产品说明书

ISX-9

Print
Chemical Structure| 832115-62-5 同义名 : -
CAS号 : 832115-62-5
货号 : A305535
分子式 : C11H10N2O2S
纯度 : 98%
分子量 : 234.274
MDL号 : MFCD04133937
存储条件:

粉末 Keep in dark place,Inert atmosphere,Room temperature

液体 -20°C:3-6个月-80°C:12个月

溶解度 :

DMSO: 105 mg/mL(448.19 mM),注意:DMSO长时间开封后,会吸水并导致溶解能力下降,请避免使用长期开封的DMSO

动物实验配方:

5% DMSO+55% PEG 300+water 10 mg/mL

生物活性
描述 ISX-9 (Isoxazole 9) strongly induces differentiation in adult neural stem cells, activating Ca2+ influx via voltage-gated Ca2+ channels and NMDA receptors, and elevates neuroD expression. Additionally, ISX-9 promotes cardiomyogenic differentiation in Notch-activated epicardium-derived cells (NECs)[1][2][3]. ISX-9 (Isoxazole 9) effectively promotes differentiation in adult neural stem cells. It initiates Ca2+ influx via voltage-gated Ca2+ channels and NMDA receptors, enhancing neuroD expression. Additionally, ISX-9 triggers cardiomyogenic differentiation in Notch-activated epicardium-derived cells (NECs)[1][2][3]. In vitro, ISX-9 stimulates neurogenesis in vivo by increasing both the proliferation and differentiation of neuroblasts in the hippocampal subgranular zone (SGZ) and the dendritic branching of neurons generated in the adult dentate gyrus. Between concentrations of 2.5-20 μM, ISX-9 is demonstrated to induce neurogenesis and inhibit gliogenesis in adult rat hippocampal stem cells via a calcium-activated signaling pathway that relies on gene expression regulated by myocyte-enhancer factor 2[1]. Molecular exploration of the regulation of ISX-9-induced neurogenesis (by flow cytometry and SGZ stem and progenitor cell microarrays) revealed the involvement of the myocyte enhancer protein family (MEF2) [1]. In vivo: Treatment with ISX-9 (20 mg/kg; for 12 days; mice) enhances hippocampal function. ISX-9 improves spatial memory performance in the Morris water maze test. ISX-9 boosts hippocampal neurogenesis and memory in vivo, with its effects depending on Mef2[1].
实验方案
1mg 5mg 10mg

1 mM

5 mM

10 mM

4.27mL

0.85mL

0.43mL

21.34mL

4.27mL

2.13mL

42.69mL

8.54mL

4.27mL

参考文献

[1]Wanling Xuan, et al. miRNAs in Extracellular Vesicles from iPS-Derived Cardiac Progenitor Cells Effectively Reduce Fibrosis and Promote Angiogenesis in Infarcted Heart. Stem Cells Int. 2019 Nov 11;2019:3726392. doi: 10.1155/2019/3726392. eCollection 2019.

[2]Jay W Schneider, et al. Small-molecule activation of neuronal cell fate. Nat Chem Biol. 2008 Jul;4(7):408-10.

[3]Jamie L Russell, et al. Targeting native adult heart progenitors with cardiogenic small molecules. ACS Chem Biol. 2012 Jun 15;7(6):1067-76.