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人参皂苷F4

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  • ¥4100
  • YOYOBIO
  • 上海
  • YJ-B21049-10mg
  • 2025年11月13日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 保存条件

      2-8℃

    • 保质期

      见包装

    • 英文名

      Ginsenoside F4

    • 库存

      大量现货

    • 供应商

      上海研谨生物

    • CAS号

      181225-33-2

    • 规格

      10mg

    人参皂苷F4

    分析标准品,HPLC≥98%

    Ginsenoside F4

    CAS号:181225-33-2

    分子式:C42H70O12

    分子量:767

    货号

    规格/参数/品牌

    价格

    货期

    YJ-B21049-10mg

    分析标准品,HPLC≥98%

    4100.00

    2-3

     

    产品介绍

    熔点:177-181℃

    沸点:851.6±65.0 ℃

    比旋光度:(c, 0.28 in MeOH)-7.93

    外观:白色粉末

    溶解性:溶于吡啶,DMSO,甲醇

    储存条件:2-8℃

    注意:部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。

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    图标文献和实验
    该产品被引用文献

    参考文献(12)

    12. [IF=4.6] Yanyan Chang et al."Diverse rare ginsenosides derived from ginsenoside Re in aqueous methanol solution via heterogeneous catalysis and identified by HPLC-MS."RSC Advances.2025 May;15(21):16455-16467

    11. [IF=4.8] Cuiting Yang et al."Fermentation interactions and lipid-lowering potential of Monascus purpureus fermented Ginseng."Food Bioscience.2025 Apr;66:106260

    10. [IF=5.4] Yingqiu Shi et al."Effective constituents and protective effect of Mudan granules against Schwann cell injury."JOURNAL OF ETHNOPHARMACOLOGY.2024 Apr;323:117692

    9. [IF=4.927] Hong-Ping Wang et al."Screening of Potential α-Glucosidase Inhibitors from the Roots and Rhizomes of Panax Ginseng by Affinity Ultrafiltration Screening Coupled with UPLC-ESI-Orbitrap-MS Method."MOLECULES.2023 Jan;28(5):2069

    8. [IF=4.927] Hong-Ping Wang et al."Comprehensive Identification of Ginsenosides in the Roots and Rhizomes of Panax ginseng Based on Their Molecular Features-Oriented Precursor Ions Selection and Targeted MS/MS Analysis."MOLECULES.2023 Jan;28(3):941

    7. [IF=2.586] Wei Li et al."Ultra high-performance liquid chromatography coupled to ion mobility quadrupole time of flight mass spectrometry profiling and unveiling the transformation of ginsenosides by the dual conditions of citric acid and high-pressure steaming."RAP

    6. [IF=2.419] Yinping Jin et al."Dynamic changes of ginsenosides in Panax quinquefolius fruit at different development stages measured by UHPLC-Orbitrap MS."Rapid Communications In Mass Spectrometry. 2022 Feb 17

    5. [IF=3.105] Zhao Yan et al.Protopanaxadiol and Protopanaxatriol Ginsenosides Can Protect Against Aconitine-induced Injury in H9c2 Cells by Maintaining Calcium Homeostasis and Activating the AKT Pathway.J Cardiovasc Pharm. 2021 Nov;78(5):e690-e702

    4. [IF=3.645] Mengmeng Jia et al."UHPLC coupled with mass spectrometry and chemometric analysis of Kang-Ai injection based on the chemical characterization, simultaneous quantification, and relative quantification of 47 herbal alkaloids and saponins."J Sep Sci. 2020 Ju

    3. [IF=3.935] Shan-Shan Zhou et al."Synchronous characterization of carbohydrates and ginsenosides yields deeper insights into the processing chemistry of ginseng."J Pharmaceut Biomed. 2017 Oct;145:59

    2. [IF=5.34] Shan-Shan Zhou et al."Stronger anti-obesity effect of white ginseng over red ginseng and the potential mechanisms involving chemically structural/compositional specificity to gut microbiota."Phytomedicine. 2020 Aug;74:152761

    1.  Qin, Z., Jia, M., Yang, J. et al. Multiple circulating alkaloids and saponins from intravenous Kang-Ai injection inhibit human cytochrome P450 and UDP-glucuronosyltransferase isozymes: potential drug–drug interactions. Chin Med 15, 69 (2020). https:##doi.o

    相关实验
    • Appendix F: Centrifugation

      ROTORS Table F.1. Rotor Characteristics Figure F.1. Cross section of Sorvall SS-34 rotor. Rotors for a centrifuge are either fixed angles , swinging buckets , continuous flow, or zonal, depending upon whether the sample is held

    • F值表(方差齐性检验用)

      P=0.05 (双侧) r r(较大均方的自由度) n 2 2 3 4 5 6 7 8 9 10 12 15 20 30 60 00 1 799 364 899 922 937 948 957 963 969 977 985 993 1001 1010 1018 1 2 39.0 39.2 39.2 39.3 39.3 39.3 39.4 39.4 39.4 39.4 39.4 39.4 39.5 39.5 39.5 2 3 10.0 15.4 15

    • F 菌株 F strain

        指在大肠杆菌等细菌细胞中具有能和染色体分开进行独立复制的 F因子的雄性菌株。具有 F纤毛,通过与雌性菌株接合,可以高的频率进行 F因子的传递,同时也以低频率雄性菌的染色体向雌性菌传递。 F 菌株群体中有时有的细菌会失去 F因子而变为 F- 菌,但这种频率是很低的(约为 0.1%)。通过在含有适当浓度的吖啶色素的培养基中培养等方法,由于仅 F因子的复制受特异的抑制,所以可以很高的频率获得 F-菌株。  

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