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A2793 Sale

(Synonyms: 2-[(5-氯-8-喹啉基)氧基]乙酸乙酯) 目录号 : GC60545

A2793 (Ethyl [(5-Chloroquinolin-8-yl)oxy]acetate) is an efficient inhibitor of TWIK-related spinal cord potassium channel (TRESK, K2P18, KCNK18) and TASK-1 (KCNK3) with IC50 of 6.8 μM for mouse TRESK.

A2793 Chemical Structure

Cas No.:88349-90-0

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5mg
¥1,350.00
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10mg
¥1,800.00
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25mg
¥3,240.00
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50mg
¥4,860.00
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100mg
¥7,290.00
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产品描述

A2793 (Ethyl [(5-Chloroquinolin-8-yl)oxy]acetate) is an efficient inhibitor of TWIK-related spinal cord potassium channel (TRESK, K2P18, KCNK18) and TASK-1 (KCNK3) with IC50 of 6.8 μM for mouse TRESK.

[1] Miklós Lengyel, et al. Mol Pharmacol. 2019 Jun;95(6):652-660.

Chemical Properties

Cas No. 88349-90-0 SDF
别名 2-[(5-氯-8-喹啉基)氧基]乙酸乙酯
Canonical SMILES O=C(OCC)COC1=C2N=CC=CC2=C(Cl)C=C1
分子式 C13H12ClNO3 分子量 265.69
溶解度 DMSO: 100 mg/mL (376.38 mM) 储存条件 Store at -20°C
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1 mg 5 mg 10 mg
1 mM 3.7638 mL 18.8189 mL 37.6378 mL
5 mM 0.7528 mL 3.7638 mL 7.5276 mL
10 mM 0.3764 mL 1.8819 mL 3.7638 mL
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Research Update

Chemically Modified Derivatives of the Activator Compound Cloxyquin Exert Inhibitory Effect on TRESK (K2P18.1) Background Potassium Channel

Mol Pharmacol 2019 Jun;95(6):652-660.PMID:30979812DOI:10.1124/mol.118.115626.

Cloxyquin has been reported as a specific activator of TRESK [TWIK-related spinal cord K+ channel (also known as K2P18.1)] background potassium channel. In this study, we have synthetized chemically modified analogs of cloxyquin and tested their effects on TRESK and other K2P channels. The currents of murine K2P channels, expressed heterologously in Xenopus oocytes, were measured by two-electrode voltage clamp, whereas the native background K+ conductance of mouse dorsal root ganglion (DRG) neurons was examined by the whole-cell patch-clamp method. Some of the analogs retained the activator character of the parent compound, but, more interestingly, other derivatives inhibited mouse TRESK current. The inhibitor analogs (A2764 and A2793) exerted state-dependent effects. The degree of inhibition by 100 µM A2764 (77.8% ± 3.5%, n = 6) was larger in the activated state of TRESK (i.e., after calcineurin-dependent stimulation) than in the resting state of the channel (42.8% ± 11.5% inhibition, n = 7). The selectivity of the inhibitor compounds was tested on several K2P channels. A2793 inhibited TWIK-related acid-sensitive K+ channel (TASK)-1 (100 µM, 53.4% ± 13, 5%, n = 5), while A2764 was more selective for TRESK, it only moderately influenced TREK-1 and TWIK-related alkaline pH-activated K+ channel. The effect of A2764 was also examined on the background K+ currents of DRG neurons. A subpopulation of DRG neurons, prepared from wild-type animals, expressed background K+ currents sensitive to A2764, whereas the inhibitor did not affect the currents in the DRG neurons of TRESK-deficient mice. Accordingly, A2764 may prove to be useful for the identification of TRESK current in native cells, and for the investigation of the role of the channel in nociception and migraine. SIGNIFICANCE STATEMENT: TRESK background potassium channel is a potential pharmacological target in migraine and neuropathic pain. In this study, we have identified a selective inhibitor of TRESK, A2764. This compound can inhibit TRESK in native cells, leading to cell depolarization and increased excitability. This new inhibitor may be of use to probe the role of TRESK channel in migraine and nociception.

[A woman with a painful ankle]

Ned Tijdschr Geneeskd 2012;156(4):A2793.PMID:22278033doi

A 17-year-old woman was hit on the left ankle during hockey. There was pain over the dorsal fibula, though no swelling. During dorsiflexion the tendon of the M. peroneus could be luxated over the lateral malleolus towards the front. This was consistent with a peroneal tendon dislocation at the level of the lateral malleolus.