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NF-κB
Nuclear factor-κB; Nuclear factor-kappaB
NF-κB Isoform Specific Products
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NF-κB Inhibitors
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NF-κB Agonists
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NF-κB Antagonist
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NF-κB Activators
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NF-κB Modulators
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NF-κB Inducers
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NF-κB Ligands
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NF-κB Related Products (1973)
Related Products (1973)
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Antibodies (32)
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NF-κB Signaling Pathway
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NF-κB Isoform Comparison
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L07-2
0 ImagesL07-2 is a TLR7/8 agonist. L07-2 is a linker-toxin building block that can be used to synthesize immunostimulatory antibody conjugates (ISACs) for cancer research. L07-2 can be used to studies related to tumors such as non-small cell lung cancer. -
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(5R)-5-Hydroxytriptolide
0 ImagesSynonyms: PG 701; LLDT-8; 5α-Hydroxytriptolide(5R)-5-Hydroxytriptolide is an extracted compound from Tripterygium, and shows lower cell cytotoxicity and higher immunosuppressive activity. (5R)-5-Hydroxytriptolide can be used for study of rheumatoid arthritis. -
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(±)-Evodiamine
0 Images(±)-Evodiamine is an orally active indoloquinazoline alkaloid composed of equal amounts of enantiomers, with (+)-Evodiamine exerting the primary biological functions. (±)-Evodiamine is a Top1 inhibitor and a TRPV1 receptor agonist. (±)-Evodiamine induces cell cycle arrest and apoptosis by inhibiting Top1 and disrupting Tubulin polymerization, suppresses oncogenic signaling pathways such as NF-κB and Akt, and specifically agonizes TRPV1 receptors to regulate neuropeptide release and energy metabolism. (±)-Evodiamine is used in research on traumatic brain injury, obesity, cancer, neuropathy, dry eye disease, and colitis. -
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- (S)-NIK SMI1
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- (S)-NIK SMI1
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(rac)-Methyl jasmonate (Standard)
0 Images(rac)-Methyl jasmonate (Standard) is the analytical standard of Methyl jasmonate. This product is intended for research and analytical applications. (rac)-Methyl jasmonate is the racemate of Methyl jasmonate (HY-135663). Methyl jasmonate is a phytohormone that regulates the defense response of plants under biotic and biotic stress through jasmonate signaling pathway. Methyl jasmonate inhibits the activation of NF-κB signaling pathway. Methyl jasmonate can promote the mitochondrial ROS production, but also scavenges free radicals and reduces the oxidative stress. Methyl jasmonate exhibits anti-inflammatory, antitumor, anticonvulsant, antinociceptive and sedative activities. -
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Gomisin M2
0 ImagesSynonyms: (+)-Gomisin M2Gomisin M2 ((+)-Gomisin M2) is a lignan isolated from the fruits of Schisandra chinensis with oral availability. Gomisin M2 inhibits STAT1 phosphorylation as well as NF-κB p65 phosphorylation and nuclear translocation. Gomisin M2 reduces inflammatory cell infiltration, cytokine and chemokine expression, and serum IgE and IgG2a levels. Gomisin M2 inhibits MAPK phosphorylation, IκBα degradation, and NF-κB nuclear translocation in keratinocytes. Gomisin M2 induces apoptosis, mitochondrial membrane potential disruption, and cytochrome c release, and inhibits DNA synthesis and mammosphere formation through downregulation of Wnt/β-catenin. Gomisin M2 can be used for research on atopic dermatitis, psoriasis, breast cancer, liver injury, and multidrug-resistant mammary adenocarcinoma. -
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α-Lipoic Acid (Standard)
0 ImagesSynonyms: Thioctic acid (Standard); (±)-α-Lipoic acid (Standard); DL-α-Lipoic acid (Standard)α-Lipoic Acid (Standard) is the analytical standard of α-Lipoic Acid. This product is intended for research and analytical applications. α-Lipoic Acid (Thioctic acid) is an antioxidant, which is an essential cofactor of mitochondrial enzyme complexes. α-Lipoic Acid inhibits NF-κB-dependent HIV-1 LTR activation. α-Lipoic Acid induces endoplasmic reticulum (ER) stress-mediated apoptosis in hepatoma cells. α-Lipoic Acid can be used with CPUL1 (HY-151802) to construct the self-assembled nanoaggregate CPUL1-LA NA, which has improved antitumor efficacy than CPUL1. -
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PROTAC STING degrader-4
