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f-11

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  • Inhibitors & Agonists
    39
    TargetMol | Inhibitors_Agonists
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    2
    TargetMol | Peptide_Products
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DF-1111301
DF1111301, DF 1111301
T27159160665-99-6In house
DF-1111301 is a novel anti-allergic compound with anti-histamine H1 and anti-PAF activity.
  • $293 TargetMol
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IDF-11774
T55371429054-28-3
IDF-11774 is a HIF-1 inhibitor.It reduces hif-1α HRE luciferase activity (IC50 = 3.65 μM).
  • $55
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TargetMol | Citations Cited
11-Piperazinyldibenz[b,f][1,4]oxazepine
TD112621636-40-8
11-Piperazinyldibenz[b,f][1,4]oxazepine, with CAS No. 21636-40-8, is a fragment molecule that serves as an important scaffold for molecular linking, expansion, and modification. 11-Piperazinyldibenz[b,f][1,4]oxazepine provides a structural basis and research tool for the design and screening of novel drug candidates, and is commonly used in drug discovery, drug synthesis, and related research.
  • $35
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TargetMol | Inhibitor Sale
10,11-Dihydro-11-oxodibenzo[b,f][1,4]thiazepine
T654323159-07-7
10,11-Dihydro-11-oxodibenzo[b,f][1,4]thiazepine is a useful organic compound for research related to life sciences. The catalog number is T65432 and the CAS number is 3159-07-7.
    7-10 days
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    11-(1-Piperazinyl)-dibenzo[b,f][1,4]thiazepine dihydrochloride
    T65682111974-74-4
    11-(1-Piperazinyl)-dibenzo[b,f][1,4]thiazepine dihydrochloride is a useful organic compound for research related to life sciences. The catalog number is T65682 and the CAS number is 111974-74-4.
      7-10 days
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      9-Chloromethyl-10-hydroxy-11-F-Camptothecin
      T798832414594-22-0
      9-Chloromethyl-10-hydroxy-11-F-Camptothecin, a novel derivative of camptothecin, functions as a DNA topoisomerase I (Topo I) inhibitor with potential applications in anticancer research [1].
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      8-10 weeks
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      11(α)-Methoxysaikosaponin F
      11alpha-Methoxysaikosaponin F
      TN1186104109-37-7
      11alpha-Methoxysaikosaponin F is a natural product
      • $1,080
      7-10 days
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      GDCNF-11
      T2006932991588-80-6
      GDCNF-11, an HSP90-based HIM-PROTACGPX4 degrader, facilitates the ubiquitination and degradation of GPX4 through the HSP90 chaperone complex. This reduction in endogenous GPX4 induces ferroptosis in HT-1080 cells, with a DC50 value of 0.08 μM.
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      PF-1163B
      PF1163B,(-)-PF1163B,PF 1163B
      T28379258871-60-2
      PF-1163B is an antifungal agent form Penicillium sp. II. PF-1163B inhibits ergosterol (ERG) synthesis with IC50 value of 34 ng/ml. PF-1163B showed potent growth inhibitory activity against pathogenic fungal strain Candida albicans but did not show cytotox
      • $1,880
      35 days
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      PF-1185A
      PF 1185A
      T33951339076-07-2
      PF-1185A is a bio-active chemical.
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      3-6 months
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      VUF-11222
      VUF11222, VUF 11222
      T350851414376-84-3
      VUF-11222 is a CXCR3 nonmimetic peptide agonist that induces gliosis.VUF 11222 has been used in the study of retinal inflammation.
      • $64
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      STF-118804
      STF 118804, STF118804
      T6682894187-61-2
      STF-118804, a highly specific NAMPT inhibitor, reduces the viability of most B-ALL cell lines with an IC50 of less than 10 nM.
      • $30
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      GXF-111
      T79034
      GXF-111, a proteolysis targeting chimera (PROTAC) molecule, efficiently induces the selective degradation of the BRD3 and BRD4-L proteins. It exhibits high binding affinities to both BRD3 BD1 and BRD3 BD2, with K i values of 11.97 nM and 2.35 nM, respectively. This compound is utilized in cancer research [1].
