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TUG-424

CAS No. 1082058-99-8

TUG-424 ( TUG424 )

产品货号. M26853 CAS No. 1082058-99-8

TUG-424 在 100 nM 时可显着增强葡萄糖刺激的胰岛素分泌。 TUG-424 是一种有效的选择性游离脂肪酸受体 1 激动剂 (EC50: 32 nM)。

纯度: >98% (HPLC)

COA Datasheet HNMR HPLC MSDS Handing Instructions
规格 价格/人民币 库存 数量
5MG ¥1312 有现货
10MG ¥1887 有现货
25MG ¥3151 有现货
50MG ¥4690 有现货
100MG ¥6715 有现货
500MG ¥13608 有现货
1G 获取报价 有现货

生物学信息

  • 产品名称
    TUG-424
  • 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
    TUG-424 在 100 nM 时可显着增强葡萄糖刺激的胰岛素分泌。 TUG-424 是一种有效的选择性游离脂肪酸受体 1 激动剂 (EC50: 32 nM)。
  • 产品描述
    TUG-424 significantly enhances glucose-stimulated insulin secretion at 100 nM. TUG-424 is a potent and selective free fatty acid receptor 1 agonist (EC50: 32 nM).(In Vitro):In the presence of the same glucose concentration, the approximately 2-fold stimulation of secretion by TUG-424 in the presence of 12 mM glucose is comparable to that induced by palmitate. Increasing concentrations (100 nM to 10 μM) of TUG-424 enhances glucose-stimulated insulin secretion significantly already at 100 nM and with a maximal effect at 3 μM. Basal insulin secretion at 2.8 mM glucose is slightly but significantly reduces by TUG-424 .
  • 体外实验
    Increasing concentrations (100 nM to 10 μM) of TUG-424 enhances glucose-stimulated insulin secretion significantly already at 100 nM and with a maximal effect at 3 μM. The approximately 2-fold stimulation of secretion by TUG-424 in the presence of 12 mM glucose is comparable to that induced by palmitate in the presence of the same glucose concentration. Basal insulin secretion at 2.8 mM glucose is slightly but significantly reduces by TUG-424.
  • 体内实验
    ——
  • 同义词
    TUG424
  • 通路
    Others
  • 靶点
    Other Targets
  • 受体
    Human Endogenous Metabolite
  • 研究领域
    ——
  • 适应症
    ——

化学信息

  • CAS Number
    1082058-99-8
  • 分子量
    264.324
  • 分子式
    C18H16O2
  • 纯度
    >98% (HPLC)
  • 溶解度
    ——
  • SMILES
    Cc1ccccc1C#Cc1ccc(CCC(O)=O)cc1
  • 化学全称
    ——

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.?uczyńska G, et al. Expectation-Maximization Model for Substitution of Missing Values Characterizing Greenness of Organic Solvents. Molecules. 2018 May 28;23(6):1292.
产品手册
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