Determine the necessary mass, volume, or concentration for preparing a solution.
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≥98% for sensitive chromatographic and analytical workflows requiring minimal baseline interference.
Room temperature Ships Normal Check lot-specific COA for exact specifications.
SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.
Cited in 6 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.
The blood sugar of the rabbits was increased temporarily by the injection of Huaijiao. According to Nanjing Pharmaceutical Research Institute, genistein and kaempferol from Sophora japonica have the effects of interfering with the transport of pregnant eggs, terminating the implantation of pregnant eggs and resisting early pregnancy, which may be related to the activity of estrogen. Taking genistein and Sophora japonica for a long time in a small amount has a significant anti fertility effect on female mice without affecting the mating rate and growth.
The toxic effect of soaking lambs with Sophora horn can reduce the red blood cells of rabbits and guinea pigs, especially the effect of pods. Sophora seed extract can make rabbit, pig and human red blood cells agglutinate. Seeds, pods and pulp all contain anti-A, anti-B and anti-H lectins. Sophora japonica contains phytohemagglutinin drugs and can promote lymphocyte transformation
| Pubchem Sid | 488195343 |
|---|---|
| Pubchem Sid Url | https://pubchem.ncbi.nlm.nih.gov/substance/488195343 |
| Canonical Smiles | C1=CC(=CC=C1C2=COC3=CC(=CC(=C3C2=O)O)O)OC4C(C(C(C(O4)CO)O)O)O |
| IUPAC Name | 5,7-dihydroxy-3-[4-[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxyphenyl]chromen-4-one |
| InChIKey | ISQRJFLLIDGZEP-CMWLGVBASA-N |
| INCHI | 1S/C21H20O10/c22-7-15-18(26)19(27)20(28)21(31-15)30-11-3-1-9(2-4-11)12-8-29-14-6-10(23)5-13(24)16(14)17(12)25/h1-6,8,15,18-24,26-28H,7H2/t15-,18-,19+,20-,21-/m1/s1 |
| Isomeric SMILES | C1=CC(=CC=C1C2=COC3=CC(=CC(=C3C2=O)O)O)O[C@H]4[C@@H]([C@H]([C@@H]([C@H](O4)CO)O)O)O |
| PubChem CID | 5321398 |
| Molecular Weight | 432.38 |
Comprehensive hazard, handling, storage, and regulatory compliance document.
Download SDS →Lot-specific quality data. Enter your lot number to retrieve the exact COA.
Look up COA →Full quality attributes and acceptance criteria for this grade.
View spec sheet →Taxonomy Tree
| Kingdom | Organic compounds |
|---|---|
| Superclass | Phenylpropanoids and polyketides |
| Class | Isoflavonoids |
| Subclass | Isoflavonoid O-glycosides |
| Intermediate Tree Nodes | Not available |
| Direct Parent | Isoflavonoid O-glycosides |
| Alternative Parents | Hydroxyisoflavonoids Isoflavones Fatty acyl glycosides of mono- and disaccharides Phenolic glycosides Alkyl glycosides Hexoses Chromones O-glycosyl compounds Phenoxy compounds Phenol ethers Pyranones and derivatives 1-hydroxy-4-unsubstituted benzenoids 1-hydroxy-2-unsubstituted benzenoids Oxanes Heteroaromatic compounds Vinylogous acids Secondary alcohols Polyols Oxacyclic compounds Acetals Organic oxides Primary alcohols Hydrocarbon derivatives |
| Molecular Framework | Aromatic heteropolycyclic compounds |
| Substituents | Isoflavonoid-4p-o-glycoside - Isoflavonoid o-glycoside - Isoflavone - Hydroxyisoflavonoid - Fatty acyl glycoside of mono- or disaccharide - Fatty acyl glycoside - Phenolic glycoside - Hexose monosaccharide - Alkyl glycoside - Chromone - Glycosyl compound - O-glycosyl compound - 1-benzopyran - Benzopyran - Phenol ether - Phenoxy compound - Pyranone - 1-hydroxy-2-unsubstituted benzenoid - 1-hydroxy-4-unsubstituted benzenoid - Monocyclic benzene moiety - Fatty acyl - Benzenoid - Monosaccharide - Pyran - Oxane - Vinylogous acid - Heteroaromatic compound - Secondary alcohol - Organoheterocyclic compound - Oxacycle - Acetal - Polyol - Organic oxygen compound - Alcohol - Hydrocarbon derivative - Organooxygen compound - Organic oxide - Primary alcohol - Aromatic heteropolycyclic compound |
| Description | This compound belongs to the class of organic compounds known as isoflavonoid o-glycosides. These are o-glycosylated derivatives of isoflavonoids, which are natural products derived from 3-phenylchromen-4-one. |
| External Descriptors | Not available |
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Find and download the COA for your product by matching the lot number on the packaging.
