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抑制剂&激动剂
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  • 抑制剂&激动剂
    7
    TargetMol | Inhibitors_Agonists
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    TargetMol | Natural_Products
  • Wu-5
    T777632630378-05-9
    Wu-5 是一种有效的 USP10 抑制剂,对 FLT3 和 AMPK 通路有抑制作用,促使 FLT3-ITD 分解并诱导细胞凋亡(apoptosis)。
    • ¥ 787
    In stock
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    数量
  • Halometasone
    T3637950629-82-8
    Halometasone is a synthetic corticosteroid.1,2Formulations containing halometasone have been used in the treatment of psoriasis vulgaris and eczematous dermatoses. 1.de la Brassine, M., Kint, A., Lachapelle, J.M., et al.Halomethasone (C 48.401-Ba) for the topical treatment of common dermatosesJ. Int. Med. Res.12(5)307-309(1984) 2.Zhu, J.-W., Wu, X.-J., Lu, Z.-F., et al.Role of VEGF receptors in normal and psoriatic human keratinocytes: Evidence from irradiation with different UV sourcesPLoS One8(1)e55463(2013)
    • ¥ 647
    35日内发货
    规格
    数量
  • DSPE-PEG(2000)-amine (sodium salt)
    T36424
    DSPE-PEG(2000)-amine is a PEGylated derivative of 1,2-distearoyl-sn-glycero-3-PE . It has been used in the synthesis of solid lipid and thermosensitive liposomal nanoparticles for the delivery of anticancer agents.1,2,3DSPE-PEG(2000)-amine has also been used in the synthesis of fluorescein isothiocyanate-loaded mesoporous silica nanoparticles for imaging applications.4It can be conjugated to a variety of functional molecules for improved cellular targeting and uptake of DSPE-PEG(2000)-amine-containing nanoparticles.4,5 1.Sloat, B.R., Sandoval, M.A., Li, D., et al.In vitro and in vivo anti-tumor activities of a gemcitabine derivative carried by nanoparticlesInt. J. Pharm.409(1-2)278-288(2011) 2.Abd-Rabou, A.A., Bharali, D.J., and Mousa, S.A.Taribavirin and 5-fluorouracil-loaded pegylated-lipid nanoparticle synthesis, p38 docking, and antiproliferative effects on MCF-7 breast cancerPharm. Res.35(4)76(2018) 3.Affram, K., Udofot, O., Singh, M., et al.Smart thermosensitive liposomes for effective solid tumor therapy and in vivo imagingPLoS One12(9):e0815116(2017) 4.Wang, L.-S., Wu, L.-C., Lu, S.-Y., et al.Biofunctionalized phospholipid-capped mesoporous silica nanoshuttles for targeted drug delivery: Improved water suspensibility and decreased nonspecific protein bindingACS Nano4(8)4371-4379(2010) 5.Wen, X., Wang, K., Zhao, Z., et al.Brain-targeted delivery of trans-activating transcriptor-conjugated magnetic PLGA lipid nanoparticlesPLoS One9(9):e106652(2014)
    • 待估
    35日内发货
    规格
    数量
  • (E)-Guggulsterone
    T3656339025-24-6
    Bile acids are essential for solubilization and transport of dietary lipids, are the major products of cholesterol catabolism, and are physiological ligands for farnesoid X receptor (FXR), a nuclear receptor that regulates genes involved in lipid metabolism.1They are also inherently cytotoxic, as physiological imbalance contributes to increased oxidative stress.2,3Bile acid-controlled signaling pathways are promising novel targets to treat such metabolic diseases as obesity, type II diabetes, hyperlipidemia, and atherosclerosis.Guggulsterone, derived from resin of the guggul tree, is a competitive antagonist of FXR bothin vitroandin vivo.4Thecisstereoisomer of guggulsterone, (E)-guggulsterone, decreases chenodeoxycholic acid (CDCA)-induced FXR activation with an IC50value of 15 μM.5,6By inhibiting CDCA-induced transactivation of FXR, guggulsterone lowers low-density lipoprotein cholesterol and triglyceride levels in rodents fed a high cholesterol diet.4 1.Makishima, M., Okamoto, A.Y., Repa, J.J., et al.Identification of a nuclear receptor for bile acidsScience2841362-1365(1999) 2.Barbier, O., Torra, I.P., Sirvent, A., et al.FXR induces the UGT2B4 enzyme in hepatocytes: A potential mechanism of negative feedback control of FXR activityGastroenterology1241926-1940(2003) 3.Tan, K.P., Yang, M., and Ito, S.Activation of nuclear factor (erythroid-2 like) factor 2 by toxic bile acids provokes adaptive defense responses to enhance cell survival at the emergence of oxidative stressMol. Pharmacol.72(5)1380-1390(2007) 4.Urizar, N.L., Liverman, A.B., Dodds, D.T., et al.A natural product that lowers cholesterol as an anatagonist ligand for FXRScience296(5573)1703-1706(2002) 5.Cui, J., Huang, L., Zhao, A., et al.Guggulsterone is a farnesoid X receptor antagonist in coactivator association assays but acts to enhance transcription of bile salt export pumpThe Journal of Biological Chemisty278(12)10214-10220(2003) 6.Wu, J., Xia, C., Meier, J., et al.The hypolipidemic natural product guggulsterone acts as an antagonist of the bile acid receptorMolecular Endocrinology16(7)1590-1597(2002)
