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 Normale 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.
La glicemia dei conigli è aumentata temporaneamente con l'iniezione di Huaijiao. Secondo l'Istituto di Ricerca Farmaceutica di Nanchino, la genisteina e il kaempferolo di Sophora japonica hanno l'effetto di interferire con il trasporto degli ovuli gravidi, di interrompere l'impianto degli ovuli gravidi e di resistere alla gravidanza precoce, il che può essere correlato all'attività degli estrogeni. L'assunzione di genisteina e Sophora japonica per lungo tempo e in piccole quantità ha un significativo effetto anti-fecondità sui topi femmina, senza influenzare il tasso di accoppiamento e la crescita.
L'effetto tossico dell'immersione di agnelli con il corno di Sophora può ridurre i globuli rossi di conigli e cavie, in particolare l'effetto dei baccelli. L'estratto di semi di Sophora può far agglutinare i globuli rossi di conigli, maiali e umani. I semi, i baccelli e la polpa contengono tutti lectine anti-A, anti-B e anti-H. Sophora japonica contiene fitoemoagglutinine e può promuovere la trasformazione dei linfociti
| Pubchem Sid | 488195343 |
|---|---|
| Pubchem Sid Url | https://pubchem.ncbi.nlm.nih.gov/substance/488195343 |
| Sorrisi canonici | 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 |
| Isomeri 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 |
| Peso molecolare | 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 |
| Classe | 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 |
| Descrizione | 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 | Data | Oggetto |
|---|---|---|---|
| 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 |
| Rotazione specifica [α] | -18 ° (C=1, Pyridine) |
|---|---|
| Punto di fusione (°C) | 297°C |
| Peso molecolare | 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] |