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Results for "

LPS-induced

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    307
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    13
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Geranylgeraniol
Tetraprenol, FT-0626663, FT0626663, CJ-24095, CJ24095, CJ 24095
TN671424034-73-9
Geranylgeraniol (FT0626663) is an isoprenoid found in fruits, vegetables, and grains, including rice. Geranylgeraniol (FT0626663) inhibits growth and induces apoptosis of various tumor cells. Geranylgeraniol (FT0626663) protects monocytes against statin-induced cytotoxicity and suppresses the growth of Mycobacterium.
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(-)-Epigallocatechin Gallate
Epigallocatechol Gallate, EGCG
T2988989-51-5
(-)-Epigallocatechin Gallate (EGCG) is a phenolic antioxidant polyphenol flavonoid found in plants such as green and black tea, which inhibits telomerase and DNA methyltransferase, blocks the activation of EGF receptors and HER-2 receptors, inhibits cellular oxidation, and prevents free radical damage to cells.
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Gordonoside J
T1260881293918-32-7
Gordonoside J, a compound isolated from the stem of Chrysanthemum officinale, inhibits LPS-induced nitric oxide production in rat polymorphonuclear leukocytes (PMNS).
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4-6 weeks
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Linalool
Linalol, (±)-Linalool, Phantol
T2S226478-70-6
1. Linalool (Linalol), a natural compound of the essential oils, has been shown to have antinociceptive, antimicrobial, and anti-inflammatory properties. 2. Linalool was protected against LPS GalN-induced liver injury through induction of antioxidant defense via Nrf2 activating and reduction inflammatory response via NF-κB inhibition. 3. Linalool biosynthesis and accumulation might be involved in plant defense against bacterial and fungal pathogens and be associated with field resistance to citrus canker. 4. Linalool significantly increased the expression of antioxidant enzymes regulated by Nrf-2 and diminished lung tissue levels of several pro-inflammatory cytokines, including tumor necrosis factor α (TNF-α) and interleukin (IL)-6.
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Flavokawain A
Flavokavain A
T3S07373420-72-2
NSC-37445 has anti-tumor activity, such as inhibits growth of bladder tumor cells in a nude mice model , prevents the recurrence and progression of non-muscle-invasive urothelial cell carcinoma. NSC-37445 can significantly reduce the expression of CDK1-inhibitory kinases, Myt1 and Wee1, and cause cyclin B1 protein accumulation leading to CDK1 activation in T24 cells. 3. Flavokawain A (Flavokavain A) may exert anti-inflammatory responses by suppressing LPS-induced expression of pro-inflammatory mediators via blockage of NF-κB-AP-1-JNK p38 MAPK signaling pathways in the murine macrophages.
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Menthone
T566010458-14-7
Menthone has anti-inflammary activity,, it can suppress the lipopolysaccharide (LPS)-induced proinflammatory cytokines, interleukin-1beta (IL-1beta) and tumor necrosis factor-alpha (TNF-alpha),as well as nuclear factor kappaB (NF-kB).
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5,6-Benzoflavone
β-Naphthoflavone, beta-NF
TN66946051-87-2
5,6-Benzoflavone (β-Naphthoflavone) is an exogenous ligand for the aryl hydrocarbon receptor, which disrupts zinc homeostasis in human hepatocellular carcinoma HepG2 cells. 5,6-Benzoflavone (β-Naphthoflavone) possesses anti-inflammatory and antioxidant activities, inhibits LPS-induced inflammation through the AKT Nrf-2 HO-1-NF-kappaB signaling axis, inhibits TNF-α-induced ICAM-1 and VCAM-1 expression, which can be used to study neurodegenerative diseases.
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Broussochalcone A
T7259499217-68-2
Broussochalcone A is a natural antioxidant and xanthine oxidase inhibitor (IC50 = 2.21 μM) that scavenges free radicals, inhibits iron-induced lipid peroxidation, and reduces nitric oxide synthesis in LPS-activated macrophages. Broussochalcone A induces apoptosis in human renal carcinoma cells by increasing ROS levels and activating the FOXO3 signaling pathway. Broussochalcone A is also a novel NR4A1 inhibitor that induces apoptosis in pancreatic cancer cells through NR4A1-dependent pathways.
