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Results for "

e-21

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    18
    TargetMol | Inhibitors_Agonists
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    3
    TargetMol | Peptide_Products
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    3
    TargetMol | Natural_Products
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    TargetMol | Antibody_Products
mdk5466
MDK-5466, MDK 5466, Flt3-IN-III, Flt3 Inhibitor III, E21
T24438852045-46-6
MDK5466 is an Flt3 inhibitor that acts by preventing glutamate-induced cell death.
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6-8 weeks
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Tetrapeptide-21 Acetate
Tetrapeptide-21 Acetate(960608-17-7 Free base)
TP2489
Tetrapeptide-21 Acetate is a novel bioactive and pure tetrapeptide with anti-aging properties based on the skin's own structures for use in skincare formulations.
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TargetMol | Inhibitor Sale
3beta-Hydroxylanosta-8,24-diene-21-al
T123844
3beta-Hydroxylanosta-8,24-diene-21-al is a useful organic compound for research related to life sciences and the catalog number is T123844.
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Betamethasone-17-butyrate-21-propionate
T135785534-02-1
Betamethasone-17-butyrate-21-propionate is a topical corticosteroid used to treat inflammatory skin diseases.
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3-6 months
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Corticosterone-21-hemisuccinate sodium
05TU0WU82S
T20199618843-27-1
Corticosterone, an adrenal corticosteroid, serves as a primary glucocorticoid. Despite having moderate effects on mineralocorticoid and glucocorticoid activity, it plays a crucial role.
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Corticosterone-21-hemisuccinate
IU50V885SP, Corticosterone hemisuccinate
T20202110215-77-7
Corticosterone is an adrenocorticosteroid, primarily functioning as a glucocorticoid with moderate mineralocorticoid and glucocorticoid activities.
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Pyrone-211
T20534490632-45-4
Pyrone-211 acts as a potent GPR84 agonist and an AKR1C3 inhibitor. It is involved in the extended polyamine pathway.
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7-10 days
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Hydrocortisone-21-lysinate
T2551195924-98-4
Hydrocortisone-21-lysinate is a hydrocortisone prodrug that is water soluble.
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6-8 weeks
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JE-2147
JE2147, JE 2147, AG-1776, AG1776, AG 1776
T32285186538-00-1
JE-2147 belongs to a type of compound known as hybrid peptides. The compound contains at least two different kinds of amino acids (alpha, beta, gamma, delta) linked to each other through a peptide bond.
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JE-2178
JE2178
T32286210181-19-4
JE-2178 is compound with high bioavailability .
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Tetrapeptide-21
T81007960608-17-7
Tetrapeptide-21, a bioactive peptide with anti-wrinkle and skin hyperpigmentation-reducing effects, is commonly used as a cosmetic ingredient [1].
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Zomepirac sodium salt
Zomepirac Sodium, McN-2783-21-98
T026464092-48-4
Zomepirac sodium salt (McN-2783-21-98) is a prostaglandin synthetase inhibitor.
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TargetMol | Inhibitor Sale
10'-Desmethoxystreptonigrin
T35607136803-89-9
10'-Desmethoxystreptonigrin is an antibiotic originally isolated from Streptomyces and a derivative of the antibiotic streptonigrin. It is active against a variety of bacteria, including S. aureus, S. faecalis, E. coli, K. pneumoniae, and P. vulgaris (MICs = 0.4, 1.6, 3.1, 3.1 and 0.4 μg/ml, respectively). 10'-Desmethoxystreptonigrin is cytotoxic to HCT116 colon and A2780 ovarian cancer cells (IC50s = 0.004 and 0.001 μg/ml, respectively), as well as HCT116 cells resistant to etoposide and teniposide and cisplatin-resistant A2780 cells (IC50s = 0.003, 0.001, and 0.01 μg/ml, respectively). 10'-Desmethoxystreptonigrin is also an inhibitor of p21ras farnesylation (IC50 = 21 nM).