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      PF-1163A
      TN7560258871-59-9
      PF-1163A, a depsipeptide antifungal compound isolated from Penicillium, blocks ergosterol synthesis with an IC50 of 12 ng/ml. This compound specifically inhibits the enzyme ERG25p, a C-4 methyl oxidase in the ergosterol biosynthetic pathway, leading to its antifungal activity. Notably, in Saccharomyces cerevisiae modified to express ERG biosynthesis genes, PF-1163A exhibits an inhibition concentration (MIC value) of 12.5 µg/ml against ERG25p, though strains overexpressing ERG25p show resistance. Additionally, PF-1163A effectively suppresses the growth of Candida albicans (MIC = 8 µg/ml), without affecting other Candida species, Aspergillus fumigatus, or HepG2 cells. Remarkably, it enhances the efficacy of fluconazole against azole-resistant C. albicans strains, showing a significant decrease in MICs (1 and 0.0078 µg/ml alone and in combination, respectively). PF-1163A distinguishes itself from PF-1163B by its more polar nature.
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      CP-547632
      T10870L252003-65-9In house
      CP-547632 is an orally available and potent, ATP-competitive dual inhibitor of VEGFR-2 and FGF kinase F with IC50s of 11 nM and 9 nM, respectively. CP-547632 is selective, with higher selectivity for VEGFR2 and bFGF than for EGFR, PDGFRβ and related tyrosine kinases (TKs). PDGFRβ and related tyrosine kinases (TKs) CP-547632 has antitumour activity.
      • $30
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      BAY-6672
      BAY6672
      T397602247517-53-7
      BAY-6672 is a selective human prostaglandin F (FP) receptor antagonist that is highly potent (IC50=11 nM), orally available and well permeable. It exerts antifibrotic effects by inhibiting prostaglandin F2α (PGF₂α) activity through antagonizing the FP receptor, and has in vivo efficacy in animal models of idiopathic pulmonary fibrosis (IPF).
      • $196
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      Loratadine specified impurity F
      11-Fluoro dihydroloratadine
      T20814125743-80-8
      Loratadine specified impurity F is a fluorinated analog of Loratadine.
      • $413
      4-6 weeks
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      AZ-PFKFB3-67
      AZPFKFB3-67, AZ-PFKFB367
      T267301704741-11-6
      AZ-PFKFB3-67 is a potent and selective PFKFB3 kinase inhibitor with an IC50=11nM for PFKFB3, reduces MCL-1, and inhibits angiogenesis by decreasing lactic acid production and ATP levels in endothelial cells (ECs) in tube-forming assays, and has neuroprotective effects.
      • $44
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      Redaporfin
      LUZ-11, LUZ11, LUZ 11, F-2BMet, F2BMet, F 2BMet
      T342781224104-08-8
      Redaporfin, also known as F-2BMet or LUZ-11, is a photosensitizer for Photodynamic Therapy (PDT) of cancer. Redaporfin showed a high efficacy in the treatment of male BALB c mice with subcutaneously implanted colon (CT26) tumours. Vascular-PDT with 1.5 mg
      • Inquiry Price
      3-6 months
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      6-Prenylindole
      T3548523158-16-9
      6-Prenylindole is a bacterial metabolite that has been found in Streptomyces and has antifungal and antimalarial properties.1 It is active against A. brassicicola strain TP-F0423 and F. oxysporum f. sp. tulipae TU-4-2 (15 and 30 μg/disc in the paper disc assay), and also drug-resistant P. falciparum strain K1 (IC50 = 21 μg/ml).2 |1. Sasaki, T., Igarashi, Y., Ogawa, M., et al. Identification of 6-prenylindole as an antifungal metabolite of Streptomyces sp. TP-A0595 and synthesis and bioactivity of 6-substituted indoles. J. Antibiot. (Tokyo) 55(11), 1009-1012 (2002).|2. Nkunya, M.H., Makangara, J.J., and Jonker, S.A. Prenylindoles from Tanzanian Monodora and Isolona species. Nat. Prod. Res. 18(3), 253-258 (2004).
