG-2 Acetoxymethyl ester) is a membrane-permeant acetoxymethyl ester derivative and selective fluorescent potassium ion indicator. IPG-2 AM exhibits fluorescence increases proportional to extracellular potassium ion concentrations. IPG-2 AM enables real-time monitoring of cytosolic free potassium ion fluxes in human platelets and macrophages. IPG-2 AM can be used for the research of intracellular potassium concentration dynamics .
    IPG-2 AM
  • HY-133133

    NOD-like Receptor (NLR) Interleukin Related Inflammation/Immunology
    IIIM-1270is a NLRP3 inflammasome inhibitor. IIIM-1270 inhibits IL-1β release in mouse macrophages (J774A.1 cells) (IC50 = 3.5 μM) and significantly reduced the protein expression level of mature IL-1β. IIIM-1270 can be used for the study of inflammation .
    IIIM-1270
  • HY-171905

    Liposome Others
    N-Sterol is a sterol lipid that has been used to generate lipid nanoparticles (LNPs) for delivery of mRNA in vitro and in vivo. N-Sterol LNPs are taken up in J774A.1 macrophages in a lipid composition-dependent manner via clathrin caveolae, caveolin-mediated endocytosis, micropinocytosis, or phagocytosis at different frequencies .
    N-Sterol
  • HY-133132

    NOD-like Receptor (NLR) Interleukin Related Inflammation/Immunology
    IIIM-1266 is a NLRP3 inflammasome inhibitor. IIIM-1266 inhibits IL-1β release in mouse macrophages (J774A.1 cells) (IC50 = 2.3 μM) and significantly reduced the protein expression level of mature IL-1β. IIIM-1266 can be used for the study of inflammation .
    IIIM-1266
  • HY-179407

    Phosphodiesterase (PDE) Inflammation/Immunology
    LT-104A is a potent PDE4 inhibitor that elevates intracellular cAMP levels (EC50 = 1.9 μM) and inhibits PDE4D3 activity (IC50 = 9.3 μM). LT-104A activates the cAMP-PKA-CREB anti-inflammatory signaling pathway and suppresses NF-κB-related gene expression (Il1b and Nos2). LT-104A can be used for inflammation-related disease research .
    LT-104A
  • HY-178436

    Bacterial Infection
    Antituberculosis agent-16 is an orally active antituberculosis agent. Antituberculosis agent-16 exhibits stable antituberculosis activity with a MIC of 0.48 μg/mL against Mycobacterium tuberculosis H37Rv sensitive strain and 0.49 μg/mL against multidrug-resistant strain 14862. Antituberculosis agent-16 shows high Caco-2 permeability. Antituberculosis agent-16 can be used for the research of infection .
    Antituberculosis agent-16
  • HY-164813

    7-Ketocholesteryl-9-carboxynonanoate

    NF-κB Metabolic Disease
    oxLig-1 (7-Ketocholesteryl-9-carboxynonanoate) is the lipid moiety of oxidized low-density lipoprotein (oxLDL) and is a key ligand for β-glycoprotein I (β(2)-GPI). oxLig-1 causes nuclear translocation by activating the NF-κB pathway. oxLig-1 can be used in the study of atherosclerosis (AS) .
    oxLig-1
  • HY-181812

    JNK p38 MAPK Interleukin Related TNF Receptor Inflammation/Immunology
    JNK2/MKK7 PPI-IN-1 is an orally active JNK2 inhibitor with an IC50 of 0.99 μM and a Kd of 81.6 μM. JNK2/MKK7 PPI-IN-1 inhibits JNK2 kinase activity, disrupts JNK2-MKK7 protein-protein interaction, and reduces c-Jun phosphorylation. JNK2/MKK7 PPI-IN-1 inhibits LPS-induced overexpression of inflammatory cytokines IL-6 and TNF-α. JNK2/MKK7 PPI-IN-1 can be used for the research of acute lung injury .
    JNK2/MKK7 PPI-IN-1
  • HY-183688

    Bacterial Phosphatase p38 MAPK ERK Infection
    MptpB-IN-3 is a selective inhibitor of Mycobacterium tuberculosis protein tyrosine phosphatase B (MptpB) with an IC50 of 0.19 μM. MptpB-IN-3 blocks MptpB-mediated inhibition of the macrophage MAPK pathway and restores the phosphorylation levels of Erk1/2 and p38. MptpB-IN-3 exhibits direct anti-tuberculosis activity against Mycobacterium tuberculosis and reduces the Mycobacterium tuberculosis load in mouse macrophages. MptpB-IN-3 can be used for tuberculosis research .
    MptpB-IN-3
  • HY-183296

    NOD-like Receptor (NLR) Interleukin Related Caspase Inflammation/Immunology
    NLRP3-IN-91 is a potent NLRP3 inflammasome inhibitor with a Kd of 558.4 nM. NLRP3-IN-91 directly targets the NLRP3 NACHT domain, blocks inflammasome assembly and activation, and exerts anti-inflammatory effects. NLRP3-IN-91 increases survival time in a murine model of LPS (HY-D1056)-induced sepsis. NLRP3-IN-91 can be used for the research of sepsis .
    NLRP3-IN-91
  • HY-P11759

    Drug Derivative Cancer
    Myr-transportan-Cys is a derivative of the cell-penetrating peptide Transportan (HY-P1732), and its conjugated myristoyl group (Myr) enhances the interaction between the peptide and cell membranes. Myr-transportan-Cys integrates three key delivery functions: nucleic acid condensation, cell penetration, and endosomal escape. Myr-transportan-Cys can form immunostimulatory tandem peptide nanocomplexes (iTPNCs) for encapsulating and delivering immunostimulatory oligonucleotide cargos to tumors .
    Myr-transportan-Cys
  • HY-182380

    STAT NOD-like Receptor (NLR) Apoptosis Others Neurological Disease Inflammation/Immunology Cancer
    ODZ10117 is a STAT3 and NLRP3 inhibitor with a human STAT3 SH2 domain IC50 of 7.5 μM. ODZ10117 binds to the STAT3 SH2 domain, suppressing tyrosine phosphorylation, dimerization, nuclear translocation, and transcriptional activity. ODZ10117 binds to NLRP3, impairs NEK7 interaction, prevents inflammasome formation, and inhibits caspase-1 and IL-1β cleavage.ODZ10117 reduces MSU (HY-B2130A)-induced IL-1β release, lowers LPS (HY-D1056)-induced sepsis mortality, and exhibits anti-inflammatory effects. ODZ10117 induces apoptosis, suppresses breast cancer cell migration and invasion, reduces tumor growth and lung metastasis, and extends survival in breast cancer models. ODZ10117 can be used for the research of Monosodium urate (HY-B2130A)-induced peritonitis, LPS-induced sepsis, breast cancer, glioblastoma, and Alzheimer's disease .
    ODZ10117
  • HY-P992379

    BAG3-H2L4

    Bcl-2 Family Cancer
    IB001 is a humanized anti-BAG3 antibody that inhibits BAG3, with a KD value of 14.4 nM for human BAG3. IB001 blocks BAG3-dependent monocyte/macrophage activation, interferes with the interaction between BAG3 and IFITM-2, and disrupts tumor microenvironment signaling pathways. IB001 inhibits tumor growth, reduces α-SMA-positive fibroblasts, and blocks BAG3-dependent IL-6 release. IB001 accumulates in a time-dependent manner in pancreatic ductal adenocarcinoma tumors. IB001 can be used for research related to pancreatic ductal adenocarcinoma .
    IB001

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