9-Phenanthrol

Discontinued Product

4999 has been discontinued.

View all TRPM Channels products.
说明: Selective TRPM4 blocker
化学名: 9-Hydroxyphenanthrene
说明书
引用文献 (4)
评论

生物活性 for 9-Phenanthrol

9-Phenanthrol is a selective TRPM4 blocker (IC50 = 20 μM in HEK293 cells). Exhibits no effect on CFTR or TRPM5 (at 0.25 and 1 mM respectively). Abolishes arrhythmias induced by hypoxia in a mouse heart model.

技术数据 for 9-Phenanthrol

分子量 194.23
公式 C14H10O
储存 Store at +4°C
CAS Number 484-17-3
PubChem ID 10229
InChI Key DZKIUEHLEXLYKM-UHFFFAOYSA-N
Smiles OC2=CC1=C(C3=C2C=CC=C3)C=CC=C1

上方提供的技术数据仅供参考。批次相关数据请参见分析证书。

Tocris products are intended for laboratory research use only, unless stated otherwise.

产品说明书 for 9-Phenanthrol

分析证书/产品说明书
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参考文献 for 9-Phenanthrol

参考文献是支持产品生物活性的出版物。

Simard et al (2012) Transient receptor potential melastatin 4 inhibitor 9-phenanthrol abolishes arrhythmias induced by hypoxia and re-oxygenation in mouse ventricle. Br.J.Pharmacol. 165 2354 PMID: 22014185

Grand et al (2008) 9-phenanthrol inhibits human TRPM4 but not TRPM5 cationic channels. Br.J.Pharmacol. 153 1697 PMID: 18297105

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关键词: 9-Phenanthrol, 9-Phenanthrol supplier, Transient, receptor, potential, TRPM4, blockers, TRP, channels, arrhythmias, cardiac, heart, anti-arrhythmic, depolarisations, TRPM, 4999, Tocris Bioscience

4 篇 9-Phenanthrol 的引用文献

引用文献是使用了 Tocris 产品的出版物。 9-Phenanthrol 的部分引用包括:

Douglas A et al (2021) TRPM4 mediates a subthreshold membrane potential oscillation in respiratory chemoreceptor neurons that drives pacemaker firing and breathing. Cell Rep 34 108714 PMID: 33535052

Virginie et al (2021) Trpm5 channels encode bistability of spinal motoneurons and ensure motor control of hindlimbs in mice. Nat Commun 12 6815 PMID: 34819493

Lin et al (2017) Differential Contribution of Ca2+-Dependent Mechanisms to Hyperexcitability in Layer V Neurons of the Medial Entorhinal Cortex. Front Cell Neurosci 11 182 PMID: 28713246

O'Malley et al (2020) TRPM4 Conductances in Thalamic Reticular Nucleus Neurons Generate Persistent Firing during Slow Oscillations. J Neurosci 40 4813 PMID: 32414784


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