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520-28-5

中文名稱 柚木柯因
英文名稱 5-HYDROXY-7-METHOXYFLAVONE
CAS 520-28-5
分子式 C16H12O4
MDL 編號 MFCD00016945
分子量 268.26
MOL 文件 520-28-5.mol
更新日期 2024/10/25 16:45:00
520-28-5 結(jié)構(gòu)式 520-28-5 結(jié)構(gòu)式

基本信息

中文別名
柚木柯因
甲金黃酮
柚金黃酮
英文別名
5-HYDROXY-7-METHOXYFLAVONE
CHRYSIN 7-METHYL ETHER
METHYL CHRYSIN
TECTOCHRYSIN
5-Hydroxy-7-methoxy-2-phenyl-4H-chromen-4-one
7-Methoxy-5-hydroxyflavone
Flavone, 5-hydroxy-7-methoxy-
5- Hydroxy -methoxyflavone
TECHTOCHRYSIN
2-Phenyl-5-hydroxy-7-methoxy-4H-1-benzopyran-4-one
7-Methoxy-2-phenyl-5-hydroxy-4H-1-benzopyran-4-one
Techto
所屬類別
天然產(chǎn)物:黃酮類化合物

物理化學(xué)性質(zhì)

外觀性狀白色針狀結(jié)晶,可溶于甲醇、乙醇、DMSO等有機溶劑,來源于松屬植物Pinus cembra L.的心材中。
熔點166-168°C
沸點487.4±45.0 °C(Predicted)
密度1.329±0.06 g/cm3(Predicted)
儲存條件Sealed in dry,2-8°C
溶解度DMSO : 16.67 mg/mL (62.14 mM; Need ultrasonic)
酸度系數(shù)(pKa)6.34±0.40(Predicted)
形態(tài)粉末
顏色白色
LogP3.130 (est)
CAS 數(shù)據(jù)庫520-28-5(CAS DataBase Reference)

應(yīng)用領(lǐng)域

用途1
用于含量測定/鑒定/藥理實驗等
用途2
楊芽黃素可用作染料原料。

安全數(shù)據(jù)

危險類別碼R36/37/38
安全說明S26-S36/37/39
海關(guān)編碼29145090

常見問題列表

生物活性
Tectochrysin (Techtochrysin, NSC 80687) 是Alpinia oxyphylla Miquel的主要類黃酮之一。Tectochrysin 可顯著地增加DR3、DR4 和 Fas的表達,并抑制 NF-κB 的活性。Tectochrysin 可誘導(dǎo)細胞凋亡。
靶點
TargetValue
NF-κB
()
體外研究

Tectochrysin (Techtochrysin) inhibits activity of NF-κB. Tectochrysin (Techtochrysin) binds directly to the p50 unit. Tectochrysin (Techtochrysin) concentration-dependently inhibits the translocation of p50 and p65 into the nucleus through inhibition of the phosphorylation of IκB. To assess the inhibitory effect of Tectochrysin on cell growth of colon cancer cells (SW480, HCT116), cell viability is analyzed by MTT assay. The cells are treated with varying concentrations of Tectochrysin (Techtochrysin) (1, 5, 10 μg/mL) for 24 h. Tectochrysin (Techtochrysin) inhibits cell growth in colon cancer cells in a concentration-dependent manner. Tectochrysin (Techtochrysin) inhibits SW480 cells growth with IC 50 value of 6.3 μg/mL and HCT116 cells growth with IC 50 value of 8.4 μg/mL. Morphologic observation shows that the cells are reduced in size by the treatment of NSC 80687 (10 μg/mL) in SW480 cells and HCT116 cells. However, Tectochrysin (Techtochrysin) is not cytotoxic in the normal CCD-18co cells in the tested concentration by MTT assay. To delineate whether the induction of apoptotic cell death is critical for cell growth inhibition by NSC 80687, changes are evaluated in the chromatin morphology of cells using DAPI staining. To further characterize the apoptotic cell death by Tectochrysin (Techtochrysin), TUNEL staining assays are performed, and then the labeled cells are analyzed by fluorescence microscopy. Apoptotic cells number (DAPI-positive TUNEL stained cells) in SW480 cell is increased to 1 and 58 % by 0 and 10 μg/mL NSC 80687, respectively, and 1 and 54 % by 0 and 10 μg/mL Tectochrysin in HCT116.

體內(nèi)研究

To elucidate the antitumor effects of Tectochrysin in in vivo, the tumor growth in colon cancer xenograft-bearing nude mice following Tectochrysin (NSC 80687) treatments is investigated. In HCT116 xenograft studies, Tectochrysin (NSC 80687) is administrated i.p. twice per week for 3 weeks to mice with tumors ranging from 200 to 300 mm 3 in volume. The mice are weighed twice per week. The changes in body weights between the control and the Tectochrysin (NSC 80687)-treated mice (n=10) are not remarkably different during the experiment. However, On day 21, the final tumor weights are recorded. Tumor weights and volumes in mice treated with Tectochrysin (NSC 80687) at 5 mg/kg doses are 57.9 % and 46.4 % of the vehicle group, respectively.

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