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アッセイ
≥95% (LC/MS-ELSD)
形状
solid
アプリケーション
metabolomics
vitamins, nutraceuticals, and natural products
保管温度
−20°C
InChI
1S/C15H12O6/c16-8-3-1-7(2-4-8)15-14(20)13(19)12-10(18)5-9(17)6-11(12)21-15/h1-6,14-18,20H/t14-,15+/m0/s1
InChI Key
PADQINQHPQKXNL-LSDHHAIUSA-N
詳細
植物由来の天然産物
生物化学的/生理学的作用
Aromadendrin has been considered for potential use in the management of Type 2 diabetes due to its ability to stimulate glucose uptake and improve insulin resistance by inducing adipogenesis through increased PPAR2 expression.
シグナルワード
Warning
危険有害性情報
危険有害性の分類
Acute Tox. 4 Oral
保管分類コード
11 - Combustible Solids
WGK
WGK 3
引火点(°F)
Not applicable
引火点(℃)
Not applicable
適用法令
試験研究用途を考慮した関連法令を主に挙げております。化学物質以外については、一部の情報のみ提供しています。 製品を安全かつ合法的に使用することは、使用者の義務です。最新情報により修正される場合があります。WEBの反映には時間を要することがあるため、適宜SDSをご参照ください。
Jan Code
SMB00175-1MG:
試験成績書(COA)
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Biological & pharmaceutical bulletin, 33(9), 1494-1499 (2010-09-09)
The stimulation of glucose uptake into peripheral tissues is an important mechanism for the removal of glucose in blood and for the management of diabetes mellitus (DM). Since recent results have demonstrated the beneficial effects of flavonoids in relation to
Pharmacology, 88(5-6), 266-274 (2011-11-08)
Agents that stimulate glucose uptake and improve insulin resistance may be useful in the management of type 2 diabetes mellitus (DM). Thus, the aims of this study were to assess the effects of aromadendrin, a flavonoid from Gleditsia sinensis Lam.
Phytochemistry, 67(24), 2681-2685 (2006-09-16)
From the leaves of Helicia cochinchinensis, collected on Okinawa Island, seven phenolic glucosides and two terpenic glucosides were isolated. Five of the phenolic glucosides were previously known, being identified with p-coumaric and ferulic acids glucosyl esters, rhodioloside, helicidiol, and naringenin
Natural product communications, 5(5), 777-782 (2010-06-05)
Flavonoid hydroxylation is one way to increase the biological activities of these molecules and the number of hydroxyl groups needed for polymerization, esterification, alkylation, glycosylation and acylation reactions. These reactions have been suggested as a promising route to enhance flavonoid
Molecules (Basel, Switzerland), 14(10), 4147-4158 (2009-11-20)
X-ray structures of two compounds isolated from wood knots of coniferous trees, namely dihydrokaempferol (3,5,8,13-tetrahydroxyflavanon) and lariciresinol (3,14-dimetoxy-7,10-epoxylignan-4,15,19-triol), are presented here. Diffraction data for the Dihydrokaempferol crystals were collected on a CAD4 diffractometer and on a synchrotron for the lariciresinol
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