NF-κB

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  1. Anti-Inflammatory Agent

    Catalpalactone is an anti-inflammatory agent that functions by inhibiting LPS-induced nitric oxide production and the expression of inducible nitric oxide synthase (iNOS) in RAW264.7 macrophage cells. Additionally, it suppresses the activation of key signaling pathways, including IRF3, NF-κB, and IFN-β/STAT-1. Furthermore, Catalpalactone demonstrates the ability to reduce dopamine biosynthesis through the inhibition of tyrosine hydroxylase (TH) and aromatic L-amino acid decarboxylase (AADC) activities, making it valuable for investigations into inflammatory processes and neurochemical pathways.
  2. Triterpenoid Saponin

    Elatoside F is a triterpenoid saponin that exhibits significant anti-inflammatory activity. It effectively inhibits lipopolysaccharide-induced production of nitric oxide and the activation of the nuclear factor NF-κB. Elatoside F can be isolated in a single step from the plant Aralia elata, making it a valuable compound for research into inflammation and related pathways.
  3. NF-κB Inhibitor

    Teuclatriol is an NF-κB inhibitor derived from Salvia mirzayanii, exhibiting notable anti-inflammatory properties. It effectively inhibits TNF-α secretion in a dose-dependent manner, making it valuable for research involving inflammatory pathways and the modulation of NF-κB activity. This compound is essential for studies focused on chronic inflammation, autoimmune diseases, and related therapeutic developments.
  4. NF-κB Inhibitor

    NF-κB-IN-13 is a selective inhibitor of the NF-κB signaling pathway. This compound effectively suppresses lipopolysaccharide (LPS)-induced NF-κB activation and nitric oxide (NO) production in RAW264.7 macrophages, demonstrating its potential anti-inflammatory properties. NF-κB-IN-13 is valuable for research applications focusing on inflammation, immune response modulation, and potential therapeutic strategies for related diseases.
  5. NF-κB Inhibitor

    APC0576 is an NF-κB inhibitor that effectively disrupts the activation of the NF-κB signaling pathway, demonstrating an IC50 of 1.0 μM for β-galactosidase. This compound significantly inhibits the release of IL-1-induced chemokines, making it a valuable tool for research related to diseases involving pathological endothelial cell activation. Its targeted action allows for the exploration of therapeutic strategies aimed at modulating inflammatory responses.
  6. NF-κB Inhibitor

    CAY10657 is a potent NF-κB inhibitor that effectively downregulates the expression of proinflammatory cytokines, including IL-6, and chemokines such as MCP-1. This compound demonstrates significant anti-inflammatory activity, particularly in the context of meningitis induced by Streptococcus suis. CAY10657 is a valuable tool for researchers investigating inflammation and associated signaling pathways.
  7. NF-κB Inhibitor

    Icariside F2 is a selective NF-κB inhibitor with an IC50 value of 16.25 μM. This aromatic glycoside, extracted from the leaves of E. ulmoides Oliver, exhibits significant anti-inflammatory activity. It is utilized in biomedical research to explore therapeutic strategies for conditions mediated by NF-κB signaling.
  8. Stable Isotope

    TML-6-d3 is a deuterated derivative of the curcumin compound TML-6, demonstrating stability as a labeled isotope. This reagent primarily inhibits the synthesis of β-amyloid precursor protein and β-amyloid (Aβ), contributing to research in neurodegenerative diseases. TML-6-d3 upregulates ApoE, suppresses NF-κB and mTOR signaling pathways, and enhances activities related to neuroprotection. It serves as a valuable tool for studying the molecular mechanisms of Alzheimer's disease and related disorders.
  9. ROR-γ Inhibitor

    CID 7309015 is a selective inhibitor of retinoic acid-related orphan receptor gamma (ROR-γ). This compound demonstrates significant potential in modulating inflammatory pathways, particularly in the context of NF-κB signaling and inflammatory arthritis research. CID 7309015 serves as a valuable tool for investigating the roles of ROR-γ in immune response and inflammatory diseases.
  10. Stable Isotope

