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异荭草苷|4261-42-1|Isoorientin

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  • ¥600 - 1000
  • 仕诺达
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  • SND-639
  • 2025年08月26日
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    • 技术资料
    • 保存条件

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    • 保质期

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    • 英文名

      Isoorientin

    • 库存

      999

    • 供应商

      仕诺达生物

    • CAS号

      4261-42-1

    • 规格

      10mg,分析标准品,HPLC≥98%(多种规格可选)/20mg,分析标准品,HPLC≥98%

    规格:10mg,分析标准品,HPLC≥98%(多种规格可选)产品价格:¥600.0
    规格:20mg,分析标准品,HPLC≥98%产品价格:¥1000.0

    产品细节图片1

    中文名异荭草苷
    英文名Isoorientin
    别名异红草素
    异荭草素
    异荭草苷
    异荭草素, 来源于荭草
    木犀草素-6-C-葡萄糖苷
    异荭草素,异荭草苷 ,异荭草素
    木犀草素-6-C-葡萄糖苷(异荭草苷)
    异荭草苷(异荭草素,异荭草苷 ,异荭草素)
    LUTEOLIN-6-C-GLUCOSIDE 异荭草苷
    英文别名Isoorientin
    HOMOORIENTIN
    IsoorientinI
    Homoorientin
    lespecapittoside
    HoMoorientin, froM PolygonuM orientale
    2-(3,4-Dihydroxyphenyl)-6-β-D-glucopyranosyl-5,7-dihydroxy-4H-1-benzopyran-4-one
    6-(β-D-Glucopyranosyl)-2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-4H-1-benzopyran-4-one
    (1S)-1,5-anhydro-1-[2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-4-oxo-4H-chromen-6-yl]-D-glucitol
    2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-6-[(2S,3R,4R,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]chromen-4-one
    2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-6-[(2S,3R,4R,5S,6R)-3,4,5-trihydroxy-6-methylol-tetrahydropyran-2-yl]chromone
    CAS4261-42-1
    化学式C21H20O11
    分子量448.38
    InChIInChI=1/C21H20O11/c22-6-14-17(27)19(29)20(30)21(32-14)16-11(26)5-13-15(18(16)28)10(25)4-12(31-13)7-1-2-8(23)9(24)3-7/h1-5,14,17,19-24,26-30H,6H2/t14-,17-,19+,20-,21+/m1/s1
    InChIKeyODBRNZZJSYPIDI-VJXVFPJBSA-N
    密度1.759±0.06 g/cm3(Predicted)
    熔点245-246°C
    沸点856.7±65.0 °C(Predicted)
    比旋光度+18°(4.8mg/mL,methanol)
    闪点303.2°C
    蒸汽压2.9E-31mmHg at 25°C
    溶解度甲醇: 可溶5mg/mL,澄清,无色至黄色
    折射率1.767
    酸度系数5.90±0.40(Predicted)
    存储条件2-8°C
    稳定性吸湿性
    外观粉末
    颜色yellow
    物化性质黄色粉末,可溶于甲醇、乙醇、DMSO等有机溶剂,来源于竹叶,夏枯草,石竹。
    MDL号MFCD00017433
    体外研究Isoorientin is a Selective Inhibitor of Cyclooxygenase-2 (COX-2) from the Tubers of Pueraria tuberosa. PANC-1 and PATU-8988 cells are grown for 24 hours in the presence of Isoorientin (0, 20, 40, 80, and 160 μM), and a CCK8 solution is added. The cell viability decreases significantly at the concentrations of 20, 40, 80, and 160 μM. After the cells are cultured with Isoorientin (0, 20, 40, 80, and 160 μM for PANC-1; 0, 20, 40, 80, 160, and 320 μM for PATU-8988) for 24 hours, the expression of p-AMPK and AMPK is assessed by Western blotting. After the Isoorientin treatment, the p-AMPK expression is increased. Then, in the shRNA group, the concentration of 80 μM is used to detect the effects of Isoorientin. The expression levels of AMPK and p-AMPK are much lower in the shRNA group than in the wild-type PC cells (WT) and the group that is transfected with a negative control lentivirus (NC).
    体内研究Animals treated with Isoorientin at 10 mg/kg and 20 mg/kg body weight have a statistically significant reduction in paw edema, with a mean peak thickness of 1.19±0.05 mm and 1.08±0.04 mm, respectively. This indicated that Isoorientin significantly attenuates paw edema compared with the control group.

