松果菊苷
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松果菊苷

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  • ¥480
  • YOYOBIO
  • 上海
  • YJ-B21209-10mg
  • 2025年12月02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

      Echinacoside

    • 库存

      大量现货

    • 供应商

      上海研谨生物

    • CAS号

      82854-37-3

    • 规格

      10mg

    松果菊苷

    分析标准品,HPLC≥98%

    Echinacoside

    CAS号:82854-37-3

    分子式:C35H46O20

    分子量:786.736

    MDLMFCD00075695

    别名:紫锥菊苷;海胆苷

    货号

    规格/参数/品牌

    价格

    货期

    YJ-B21209-10mg

    分析标准品,HPLC≥98%

    480.00

    现货

    YJ-B21209-20mg

    分析标准品,HPLC≥98%

    600.00

    现货

    YJ-B21209-150mg

    分析标准品,HPLC≥98%

    2780.00

    现货

    A10257-20mg

    分析标准品,含量90.1%,可溯源

    1600.00

    现货

     

    产品介绍

    熔点:220℃

    沸点:1062.7 ℃ at 760 mmHg

    比旋光度:-56.5 (H2O). -74 (MeOH)

    外观:棕黄色结晶粉末

    溶解性:DMSO  :  ≥  100  mg/mL (127.11  mM)

    敏感性:易吸潮

    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(37)

    37. [IF=5.6] Xuemei Zhang et al."Integration WGCNA with LC-MS Data for Evaluating the Processing Status and Transformation Rules of Ligustri Lucidi Fructus: A Novel Strategy for Evaluating the Processing technology of traditional Chinese medicines."TALANTA.2024 Oct;:1

    36. [IF=2.8] Wenzheng Li et al."Spatial-resolved metabolome imaging of petals for Forsythia viridissima and Jasminum nudiflorum using online extraction (OLE) coupled to LC–Qtof-MS."JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES

    35. [IF=6.8] Penggang Bai et al."High-level sustainable production of complex phenylethanoid glycosides from glucose through engineered yeast cell factories."METABOLIC ENGINEERING.2025 Jan;87:95

    34. [IF=7.7] Linwei Yu et al."Identification of novel phenolic inhibitors from traditional Chinese medicine against toxic α-synuclein aggregation via regulating phase separation."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Mar;297:139875

    33. [IF=5.3] Ying Tang et al."Cistanche phenylethanoid glycosides induce apoptosis and pyroptosis in T-cell lymphoma."American Journal of Cancer Research".2024; 14(3): 1338–1352

    32. [IF=6] Dong Xie et al."Pharmacodynamic material basis and mechanism of Tenghuang Jiangu Wan on osteoarthritis using UPLC-Q-TOF-MS integrated with target network pharmacology."Arabian Journal of Chemistry".2024 Apr;17:105711

    31. [IF=1.911] Huibo Lei et al."Effects of processing on the efficacy and metabolites of Cistanche tubulosa based on UPLC-Q/TOF-MS."BIOMEDICAL CHROMATOGRAPHY.2023 Mar;:e5621

    30. [IF=5.195] Tao Liu et al."ErZhiFormula prevents UV-induced skin photoaging by Nrf2/HO-1/NQO1 signaling: An in vitro and in vivo studies."JOURNAL OF ETHNOPHARMACOLOGY.2022 Nov;:115935

    29. [IF=2.838] Abudujilile Dilinazi et al."Cistanche tubulosa phenylethanoid glycosides suppressed adipogenesis in 3T3-L1 adipocytes and improved obesity and insulin resistance in high-fat diet induced obese mice."BMC Complementary Medicine and Therapies.2022 Dec;22(1):

    28. [IF=4.508] Chunying Li et al."A novel approach for echinacoside and acteoside extraction from Cistanche deserticola Y. C. Ma using an aqueous system containing ionic liquid surfactants."Sustain Chem Pharm. 2022 May;26:100644

    27. [IF=1.902] Chenxi Wang et al."Multiple component-pharmacokinetic studies on 10 bioactive constituents of Peiyuan Tongnao capsule using parallel reaction monitoring mode."Biomed Chromatogr. 2021 Oct;35(10):e5153

    26. [IF=2.091] Zhenhong Liu et al."GAPT regulates cholinergic dysfunction and oxidative stress in the brains of learning and memory impairment mice induced by scopolamine."Brain Behav. 2020 May;10(5):e01602

    25. [IF=3.279] Pengfei Yuan et al."Cistanche tubulosa Phenylethanoid Glycosides Induce Apoptosis of Hepatocellular Carcinoma Cells by Mitochondria-Dependent and MAPK Pathways and Enhance Antitumor Effect through Combination with Cisplatin:."Integr Cancer Ther. 2021;():

    24. [IF=3.69] Qixin Wang et al."Phenylethanol glycosides from Cistanche tubulosa improved reproductive dysfunction by regulating testicular steroids through CYP450-3β-HSD pathway."J Ethnopharmacol. 2020 Apr;251:112500

    23. [IF=4.142] Wang  Chenxi et al."Systematic quality evaluation of Peiyuan Tongnao capsule by offline two-dimensional liquid chromatography/quadrupole-Orbitrap mass spectrometry and adjusted parallel reaction monitoring of quality markers."Anal Bioanal Chem. 2019 Nov;4