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6-8 weeks
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Mogroside V
T297888901-36-4
Mogroside V is a widely used sweetener, has in vitro AMPK activating effect, it also has anti-inflammatory potential in murine macrophages and a murine ear edema model, and has the potential to protect against LPS-induced airway inflammation in a model of ALI. Mogroside V has antioxidant properties and possesses tumor growth inhibitory activity in pancreatic cancer models.
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Polygalasaponin F
T3826882664-74-6
Polygalasaponin F has anti-neuroinflammatory activity, can inhibit the release of inflammatory cytokines TNF-α and NO induced by lipopolysaccharides (LPS) and reduce the expression of inducible nitric oxide synthases. Polygalasaponin F can significantly i
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Licochalcone B
T4S035058749-23-8
1. Licochalcone B (LCB) inhibits the proliferation of human malignant bladder cancer cell lines (T24 and EJ) in vitro and antitumor activity in vivo in MB49 (murine bladder cancer cell line) tumor model. 2. LCB and Licochalcone D(LCD) significantly reduce
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Alliin
(S)-3-(Allylsulphinyl)-L-alanine
T5764556-27-4
Alliin ((S)-3-(Allylsulphinyl)-L-alanine) is a garlic organosulfur compound that possesses various pharmacological properties.alliin protected against LPS-induced ALI by activating PPARγ, which subsequently inhibited LPS-induced NF-κB activation and inflammatory response. Alliin might be used as an anti-inflammatory agent in the treatment of ALI.
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Peimisine
Ebeiensine
T5S010619773-24-1
1. Peimisine (Ebeiensine) can affect M-receptor, excit β-receptor, restrain the release of internal calcium, and promote to releaseing nitrogen monoxidum in order to relax tracheal smooth muscle and relieve asthma. 2. Peimisine can attenuate lung tissue injury( ALI), LDH and MDA amount in ALI mice in a dose dependent manner, it also lower the total protein, total white blood cells, lymphocyte and neutrophilic leukocyte in bronchoalveolar lavage fluid( BALF); suggests that peimisine can play a protective role against LPS-induced acute lung injury. 3. Peimisine has the protective effect on the experimental hepatic fibrosis formation, the possible mechanisms are associated with inhibiting fibrogenesis and fibrosis accumulation, and decreasing lipid peroxidation. 4. Peimisine can inhibit angiotensin I converting enzyme activity in a dose-dependent manner, displaying 5 % inhibitory concentration values of 526.5 microM, thus, it may have antihypertensive action.
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Linarin
Buddleoflavonoloside, Buddleoside, Acacetin-7-O-rutinoside, Acaciin, Linarine
T6S0653480-36-4
1. Linarin (Acacetin-7-O-rutinoside) (acacetin-7-O-β-d-rutinoside) shows selective dose dependent inhibitory effect on acetylcholinesterase. 2. Linarin alleviates GalN LPS-induced liver injury by suppressing TNF-α-mediated apoptotic pathways. 3. Linarin prevents A beta-induced neurotoxicity through the activation of PI3K Akt, which subsequently inhibits GSK-3b and up-regulates Bcl-2. 4. The piperine significantly enhanced the oral absorption of Linarin in rats by inhibiting P-glycoprotein mediated cellular efflux during the intestinal absorption and likely simultaneously by inhibiting the metabolism of Linarin.
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Flavokawain B
Flavokavain B, Flavokawin B, 2'-Hydroxy-4',6'-Dimethoxychalcone
T6S07351775-97-9
1. Flavokawain B (Flavokavain B) has potent anti-inflammatory activity, can significantly inhibit production of NO and PGE2 in LPS-induced RAW 264.7 cells. 2. Flavokawain B, the hepatotoxic constituent from kava root, induces GSH-sensitive oxidative stress through modulation of IKK NF-κB and MAPK signaling pathways. 3. Flavokawain B induces apoptosis, has the potential usefulness of FKB for prevention and treatment of hormone-refractory prostate cancer in an adjuvant setting. 4. Flavokawain B acts through ROS generation and GADD153 up-regulation to regulate the expression of Bcl-2 family members, thereby inducing mitochondrial dysfunction and apoptosis in HCT116 cells.