    Ceramide 3-d3 (N-Stearoyl phytosphingosine-d3) is a deuterated form of Ceramide 3, a bioactive sphingolipid notably present in the stratum corneum of Saccharomyces cerevisiae, wheat grain, and mammalian epidermis. With a phytosphingosine backbone linked to a C18 fatty acid chain, Ceramide 3-d3 plays a crucial role in regulating apoptosis and cell differentiation, while also supporting smooth muscle cell proliferation and inhibiting the mitochondrial respiratory chain. Furthermore, it suppresses the expression of pro-inflammatory cytokines IL-4 and TNF-α, as well as transcription factors c-Jun and NF-κB in histone-stimulated mouse skin tissue, making it valuable for research in skin health and inflammation.
  11. Ophthalmic Preservative

    Polyquaternium-1 (Polidronium chloride; PQ-1) is an effective ophthalmic preservative with antimicrobial properties, which activates the NF-κB signaling pathway. It acts by targeting bacterial cell membranes, utilizing its polycationic nature to disrupt membrane integrity, inducing potassium ion leakage, and resulting in bacterial cell death. At a concentration of 0.001%, Polyquaternium-1 exhibits low toxicity towards mammalian cells, making it suitable for various formulations including glaucoma eye drops, artificial tears, and contact lens solutions. Its use helps to mitigate the ocular surface toxicity associated with conventional preservatives like benzalkonium chloride.
  12. Biochemical Assay Reagent

    Ceramide 3, a bioactive sphingolipid, plays a crucial role in cellular processes by regulating apoptosis, cell differentiation, and the proliferation of smooth muscle cells. This compound functions by inhibiting the mitochondrial respiratory chain and suppressing the expression of allergic cytokines such as IL-4 and TNF-α, as well as transcription factors like c-Jun and NF-κB in histone-stimulated mouse skin tissue. Ceramide 3 is utilized in various biochemical assays and has applications in dermatological research, particularly in studies related to skin barrier function and hydration.
  13. Stable Isotope

    17-Epiestriol-d5-1 is a deuterated form of 17-Epiestriol, a selective estrogen receptor (ER) β agonist. This compound functions as an effective inhibitor of vascular cell adhesion molecule VCAM-1 expression induced by tumor necrosis factor α (TNFα) and prevents the nuclear translocation of NF-κB. Additionally, 17-Epiestriol-d5-1 promotes the expression of endothelial nitric oxide synthase at both mRNA and protein levels. It serves as a valuable tool in research exploring estrogen receptor signaling and its implications in cardiovascular and inflammatory responses.
  14. Estrogen Receptor Agonist

    Dehydrodiconiferyl alcohol is an estrogen receptor agonist that plays a significant role in promoting BMP-2-induced osteoblastogenesis. Additionally, this compound exhibits anti-inflammatory properties by inactivating NF-κB pathways. It is relevant for research in bone metabolism and inflammatory response modulation.
  15. ER Agonist

    17-Epiestriol is an estrogen metabolite that acts as a selective estrogen receptor (ER) β agonist. It is known to inhibit the mRNA and protein expression of vascular cell adhesion molecule VCAM-1 induced by tumor necrosis factor α (TNFα), thereby preventing NF-κB migration to the nucleus. Additionally, 17-epiestriol promotes the expression of endothelial nitric oxide synthase at both mRNA and protein levels. This compound is useful in research related to vascular inflammation and endothelial function.
  16. Triterpene

    Cucurbitacin V is a natural triterpene that primarily targets the signaling pathways involving the NF-κB pathway and various protein kinases. It exhibits significant anti-inflammatory, anticancer, and antiproliferative activities, making it a valuable compound in cancer research and the study of inflammatory diseases. This triterpene is often used to investigate the mechanisms of apoptosis and cell cycle regulation in various cancer cell lines.
  17. Anti-Heart Failure Compound

