中文名 | 拜查林 |
英文名 | Biochanin A |
别名 | 拜查林 鸡豆黄素A 鹰嘴豆芽素 鹰嘴豆牙素A 鹰嘴豆芽素A 鸡豆黄素 A 5,7-二羟基-4ˊ-甲氧基异黄酮 5,7-二羟基-4'-甲氧基异黄酮 生原禅宁,A5,7-二羟基-4'-甲氧基异黄酮 鹰嘴豆黄素 A(5,7-二羟基-4′-甲氧基异黄酮) 鸡豆黄素A,生原禅宁A,5,7-二羟基-4'-甲氧基异黄酮 鹰嘴豆芽素A (鹰咀豆芽素A,鸡豆黄素A,生原禅宁,拜查林) |
英文别名 | BIOCHANIN Biochanin A Biochani,Olmelin BIOCHANIN A (AHP) 5,7-Dihydroxy-4'-methoxyisoflavone 5,7-Dihydrox -4'-Methoxyisoflavone 5,7-Dihydrox -4'-methoxyisoflavone 5,7-dihydroxy-4'-methoxy-Isoflavone 5,7-dihydroxy-3-(4-methoxyphenyl)chromen-4-one 5,7-Dihydroxy-3-(4-methoxyphenyl)-4H-chromen-4-on 5,7-Dihydroxy-3-(4-méthoxyphényl)-4H-chromén-4-one 5,7-dihydroxy-3-(4-methoxyphenyl)-4H-chromen-4-one 5,7-Dihydroxy-3-(4-methoxyphenyl)-4H-chromen-4-one 4H-1-benzopyran-4-one, 5,7-dihydroxy-3-(4-methoxyphenyl)- Biochanin A, (5,7-Dihydroxy-4'-methoxyisoflavone) |
CAS | 491-80-5 |
EINECS | 207-744-7 |
化学式 | C16H12O5 |
分子量 | 284.26 |
InChI | InChI=1/C16H12O5/c1-20-11-4-2-9(3-5-11)12-8-21-14-7-10(17)6-13(18)15(14)16(12)19/h2-8,17-18H,1H3 |
密度 | 1.420±0.06 g/cm3(Predicted) |
熔点 | 210-213°C(lit.) |
沸点 | 340-355 °C(Press: 0.5 Torr) |
闪点 | 198.2°C |
水溶性 | Soluble in water (<1 mg/ml at 25°C), chloroform, methanol, DMSO (57 mg/ml at 25°C), and ethanol (9 mg/ml at 25°C). |
蒸汽压 | 2.25E-11mmHg at 25°C |
溶解度 | 丙酮: 10mg/ml,透明,棕色 |
折射率 | 1.668 |
酸度系数 | 6.50±0.20(Predicted) |
存储条件 | 2-8°C |
外观 | 粉末 |
颜色 | Off-White to Beige |
最大波长(λmax) | 263nm(EtOH)(lit.) |
BRN | 278107 |
物化性质 | 白色结晶粉末,可溶于甲醇、乙醇、DMSO等有机溶剂,来源于红车轴草,鹰嘴豆(Cicer arietinum L.)种子。 |
MDL号 | MFCD00006839 |
体外研究 | Biochanin A被报到能够抑制表皮生长因子受体的蛋白酪氨酸激酶(PTK),IC50值为91.5 μM。 Biochanin A抑制小鼠、大鼠和人体内脂肪酸酰胺(FAAH)对0.5 μM大麻素的水解作用,IC50值分别为1.8,1.4以及2.4 μM。 Biochanin A能够抑制血清和EGF刺激的LNCaP和DU-145细胞的生长(对血清的IC50值为8.0到27 微克/毫升,对EGF的IC50值为4.3到15微克/毫升),但是对EGF受体酪氨酸的自身磷酸化没有显著作用。 |
体内研究 | LD50:小鼠63毫克/千克(腹腔注射) |
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 | DJ3002500 |
FLUKA BRAND F CODES | 10 |
TSCA | Yes |
海关编号 | 29329990 |
上游原料 | 2-(4-甲氧基苯基)-1-(2,4,6-三羟基苯基)乙酮 alpha-溴-4-甲氧基苯乙酮 |
下游产品 | D-无水葡萄糖 |
参考资料 展开查看 | 1. 郝禹 刘春明 李赛男 等. 亲和超滤质谱技术筛选红车轴草中的生物活性配体[J]. 北方园艺 2019 000(017):102-107. 2. Li, Hong-Fu, et al. "Global Profiling and Structural Characterization of Metabolites of Ononin Using HPLC-ESI-IT-TOF-MS n After Oral Administration to Rats." Journal of Agricultural and Food Chemistry 68.51 (2020): 15164-15175.https://doi.org/10.1021/acs.j 3. [IF=7.514] Yuping Zhang et al."Integration of magnetic solid phase fishing and off-line two-dimensional high-performance liquid chromatography–diode array detector–mass spectrometry for screening and identification of human serum albumin binders from Radix Astragali 4. [IF=3.645] Wenjie Wu et al."Simple, rapid, and environmentally friendly method for the separation of isoflavones using ultra-high performance supercritical fluid chromatography."J Sep Sci. 2017 Jul;40(13):2827-2837 5. [IF=5.279] Hong-Fu Li et al."Global Profiling and Structural Characterization of Metabolites of Ononin Using HPLC-ESI-IT-TOF-MSn After Oral Administration to Rats."J Agr Food Chem. 2020;68(51):15164–15175 6. [IF=4.769] Jing Han et al."Qualitative and quantitative evaluation of Flos Puerariae by using chemical fingerprint in combination with chemometrics method."J Pharm Anal. 2021 Sep;: 7. [IF=4.759] Wenjie Wu et al."An analytical strategy for accurate, rapid and sensitive quantitative analysis of isoflavones in traditional Chinese medicines using ultra-high performance supercritical fluid chromatography: Take Radix Puerariae as an example."J Chromato 8. [IF=6.576] Junkun Pan et al."Inhibition of Dipeptidyl Peptidase-4 by Flavonoids: Structure–Activity Relationship, Kinetics and Interaction Mechanism."Frontiers in Nutrition. 2022; 9: 892426 |
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