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mapk 5

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    33
    TargetMol | Inhibitors_Agonists
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    2
    TargetMol | Compound_Libraries
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    1
    TargetMol | Peptide_Products
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p38-α mapk-in-5
T706381443242-46-3
P38-α MAPK-IN-5 is a potent inhibitor of p38α, demonstrating inhibitory concentrations (IC50) of 0.1 nM for p38α, 0.2 nM for p38β, 944 nM for p38γ, and 4100 nM for p38δ. It exhibits anti-inflammatory properties and holds potential for research in asthma and chronic obstructive pulmonary disease (COPD).
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10-14 weeks
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Adezmapimod
SB203580, RWJ 64809, PB 203580
T1764152121-47-6
Adezmapimod (SB 203580) is a selective, ATP-competitive p38 MAPK inhibitor (IC50=0.3-0.5 μM) that activates autophagy and mitochondrial autophagy, with more than 100-fold higher selectivity over PKB, LCK, and GSK-3β.
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Dehydrocorydaline
Dehydrocorydalin, 13-Methylpalmatine
T5S235830045-16-0
1. Dehydrocorydaline (13-Methylpalmatine) exerts anti-metastatic potential via suppression of MMPs and Bcl-2 signaling in NSC-LC cells. 2. Dehydrocorydaline stimulates p38 MAPK activation, which can enhance heterodimerization of MyoD and E proteins, thus resulting in MyoD activation and myoblast differentiation. 3. Dehydrocorydaline shows antiplatelet effects, it inhibits thrombin-induced platelet aggregation in a low dose ( IC50= 34.914 ug mL). 4. Dehydrocorydaline has anti-inflammatory and antinociceptive effects. 5. Dehydrocorydaline inhibits MCF-7 cell proliferation by inducing apoptosis mediated by regulating Bax Bcl-2, activating caspases as well as cleaving PARP.
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SR-318
T129972413286-32-3In house
SR-318 is a potent and highly selective inhibitor of p38 MAPK, demonstrating IC50 values of 5 nM for p38α, 32 nM for p38β, and 6.11 μM for p38α β. It possesses both anti-cancer and anti-inflammatory activity.
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Iroxanadine
BRX005, BRX-235, BRX-005, BRX235, BRX 005, BRX 235
T27627203805-20-3In house
Iroxanadine (BRX-005) is a Novel small molecule MAPK p38 inhibitor that induces phosphorylation of p38 SAPK and induces concentration-dependent relaxation in guinea pig pulmonary artery preparations precontracted with phenylephrine.13480-84-5
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6-8weeks
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5-Hydroxy-1-methylhydantoin
HD-003, HD003, NZ419, NZ-419, HD 003, NZ 419
T2822284210-26-4
5-Hydroxy-1-methylhydantoin (HD-003) is an antioxidant potentially for the treatment of renal failure. A creatinine metabolite, 5-Hydroxy-1-methylhydantoin , a hydroxyl radical scavenger, has previously been shown to confer renoprotection by inhibiting the progression of chronic kidney disease in rats. 5-Hydroxy-1-methylhydantoin is a novel anti-oxidant drug completely suppressed the expression of B2-kinin receptors (B2KR) in response to high glucose (25 mM) stimulation in VSMC and was also shown to attenuate the effects of BK on VSMC remodeling. 5-Hydroxy-1-methylhydantoin inhibited the BK-induced increase in MAPK phosphorylation and attenuated the increase in connective tissue growth factor (CTGF) protein levels in VSMC. These findings suggest that 5-Hydroxy-1-methylhydantoin may confer vascular protection against high glucose concentrations and BK-stimulation to ameliorate vascular injury and remodeling through its anti-oxidant properties.
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SKF-86002
SKF86002
T236772873-74-6
SKF-86002 is an effective inhibitor of p38 MAP kinase (IC50: 0.5-1 uM); inhibits LPS-induced IL-1 and TNF-α production in human monocytes (IC50: 1 μM).
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Pyridone 6
Janus-Associated Kinase Inhibitor I, JAK Inhibitor I, JAK I inhibitor, CMP 6
T3080457081-03-7
Pyridone 6 (JAK Inhibitor)(CMP 6) is a potent and selective inhibitor of JAK1 (IC50=15 nM, murine JAK1), JAK2 (IC50=1 nM), JAK3 (Ki=5 nM), and Tyk2 (IC50=1 nM); displaying significantly weaker affinities (130 nM to 10 mM) for other protein tyrosine kinases.
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Cornuside
7-Galloylsecologanol, 7-O-Galloylsecologanol, Comuside
T4S2326131189-57-6
1. Cornuside (Comuside) has immunomodulatory activity . 2. Cornuside suppresses expression levels of cytokine-induced proinflammatory and adhesion molecules in the human endothelial cells. 3. Cornuside can treat myocardial I R and protect the liver from CCl4-induced acute hepatotoxicity, by reducing oxidative stress and suppressing inflammatory responses. 4. Cornuside has anti-inflammatory activity by downregulations of iNOS and COX-2 due to NF-κB inhibition as well as the negative regulation of ERK1 2, p38, and JNK1 2 phosphorylations in RAW 264.7 cells. 5. Cornuside has protective potential against cerebral ischemic injury, may be due to the suppression of intracellular Ca(2+) elevation and caspase-3 activity, and improvements in mitochondrial energy metabolism and antioxidant properties.