    HHQ16 is an orally active compound designed to combat heart failure. Its primary mechanism involves the targeted degradation of lnc4012 and lnc9456, which leads to the reversal of infarction-induced hypertrophy. By antagonizing the effects on the G3BP2/NF-κB signaling pathway, HHQ16 demonstrates significant potential for research applications related to myocardial dysfunction and heart failure therapeutics.
  18. Methyl Nervonate

    Methyl cis-15-tetracosenoate, also known as methyl nervonate, is the methyl ester of nervonic acid, a monounsaturated fatty acid with significant biological activity. It is known to inhibit the NF-κB signaling pathway, demonstrating anti-inflammatory properties. This compound is valuable in research related to neurodegenerative diseases, aiding in the understanding of cellular mechanisms and potential therapeutic approaches.
  19. Drug Derivative

    (Z)-Onjisaponin B is a drug derivative that primarily targets the inhibition of NF-κB p65. This natural product, derived from Polygala tenuifolia, exhibits significant biological activity by enhancing autophagy and promoting the degradation of mutant α-synuclein and huntingtin. Additionally, (Z)-Onjisaponin B reduces β-amyloid (Aβ) production and mitigates radiation-induced cell apoptosis, while also demonstrating antioxidant and anti-inflammatory properties. Its applications extend to research in neurological diseases and radiation injuries, with the ability of its metabolite, tenuifolin (TF), to penetrate the blood-brain barrier.
  20. Drug Derivative

    (Z)-Neochlorogenic acid is a natural polyphenolic compound that targets inflammatory pathways. It exhibits significant inhibition of pro-inflammatory cytokines TNF-α and IL-1β, along with suppression of iNOS and COX-2 protein expression. Furthermore, (Z)-Neochlorogenic acid downregulates phosphorylated NF-κB p65 and p38 MAPK activation, making it a valuable reagent for research in inflammation and related diseases.
  21. 5-ASA Impurity

    3-Aminosalicylic acid is a key impurity associated with the synthesis of 5-Aminosalicylic acid, a known agonist of PPARγ and an inhibitor of p21-activated kinase 1 (PAK1) and NF-κB. This compound is primarily used in research related to inflammatory bowel diseases such as Crohn's disease and ulcerative proctitis. Its role in modulating these pathways makes it significant for studies focused on therapeutic interventions and drug development in gastrointestinal conditions.
  22. Stable Isotope

    D-Ribose-1,2-13C2 is a stable isotope-labeled form of D-Ribose, serving as a vital component in energy metabolism. It acts as a sugar moiety of ATP and is commonly utilized in metabolic therapy for conditions such as chronic fatigue syndrome and cardiac energy metabolism. Additionally, D-Ribose is involved in protein glycation processes and induces NF-κB-mediated inflammation through a RAGE-dependent mechanism, making it a valuable tool for various biological research applications.
  23. Racemate

    (Rac)-Salvianic acid A is a racemic mixture of the phenolic compound Salvianic acid A, which primarily targets the Nrf2 pathway. It is known to activate Nrf2 and induce the expression of HO-1 while inhibiting the NF-κB pathway. This compound exhibits significant biological activities, including antioxidant, anti-apoptotic, and anti-inflammatory effects, and is relevant for research into conditions such as COVID-19, cardiovascular, and cerebrovascular diseases.
  24. Proteasome Inhibitor

    Gabexate mesylate is a competitive proteasome inhibitor, primarily targeting serine proteinases such as thrombin and Factor Xa. It exhibits diverse biological activity, including anticoagulant effects by modulating thrombin activity and anti-inflammatory properties through the inhibition of NF-κB and proinflammatory cytokines. Gabexate mesylate is commonly utilized in research focused on pancreatitis and disseminated intravascular coagulation, making it a valuable reagent for studies in hemostasis and inflammation.
  25. Bacterial Inhibitor

