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NF-κB 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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6-Methoxyflavone (Standard)
0 ImagesCat. No.: HY-W097625RCAS No.: 26964-24-96-Methoxyflavone (Standard) is the analytical standard of 6-Methoxyflavone (HY-W097625). This product is intended for research and analytical applications. 6-Methoxyflavone is an orally active methoxyflavone. 6-Methoxyflavone suppresses neuroinflammation in microglia through the inhibition of TLR4/MyD88/p38 MAPK/NF-κB dependent pathways and the activation of HO-1/NQO-1 signaling. 6-Methoxyflavone induces S-phase arrest through the CCNA2/CDK2/p21CIP1 signaling pathway and activates the PERK/EIF2a/ATF4/CHOP pathway in HeLa cells. 6-Methoxyflavone acts as a Flumazenil (HY-B0009)-insensitive positive allosteric modulator at human recombinant α1β2γ2L and α2β2γ2L GABAα receptors. 6-Methoxyflavone inhibits NFAT Translocation into the nucleus and suppresses T cell activation. 6-Methoxyflavone partially restores chronic ethanol-induced behavioral deficits in mice. 6-Methoxyflavone antagonizes chronic constriction injury and diabetes associated neuropathic nociception expression. 6-Methoxyflavone can be used for the study of cancer, inflammation and neurological diseases. -
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Fluorofenidone (Standard)
0 ImagesFluorofenidone (Standard) is the analytical standard of Fluorofenidone (AKF-PD) (HY-121246). This product is intended for research and analytical applications. Fluorofenidone is an orally active compound with anti-fibrotic, antioxidant, and anti-inflammatory pharmacological effects. Fluorofenidone downregulates the expression of ACSL4, upregulates GPX4 expression and inhibits the NF-κB signaling pathway to alleviate inflammation and fibrosis. Fluorofenidone ameliorates cholestasis and fibrosis by inhibiting hepatic Erk/-Egr-1 signaling and Tgfβ1/Smad pathway in mice. Fluorofenidone demonstrates protective effects against chronic lung injury in mice. Fluorofenidone can be used for the study of chronic obstructive pulmonary disease (COPD), pulmonary interstitial fibrosis (PIF) and non-small cell lung cancer (NSCLC). -
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TLR4-IN-2
0 ImagesCat. No.: HY-173388CAS No.: 1019984-44-1TLR4-IN-2 (Compound Racemic-11k) is inhibitors of TLR4, JNK, and NF-κB. TLR4-IN-2 inhibits NO production in LPS-stimulated RAW264.7 cells with an IC50 value of 23.2 µM. TLR4-IN-2 exerts anti-inflammatory activity by inhibiting TLR4 expression, reducing JNK phosphorylation, thereby suppressing the activation of NF-κB, blocking the transcription of inflammation-related genes, reducing the expression of iNOS and COX-2, and decreasing the production of inflammatory mediators such as NO, PGE 2, and TNF-α. TLR4-IN-2 is promising for research of inflammatory diseases, such as rheumatoid arthritis and various inflammatory disorders. -
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SP-100030 (Standard)
0 ImagesCat. No.: HY-110177RCAS No.: 154563-54-9SP-100030 (Standard) is the analytical standard of SP-100030 (HY-110177). This product is intended for research and analytical applications. SP-100030 is a potent NF-κB and activator protein-1 (AP-1) double inhibitor (IC50s=50 and 50 nM, respectively). SP-100030 inhibits IL-2, IL-8, and TNF-alpha production in Jurkat and other T cell lines. SP-100030 decreases murine collagen-induced arthritis (CIA). -
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Bruceoside B
0 ImagesCat. No.: HY-N20733CAS No.: 69687-69-0Bruceoside B is a PI3K/Akt/NF-κB inhibitor. Bruceoside B reduces LPS (HY-D1056)-induced nitric oxide release and the secretion of TNF-α, IL-6 and IL-1β, and decreases the activation level of apoptosis. Bruceoside B inhibits the replication, coat protein accumulation and local lesion formation of tobacco mosaic virus (TMV), and enhances the anti-infection ability of plants. Bruceoside B can be used in studies related to acute lung injury and tobacco mosaic virus infection. -