    计算化学数据:

    • 分子量:448.3769g/mol
    •  
    • 化合物是否规范:True
    •  
    • 疏水参数计算参考值(XLogP3-AA):-0.2
    •  
    • 准确质量:448.10056145
    •  
    • 同位素质量:448.10056145
    •  
    • 复杂度:729
    •  
    • 可旋转化学键数量:3
    •  
    • 氢键供体数量:8
    •  
    • 氢键受体计数:11
    •  
    • 拓扑极表面积:197
    •  
    • 重原子数量:32
    •  
    • 确定原子立构中心数量:5
    •  
    • 不确定原子立构中心数量:0
    •  
    • 确定化学键立构中心数量:0
    •  
    • 不确定化学键立构中心数量:0
    •  
    • 同位素原子计数:0
    •  
    • 共价键单元数量:1
    •  
    • CACTVS Substructure Key Fingerprint:AAADceB4PAAAAAAAAAAAAAAAAAAAAAAAAAA0YIEAAAAAAACBQAAAGgAACAAADBSgmAIwBoAABgCIAqBSAAACCAAkIAAIiAEGiMgNNzaGNRqCeWGl4BULuQfI7PzOIAADCAAIQABAAAYQABCAAAAAAAAAAA==

     

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    产品细节图片2

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    图标文献和实验
    该产品被引用文献

    1. 雁南 贺子君 刘刚. 响应面法优化荭草异荭草素提取工艺[J]. 北方园艺 2020 000(007):124-131.
    2. 杨燕梅. UPLC法测定7种秦艽中7种指标成分的量[J]. 中草药 2016 Vol.47Issue(11):1968-1973.
    3. 卢有媛, 张小波, 杨燕梅,等. 秦艽药材的品质区划研究[J]. 中国中药杂志, 2016, 41(017):3132-3138.
    4. 张永, 冯语婷, 马宁辉,等. 竹叶提取工艺的综合性评价[J]. 中国实验方剂学杂志, 2018(17).
    5. 杨燕梅, 马晓辉, 吕培霖,等. 野生与栽培黄管秦艽7种指标成分的比较研究[J]. 中国药房, 2016, 27(19):2618-2621.
    6. 罗林云, 杨燕梅, 晋玲. 青海与甘肃小秦艽7种指标成分含量的比较研究[J]. 中国医院药学杂志, 2017, 37(008):717-721.
    7. 杨燕梅, 黄得栋, 卢有媛,等. 黄管秦艽UPLC指纹图谱研究[J]. 中药材, 2016, 39(008):1734-1737.
    8. 郭静 王浩然 沈周媛 张彤 袁秀荣 丁越.3种竹叶抗氧化有效成分分析[J].中成药 2019 41(11):2688-2694.
    9. 王伟,何平,江小明.木犀草素及其黄酮苷的抗炎、抗氧化作用[J].食品科学,2020,41(17):208-215.
    10. Zhang, G. , et al. "Antinociceptive effect of isoorientin against neuropathic pain induced by the chronic constriction injury of the sciatic nerve in mice." International Immunopharmacology 75(2019):105753-.DOI: 10.1016/j.intimp.2019.105753
    11. Wang, Chu-Yang, et al. "Isolation of wheat mutants with higher grain phenolics to enhance anti-oxidant potential." Food chemistry 303 (2020): 125363
    12. [IF=5.279] Yong Sun et al."Qualitative and Quantitative Analysis of Phenolics in Tetrastigma hemsleyanum and Their Antioxidant and Antiproliferative Activities."J Agr Food Chem. 2013;61(44):10507–10515
    13. [IF=7.514] Chu-Yang Wang et al."Isolation of wheat mutants with higher grain phenolics to enhance anti-oxidant potential."Food Chem. 2020 Jan;303:125363
    14. [IF=5.396] Mingfang Tao et al."Flavonoids from the mung bean coat promote longevity and fitness in Caenorhabditis elegans."Food Funct. 2021 Aug;12(17):8196-8207
    15. [IF=2.19] Sheng-xiang Yang et al."Extraction of flavonoids from Cyclocarya paliurus (Juglandaceae) leaves using ethanol/salt aqueous two-phase system coupled with ultrasonic."J Food Process Pres. 2020 Jun;44(6):e14469
    16. [IF=2.863] Xiaokang Liu et al."Spectrum–effect relationship between ultra-high-performance liquid chromatography fingerprints and antioxidant activities of Lophatherum gracile Brongn."Food Science & Nutrition. 2022 Feb 22
    17. [IF=3.373] Yiyuan Luo et al."Quality evaluation of Tetrastigma hemsleyanum different parts based on quantitative analysis of 42 bioactive constituents combined with multivariate statistical analysis."PHYTOCHEMICAL ANALYSIS. 2022 Apr 05
    18. [IF=7.514] Jie Meng et al."Conduction of a chemical structure-guided metabolic phenotype analysis method targeting phenylpropane pathway via LC-MS: Ginkgo biloba and soybean as examples."FOOD CHEMISTRY. 2022 Oct;390:133155
    19. [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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    异荭草苷|4261-42-1|Isoorientin
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