    Erdosteine functions as a bacterial inhibitor by inhibiting lipopolysaccharide (LPS)-induced activation of NF-κB. This compound exhibits muco-modulatory, anti-bacterial, anti-inflammatory, and antioxidant properties. Erdosteine is primarily utilized in research applications focused on respiratory disorders and inflammation, supporting the study of therapeutic interventions in these areas.
  26. Anti-allergic Agent

    Cimifugin is an anti-allergic agent derived from the herb Cimicifuga racemosa. It exhibits properties that suppress allergic inflammation by modulating key factors derived from epithelial cells and regulating tight junction integrity. Additionally, Cimifugin demonstrates a capacity to reduce the migration and chemotaxis of RAW264.7 macrophage cells while inhibiting the release of inflammatory mediators and the activation of MAPK and NF-κB signaling pathways triggered by LPS. This compound is valuable for research into mechanisms of allergic responses and inflammatory conditions.
  27. Endogenous Metabolite

    Stachydrine hydrochloride is an endogenous metabolite that primarily targets the NF-κB signaling pathway. It exhibits notable anti-hypertrophic activities, making it a candidate for research into therapeutic applications for cardiovascular diseases. Its ability to modulate inflammatory responses may provide valuable insights for studies focused on hypertensive conditions and related cardiovascular disorders.
  28. NO Synthase Inhibitor

    Isoquercitrin is a potent nitric oxide synthase inhibitor with significant antioxidant and anti-inflammatory properties. This naturally occurring polyphenol exerts protective effects against ethanol-induced hepatotoxicity and oxidative stress, primarily through the activation of the Nrf2/ARE signaling pathway. Additionally, Isoquercitrin modulates the expression of nitric oxide synthase 2 (NOS2) via the nuclear factor-κB (NF-κB) regulatory mechanism. Due to its high bioavailability and low toxicity, Isoquercitrin presents potential applications in research on metabolic disorders and the prevention of birth defects in diabetic pregnancies.
  29. Calcium Channel Activator

    Gomisin J is a lignan derived from Schisandra chinensis that primarily acts as a calcium channel activator. It enhances nitric oxide bioavailability through eNOS activation and regulates lipid metabolism via the AMPK pathway. Additionally, Gomisin J exhibits anti-inflammatory effects by inhibiting fetuin-A and NF-κB, while its activation of Nrf2/HO-1 boosts antioxidant capacity. This compound is relevant for studies focused on hypertension, non-alcoholic fatty liver disease, and cerebral ischemia-reperfusion injury.
  30. Tyrosinase Inhibitor

    Benzoyloxypaeoniflorin is a potent tyrosinase inhibitor derived from the root of Paeonia suffruticosa, exhibiting an IC50 value of 0.453 mM against mushroom tyrosinase. Additionally, it functions as an NF-κB inhibitor, contributing to enhanced blood circulation by inhibiting platelet aggregation and blood coagulation. This compound is of significant interest in research applications focused on skin disorders and inflammation.
  31. Anti-inflammatory Agent

    Praeruptorin A is an anti-inflammatory compound derived from Peucedanum praeruptorum. It demonstrates significant anti-inflammatory activity by inhibiting NF-κB activation, which is crucial for mediating inflammatory responses. This compound is valuable in research applications focused on inflammation-related signaling pathways and the development of anti-inflammatory therapies.
  32. NF-κB Inhibitor

    Flaconitine is a potent inhibitor of the NF-κB signaling pathway. This compound has been shown to effectively block the activation of NF-κB, thus modulating inflammatory responses. Flaconitine is widely used in research focused on immunology, cancer biology, and studies involving inflammatory diseases. Its ability to regulate gene expression through NF-κB inhibition makes it a valuable tool for investigating cellular signaling and therapeutic pathways.
  33. SOD Mimetic