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Swertianolin (Standard)
0 ImagesCat. No.: HY-N2192RCAS No.: 23445-00-3Swertianolin (Standard) is the analytical standard of Swertianolin (HY-N2192). This product is intended for research and analytical applications. Swertianolin is a xanthone glycoside. Swertianolin can be isolated from plants of the Gentianaceae family (e.g., Gentiana campestris and Swertia punicea). Swertianolin inhibits p38 phosphorylation and NF-κB activation, and reduces NO and ROS production. Swertianolin exhibits anti-Helicobacter pylori activity with an IC50 of 6.1 μM and a minimum bactericidal concentration of 91.7 μM. Swertianolin modulates immune function in sepsis. Swertianolin is useful in the research of diseases such as Alzheimer's disease, hepatitis B, Helicobacter pylori infection, and sepsis. -
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2,4′-Dihydroxybenzophenone (Standard)
0 ImagesCat. No.: HY-W014223RCAS No.: 131-56-6Synonyms: Ultraviolet absorber UV-0 (Standard)2,4′-Dihydroxybenzophenone (Standard) is the analytical standard of 2,4′-Dihydroxybenzophenone. This product is intended for research and analytical applications. 2,4′-Dihydroxybenzophenone (Ultraviolet absorber UV-0) occupies the hydrophobic pocket of MD2 and blocks the dimerization of TLR4. 2,4′-Dihydroxybenzophenone inhibits the LPS induced mtROS production, and LPS induced inflammatory response by downregulating pro-inflammatory mediators and decreasing the expression of MyD88, p-IRAK4, and NF-κB. 2,4′-Dihydroxybenzophenone is also a UV absorber. -
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GTCpFE
0 ImagesCat. No.: HY-164480CAS No.: 1588866-45-8GTCpFE inhibits IKKα/β in the NF-κB pathway with anti-inflammatory activities and blocks p65 nuclear entry, which consists of Dimethyl fumarate (DMF) (HY-17363) linked to Aspirin (ASA) (HY-14654). GTCpFE exhibits selective anti-cancer stem-like cell (CSC) activity by reducing mammosphere growth and the CD44+ CD24- immunophenotype. GTCpFE inhibits breast cancer stem cells, an important NFκB- and PGE2-dependent phenotype in aggressive cancers. -
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Zaluzanin C
0 ImagesCat. No.: HY-N15415CAS No.: 16838-87-2Zaluzanin C is a sesquiterpene lactone and antifungal agent. Zaluzanin C is isolated from the leaves of Vernonia arborea. Zaluzanin C inhibits mtROS-mediated NF-κB activity, as well as LPS- and TNF-α-induced mtROS production. Zaluzanin C alleviates mtROS-mediated mitochondrial dysfunction, enhances Mitophagy, and increases the mRNA levels of fatty acid oxidation genes and mitochondrial biogenesis factors. Zaluzanin C inhibits the formation of advanced glycation end products and α-glucosidase activity. Zaluzanin C improves intracellular lipid accumulation. Zaluzanin C exhibits anti-inflammatory, antioxidant, antifungal, anticancer and pro-osteogenic activities. Zaluzanin C can be used in studies related to non-alcoholic fatty liver disease and obesity. -
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Monotropein (Standard)
0 ImagesMonotropein (Standard) is the analytical standard of Monotropein. This product is intended for research and analytical applications. Monotropein is an iridoid glycoside that can be isolated from the roots of Morinda officinalis. Monotropein inhibits the expression of inflammatory mediators in dextran sulfate sodium (DSS)-induced colitis mouse model. Monotropein exerts protective effects against IL-1β-induced apoptosis and catabolic responses on osteoarthritis chondrocytes. Monotropein has cartilage protective activity. Monotropein can alleviate Cisplatin (HY-17394)-induced acute kidney injury by inhibiting oxidative damage, inflammation and apoptosis through activation of Nrf2/HO-1 pathway and inhibition of NF-κB signaling. Monotropein can be studied in research for osteoarthritis, acute kidney injury and acute lung injury. -
