中文名 | 漆黄素 |
英文名 | Fisetin |
别名 | 漆黄素 漆树黄酮 四羟基黄酮 漆黄素, 来源于木腊树叶 漆黄素对照品,漆黄素标准品 3,3',4',7-四羟基黄酮 非瑟素,紫铆素,非瑟酮,漆黄酸,3,3',4',7-四羟基黄酮 非瑟素,漆黄酸,紫铆素,非瑟酮,3,3',4',7-四羟基黄酮 漆黄素(非瑟素,漆黄酸,紫铆素,非瑟酮,3,3',4',7-四羟基黄酮) |
英文别名 | fustet fustel Fisetin fisetholz C.I. 75620 superfustel superfustelk jungerfustik ungarischesgelbholz C.I. Natural Brown 1 3,3,4,7-Tetrahydroxyflavone 3,7,3',4'-TETRAHYDROXYFLAVONE 2-(3,4-dihydroxyphenyl)-3,7-dihydroxy-4H-chromen-4-one |
CAS | 528-48-3 |
EINECS | 208-434-4 |
化学式 | C15H10O6 |
分子量 | 286.24 |
InChI | InChI=1/C15H10O6/c16-8-2-3-9-12(6-8)21-15(14(20)13(9)19)7-1-4-10(17)11(18)5-7/h1-6,16-18,20H |
密度 | 1.2981 (rough estimate) |
熔点 | >330°C(lit.) |
沸点 | 348.61°C (rough estimate) |
闪点 | 233°C |
蒸汽压 | 3.23E-15mmHg at 25°C |
溶解度 | DMSO (微溶) 、甲醇 (微溶) |
折射率 | 1.4413 (estimate) |
酸度系数 | 6.83±0.40(Predicted) |
存储条件 | Sealed in dry,Store in freezer, under -20°C |
稳定性 | 吸湿性 |
外观 | 固体 |
颜色 | Pale Yellow to Very Dark Yellow |
Merck | 14,4088 |
BRN | 292829 |
物化性质 | 溶于乙醇、丙酮和醋酸。几乎不溶于水、乙醚、苯、氯仿及石油醚。 来源于漆树科植物木腊树Rhus succedanea L木材等植物 |
MDL号 | MFCD00006829 |
风险术语 | 36/37/38 - 刺激眼睛、呼吸系统和皮肤。 |
安全术语 | S22 - 切勿吸入粉尘。 S24/25 - 避免与皮肤和眼睛接触。 |
WGK Germany | 3 |
RTECS | LK9250000 |
FLUKA BRAND F CODES | 10 |
TSCA | Yes |
海关编号 | 29329990 |
参考资料 展开查看 | 1. Jia, QingLing, et al. "Fisetin, via CKIP-1/REGγ, limits oxidized LDL-induced lipid accumulation and senescence in RAW264. 7 macrophage-derived foam cells." European journal of pharmacology 865 (2019): 172748.https://doi.org/10.1016/j.ejphar.2019.172748 2. Lyu, Yunbin, et al. "Identification and characterization of three flavonoid 3-O-glycosyltransferases from Epimedium koreanum Nakai." Biochemical Engineering Journal 163 (2020): 107759.https://doi.org/10.1016/j.bej.2020.107759 3. Zhang, Cao, et al. "Chemical structures of polyphenols that critically influence the toxicity of ZnO nanoparticles." Journal of agricultural and food chemistry 66.7 (2018): 1714-1722.https://doi.org/10.1021/acs.jafc.8b00368 4. [IF=5.279] Cao Zhang et al."Chemical Structures of Polyphenols That Critically Influence the Toxicity of ZnO Nanoparticles."J Agr Food Chem. 2018;66(7):1714–1722 5. [IF=6.922] Kangfeng Jiang et al."Fisetin Ameliorates the Inflammation and Oxidative Stress in Lipopolysaccharide-Induced Endometritis."J Inflamm Res. 2021; 14: 2963–2978 6. [IF=5.396] Alex GAO et al."Luteolin Stimulates the NGF-induced Neurite Outgrowth in Cultured PC12 Cells through Binding with NGF and Potentiating its Receptor Signaling."Food Funct. 2021 Oct;: 7. [IF=5.279] Qiang You et al."Pharmacokinetics and Metabolites of 12 Bioactive Polymethoxyflavones in Rat Plasma."J Agr Food Chem. 2021;69(43):12705–12716 8. [IF=3.978] Yunbin Lyu et al."Identification and characterization of three flavonoid 3-O-glycosyltransferases from Epimedium koreanum Nakai."Biochem Eng J. 2020 Nov;163:107759 9. [IF=3.361] Mengmeng Yuan et al."The interaction of dietary flavonoids with xanthine oxidase in vitro: molecular property-binding affinity relationship aspects."Rsc Adv. 2019 Apr;9(19):10781-10788 10. [IF=3.263] QingLing Jia et al."Fisetin, via CKIP-1/REGγ, limits oxidized LDL-induced lipid accumulation and senescence in RAW264.7 macrophage-derived foam cells."Eur J Pharmacol. 2019 Dec;865:172748 11. [IF=1.785] Li Yan et al."Fisetin ameliorates atherosclerosis by regulating PCSK9 and LOX‑1 in apoE‑/‑ mice."Exp Ther Med. 2021 Jan;21(1):1-1 12. [IF=1.554] Ping Tang et al."Electrochemical antioxidant screening and evaluation based on guanine and chitosan immobilized MoS2 nanosheet modified glassy carbon electrode (guanine/CS/MoS2/GCE)."Open Chem. 2020 Jan;18(1):1-9 13. [IF=6.514] Yan Guo et al."Metallo-β-lactamases inhibitor fisetin attenuates meropenem resistance in NDM-1-producing Escherichia coli."Eur J Med Chem. 2022 Jan;:114108 |
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