    EUK-134 is a synthetic superoxide dismutase (SOD) mimetic with catalase activity, primarily targeting oxidative stress in cellular environments. This compound exhibits mitoprotective antioxidant properties, effectively reducing ischemia-reperfusion-induced damage in rat kidneys. In H9C2 cardiac cells, EUK-134 decreases the expression levels of NF-κB, malondialdehyde (MDA), and protein carbonylation, making it a valuable tool for research on oxidative stress and cellular protection mechanisms.
  34. Endogenous Metabolite

    Myristic acid is a saturated 14-carbon fatty acid that acts as an endogenous metabolite. It exhibits anti-inflammatory activity primarily through the NF-κB signaling pathway. In addition to its anti-inflammatory properties, myristic acid also demonstrates antibacterial and analgesic effects, making it valuable for research in inflammation, immunity, and pain management.
  35. mAChR Inhibitor

    Tolterodine is an mAChR inhibitor that competitively binds to acetylcholine, leading to a reduction in sympathetic excitation and inhibition of involuntary bladder muscle contractions. It is known to restore the Nrf2/NF-κB signaling pathway, providing protection against inflammatory responses and ferroptosis. Additionally, Tolterodine mitigates LPS-induced reactive oxygen species production and lipid oxidation, making it valuable for research in urinary tract infections and overactive bladder conditions.
  36. Glucocorticoid Agonist

    Methylprednisolone succinate sodium is a prodrug of methylprednisolone and acts as a glucocorticoid agonist. It exhibits significant immunosuppressant and anti-inflammatory properties by binding to cytosolic glucocorticoid receptors, which facilitates the modulation of target gene transcription. This compound influences the expression of key proteins such as Bax, Bcl-2, occludin, and ZO-1, while also attenuating TLR4/NF-κB signaling, suppressing proinflammatory cytokine production, and inhibiting immune cell activation. Methylprednisolone succinate sodium is valuable for research related to intracranial hemorrhage, rheumatoid arthritis, multiple sclerosis, and various inflammatory conditions.
  37. Cyclophilin Inhibitor

    RN-0001 is a potent inhibitor of cyclophilins, specifically demonstrating Ki values of 4.1 nM and 12.0 nM against Cyclophilin A (CypA) and Cyclophilin D (CypD), respectively. By directly binding to CypD, RN-0001 effectively inhibits its peptidyl-prolyl cis-trans isomerase activity, preventing mitochondrial permeability transition pore opening. This compound enhances mitochondrial function, diminishes reactive oxygen species (ROS) production, and downregulates lipogenic marker expression. Additionally, RN-0001 inhibits NF-κB p65 nuclear translocation and reduces the release of activated caspase-3 and cytochrome c, making it a valuable tool for investigating alcohol-associated liver disease.
  38. PROTAC IRAK4 Degrader

    PSP-0119 is a highly selective PROTAC degrader targeting IRAK4, demonstrating an IC50 of 2.83 nM. This compound effectively inhibits IRAK4 kinase activity, NF-κB signaling, and IL-1β-induced IRAK4 phosphorylation. Notably, PSP-0119 induces degradation of IRAK4 specifically in FLT3-mutant acute myeloid leukemia (AML) cell lines while sparing FLT3-wild-type AML cells and normal bone marrow. It serves as a valuable tool for research into the mechanisms underlying AML, particularly in targeting aberrant IRAK4 activity.
  39. Isotope-Labeled Compound

    Vanillic acid-13C6 is an isotope-labeled compound targeting metabolic studies and biological research. This stable isotope of vanillic acid, a naturally occurring flavoring agent, is known for its ability to inhibit NF-κB activation, presenting anti-inflammatory and antimicrobial properties. It is widely utilized in biological assays, metabolic tracking, and flavor profiling studies to elucidate biochemical pathways and assess the physiological effects of vanillic acid in various systems.

Items 801-839 of 839

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