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β-Anhydroicaritin
Anhydroicaritin, Beta-Anhydroicaritin
T6S214038226-86-7
1. β-Anhydroicaritin exhibits immunosuppressive effect on the mouse macrophages stimulated by LPS. 2. β-Anhydroicaritin phytosomes can inhibit enhanced bone turnover induced by ovariectomy, improve BMD the biomechanical properties of vertebrae, without any stimulation on uterus. 3. β-Anhydroicaritin possesses significant protective effects on the zymosan-induced peritonitis mice, which might be associated with the regulation of Ca(2+); influx in macrophages and iNOS expression.
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Polygalacin D
TN209166663-91-0
Polygalacin D shows anti- proliferation, anti-inflammary, and hepatoprotective activities, it can inhibit the expression of lipopolysaccharide (LPS)-induced iNOS and COX-2 protein and mRNA without an appreciable cytotoxic effect on RAW 264.7 macrophages, and can suppress induction by LPS of pro-inflammatory cytokines such as prostaglandin E2 (PGE2).
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kauran-16,17-diol
T495116836-31-0
Kauran-16,17-diol, a natural diterpenoid product, exhibits anti-tumoral and apoptosis-inducing activities by inhibiting NO production in LPS-induced RAW 264.7 cells with an IC50 value of 17 μM.
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Anhydronotoptol
TN698588206-51-3
Anhydronotoptol (4-{[(2E,5E)-3,7-dimethylocta-2,5,7-trien-1-yl]oxy}-7H-furo[3,2-g]chromen-7-one), a natural compound extracted from the umbelliferae plant Qiangwu, is a potent inhibitor of nitric oxide production, inhibiting LPS-induced NO production in RAW 264.7 cells with an IC50 value of 36.6 μM.
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Salirepin
T1388026652-12-0
Salirepin is a phenolic glycoside isolated from fruits of Idesia polycarpa, Salirepin inhibits LPS-induced nitric oxide production.
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Acanthoic acid
NP1302,NP 1302: NP-1302
T26545119290-87-8
Acanthoic acid is a pimaradiene diterpene isolated from Acanthopanax koreanum with anti-inflammatory activities. Acanthoic acid downregulates LPS-induced IL-1β, IL-6 and TNF-α production in BALF, attenuates lung histopathologic changes, and inhibits infla
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Trilobatin
P-Phlorizin
T2S07314192-90-9
Trilobatin (P-Phlorizin) has anti-oxidant effect, can increase superoxide dismutase (SOD) activity.Trilobatin has anti-inflammatory effect, it potentially inhibits the lipopolysaccharide (LPS)-induced inflammatory response by suppressing the NF-κB signaling pathway.Trilobatin shows a strong inhibitory activity against α-glucosidase and a moderate inhibitory activity against α-amylase for management of postprandial hyperglycemia with less side effect.
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Methyl 3,4,5-trimethoxy-2-(2-(nicotinamido)benzamido)benzoate
T3640381469-77-4
Preterramide C is a fungal metabolite that has been found inA. terreus.1It is active againstS. aureus(MIC = 52.4 μM) but notE. aerogenes,P. aeruginosa, orC. albicans(MICs = >100 μM for all).2Preterramide C inhibits the growth of L5178Y mouse lymphoma cells with an IC50value of 0.1 μg/ml.3It also inhibits nitric oxide (NO) production induced by LPS in RAW 264.7 cells (IC50= 5.48 μM).
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Nargenicin
Antibiotic 47444
T3641770695-02-2
Nargenicin is a macrolide antibiotic that selectively inhibits the growth of S. aureus, methicilin resistant S. aureus (MRSA), and M. luteus (MICs = 0.6, 0.3, and 2.5 μg/ml, respectively) over a panel of 11 Gram-positive and Gram-negative bacteria (MICs = >80 μg/ml). [1] It dose-dependently inhibits S. aureus DnaE in the presence of DNase I-activated DNA and E. coli DnaE when used at concentrations of 0.00001-0.1 and 0.01-100 μg/mL, respectively. [2] In murine BV-2 microglial cells, nargenicin (1 μM) inhibits cytokine expression and nitric oxide production induced by LPS.[3] Nargenicin (200 μM), when used in combination with 1,25-dihydroxyvitamin D3 or all-trans retinoic acid , reduces cell proliferation by 37-47% and increases cell differentiation by 82-85% in HL-60 human myeloid leukemia cells.[4]
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