SCYX-7158
CAS No. 1266084-51-8
SCYX-7158 ( AN-5568 | SCYX 7158 | AN 5568 | Acoziborole )
产品货号. M11117 CAS No. 1266084-51-8
SCYX-7158 (AN-5568, Acoziborole) 是一种口服活性、中枢神经系统可渗透的苯并沙硼罗抗原虫剂。
纯度: >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| 规格 | 价格/人民币 | 库存 | 数量 |
| 2MG | ¥2356 | 有现货 |
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| 25MG | ¥9179 | 有现货 |
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| 50MG | ¥12369 | 有现货 |
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| 100MG | ¥15750 | 有现货 |
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| 500MG | 获取报价 | 有现货 |
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| 1G | 获取报价 | 有现货 |
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| 1 mL x 10 mM in DMSO | ¥3021 | 有现货 |
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生物学信息
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产品名称SCYX-7158
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注意事项本公司产品仅用于科研实验,不得用于人体或动物的临床与诊断
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产品简述SCYX-7158 (AN-5568, Acoziborole) 是一种口服活性、中枢神经系统可渗透的苯并沙硼罗抗原虫剂。
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产品描述SCYX-7158 (AN-5568, Acoziborole) is an orally-active, CNS permeable benzoxaborole antiprotozoal agent; is active in vitro against relevant strains of Trypanosoma brucei, including T. b. rhodesiense and T. b. gambiense; is efficacious in both stage 1 and stage 2 murine HAT models and has good physicochemical and ADMET properties for the treatment of stage 2 human African trypanosomiasis.Parasite Infection Phase 3 Clinical.
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体外实验Acoziborole is active in vitro against relevant strains of Trypanosoma brucei, including T. b. rhodesiense and T. b. gambiense.In whole cell assays, Acoziborole exhibits potent activity against representative T. b. brucei, T. b. rhodesiense and T. b. gambiense strains. IC50 values for Acoziborole are approximately 0.07 μg/mL to 0.37 μg/mL following incubation of the parasite strains with Acoziborole for 72 h. In the T. b. brucei S427 strain, the MIC value for Acoziborole is 0.6 μg/mL, approximately two times the IC50 measured for this strain. In contrast to the potent activity of Acoziborole against trypanosomes, no significant inhibition of cell proliferation is observed in an in vitro mammalian cell (L929 mouse cell line) assay at drug concentrations up to 50 μg/mL. The potential for Acoziborole to inhibit cytochrome P450 (CYP) enzymes is evaluated using P450-Glo assays for the human isoforms CYP3A4, CYP1A2, CYP2C19, CYP2C9 and CYP2D6. The IC50 values for Acoziborole in these assays are all above 10 μM.
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体内实验In uninfected mice, 4.3 mg/kg intravenous dose of Acoziborole show an apparent elimination half-life (t1/2) of 26.6 h; systemic clearance (CL) of 0.089 L/h/kg; a volume of distribution (Vdss) of 1.69 L/kg and area under the concentration-time curve (AUC0-24 h) of 48 h?μg/mL. Following an oral dose of 13.4 mg/kg, which corresponds to the lowest efficacious dose in the murine stage 2 HAT model, Acoziborole is rapidly absorbed, as a Cmax of 6.96 μg/mL is achieved in plasma at 6 h after dose, with an oral clearance (Cl/F) value of 0.163 L/h/kg, an AUC0-24 h of 82 h?μg/mL and absolute oral bioavailability of 55%. After a 26 mg/kg oral dose, which corresponds to the dose giving a 100% cure rate in the murine stage 2 HAT model, Cmax increases to 9.8 μg/mL and the AUC0-24 h is 113 h?μg/mL. In uninfected rats, following oral administration of Acoziborole at a nominal dose of 25 mg/kg (dose affording a 100% cure rate in mice), Cmax increases approximately 2 fold more than that in mice (Cmax=18.2 μg/mL) and AUC0-24 h, and hence oral clearance, improves approximately 4 fold (AUC0-24 h 291 h?μg/mL and CL/F=0.092 L/kg/h). The time to maximum concentration is similar to that in mice (tmax=8 h). Uninfected male and female cynomolgus monkeys are treated with Acoziborole at 2 mg/kg (IV) on study day 1 and 10 mg/kg (NG) on study day 8. Acoziborole exhibits excellent plasma pharmacokinetics, with CL of 0.022 L/h/kg; Vdss of 0.656 L/kg and area under the concentration-time curve 78.8 h?μg/mL, and 94.4 for AUC0-24 h and AUC0-inf, respectively, following intravenous administration.
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同义词AN-5568 | SCYX 7158 | AN 5568 | Acoziborole
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通路Microbiology/Virology
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靶点Parasite
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受体Parasite
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研究领域Infection
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适应症Parasite Infection
化学信息
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CAS Number1266084-51-8
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分子量367.102
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分子式C17H14BF4NO3
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纯度>98% (HPLC)
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溶解度DMSO : ≥ 125 mg/mL 340.51 mM
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SMILESFC1=CC(C(F)(F)F)=C(C(NC2=CC=C(C(C)(C)OB3O)C3=C2)=O)C=C1
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化学全称4-fluoro-N-(1-hydroxy-3,3-dimethyl-1,3-dihydrobenzo[c][1,2]oxaborol-6-yl)-2-(trifluoromethyl)benzamide
运输与储存
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储存条件(-20℃)
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运输条件With Ice Pack
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稳定性≥ 2 years
参考文献
1. Jacobs RT, et al. PLoS Negl Trop Dis. 2011 Jun;5(6):e1151.
2. Jacobs RT, et al. Future Med Chem. 2011 Aug;3(10):1259-78.
3. Wring S, et al. Parasitology. 2014 Jan;141(1):104-18.
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