      • $791
      35 days
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      9(Z),11(E)-Conjugated Linoleic Acid (sodium salt)
      T35854756499-04-4
      9(Z),11(E)-Conjugated linoleic acid is an isomer of linoleic acid that has been found in beef and milk fat.1It binds to peroxisome proliferator-activated receptor α (PPARα; IC50= 140 nM) and activates the receptor in a reporter assay using COS-1 cells expressing mouse PPARα when used at a concentration of 100 μM.29(Z),11(E)-Conjugated linoleic acid inhibits TNF-α-inducedGLUT4expression and increases insulin-stimulated glucose transport in 3T3-L1 adipocytes.3Dietary administration of 9(Z)11(E)-conjugated linoleic acid reduces serum fasting glucose, insulin, and triglyceride levels and decreases white adipose tissue macrophage infiltration inob/obmice. It also increases body weight gain and body fat in weanling mice.4[Matreya, LLC. Catalog No. 1278] 1.Shultz, T.D., Chew, B.P., Seaman, W.R., et al.Inhibitory effect of conjugated dienoic derivatives of linoleic acid and β-carotene on the in vitro growth of human cancer cellsCancer Lett.63(2)125-133(1992) 2.Moya-Camarena, S.Y., Heuvel, J.P.V., Blanchard, S.G., et al.Conjugated linoleic acid is a potent naturally occurring ligand and activator of PPARαJ. Lipid Res.40(8)1426-1433(1999) 3.Moloney, F., Toomey, S., Noone, E., et al.Antidiabetic effects of cis-9, trans-11-conjugated linoleic acid may be mediated via anti-inflammatory effects in white adipose tissueDiabetes56(3)574-582(2007) 4.Pariza, M.W., Park, Y., and Cook, M.E.The biologically active isomers of conjugated linoleic acidProg. Lipid Res.40(4)283-298(2001)
      • $713
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      Benastatin A
      T35978138968-85-1
      Benastatin A is a polyketide synthase-derived benastatin that has been found inStreptomycesand has diverse biological activities.1,2,3It inhibits glutathione S-transferase (GST; Ki= 5 μM for the rat liver enzyme).2Benastatin A is active against several bacteria, including methicillin-resistantS. aureus(MRSA; MIC = 3.12 μg ml). It induces apoptosis and cell cycle arrest at the G1 G0phase in Colon 26 mouse colon cancer cells when used at concentrations of 20 and 16 μM, respectively.3 1.Xu, Z., Schenk, A., and Hertweck, C.Molecular analysis of the benastatin biosynthetic pathway and genetic engineering of altered fatty acid-polyketide hybridsJ. Am. Chem. Soc.129(18)6022-6030(2007) 2.Aoyagi, T., Aoyama, T., Kojima, F., et al.Benastatins A and B, new inhibitors of glutathione S-transferase, produced by Streptomyces sp. MI384-DF12. I. Taxonomy, production, isolation, physico-chemical properties and biological activitiesJ. Antibiot. (Tokyo)45(9)1385-1390(1992) 3.Kakizaki, I., Ookawa, K., Ishikawa, T., et al.Induction of apoptosis and cell cycle arrest in mouse colon 26 cells by benastatin AJpn. J. Cancer Res.91(11)1161-1168(2000)
      • $1,349
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      3-Hydroxyterphenyllin
      T3600066163-76-6
      3-Hydroxyterphenyllin is a p-terphenyl fungal metabolite originally isolated from A. candidus that has diverse biological activities, including antioxidant, antiproliferative, antibacterial, and antiviral properties.1,2,3,4 It has a 96% scavenging effect on 2,2-diphenyl-1-picrylhydrazyl radicals when used at a concentration of 100 μg/ml.2 3-Hydroxyterphenyllin inhibits the growth of HeLa cervical, A549 lung, and HepG2 liver cancer cells (IC50s = 23, 36, and 32 μM, respectively), as well as methicillin-resistant S. aureus (MRSA) and V. vulnificus bacteria (MIC = 31 μg/ml for both).3 It also inhibits HIV-1 integrase in both coupled and strand transfer assays (IC50s = 2.8 and 12.1 μM, respectively).4References1. Kurobane, I., Vining, L.C., McInnes, A.G., et al. 3-Hydroxyterphenyllin, a new metabolite of Aspergillus candidus. Structure elucidation by 1H and 13C nuclear magnetic resonance spectroscopy. J. Antibiot. (Tokyo) 32(6), 559-564 (1979).2. Yen, G.-C., Chang, Y.