0 ImagesCat. No.: HY-176180Purity: 98.96%PROTAC STING degrader-4 is a nitro-free covalent STING PROTAC degrader with a DC50 of 3.23 μM. PROTAC STING degrader-4 effectively inhibits STING as well as its downstream signaling, such as p-TBK1 and p-NF-κB (p-P65), and immune-inflammatory cytokines. PROTAC STING degrader-4 mitigates kidney and blood inflammation in Cisplatin (HY-17394)-induced acute kidney injury (AKI) mice model. -
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Continentalic acid
0 ImagesContinentalic acid is a diterpenoid organic acid. Continentalic acid exhibits multiple activities including anti-inflammatory, antioxidant, neuroprotective, antibacterial and antitumor effects. Continentalic acid alleviates oxidative stress, reduces pro-inflammatory cytokine production, inhibits MAPK phosphorylation and neutrophil infiltration, and induces growth inhibition and apoptosis of cancer cells. Continentalic acid can be used in research related to traumatic brain injury, cancer, inflammation and infections. -
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Arjunolic acid
0 ImagesArjunolic acid is an orally active, multifunctional bioactive compound. Arjunolic acid exhibits free radical scavenging activity, as well as fungal and bacterial activities. Arjunolic acid induces apoptosis (Apoptosis) in various cancer cells. Arjunolic acid protects hepatocytes against induced oxidative stress and apoptosis by reducing reactive oxygen species and inhibiting NF-κB activation. Arjunolic acid regulates pancreatic dysfunction in type 2 diabetic rats by blocking the activation of the TLR-4/MyD88 and canonical Wnt pathways. Arjunolic acid inhibits neuroinflammation and ameliorates depressive behaviors via the SIRT1/AMPK/Notch1 signaling pathway in microglia. Arjunolic acid improves Crohn's disease-like colitis by restoring gut microbiota composition and inhibiting TLR4 signaling. Arjunolic acid suppresses osteosarcoma progression by inhibiting Wnt3a-mediated M2 polarization of macrophages. Arjunolic acid ameliorates diabetic retinopathy via the autophagy pathway regulated by AMPK/mTOR/HO-1. Arjunolic acid is applicable to research related to type 2 diabetes, organ toxicity, depression, Crohn's disease, osteosarcoma, diabetic retinopathy, and testicular dysfunction. -
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Salvianolic acid D
0 ImagesCat. No.: HY-N0320CAS No.: 142998-47-8Salvianolic acid D is a depside. Salvianolic acid D can be isolated from Salvia miltiorrhiza (Danshen). Salvianolic acid D promotes the expression of Bcl-2, and inhibits the expressions of Bax, Cleaved caspase-3 and -9. Salvianolic acid D reduces the expression levels of TLR4, MyD88 and TRAF6 proteins both in vitro and in vivo, and significantly inhibits the nuclear translocation of NF-κB. Salvianolic acid D inhibits the cytoplasmic translocation of HMGB1. Salvianolic acid D suppresses inflammatory responses and alleviates cerebral ischemia-reperfusion injury. Salvianolic acid D serves as a potential antiplatelet active component. -
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Myricanol
0 ImagesMyricanol is a diarylheptanoid and a Nampt activator. Myricanol exerts anti-inflammatory effects and alleviates glucocorticoid-induced muscle atrophy by increasing Sirtuin 1 (SIRT1) and PRDX5 activities while regulating inflammatory factors. Myricanol exhibits growth inhibition and induces apoptosis in human lung adenocarcinoma A549 cells. Myricanol promotes autophagy-mediated clearance of microtubule-associated protein tau to exert neuroprotective effects. Myricanol protects cardiovascular function by inhibiting PDGFRβ and NF-κB signaling pathways. Myricanol activates mitochondrial transcription factor A (TFAM) expression to exert anti-renal fibrosis effects. Myricanol improves insulin resistance through AMPK activation. -
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FKK6
0 ImagesFKK6 is a selective agonist for pregnane X receptor (PXR) with an EC50 of 1.2 µM. FKK6 exhibits good affinity with plasma proteins, and good metabolic metabolism in human microsomes. FKK6 inhibits PXR-related NF-κB signaling pathway, inhibits the expression of inflammatory factors, and exhibits anti-inflammatory activity against DSS (HY-116282)-induced colitis in mouse model. -
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Hecogenin acetate
0 ImagesHecogenin acetate is an orally active steroid saponin aglycone with extensive biological activities. Hecogenin acetate inhibits the phosphorylation of NF-κB and p38 MAPK signaling pathways, antagonizes TRPA1/TRPM8 channels, inhibits the production of pro-inflammatory cytokines, and has anti-inflammatory and analgesic effects. Hecogenin acetate inhibits the production of ROS and the activation of NLRP3 inflammasome; downregulates the expression of MMP-2, and has neuroprotective and anti-tumor activities. Hecogenin acetate enhances gastric mucosal defense and promotes ulcer healing. Hecogenin acetate can be used in combination with certain antibiotics to regulate bacterial efflux pumps and restore antibiotic sensitivity. -
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- Niloticin
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MMPP
