| Product Name | Sinomenine |
|---|---|
| CAS | 115-53-7 |
| Formula | C19H23NO4 |
| MW | 329.39 |
| Appearance | 白色絮狀粉末 |
| Melting point | 162 °C |
| Boiling point | 513.6±50.0 °C | Condition: Press: 760 Torr |
| PKa | 9.72±0.40 | Condition: Most Acidic Temp: 25 °C |
| Product Name | Sinomenine |
|---|---|
| CAS | 115-53-7 |
| Formula | C19H23NO4 |
| MW | 329.39 |
| Appearance | 白色絮狀粉末 |
| Melting point | 162 °C |
| Boiling point | 513.6±50.0 °C | Condition: Press: 760 Torr |
| PKa | 9.72±0.40 | Condition: Most Acidic Temp: 25 °C |
| A novel approach for the screening analysis of anticancer compounds from traditional Chinese medicine by a G-quadruplex functionalized magnetic system | ||
| Source:SCI:Analytical Methods | Author:Yi Zhang | Notes:影響因子:2.378 |
| Reference description | ||
Magnetic microbeads (MBs) (mean diameter 1 μm) modified by streptavidin (SA–MBs) were purchased from BioMag Scientific Inc. (China). Berberine, epiberberine, coptisine, columbamine, palatine, jatrorrhizine, and sinomenine were purchased from Sichuan Weikeqi Biological Technology Co., Ltd. (China). The cyanine dye MTC was synthesized according to the methods of Hamer32 and Ficken. | ||