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Results for "

neuroinflammatory-in-1

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    22
    TargetMol | Inhibitors_Agonists
  • Peptide Products
    3
    TargetMol | Peptide_Products
  • Natural Products
    9
    TargetMol | Natural_Products
Neuroinflammatory-IN-1
T8168483988-97-0
Neuroinflammatory-IN-1 (Compound 5) is an anti-neuroinflammatory agent that inhibits nitric oxide (NO) production with an IC50 of 65.4 μM [1].
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beta-Asarone
Cis-Isoelemicin, Cis-Isoasarone, Cis-Asarone
T4S19625273-86-9
1. beta-Asarone (Cis-Isoelemicin) may be a potential preventive drug for Alzheimer's disease. 2. Beta-Asarone prevents autophagy and synaptic loss by reducing ROCK expression in SAMP8 mice. 3. The co-administration of beta-Asarone(Cis-Isoasarone) and l-dopa may contribute to the treatment of 6-OHDA-induced damage in rats by inhibiting autophagy activity. 4. Beta-Asarone exhibits anti-inflammatory effects by suppressing the production of pro-inflammatory mediators through NF-κB signaling and the JNK pathways in activated microglial cells and might be developed as a promising candidate to treat various neuroinflammatory diseases.
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Schisandrol B
Gomisin A, TJN-101, Besigomsin, Gamma-Schisandrin, Schizandrol B, Wuweizi alcohol-B
T6S191758546-54-6
1. Schisandrol B (Besigomsin) may exert neuroprotective effects by attenuating the microglia-mediated neuroinflammatory response via inhibiting the TLR4-mediated NF-κB and MAPKs signaling pathways. 2. Schisandrol B has anti-inflammatory property, potentially result from the inhibition of COX-2, iNOS, IL-6, TNF-α and NO through the down-regulation of RIP2 and NF-κB activation. 3. Schisandrol B induces marked protective effects against hepatic and renal injury induced by CCl(4) exposure through differential regulation of the MAPK signal transduction pathway. 4. Schisandrol B significantly inhibits cell proliferation in a dose-dependent manner, due to cell cycle arrest in the G1 phase with the downregulation of cyclin D1 expression and Retinoblastoma (RB) phosphorylation.
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7-Deoxy-trans-dihydronarciclasine
T79994145987-74-2
7-Deoxy-trans-dihydronarciclasine is an alkaloid that functions as a tobacco mosaic virus (TMV) inhibitor with an IC50 of 1.80 μM and also serves as an anti-neuroinflammatory agent. This compound reduces Aβ and APP levels in the cerebral cortex of Tg2576 mice [1] [2] [3].
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Protosappanin A
PTA
TJS1779102036-28-2
Protosappanin A (PTA) has anti-oxidative nitrative activities on brain immune and neuroinflammation through regulation of CD14 TLR4-dependent IKK IκB NF-κB inflammation signal pathway; it exerts anti-neuroinflammatory effect by inhibiting JAK2-STAT3 pathway in lipopolysaccharide-induced BV2 microglia. Protosappanin A induces immunosuppression of rats heart transplantation targeting T cells in grafts via NF-kappaB pathway. Protosappanin A and protosappanin B have antimicrobial activity, they show both alone activities and resistance reversal effects of amikacin and gentamicin against MRSA. Protosappanin A shows strong effect against HIV-1 IN with an IC50 value of 12.6 uM.
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Neoechinulin A
TN463551551-29-2
Neoechinulin A has anti-inflammatory effect against LPS-stimulated RAW264.7 macrophages through inhibition of the NF-κB and p38 MAPK pathways, it may block the phosphorylation of mitogen-activated protein kinase (MAPK) molecule p38, apoptosis signal-regu
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Shizukaol B
TN5011142279-40-1
Shizukaol B exerts anti-inflammatory effects in LPS-activated microglia partly by modulating JNK-AP-1 signaling pathway; it also shows significant anti-neuroinflammatory effects by inhibiting nitric-oxide (NO) production in lipopolysaccharide (LPS)-stimul
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[12]-Dehydrogingerdione
TN575499742-05-9
[12]-Dehydrogingerdione is a natural product found in ginger that has anti-neuroinflammatory activity, possibly by inhibiting the Akt IKK IκB NF-κB pathway and promoting the Nrf-2 HO-1 pathway to prevent neuroinflammation. 12-Dehydrogingerdione can inhibit the production of NO, IL-6, and PGE2 in LPS-stimulated Raw 264.7 cells.
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Kamebakaurin
Kamebakaurine
TWS197773981-34-7
1. Kamebakaurin (Kamebakaurine) has the ability to protect the liver from APAP-induced hepatotoxicity, presumably by both inhibiting the inflammatory response and oxidative stress. 2. Kamebakaurin inhibits the expression of hypoxia-inducible factor-1α and its target genes to confer antitumor activity. 3. Kamebakaurin has anti-cancer and anti-inflammatory activities through direct inhibition of DNA-binding activity of nuclear factor-kappa B (NF-κB) p50.4. Kamebakaurin has anti-neuroinflammatory activity via inhibition of c-Jun NH -terminal kinase and p38 mitogen-activated protein kinase pathway in activated microglial cells.
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4-6 weeks
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