Flufenamic acid-d4

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Flufenamic acid-d4 

Flufenamic acid-d4 是 Flufenamic acid 氘代物。Flufenamic acid 是一种非甾体类抗炎剂,能够抑制 COX 的活性,激活 AMPK 的活性,调节离子通道,阻滞氯离子通道 (chloride channel) 和 L-型钙离子通道 (L-type Ca2+ channel),调节非选择性阳离子通道,激活钾离子通道 (K+ channel) 等。Flufenamic acid 与TEAD2 YBD 的中央囊袋结合,抑制 TEAD 功能和 TEAD-YAP 依赖性过程,如细胞迁移和增殖。

Flufenamic acid-d4

Flufenamic acid-d4 Chemical Structure

CAS No. : 1185071-99-1

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生物活性

Flufenamic acid-d4 is deuterium labeled Flufenamic acid. Flufenamic acid is a non-steroidal anti-inflammatory agent, inhibits cyclooxygenase (COX), activates AMPK, and also modulates ion channels, blocking chloride channels and L-type Ca2+ channels, modulating non-selective cation channels (NSC), activating K+ channels. Flufenamic acid binds to the central pocket of TEAD2 YBD and inhibits both TEAD function and TEAD-YAP-dependent processes, such as cell migration and proliferation.

体外研究
(In Vitro)

Stable heavy isotopes of hydrogen, carbon, and other elements have been incorporated into drug molecules, largely as tracers for quantitation during the drug development process. Deuteration has gained attention because of its potential to affect the pharmacokinetic and metabolic profiles of drugs[1].

Shanghai Jinpan Biotech Co Ltd has not independently confirmed the accuracy of these methods. They are for reference only.

分子量

285.25

Formula

C14H6D4F3NO2

CAS 号

1185071-99-1

运输条件

Room temperature in continental US; may vary elsewhere.

储存方式

Please store the product under the recommended conditions in the Certificate of Analysis.

参考文献
  • [1]. Russak EM, et al. Impact of Deuterium Substitution on the Pharmacokinetics of Pharmaceuticals. Ann Pharmacother. 2019;53(2):211-216.

    [2]. Guinamard R, et al. Flufenamic acid as an ion channel modulator. Pharmacol Ther. 2013 May;138(2):272-84.

    [3]. Pongkorpsakol P, et al. Flufenamic acid protects against intestinal fluid secretion and barrier leakage in a mouse model of Vibrio cholerae infection through NF-κB inhibition and AMPK activation. Eur J Pharmacol. 2017 Mar 5;798:94-104.

    [4]. Pongkorpsakol P, et al. Cellular mechanisms underlying the inhibitory effect of flufenamic acid on chloride secretion in human intestinal epithelial cells. J Pharmacol Sci. 2017 Jun;134(2):93-100.

    [5]. Pobbati AV, et al. Targeting the Central Pocket in Human Transcription Factor TEAD as a Potential Cancer Therapeutic Strategy. Structure. 2015;23(11):2076-2086.

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