NEW! Life Science, 5 mg

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5 mg NEW! Life Science

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  • Cayman Chemical

    A selective inhibitor of the Src family of non-receptor tyrosine kinases (IC50s = 2 and 6 nM for Lck and Src, respectively); used in combination with PD 0325901, CHIR99021, and SB-590885 to support self-renewal of naïve human embryonic stem cells.

  • Cayman Chemical

    A PARP1 inhibitor (IC50 = 450 nM) that displays neuroprotective effects in cultured mouse cortical neurons; also inhibits eosinophilic infiltration into airways of OVA-challenged mice and induces the regression of atherosclerotic plaques in high-fat fed ApoE(-/-) mice.

  • Cayman Chemical

    A selective, cell permeable inhibitor of MLCK (IC50 = 50 nM).

  • Cayman Chemical

    A pan inhibitor PKD (IC50s = 1, 2.5, and 2 nM for PKD1, PKD2, and PKD3, respectively); blocks cell proliferation, induces apoptosis, and reduces the viability of pancreatic cancer cells both in vitro and in vivo.

  • Cayman Chemical

    A potent and selective competitive antagonist of the EP1 receptor (Ki = 0.6 and 1.7 nM for human and mouse EP1, respectively); effectively reduces tumor incidence and multiplicity in mouse models of colon, breast, and oral cancer; suppresses pain and acid-induced HCO3- secretion in the stomach.

  • Cayman Chemical

    A natural sesquiterpene lactone that reduces growth (EC50 = 3-35 μM) and induces apoptosis in assorted cancer cell lines; inhibits the activation of Akt (15 μM) in endometriotic epithelial cells and STAT3 activation in THP-1 cells (EC50 = 10 μM); inhibits telomerase…

  • Cayman Chemical

    An inhibitor of HIF-1α protein translation; suppresses phosphorylation of two key regulators of protein synthesis, eukaryotic translation initiation factor 4E binding protein 1 (4EBP1) and p70 S6 kinase; cytotoxic to a variety of cancer cell lines with an IC50 value of 15-25 µM.

  • Cayman Chemical

    A biotinylating reagent that contains two aminohexanoic spacers to increase the efficiency of avidin-binding by alleviating steric hindrance.

  • Cayman Chemical

    A reversible and competitive inhibitor of type IV collagen-specific MMP-2 and MMP-9 with preference towards MMP-2 (IC50 = 4 and 20 µM, respectively).

  • Cayman Chemical

    A stable and efficient hole-transport material in organic light-emitting devices and in ssDSSCs; yields high ssDSSC efficiency due to its excellent pore-filling property into mesoporous titania films.

  • Cayman Chemical

    A selective, reversible inhibitor of vacuolar H+-ATPases (V-ATPases), blocking these proton pumps in mammalian, plant, or fungal cells with an IC50 value in the 4-400 nM range; also inhibits autophagy by preventing vacuolar acidification necessary for autophagosome maturation.

  • Cayman Chemical

    An analog of scriptaid that lacks scriptaid’s HDAC inhibitory effects; used as a negative control in experiments involving scriptaid.

  • Cayman Chemical

    A cytotoxic compound that at 1 µM activates aryl hydrocarbon receptor signaling, inducing transcription of cytochrome P450 1A1, which leads to the formation of DNA adducts and cell cycle arrest; can increase the levels of ROS as well as activate JNK, ERK, and p38MAPK in certain ovarian,…

  • Cayman Chemical

    A specific inhibitor of N-linked glycoslylation that blocks the first step of glycoprotein synthesis and induces protein unfolding; impairs the function of several receptor tyrosine kinases, including EGFR, ErbB2, ErbB3, IGF-IR, and ALK; radiosensitizes glioma and pancreatic adenocarcinoma cells to…

  • Cayman Chemical

    The major metabolite formed during the metabolism of the non-steroidal antiandrogen flutamide by cytochrome P450 isoforms CYP1A2 and CYP3A4; inhibits the binding of testosterone to the nuclear androgen receptor (IC50 = ~300-900), blocking the expression of AR target genes.

  • Cayman Chemical

    An orally bioavailable inhibitor of Smo; blocks binding of BODIPY cyclopamine (IC50 = 21 nM) and inhibits Gli activation in cell lines that express wild-type Smo or activated mutant forms of Smo (IC50s = 6-35 nM); inhibits Shh pathway activity and prevents tumor growth in…

  • Cayman Chemical

    A small molecule inhibitor of tankyrase 1 and 2 (IC50 = 11 and 4 nM, respectively); increases the protein levels of the axin-GSK3β complex and promotes the degradation of β-catenin; inhibits colony formation of APC-deficient colorectal cancer cells at 0.33 µM.