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Vitexin
Apigenin-8-C-glucoside
T6S13693681-93-4
1. Vitexin has antinociceptive and antispasmodic activities. 2. Vitexin exhibits a prominent first-pass effect. 3. Vitexin has antioxidant, antimyeloperoxidase, and α-glucosidase inhibitory activities. 4. Vitexin can either inhibit or induce activities of
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Neochlorogenic acid
trans-5-O-Caffeoylquinic acid, Neochlorogenate, 5-O-Caffeoylquinic acid
T6S1538906-33-2
Neochlorogenic acid (trans-5-O-Caffeoylquinic acid) is an antioxidant compound used in the treatment of oxidative stress and related afflictions.
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MK2-IN-3 hydrate
MK-2 Inhibitor III
T120581186648-22-5
MK2-IN-3 hydrate (MK-2 Inhibitor III) is an orally active, selective, and ATP-competitive inhibitor of MAPKAP-K2 (MK-2) (IC50 of 0.85 nM)
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gs87
4-[5-[[(3-Phenyl-1,2,4-oxadiazol-5-yl)methyl]thio]-1,3,4-oxadiazol-2-yl]pyridine
T8605919936-70-2
GS87 is a highly specific inhibitor of GSK3 (glycogen synthase kinase 3) that induces extensive differentiation of AML cells.
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CAY10404
3-(4-METHYLSULPHONYLPHENYL)-4-PHENYL-5-T
T8656340267-36-9
CAY10404 (3-(4-METHYLSULPHONYLPHENYL)-4-PHENYL-5-T) is a potent and highly selective inhibitor of COX-2 and COX-1. It is also a potent inhibitor of PKB Akt and MAPK signalling pathways and induces apoptosis in NSC-LC cells, with analgesic, anti-inflammatory and anti-cancer activities.
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methyl 5-(3,4-dimethoxyphenyl)isoxazole-3-carboxylate
T8911517870-17-6
methyl 5-(3,4-dimethoxyphenyl)isoxazole-3-carboxylate is a biochemical.
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MK2-IN-3
MK2 Inhibitor III
T9034724711-21-1
MK2-IN-3 (MK2 Inhibitor III) is a potent, cell-permeable inhibitor of mitogen-activated protein kinase-activated protein kinase 2 (MAPKAP-K2 or MK-2) and can be used for the treatment of rheumatoid arthritis
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AMG-548 hydrochloride (864249-60-5 free base)
AMG-548 hydrochloride
T10298
AMG-548 hydrochloride is an orally active and selective p38α inhibitor (Ki: 0.5 nM) and shows slightly selective over p38β (Ki: 36 nM) and >1000 fold selective against p38γ p38δ. It is also extremely potent in the inhibition of whole blood LPS stimulated TNFα (IC50: 3 nM).
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8-10 weeks
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AMG-548 dihydrochloride (864249-60-5 free base)
AMG-548 dihydrochloride
T10298L2
AMG-548 dihydrochloride is an orally active and selective p38α inhibitor (Ki: 0.5 nM) and shows slightly selective over p38β (Ki: 36 nM) and >1000 fold selective against p38γ p38δ. It is also extremely potent in the inhibition of whole blood LPS stimulate
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8-10 weeks
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Momordin Ic
Momordin 1c
T341096990-18-0
Momordin Ic (Momordin 1c) might represent a potential anticancer activity, by inducing apoptosis through oxidative stress-regulated mitochondrial dysfunction involving the MAPK and PI3K-mediated iNOS and HO-1 pathways. Also, Momordin Ic accelerates gastrointestinal transit partially by stimulating synthesis of 5-HT to act through 5-HT(2), which, in turn, increases synthesis of prostaglandins.