    • ¥ 483
    5日内发货
    规格
    数量
  • Colletodiol
    T3698621142-67-6
    Colletodiol is a fungal metabolite that has been found inD. grovesiiand has immunosuppressant and antiviral activities.1,2It inhibits concanavalin A- or LPS-induced proliferation of isolated mouse splenocytes (IC50s = 12 and 5 μg ml, respectively).1Colletodiol inhibits influenza A viral replication in HeLa-IAV-Luc cells.2 1.Fujimoto, H., Nagano, J., Yamaguchi, K., et al.Immunosuppressive components from an ascomycete, Diplogelasinospora grovesiChem. Pharm. Bull.46(3)423-429(1998) 2.Lai, W., Wang, S., and Ye, X.Colletodiol inhibits the replication of influenza A virus WSN H1N1 by reducing the activity of viral RNA polymeraseWei Sheng Wu Xue Bao53(12)1334-1339(2013)
    • ¥ 3437
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  • 5-Hydroxytoluene-2,4-disulphonic acid diammonium
    T37346
    5-Hydroxytoluene-2,4-disulphonic acid diammonium is an impurity of Policresulen. Policresulen is a potent NS2B NS3 protease inhibitor with an IC50 of 0.48 μg mL. Policresulen effectively inhibits the replication of DENV2 virus in BHK-21 cells with an IC50 of 4.99 μg mL. Policresulen acted as a competitive inhibitor of the protease, and slightly affected the protease stability[1]. [1]. Deng-wei Wu, et al. Policresulen, a novel NS2B NS3 protease inhibitor, effectively inhibits the replication of DENV2 virus in BHK-21 cells. Acta Pharmacol Sin. 2015 Sep;36(9):1126-36.
    • ¥ 1101
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    数量
  • Ganglioside GM1 Mixture (ovine) (ammonium salt)
    T375821007119-81-4
    Ganglioside GM1is a monosialylated ganglioside and the prototypic ganglioside for those containing one sialic acid residue.1,2It is found in a large variety of cells, including immune cells and neurons, and is enriched in lipid rafts in the cell membrane.3It associates with growth factor receptors, including TrkA, TrkB, and the GDNF receptor complex containing Ret and GFRα, and is required for TrkA expression on the cell surface. Ganglioside GM1interacts with other proteins to increase calcium influx, affecting various calcium-dependent processes, including inducing neuronal outgrowth during differentiation. Ganglioside GM1acts as a receptor for cholera toxin, which binds to its oligosaccharide group, facilitating toxin cell entry into epithelial cells of the jejunum.4,5Similarly, it is bound by the heat-labile enterotoxin fromE. coliin the pathogenesis of traveler's diarrhea.6Ganglioside GM1gangliosidosis, characterized by a deficiency in GM1-β-galactosidase, the enzyme that degrades ganglioside GM1, leads to accumulation of the gangliosides GM1and GA1in neurons and can be fatal in infants.1Levels of ganglioside GM1are decreased in the substantia nigra pars compacta in postmortem brain from patients with Parkinson's disease.3Ganglioside GM1mixture contains a mixture of ovine ganglioside GM1molecular species with primarily C18:0 fatty acyl chain lengths, among various others. [Matreya, LLC. Catalog No. 1544] 1.Kolter, T.Ganglioside biochemistryISRN Biochem.506160(2012) 2.Mocchetti, I.Exogenous gangliosides, neuronal plasticity and repair, and the neurotrophinsCell Mol. Life Sci.62(19-20)2283-2294(2005) 3.Ledeen, R.W., and Wu, G.The multi-tasked life of GM1 ganglioside, a true factotum of natureTrends Biochem. Sci.40(7)407-418(2015) 4.Turnbull, W.B., Precious, B.L., and Homans, S.W.Dissecting the cholera toxin-ganglioside GM1 interaction by isothermal titration calorimetryJ. Am. Chem. Soc.126(4)1047-1054(2004) 5.Blank, N., Schiller, M., Krienke, S., et al.Cholera toxin binds to lipid rafts but has a limited specificity for ganglioside GM1Immunol. Cell Biol.85(5)378-382(2007) 6.Minke, W.E., Roach, C., Hol, W.G., et al.Structure-based exploration of the ganglioside GM1 binding sites of Escherichia coli heat-labile enterotoxin and cholera toxin for the discovery of receptor antagonistsBiochemistry38(18)5684-5692(1999)
    • 待估
    35日内发货
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