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PF-06685249 Sale

(Synonyms: PF-249) 目录号 : GC66002

PF-06685249 (PF-249) 是一种有效的、具有口服活性的变构 AMPK 激活剂,对重组 AMPK α1β1γ1 的 EC50 为 12 nM。PF-06685249 可用于糖尿病肾病研究。

PF-06685249 Chemical Structure

Cas No.:1467059-70-6

规格 价格 库存 购买数量
10mg
¥3,420.00
现货
25mg
¥7,200.00
现货
50mg
¥11,520.00
现货

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Sample solution is provided at 25 µL, 10mM.

产品文档

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产品描述

PF-06685249 (PF-249) is a potent and orally active allosteric AMPK activator with an EC50 of 12 nM for recombinant AMPK α1β1γ1. PF-06685249 can be used for diabetic nephropathy research[1].

Chemical Properties

Cas No. 1467059-70-6 SDF Download SDF
别名 PF-249
分子式 C17H16ClN3O3 分子量 345.78
溶解度 DMSO : 100 mg/mL (289.20 mM; Need ultrasonic) 储存条件 Store at -20°C
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溶解性数据

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1 mg 5 mg 10 mg
1 mM 2.892 mL 14.4601 mL 28.9201 mL
5 mM 0.5784 mL 2.892 mL 5.784 mL
10 mM 0.2892 mL 1.446 mL 2.892 mL
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Research Update

Optimization of Metabolic and Renal Clearance in a Series of Indole Acid Direct Activators of 5'-Adenosine Monophosphate-Activated Protein Kinase (AMPK)

J Med Chem 2018 Mar 22;61(6):2372-2383.PMID:29466005DOI:10.1021/acs.jmedchem.7b01641

Optimization of the pharmacokinetic (PK) properties of a series of activators of adenosine monophosphate-activated protein kinase (AMPK) is described. Derivatives of the previously described 5-aryl-indole-3-carboxylic acid clinical candidate (1) were examined with the goal of reducing glucuronidation rate and minimizing renal excretion. Compounds 10 (PF-06679142) and 14 (PF-06685249) exhibited robust activation of AMPK in rat kidneys as well as desirable oral absorption, low plasma clearance, and negligible renal clearance in preclinical species. A correlation of in vivo renal clearance in rats with in vitro uptake by human and rat renal organic anion transporters (human OAT/rat Oat) was identified. Variation of polar functional groups was critical to mitigate active renal clearance mediated by the Oat3 transporter. Modification of either the 6-chloroindole core to a 4,6-difluoroindole or the 5-phenyl substituent to a substituted 5-(3-pyridyl) group provided improved metabolic stability while minimizing propensity for active transport by OAT3.