0 ImagesMMPP is an orally active inhibitor of STAT3 and VEGFR2, as well as an activator of PPARγ. MMPP blocks the VEGFR2/AKT/ERK/NF-κB signaling pathway to inhibit angiogenesis. MMPP inhibits ferroptosis and inflammation, and alleviates sepsis-induced myocardial injury. MMPP induces G1-phase cell cycle arrest and apoptosis, and inhibits the growth of non-small cell lung cancer (NSCLC) and solid tumors. MMPP promotes adipogenesis and glucose uptake. MMPP can be used in research related to NSCLC, type 2 diabetes and myocardial injury. -
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- ITF 3756
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Vitisin A
0 ImagesCat. No.: HY-142026CAS No.: 142449-89-6Synonyms: (+)-Vitisin AVitisin A ((+)-Vitisin A) is an orally active natural product with multiple pharmacological activities including anti-inflammatory, anti-tumor, anti-oxidant, anti-pathogenic microorganism, hypoglycemic and lipid-regulating, anti-osteoporotic, neuroprotective and cardiovascular protective effects. Vitisin A exhibits inhibitory effects on human AChE and MAO-B with IC50 values of 1.29 µM and 4.94 µM, respectively. Vitisin A inhibits the ERK, MAPK, NF-κB, STAT1, HMGCR and TRAF6 pathways, downregulates the related phosphorylation and protein expression, while activates the Nrf2/HO-1 pathway and upregulates p21 expression. Vitisin A induces tumor cell apoptosis and cell cycle arrest, inhibits adipogenesis and lipid accumulation, while alleviates oxidative stress, suppresses inflammatory responses, blocks hepatic fibrosis, Cuproptosis and cholesterol synthesis, and increases the expression levels of central BDNF and TrkB. Vitisin A can be used in the research of tumors, infectious diseases, metabolic diseases, bone and joint diseases, liver diseases, skin injuries, as well as neurodegenerative and cognitive dysfunction-related diseases. -
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ApoA-I mimetic peptide 5A
0 ImagesCat. No.: HY-P10551ApoA-I mimetic peptide 5A is a synthetic peptide molecule designed based on the structure and function of naturally occurring apolipoprotein A-I (Apo A-I). ApoA-I mimetic peptide 5A can promote the efflux of cholesterol from cells and help reduce the accumulation of cholesterol in cells. ApoA-I mimetic peptide 5A also shows anti-inflammatory activity and can reduce inflammatory markers in blood and tissues. ApoA-I mimetic peptide 5A can be used in the study of cardiovascular diseases. -
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NF-κB transcription factors are critical regulators of immunity, stress responses, apoptosis and differentiation. In mammals, there are five members of the transcription factor NF-κB family: RELA (p65), RELB and c-REL, and the precursor proteins NF-κB1 (p105) and NF-κB2 (p100), which are processed into p50 and p52, respectively. NF-κB transcription factors bind as dimers to κB sites in promoters and enhancers of a variety of genes and induce or repress transcription. NF-κB activation occurs via two major signaling pathways: the canonical and the non-canonical NF-κB signaling pathways[1].
The canonical NF-κB pathway is triggered by signals from a large variety of immune receptors, such as TNFR, TLR, and IL-1R, which activate TAK1. TAK1 then activates IκB kinase (IKK) complex, composed of catalytic (IKKα and IKKβ) and regulatory (NEMO) subunits, via phosphorylation of IKKβ. Upon stimulation, the IKK complex, largely through IKKβ, phosphorylates members of the inhibitor of κB (IκB) family, such as IκBα and the IκB-like molecule p105, which sequester NF-κB members in the cytoplasm. IκBα associates with dimers of p50 and members of the REL family (RELA or c-REL), whereas p105 associates with p50 or REL (RELA or c-REL). Upon phosphorylation by IKK, IκBα and p105 are degradated in the proteasome, resulting in the nuclear translocation of canonical NF-κB family members, which bind to specific DNA elements, in the form of various dimeric complexes, including RELA-p50, c-REL-p50, and p50-p50. Atypical, IKK-independent pathways of NF-κB induction also provide mechanisms to integrate parallel signaling pathways to increase NF-κB activity, such as hypoxia, UV and genotoxic stress.
The non-canonical NF-κB pathway is induced by certain TNF superfamily members, such as CD40L, BAFF and lymphotoxin-β (LT-β), which stimulates the recruitment of TRAF2, TRAF3, cIAP1/2 to the receptor complex. Activated cIAP mediates K48 ubiquitylation and proteasomal degradation of TRAF3, resulting in stabilization and accumulation of the NFκB-inducing kinase (NIK). NIK phosphorylates and activates IKKα, which in turn phosphorylates p100, triggering p100 processing, and leading to the generation of p52 and the nuclear translocation of p52 and RELB[2][3].
Reference:
[1]. Oeckinghaus A, et al. The NF-kappaB family of transcription factors and its regulation.Cold Spring Harb Perspect Biol. 2009 Oct;1(4):a000034.
[2]. Taniguchi K, et al. NF-κB, inflammation, immunity and cancer: coming of age. Nat Rev Immunol. 2018 May;18(5):309-324.
[3]. Perkins ND,et al. Integrating cell-signalling pathways with NF-kappaB and IKK function. Nat Rev Mol Cell Biol. 2007 Jan;8(1):49-62.
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