    22. [IF=4.142] Lei  Huibo et al."Comprehensive profiling of the chemical components and potential markers in raw and processed Cistanche tubulosa by combining ultra-high-performance liquid chromatography coupled with tandem mass spectrometry and MS/MS-based molecular ne

    21. [IF=6.023] Maiquan Li et al."Discovery of Keap1−Nrf2 small−molecule inhibitors from phytochemicals based on molecular docking."Food Chem Toxicol. 2019 Nov;133:110758

    20. [IF=6.558] Qingqing Song et al."Binary code, a flexible tool for diagnostic metabolite sequencing of medicinal plants."Anal Chim Acta. 2019 Dec;1088:89

    19. [IF=6.986] Qingqing Song et al."Retention Time and Optimal Collision Energy Advance Structural Annotation Relied on LC–MS/MS: An Application in Metabolite Identification of an Antidementia Agent Namely Echinacoside."Anal Chem. 2019;91(23):15040–15048

    18. [IF=9.229] Linlin Deng et al."Highly Crystalline Covalent Organic Frameworks Act as a Dual-Functional Fluorescent-Sensing Platform for Myricetin and Water, and Adsorbents for Myricetin."Acs Appl Mater Inter. 2021;13(28):33449–33463

    17. [IF=2.043] Wang Xue et al."The longevity effect of echinacoside in Caenorhabditis elegans mediated through daf-16."Biosci Biotech Bioch. 2015 Oct;79(10):1676-1683

    16. [IF=2.629] Zhang Ying et al."The Difference of Chemical Components and Biological Activities of the Raw Products slices and the Wine Steam-Processed Product from Cistanche deserticola."Evid-Based Compl Alt. 2019;2019:2167947

    15. [IF=3.046] Liwei Dong et al."Echinacoside induces apoptotic cancer cell death by inhibiting the nucleotide pool sanitizing enzyme MTH1."Oncotargets Ther. 2015; 8: 3649–3664

    14. [IF=4.183] Liwei Dong et al."Echinacoside Induces Apoptosis in Human SW480 Colorectal Cancer Cells by Induction of Oxidative DNA Damages."Int J Mol Sci. 2015 Jul;16(7):14655-14668

    13. [IF=4.411] Li Jia et al."Systematic Profiling of the Multicomponents and Authentication of Erzhi Pill by UHPLC/Q-Orbitrap-MS Oriented Rapid Polarity-Switching Data-Dependent Acquisition and Selective Monitoring of the Chemical Markers Deduced from Fingerprint Analys

    12. [IF=4.411] Fangxue Xu et al."Optimization of Fermentation Condition for Echinacoside Yield Improvement with Penicillium sp. H1, an Endophytic Fungus Isolated from Ligustrum lucidum Ait Using Response Surface Methodology."Molecules. 2018 Oct;23(10):2586

    11. [IF=4.556] Maiquan Li et al."Neuroprotective Effects of Four Phenylethanoid Glycosides on H2O2-Induced Apoptosis on PC12 Cells via the Nrf2/ARE Pathway."Int J Mol Sci. 2018 Apr;19(4):1135

    10. [IF=6.057] Shuo Li et al."A novel electrochemical sensor for detecting hyperin with a nanocomposite of ZrO2-SDS-SWCNTs as decoration."Talanta. 2018 Aug;185:453

    9.  Shuo Li, Yinghao Duan, Sheng Lei, Jiantong Qiao, Gaiping Li, Baoxian Ye,

    A new electrochemical sensing strategy for echinacoside based on an original nanocomposite,

    Sensors and Actuators B: Chemical,

    Volume 274,

    2018,

    Pages 218-227,

    ISSN 0925-4005,

    https:/

    8.  Shuo Li, Sheng Lei, Qian Yu, Lina Zou, Baoxian Ye,

    A novel electrochemical sensor for detecting hyperin with a nanocomposite of ZrO2-SDS-SWCNTs as decoration,

    Talanta,

    Volume 185,

    2018,

    Pages 453-460,

    ISSN 0039-9140,

    https:##doi.org/10.1016/j.talanta.2018.

    7.  杨成梓  范兴  包侠萍 等. HPLC同时测定芪骨胶囊中5种成分的含量[J]. 中国实验方剂学杂志  2015  021(016):60-63.

    6.  范兴, 杨成梓, 包侠萍,. 芪骨胶囊HPLC指纹图谱研究[J]. 中草药, 2014, 045(009):1257-1261.

    5.  姜秋, 蒋海强, 李慧芬,. 女贞子酒蒸过程中5种苯乙醇类成分的变化规律[J]. 中国实验方剂学杂志, 2014, 20(16):60-63.

    4.  丁艳霞,王晓琴,张英.基于高效液相色谱的肉苁蓉属药材6个主要苯乙醇苷类成分的含量测定[J].时珍国医国药,2020,31(04):813-816.

    3.  付志飞, 杨丽, 尚非,. 肉苁蓉提取物对快速老化模型小鼠SAMP8行为学及肠道菌群的影响[J]. 世界科学技术-中医药现代化, 2019, 021(006):1103-1109.

    2.  蔡华, 张领, 李满生,. 松果菊苷通过上调miR-34a减轻心肌细胞缺血再灌注损伤[J]. 中国循证心血管医学杂志, 2018, v.10(06):104-107+110.

    1.  苏珊珊  陈文  方贺 等. Box-Behnken效应面法优化松果菊苷PLGA纳米粒处方工艺[J]. 中国新药杂志  2016  025(009):1069-1074.

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