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Urocortin III (human) (trifluoroacetate salt)
T35814
Urocortin III is a neuropeptide hormone and member of the corticotropin-releasing factor (CRF) family which includes mammalian CRF , urocortin , urocortin II , frog sauvagine, and piscine urotensin I.1 Human urocortin III shares 90, 40, 37, and 21% identity to mouse urocortin III , mouse urocortin II , human urocortin , and mouse urocortin, respectively. Urocortin III selectively binds to type 2 CRF receptors (Kis = 21.7, 13.5, and >100 nM for rat CRF2α, rat CRF2β, and human CRF1, respectively). It stimulates cAMP production in CHO cells expressing rat CRF2α and mouse CRF2β (EC50s = 0.16 and 0.12 nM, respectively) as well as cultured anterior pituitary cells expressing endogenous CRF2β. Urocortin III is co-released with insulin to potentiate glucose-stimulated somatostatin release in vitro in human pancreatic β-cells.2 In vivo, urocortin III reduces food intake in a dose- and time-dependent manner in mice with a minimum effective dose (MED) of 0.3 nmol/animal.3 It increases swimming time in a forced swim test in mice, indicating antidepressant-like activity.4References1. Lewis, K., Li, C., Perrin, M.H., et al. Identification of urocortin III, an additional member of the corticotropin-releasing factor (CRF) family with high affinity for the CRF2 receptor. Proc. Natl. Acad. Sci. U.S.A. 98(13), 7570-7575 (2001).2. van der Meulen, T., Donaldson, C.J., Cáceres, E., et al. Urocortin3 mediates somatostatin-dependent negative feedback control of insulin secretion. Nat. Med. 21(7), 769-776 (2015).3. Pelleymounter, M.A., Joppa, M., Ling, N., et al. Behavioral and neuroendocrine effects of the selective CRF2 receptor agonists urocortin II and urocortin III. Peptides 25(4), 659-666 (2004).4. Tanaka, M., Kádár, K., Tóth, G., et al. Antidepressant-like effects of urocortin 3 fragments. Brain Res. Bull. 84(6), 414-418 (2011). Urocortin III is a neuropeptide hormone and member of the corticotropin-releasing factor (CRF) family which includes mammalian CRF , urocortin , urocortin II , frog sauvagine, and piscine urotensin I.1 Human urocortin III shares 90, 40, 37, and 21% identity to mouse urocortin III , mouse urocortin II , human urocortin , and mouse urocortin, respectively. Urocortin III selectively binds to type 2 CRF receptors (Kis = 21.7, 13.5, and >100 nM for rat CRF2α, rat CRF2β, and human CRF1, respectively). It stimulates cAMP production in CHO cells expressing rat CRF2α and mouse CRF2β (EC50s = 0.16 and 0.12 nM, respectively) as well as cultured anterior pituitary cells expressing endogenous CRF2β. Urocortin III is co-released with insulin to potentiate glucose-stimulated somatostatin release in vitro in human pancreatic β-cells.2 In vivo, urocortin III reduces food intake in a dose- and time-dependent manner in mice with a minimum effective dose (MED) of 0.3 nmol/animal.3 It increases swimming time in a forced swim test in mice, indicating antidepressant-like activity.4 References1. Lewis, K., Li, C., Perrin, M.H., et al. Identification of urocortin III, an additional member of the corticotropin-releasing factor (CRF) family with high affinity for the CRF2 receptor. Proc. Natl. Acad. Sci. U.S.A. 98(13), 7570-7575 (2001).2. van der Meulen, T., Donaldson, C.J., Cáceres, E., et al. Urocortin3 mediates somatostatin-dependent negative feedback control of insulin secretion. Nat. Med. 21(7), 769-776 (2015).3. Pelleymounter, M.A., Joppa, M., Ling, N., et al. Behavioral and neuroendocrine effects of the selective CRF2 receptor agonists urocortin II and urocortin III. Peptides 25(4), 659-666 (2004).4. Tanaka, M., Kádár, K., Tóth, G., et al. Antidepressant-like effects of urocortin 3 fragments. Brain Res. Bull. 84(6), 414-418 (2011).
