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Bitopertin R enantiomer

CAS No. 845614-12-2

Bitopertin R enantiomer ( RG-1678 R enantiomer | RO-4917838 R enantiomer )

产品货号. M16142 CAS No. 845614-12-2

一种有效的选择性 GlyT1 抑制剂,EC50 为 54 nM。

纯度: >98% (HPLC)

COA Datasheet HNMR HPLC MSDS Handing Instructions
规格 价格/人民币 库存 数量
25MG ¥5003 有现货
50MG ¥6501 有现货
100MG ¥9540 有现货
500MG 获取报价 有现货
1G 获取报价 有现货

生物学信息

  • 产品名称
    Bitopertin R enantiomer
  • 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
  • 产品简述
    一种有效的选择性 GlyT1 抑制剂,EC50 为 54 nM。
  • 产品描述
    A potent and selective GlyT1 inhibitor with EC50 of 54 nM; no activity for GlyT2, hERG, CYP450 enzymes above 10 uM; the R enantiomer of RG-1678.Schizophrenia Phase 3 Clinical.
  • 体外实验
    Bitopertin (RG1678) competitively blocks [3H]ORG24598 binding sites at human GlyT1b in membranes from Chinese hamster ovary cells. Bitopertin potently inhibits [3H]glycine uptake in cells stably expressing hGlyT1b and mGlyT1b, with IC50 values of 25±2 nM and 22±5 nM, respectively (n=6). Conversely, Bitopertin has no effect on hGlyT2-mediated glycine uptake up to 30 μM concentration. Bitopertin has high affinity for the recombinant hGlyT1b transporter. Under equilibrium conditions (1 h at room temperature), Bitopertin displaces [3H]ORG24598 binding with a Ki of 8.1 nM. In hippocampal CA1 pyramidal cells, Bitopertin enhances NMDA-dependent long-term potentiation at 100 nM but not at 300 nM. Additional profiling revealed that Bitopertin (RG1678) has an excellent selectivity profile against the GlyT2 isoform (IC50>30 μM) and toward a panel of 86 targets including transmembrane and soluble receptors, enzymes, ion channels, and monoamine transporters (<41% inhibition at 10 μM is measured for all targets).
  • 体内实验
    Bitopertin (RG1678) dose-dependently increases cerebrospinal fluid and striatal levels of glycine measured bymicrodialysis in rats. Additionally Bitopertin attenuates hyperlocomotion induced by the psychostimulant D-amphetamine or the NMDA receptor glycine site antagonist L-687,414 in mice. Bitopertin also prevents the hyper-response to D-amphetamine challenge in rats treated chronically with phencyclidine, an NMDA receptor open-channel blocker. Administration of vehicle has no effect on extracellular levels of striatal glycine, which remained constant throughout the experiment. In contrast, p.o. administration of Bitopertin (1-30 mg/kg) produced a dose-dependent increase in extracellular glycine levels. Bitopertin 30 mg/kg produces glycine levels 2.5 times higher than pretreatment levels. A similar dose-dependent increase in glycine concentration is observed in the CSF of rats treated p.o. with Bitopertin (1-10 mg/kg) compared with vehicle-treated animals, 3 h after drug administration. Interestingly, the level of CSF glycine increase 3 h after Bitopertin dosing is very similar to the increase in the microdialysis experiment at the same time point. In vivo pharmacokinetic studies in rat and monkey reveals that Bitopertin (RG1678) has, in both species, a low plasma clearance, an intermediate volume of distribution, a good oral bioavailability (78% for rat, 56% for monkey), and a favorable terminal half-life (5.8 h for rat, 6.4 h for monkey). The plasma protein binding is high in the two preclinical species (97%) and in human (98%). The CNS penetration of Bitopertin in rat (brain/plasma=0.7) is better than that in mouse (brain/plasma=0.5).
  • 同义词
    RG-1678 R enantiomer | RO-4917838 R enantiomer
  • 通路
    Membrane Transporter/Ion Channel
  • 靶点
    GlyT
  • 受体
    GlyT
  • 研究领域
    Neurological Disease
  • 适应症
    Schizophrenia

化学信息

  • CAS Number
    845614-12-2
  • 分子量
    543.455
  • 分子式
    C21H20F7N3O4S
  • 纯度
    >98% (HPLC)
  • 溶解度
    10 mM in DMSO
  • SMILES
    FC1=CC(C(F)(F)F)=CN=C1N2CCN(C(C3=CC(S(=O)(C)=O)=CC=C3O[C@@H](C(F)(F)F)C)=O)CC2
  • 化学全称
    Methanone, [4-[3-fluoro-5-(trifluoromethyl)-2-pyridinyl]-1-piperazinyl][5-(methylsulfonyl)-2-[(1R)-2,2,2-trifluoro-1-methylethoxy]phenyl]-

运输与储存

  • 储存条件
    (-20℃)
  • 运输条件
    With Ice Pack
  • 稳定性
    ≥ 2 years

参考文献

1. Pinard E, et al. J Med Chem. 2010 Jun 24;53(12):4603-14. 2. Alberati D, et al. Neuropharmacology. 2012 Feb;62(2):1152-613. Martin-Facklam M, et al. Neuropsychopharmacology. 2013 Feb;38(3):504-12.
产品手册
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