| Lot Number | Certificate Type | Date | Item |
|---|---|---|---|
| Certificate of Analysis | Jul 22, 2025 | S292468 | |
| Certificate of Analysis | Aug 22, 2023 | S292468 | |
| Certificate of Analysis | Aug 22, 2023 | S292468 | |
| Certificate of Analysis | Aug 22, 2023 | S292468 | |
| Certificate of Analysis | Aug 22, 2023 | S292468 |
| Specific Rotation[α] | -18 ° (C=1, Pyridine) |
|---|---|
| Melt Point(°C) | 297°C |
| Molecular Weight | 432.400 g/mol |
| XLogP3 | 0.900 |
| Hydrogen Bond Donor Count | 6 |
| Hydrogen Bond Acceptor Count | 10 |
| Rotatable Bond Count | 4 |
| Exact Mass | 432.106 Da |
| Monoisotopic Mass | 432.106 Da |
| Topological Polar Surface Area | 166.000 Ų |
| Heavy Atom Count | 31 |
| Formal Charge | 0 |
| Complexity | 675.000 |
| Isotope Atom Count | 0 |
| Defined Atom Stereocenter Count | 5 |
| Undefined Atom Stereocenter Count | 0 |
| Defined Bond Stereocenter Count | 0 |
| Undefined Bond Stereocenter Count | 0 |
| The total count of all stereochemical bonds | 0 |
| Covalently-Bonded Unit Count | 1 |
| 1. Jie Zhao, Lin Huang, Renjie Li, Zhuangwei Zhang, Jin Chen, Hongjin Tang. (2022) Insights from multi-spectroscopic analysis and molecular modeling to understand the structure–affinity relationship and the interaction mechanism of flavonoids with gliadin. Food & Function, 13 (9): (5061-5074). [PMID:35404372] [10.1039/D1FO03816H] |
| 2. Hongjin Tang, Lin Huang, Dongsheng Zhao, Chunyong Sun, Ping Song. (2020) Interaction mechanism of flavonoids on bovine serum albumin: Insights from molecular property-binding affinity relationship. SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, [PMID:32480277] [10.1016/j.saa.2020.118519] |
| 3. Jie Zhao, Lin Huang, Chunyong Sun, Dongsheng Zhao, Hongjin Tang. (2020) Studies on the structure-activity relationship and interaction mechanism of flavonoids and xanthine oxidase through enzyme kinetics, spectroscopy methods and molecular simulations. FOOD CHEMISTRY, [PMID:32330646] [10.1016/j.foodchem.2020.126807] |
| 4. Mei Jianfeng, Chen Xiang, Liu Jianghua, Yi Yu, Zhang Yanlu, Ying Guoqing. (2019) A Biotransformation Process for Production of Genistein from Sophoricoside by a Strain of Rhizopus oryza. Scientific Reports, 9 (1): (1-5). [PMID:31024087] [10.1038/s41598-019-42996-z] |
| 5. Jiaao Shen, Zijia Man, Weiwei Li, Mengqi Guo, Zefeng Xiang, Long Ma, Xianjiang Kang, Shuai Guo. (2025) Natural isoflavone sophoricoside emerges as a therapeutic candidate for lung cancer targeting TMEM16A ion channel. PHYTOMEDICINE, [PMID:41014666] [10.1016/j.phymed.2025.157289] |
| 6. Hui Cao, Xiaojuan Liu, Nataša Poklar Ulrih, Pradeep K. Sengupta, Jianbo Xiao. (2018) Plasma protein binding of dietary polyphenols to human serum albumin: A high performance affinity chromatography approach. FOOD CHEMISTRY, [PMID:30174044] [10.1016/j.foodchem.2018.07.111] |