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Flumequine-13C3
Flumequine-13C3
T360211185049-09-5
Flumequine-13C3is intended for use as an internal standard for the quantification of flumequine by GC- or LC-MS. Flumequine is a fluoroquinolone antibiotic.1It is active againstS. aureus, S. pyogenes, B. subtilis, E. coli, P. aeruginosa, S. faecalis, andK. pneumoniae(MICs = 1-100 μg/ml). Flumequine is also active against field isolates of B. hyodysenteriae (MICs = 6.25-200 μg/ml).2It inhibits DNA gyrase, disrupting supercoiling of bacterial DNA to block transcription and replication.3In vivo, flumequine (50 mg/kg) increases survival in rat models ofP. vulgaris-induced urinary tract infection andP. mirabilis-induced prostatitis.1Formulations containing flumequine have been used in the treatment of urinary tract infections in veterinary medicine. 1.Rohlfing, S.R., Gerster, J.R., and Kvam, D.C.Bioevaluation of the antibacterial flumequine for urinary tract useAntimicrob. Agents Chemother.10(1)20-24(1976) 2.Aller-Morán, L.M., Martínez-Lobo, F.J., Rubio, P., et al.Evaluation of the in vitro activity of flumequine against field isolates of Brachyspira hyodysenteriaeRes. Vet. Sci.10351-53(2015) 3.Smith, J.T.The mode of action of 4-quinolones and possible mechanisms of resistanceJ. Antimicrob. Chemother.18 (Suppl. D)21-29(1986)
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Terpendole I
T36329167612-17-1
Terpendole I is a fungal metabolite that has been found in A. yamanashiensis.1 It is a weak inhibitor of acyl-coenzyme A:cholesterol acyltransferase (ACAT; IC50 = 145 μM) and is active against the bacteria B. cereus and B. subtilis (MICs = 100 μg/ml for both) but not S. aureus, P. aeruginosa, or K. pneumoniae (MICs = >200 μg/ml for all) or the fungus C. albicans (MIC = 200 μg/ml).1,2 It is cytotoxic to HeLa cells with an IC50 value of 52.6 μM.3 |1. Tomoda, H., Tabata, N., Yang, D.-J., et al. Terpendoles, novel ACAT inhibitors produced by Albophoma yamanashiensis. III. Production, isolation and structure elucidation of new components. J. Antibiot. (Tokyo) 48(8), 793-804 (1995).|2. Zhao, J.-C., Wang, Y.-L., Zhang, T.-Y., et al. Indole diterpenoids from the endophytic fungus Drechmeria sp. as natural antimicrobial agents. Phytochemistry 148, 21-28 (2018).|3. Nagumo, Y., Motoyama, T., Hayashi, T., et al. Structure-activity relationships of terpendole E and its natural derivatives. ChemistrySelect 2(4), 1533-1536 (2017).
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Avilamycin A
T3775469787-79-7
Avilamycin A is an antibiotic.1 It is active against veterinary isolates of C. perfringens (MICs = ≤0.06-0.5 mg/L) and B. hyodysenteriae (MICs = 12.5-100 μg/ml).1,2 Dietary administration of avilamycin A (15 and 30 ppm) reduces mortality in a broiler cockerel model of C. perfringens infection.3 Formulations containing avilamycin A have been used in the prevention of necrotic enteritis in livestock. |1. Watkins, K.L., Shryock, T.R., Dearth, R.N., et al. In-vitro antimicrobial susceptibility of Clostridium perfringens from commercial turkey and broiler chicken origin. Vet. Microbiol. 54(2), 195-200 (1997).|2. Uezato, K., Kinjo, E., and Adachi, Y. In vitro susceptibility of 21 antimicrobial agents to 37 isolates of Brachyspira hyodysenteriae isolated from pigs in Okinawa Prefecture. J. Vet. Med. Sci. 66(3), 307-309 (2004).|3. Paradis, M.A., McMillan, E., Bagg, R., et al. Efficacy of avilamycin for the prevention of necrotic enteritis caused by a pathogenic strain of Clostridium perfringens in broiler chickens. Avian Pathol. 45(3), 365-369 (2016).
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Protoescigenin 21-tiglate
(E)-21-Angeloyl-protoaescigenin
TN81137047-43-0
Protoescigenin 21-tiglate (compound 10), a type of Bayberry Triterpenoid Saponin (BAT), can be isolated from the acidic hydrolyzed products (AHP) of a crude extract derived from bayberry seeds. BATs are generally known for their robust anti-tumor, anti-inflammatory, and anti-Alzheimer's activities. However, the anti-tumor activity of Protoescigenin 21-tiglate is relatively weak, with inhibitory concentrations (IC50) exceeding 80 μM for MCF-7 and at 80 μM for HeLa cells.
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