-C., Sheu, F., et al. Isolation and characterization of antioxidant compounds from Aspergillus candidus broth filtrate. J. Agric. Food Chem. 49(3), 1426-1431 (2001).3. Wang, W., Liao, Y., Tang, C., et al. Cytotoxic and antibacterial compounds from the coral-derived fungus Aspergillus tritici SP2-8-1. Mar. Drugs 15(11), E348 (2017).4. Singh, S.B., Jayasuriya, H., Dewey, R., et al. Isolation, structure, and HIV-1-integrase inhibitory activity of structurally diverse fungal metabolites. J. Ind. Microbiol. Biotechnol. 30(12), 721-731 (2003). 3-Hydroxyterphenyllin is a p-terphenyl fungal metabolite originally isolated from A. candidus that has diverse biological activities, including antioxidant, antiproliferative, antibacterial, and antiviral properties.1,2,3,4 It has a 96% scavenging effect on 2,2-diphenyl-1-picrylhydrazyl radicals when used at a concentration of 100 μg/ml.2 3-Hydroxyterphenyllin inhibits the growth of HeLa cervical, A549 lung, and HepG2 liver cancer cells (IC50s = 23, 36, and 32 μM, respectively), as well as methicillin-resistant S. aureus (MRSA) and V. vulnificus bacteria (MIC = 31 μg/ml for both).3 It also inhibits HIV-1 integrase in both coupled and strand transfer assays (IC50s = 2.8 and 12.1 μM, respectively).4 References1. Kurobane, I., Vining, L.C., McInnes, A.G., et al. 3-Hydroxyterphenyllin, a new metabolite of Aspergillus candidus. Structure elucidation by 1H and 13C nuclear magnetic resonance spectroscopy. J. Antibiot. (Tokyo) 32(6), 559-564 (1979).2. Yen, G.-C., Chang, Y.-C., Sheu, F., et al. Isolation and characterization of antioxidant compounds from Aspergillus candidus broth filtrate. J. Agric. Food Chem. 49(3), 1426-1431 (2001).3. Wang, W., Liao, Y., Tang, C., et al. Cytotoxic and antibacterial compounds from the coral-derived fungus Aspergillus tritici SP2-8-1. Mar. Drugs 15(11), E348 (2017).4. Singh, S.B., Jayasuriya, H., Dewey, R., et al. Isolation, structure, and HIV-1-integrase inhibitory activity of structurally diverse fungal metabolites. J. Ind. Microbiol. Biotechnol. 30(12), 721-731 (2003).
      • $445
      35 days
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      AMK (hydrochloride)
      T361761215711-91-3
      AMK is an active metabolite of the neurohormone melatonin .1,2,3,4It is formed from melatoninviathe metabolic intermediate AFMK that is then deformylated by catalase or formamidase.5,6AMK scavenges singlet oxygenin vitrowhen used at a concentration of 200 μM.1It inhibits the epinephrine- and arachidonic acid-induced production of prostaglandin E2and PGD2in ovine seminal vesicle microsomes in a concentration- and time-dependent manner, as well as LPS-induced increases in COX-2 levels in RAW 264.7 macrophages when used at a concentration of 500 μM.2,3AMK (20 mg kg) decreases MPTP-induced increases in lipid peroxidation in the cytosol and mitochondria from substantia nigra and striatum in a mouse model of MPTP-induced Parkinson's disease.4 1.Schaefer, M., and Hardeland, R.The melatonin metabolite N1-acetyl-5-methoxykynuramine is a potent singlet oxygen scavengerJ. Pineal Res.46(1)49-52(2009) 2.Kelly, R.W., Amato, F., and Seamark, R.F.N-acetyl-5-methoxy kynurenamine, a brain metabolite of melatonin, is a potent inhibitor of prostaglandin biosynthesisBiochem. Biophys. Res. Commun.121(1)372-379(1984) 3.Mayo, J.C., Sainz, R.M., Tan, D.-X., et al.Anti-inflammatory actions of melatonin and its metabolites, N1-acetyl-N2-formyl-5-methoxykynuramine (AFMK) and N1-acetyl-5-methoxykynuramine (AMK), in macrophagesJ. Neuroimmunol.165(1-2)139-149(2005) 4.Tapias, V., Escames, G., López, L.C., et al.Melatonin and its brain metabolite N1-acetyl-5-methoxykynuramine prevent mitochondrial nitric oxide synthase induction in parkinsonian miceJ. Neurosci. Res.87(13)3002-3010(2009) 5.Tan, D.-X., Manchester, L.C., Reiter, R.J., et al.Melatonin directly scavenges hydrogen peroxide: A potentially new metabolic pathway of melatonin biotransformationFree Radic. Biol. Med.29(11)1177-1185(2000) 6.Hirata, F., Hayaishi, O., Tokuyama, T., et al.In vitro and in vivo formation of two new metabolites of melatoninJ. Biol. Chem.249(4)1311-1313(1974)
      • $110
      35 days
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