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SR12460
0 ImagesCat. No.: HY-124578CAS No.: 2055101-66-9SR12460 is a NEMO-binding domain mimetic and an inhibitor of the IKKβ-NEMO complex with an IC50 of 11.34 μM. SR12460 disrupts the IKKβ-NEMO interaction, thereby inhibiting NF-κB activation, including TNF-α- and LPS-induced NF-κB activation. SR12460 inhibits LPS-induced acute lung inflammation in mice and alleviates inflammatory infiltration, necrosis, and muscle degeneration in a mouse model of Duchenne muscular dystrophy. SR12460 is used for research on acute lung inflammation and Duchenne muscular dystrophy. -
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Vamorolone (Standard)
0 ImagesSynonyms: VBP15 (Standard)Vamorolone (Standard) is the analytical standard of Vamorolone. This product is intended for research and analytical applications. -
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Recoflavone (Standard)
0 ImagesCat. No.: HY-106449RCAS No.: 203191-10-0Synonyms: DA-6034 free acid (Standard)Recoflavone (Standard) is the analytical standard of Recoflavone (HY-106449). This product is intended for research and analytical applications. Recoflavone (DA-6034 (free acid)), a synthetic derivative of the flavonoid Eupatilin (HY-N0783), is orally active. Recoflavone can inhibit the NF-κB pathway and induce [Ca(2+)]i increase in epithelial cells. Recoflavone exhibits activities such as anti-inflammation, anti-tumor effects, protection of gastric and intestinal mucosa, and promotion of secretion in the ocular surface and salivary glands. Recoflavone can be used for the research of diseases such as dry eye, gastric injury, and intestinal injury. -
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Ecliptasaponin A (Standard)
0 ImagesCat. No.: HY-N1508RCAS No.: 78285-90-2Ecliptasaponin A (Standard) is the analytical standard for Ecliptasaponin A (HY-N1508). Ecliptasaponin A is an orally active pentacyclic triterpenoid saponin. Ecliptasaponin A exerts anti-tumor activity by activating ASK1/JNK pathway, inducing apoptosis and autophagy in lung cancer cells. Ecliptasaponin A exerts anti-inflammatory/anti-fibrotic effects and protects the cardiovascular system by inhibiting the HMGB1/TLR4/NF-κB pathway, and the expression of COX-2 and MMP-9. Ecliptasaponin A can enhance SOD activity, reduce MDA levels, and alleviate oxidative stress damage. Ecliptasaponin A exerts chondroprotective effects by inhibiting the expression of MMP13 and regulating inflammatory factors. Ecliptasaponin A improves ovarian function and regulates sex hormones by upregulating the expression of ESR1 receptors. -
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Xanthine oxidase-IN-21
0 ImagesCat. No.: HY-180271Xanthine oxidase-IN-21, a Genipin (HY-17389) derivative, is an orally active mixed competitive xanthine oxidase (XOD) inhibitor with an IC50 of 0.68 μM. Xanthine oxidase-IN-21 reduces renal fibrosis by decreasing α-SMA expression and suppresses pro-inflammatory cytokines IL-1β, IL-6, and TNF-α through NF-κB pathway regulation. Xanthine oxidase-IN-21 also inhibits URAT1 and GLUT9 expression, promoting uric acid excretion and lowering serum uric acid levels. Xanthine oxidase-IN-21 shows significantly hepatorenal protection activity. Xanthine oxidase-IN-21 can be used for the research of hyperuricemia. -
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4-Methoxycinnamic acid ethyl ester
