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(R)-5-Hydroxy-1,7-diphenyl-3-heptanone Sale

(Synonyms: (R)-5-羟基-1,7-二苯基-3-庚酮) 目录号 : GC65610

(R)-5-Hydroxy-1,7-diphenyl-3-heptanone 是一种二芳基庚烷,存在于 Alpinia officinarum 中。(R)-5-Hydroxy-1,7-diphenyl-3-heptanone 通过激活 Nrf2/ARE 通路改善氧化应激和胰岛素抵抗。

(R)-5-Hydroxy-1,7-diphenyl-3-heptanone Chemical Structure

Cas No.:100761-20-4

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1mg
¥8,820.00
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产品描述

(R)-5-Hydroxy-1,7-diphenyl-3-heptanone is a diarylheptanoid that can be found in Alpinia officinarum. (R)-5-Hydroxy-1,7-diphenyl-3-heptanone ameliorates oxidative stress and insulin resistance via activation of Nrf2/ARE pathway[1].

[1]. Zhang X, et, al. DPHC From Alpinia officinarum Ameliorates Oxidative Stress and Insulin Resistance via Activation of Nrf2/ARE Pathway in db/db Mice and High Glucose-Treated HepG2 Cells. Front Pharmacol. 2022 Jan 17;12:792977.

Chemical Properties

Cas No. 100761-20-4 SDF Download SDF
别名 (R)-5-羟基-1,7-二苯基-3-庚酮
分子式 C19H22O2 分子量 282.38
溶解度 储存条件 4°C, protect from light
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1 mM 3.5413 mL 17.7066 mL 35.4133 mL
5 mM 0.7083 mL 3.5413 mL 7.0827 mL
10 mM 0.3541 mL 1.7707 mL 3.5413 mL
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Research Update

DPHC From Alpinia officinarum Ameliorates Oxidative Stress and Insulin Resistance via Activation of Nrf2/ARE Pathway in db/db Mice and High Glucose-Treated HepG2 Cells

Front Pharmacol 2022 Jan 17;12:792977.PMID:35111058DOI:PMC8801804

(R)-5-Hydroxy-1,7-diphenyl-3-heptanone (DPHC) from the natural plant Alpinia officinarum has been reported to have antioxidation and antidiabetic effects. In this study, the therapeutic effect and molecular mechanism of DPHC on type 2 diabetes mellitus (T2DM) were investigated based on the regulation of oxidative stress and insulin resistance (IR) in vivo and in vitro. In vivo, the fasting blood glucose (FBG) level of db/db mice was significantly reduced with improved glucose tolerance and insulin sensitivity after 8 weeks of treatment with DPHC. In vitro, DPHC ameliorated IR because of its increasing glucose consumption and glucose uptake of IR-HepG2 cells induced by high glucose. In addition, in vitro and in vivo experiments showed that DPHC could regulate the antioxidant enzyme levels including superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GSH-Px), thereby reducing the occurrence of oxidative stress and improving insulin resistance. Western blotting and polymerase chain reaction results showed that DPHC could promote the expressions of nuclear factor erythroid 2-related factor 2 (Nrf2), the heme oxygenase-1 (HO-1), protein kinase B (AKT), and glucose transporter type 4 (GLUT4), and reduced the phosphorylation levels of c-Jun N-terminal kinase (JNK) and insulin receptor substrate-1 (IRS-1) on Ser307 both in vivo and in vitro. These findings verified that DPHC has the potential to relieve oxidative stress and IR to cure T2DM by activating Nrf2/ARE signaling pathway in db/db mice and IR-HepG2 cells.