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(±)14(15)-EET
(±)14,15-EET, (±)14,15-EpETrE, (±)14(15)-EET
T35463197508-62-6
(±)14(15)-EET is a metabolite of arachidonic acid that is formed via epoxidation of arachidonic acid by cytochrome P450.[1],[2] It prevents increases in leukotriene B4, ICAM-1, and chemokine (C-C motif) ligand 1 (CCL2) induced by oxidized LDL in primary rat pulmonary artery endothelial cells (RPAECs) when used at a concentration of 1 μM.[3] (±)14(15)-EET induces dilation of preconstricted isolated canine coronary arterioles (EC50 = 0.2 pM).[4] It reduces myocardial infarct size as a percentage of the area at risk in a canine model of ischemia-reperfusion injury induced by left anterior descending coronary artery (LAD) occlusion when administered at a dose of 0.128 mg kg prior to occlusion or reperfusion.[5] Reference:[1]. Chacos, N., Falck, J.R., Wixtrom, C., et al. Novel epoxides formed during the liver cytochrome P-450 oxidation of arachidonic acid. Biochem. Biophys. Res. Commun. 104(3), 916-922 (1982).[2]. Oliw, E.H., Guengerich, F.P., and Oates, J.A. Oxygenation of arachidonic acid by hepatic monooxygenases. Isolation and metabolism of four epoxide intermediates. J. Biol. Chem. 257(7), 3771-3781 (1982).[3]. Jiang, J.-X., Zhang, S.-J., Xiong, Y.-K., et al. EETs attenuate ox-LDL-induced LTB4 production and activity by inhibiting p38 MAPK phosphorylation and 5-LO BLT1 receptor expression in rat pulmonary arterial endothelial cells. PLoS One 10(6), e0128278 (2015).[4]. Oltman, C.L., Weintraub, N.L., VanRollins, M., et al. Epoxyeicosatrienoic acids and dihydroxyeicosatrienoic acids are potent vasodilators in the canine coronary microcirculation. Circ. Res. 83(9), 932-939 (1998).[5]. Nithipatikom, K., Moore, J.M., Isbell, M.A., et al. Epoxyeicosatrienoic acids in cardioprotection: Ischemic versus reperfusion injury. Am. J. Physiol. Heart Circ. Physiol. 291(2), H537-H542 (2006).
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Tpl2 Kinase Inhibitor (hydrochloride)
T35536
Tpl2 kinase inhibitor is an inhibitor of tumor progression locus 2 (Tpl2; IC50= 0.05 μM).1It is selective for Tpl2 over MEK, p38 MAPK, Src, MK2, and PKC (IC50s = >40, 180, >400, 110, and >400 μM, respectively). Tpl2 kinase inhibitor inhibits LPS-induced TNF-α production in isolated human monocytes and whole blood (IC50s = 0.7 and 8.5 μM, respectively). It enhances differentiation induced by calcitriol in HL-60 and U937 leukemia cells when used at a concentration of 5 μM.2Tpl2 kinase inhibitor (5 μM) inhibits the proliferation of KG-1a leukemia cells.3 1.Garvin, L.K., Green, N., Hu, Y., et al.Inhibition of Tpl2 kinase and TNF-α production with 1,7-naphthyridine-3-carbonitriles: Synthesis and structure-activity relationshipsBioor. Med. Chem. Lett.15(23)5288-5292(2005) 2.Wang, X., and Studzinski, G.P.Expression of MAP3 kinase COT1 is up-regulated by 1,25-dihydroxyvitamin D3 in parallel with activated c-jun during differentiation of human myeloid leukemia cellsJ. Steroid. Biochem. Mol. Biol.121(1-2)395-398(2010) 3.Wang, X., Gocek, E., Novik, V., et al.Inhibition of Cot1/Tlp2 oncogene in AML cells reduces ERK5 activation and up-regulates p27Kip1 concomitant with enhancement of differentiation and cell cycle arrest induced by silibinin and 1,25-dihydroxyvitamin D3Cell Cycle9(22)4542-4551(2010)
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Sesamol
3,4-Methylenedioxyphenol, 1,3-Benzodioxol-5-ol
T3676533-31-3
Sesamol (1,3-Benzodioxol-5-ol) could decrease lung inflammation and lipopolysaccharide (LPS)-induced lung injury in rats. Sesamol ameliorates inflammatory and oxidative damage by upregulating AMPK activation and Nrf2 signaling and blocking the NF-κB and MAPK signaling pathways and inhibits melanin biosynthesis by down-regulating tyrosinase activity and melanin production via regulation of gene expression of melanogenesis-related proteins through modulation of MITF activity, which promotes phosphorylation of p38 and JNK in melan-a cells.
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ML 3403
T37590549505-65-9
p38 MAPK inhibitor (IC50 = 0.38 μM). Inhibits the release of IL-1β and TNF-α in a peripheral blood mononuclear cell (PBMC) assay (IC50 values are 0.039 and 0.16 μM respectively). Laufer et al (2003) Novel substituted pyridinyl imidazoles as potent anticytokine agents with low activity against hepatic cytochrome P450 enzymes. J.Med.Chem. 46 3230 PMID:12852754 |Kammerer et al (2007) Pharmacokinetics of ML3403 ({4-[5-(4-fluorophenyl)-2-methylsulfanyl-3H-imidazol-4-yl]-pyridin-2-yl}-(1-phenylethyl)-amine), a 4-pyridinylimidazole-type p38 mitogen-activated protein kinase inhibitor. Drug Metab.Dispos. 35 875 PMID:17344341
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6-8 weeks
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Astragaloside II
Astrasieversianin VIII
T392484676-89-1
Astragaloside II (Astrasieversianin VIII) is an effective MDR reversal agent and may be a potential adjunctive agent for hepatic cancer chemotherapy. Astragaloside II also induces osteogenic activities, differentiation, proliferation, and mineralization, through the bone morphogenetic protein-2 MAPK and Smad1 5 8 pathways.
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