0 Images4-Methoxycinnamic acid ethyl ester (Ethyl p-methoxycinnamate) is an orally active natural compound found. 4-Methoxycinnamic acid ethyl ester exerts anti-inflammatory effects by inhibiting cyclooxygenase (COX-1 (IC50 = 1.12 μM) and COX-2 (IC50 = 0.83 μM)), NF-κB (IC50 = 88.7 μM) and cytokine production (TNF-α (IC50 = 96.84 μg/mL) and IL-1β (IC50 = 166.4 μg/mL)). 4-Methoxycinnamic acid ethyl ester inhibits tumor cell proliferation, migration and cancer metabolism and induces apoptosis.4-Methoxycinnamic acid ethyl ester inhibits VEGF expression, thereby inhibiting angiogenesis. 4-Methoxycinnamic acid ethyl ester has a significant inhibitory effect on dengue virus and Mycobacterium tuberculosis. 4-Methoxycinnamic acid ethyl ester has analgesic effects in rats. -
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Benzoylpaeoniflorin (Standard)
0 ImagesCat. No.: HY-N0852RCAS No.: 38642-49-8Benzoylpaeoniflorin (Standard) is an analytical standard for Benzoylpaeoniflorin (HY-N0852). This product is intended for research and analytical applications. Benzoylpaeoniflorin is an orally active monoterpene glycoside compound. Benzoylpaeoniflorin exerts anti-inflammatory, anti-allergic, psoriasis-improving and sepsis-improving effects by inhibiting signaling pathways such as TNF/NF-κB and MAPK, as well as regulating immune homeostasis. Benzoylpaeoniflorin can be used in research related to immune, allergic and inflammatory diseases. -
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Rubiadin (Standard)
0 ImagesRubiadin (Standard) is the analytical standard of Rubiadin (HY-N0444). This product is intended for research and analytical applications. Rubiadin is an orally active free radical scavenger that inhibits the activation of the NF-κB pathway. Rubiadin inhibits osteoclast formation, bone resorption, lipid peroxidation, HBV DNA replication and cancer cell proliferation; reduces pro-inflammatory cytokine levels; induces cancer cell apoptosis; and possesses antifungal, antimalarial, antibacterial and anticonvulsant activities. Rubiadin can be used in the research of osteoporosis, acute inflammation, chronic inflammation, carbon tetrachloride-induced liver injury, Alzheimer's disease, breast cancer, iron overload disorders, hepatitis B virus infection, colon cancer, liver cancer, T-lymphocytic leukemia, cervical cancer, diabetic nephropathy, epileptic seizures, fungal infections, malaria and bacterial infections. -
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4'-Methoxyresveratrol (Standard)
0 ImagesCat. No.: HY-N2485RCAS No.: 33626-08-3Synonyms: 4'-O-Methylresveratrol (Standard)4'-Methoxyresveratrol (Standard) is the analytical standard of 4'-Methoxyresveratrol. This product is intended for research and analytical applications. 4'-Methoxyresveratrol (4'-O-Methylresveratrol) is a polyphenol derived from Dipterocarpaceae, with antiandrogenic, antifungal and anti-inflammatory activities. 4'-Methoxyresveratrol alleviates AGE-induced inflammation through suppressing RAGE-mediated MAPK/NF-κB signaling pathway and NLRP3 inflammasome activation. -
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Lercanidipine hydrochloride (Standard)
0 ImagesLercanidipine (hydrochloride) (Standard) is the analytical standard of Lercanidipine (hydrochloride). This product is intended for research and analytical applications. Lercanidipine is a third-generation, lipophilic, brain-penetrant, vascular-selective and orally active dihydropyridine-calcium channel blocker with a pIC50 of 7.74 (converts from μM). Lercanidipine has long lasting antihypertensive action as well as reno- and neuro-protective effect. Lercanidipine also shows anti-oxidant, anti-inflammatory and anti-apoptotic properties. Lercanidipine can be used in cardiovascular and neurological research. -
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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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