  • Cayman Chemical

    IDO-IN-1 is a potent indoleamine 2,3-dioxygenase (IDO) inhibitor that demonstrates IC50 values of 59 and 12 nM for human IDO enzymatic activity and HeLa cell assays, respectively. It is inactive against tryptophan 2,3-dioxygenase (TOD; IC50 > 10 µM).

  • Cayman Chemical

    An analog of AEA that potentiates the activity of endogenous AEA by blocking its re-uptake into presynaptic neurons; selectively inhibits the carrier-mediated transport of AEA without affecting anandamide hydrolysis; inhibits the transport of AEA with an IC50 value of 1 µM in rat…

  • Cayman Chemical

    A natural yellow carotenoid, which can be found in plants, egg yolks, and in the human retina; a lipid-soluble antioxidant that can circulate in the plasma and confer cardioprotective, anti-inflammatory, and anti-angiogenic effects.

  • Cayman Chemical

    Inhibits calcium/calmodulin-dependent phosphodiesterase from bovine brain, presumably PDE1 (IC50 = 15 mM).

  • Selectively and competitively blocks T3 binding to both TRα and TRβ (IC50s = 1.5 µM), demonstrating ~1000-fold lower affinity for TRα in intact cells compared with T3.

  • A selective agonist of α2-adrenoceptors (Ki = 1.08 nM vs. 1750 nM for α1-adrenoceptors) that has sedative, antinociceptive, analgesic, and hypothermic actions; additive or synergistic with fentanyl-type opioids in reducing pain; has anesthetic sparing properties.

  • Cayman Chemical

    A potent inhibitor of specific IAPs that binds baculovirus IAP repeat (BIR) domains (Kis = 28, 14, 17, and 43 nM for XIAP BIR3, NL-IAP BIR, BIRC2 (c-IAP1) BIR3, and BIRC3 (c-IAP2) BIR3, respectively); induces activation of caspases, decreasing the viability of cancer cells without affecting normal cells.

  • Cayman Chemical

    A staurosporine derivative that binds to dephosphorylated c-Met kinase and to the colchicine binding site of tubulin; promotes mitotic arrest and apoptosis of various human tumor cell lines (EC50s ranging from 60-600 nM).

  • Cayman Chemical

    A mycotoxin produced by a variety of molds, including Aspergillus and Penicillium, commonly found in rotting apples; demonstrates an oral LD50 between 29 and 55 mg/kg body weight in rodents and 170 mg/kg body weight in poultry and has been shown to induce nephropathy and gastrointestinal tract…

  • Cayman Chemical

    A potent antagonist for the human IP (prostacyclin) receptor that antagonizes the carbaprostacyclin-induced activation of human neuroblastoma adenylate cyclase, blocking cAMP accumulation in a dose-dependent manner; inhibits the binding of tritiated iloprost to rodent neuroblastoma cells (Ki = ~ 3 nM).

  • Cayman Chemical

    A semisynthetic analog of taxol that inhibits microtubule disassembly (IC50 = 0.2 μM) and inhibits cell replication (IC50 = 0.13 μM); has applications in breast cancer and hormone-refractory prostate cancer; intended for research applications.

  • The ethanolamine amide of DHA that has been detected in both brain and retina at concentrations similar to those for AEA; binds to the rat brain CB1 receptor (Ki = 324 nM), which is approximately 10-fold higher than the Ki for AEA; inhibits shaker-related voltage-gated potassium channels in brain…

  • Cayman Chemical

    A highly selective ERα receptor antagonist (Ki = 5.6 nM; IC50 = 80 nM).

  • Cayman Chemical

    Furegrelate is a potent inhibitor of thromboxane synthase with little effect on other enzymes essential for arachidonate metabolism. The IC50 value is 15 nM for human platelet microsomal thromboxane synthase.

  • Cayman Chemical

    A cell-permeable mycotoxin which binds to the barbed end of actin, reversibly inhibiting the elongation and shortening of actin filaments; blocks diverse cellular functions, including cell division, migration, phagocytosis, exocytosis, chemotaxis, and glucose transport.

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