东莨菪内酯
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东莨菪内酯

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  • ¥330
  • YOYOBIO
  • 上海
  • YJ-B20309-20mg
  • 2025年09月17日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 保存条件

      2-8°C

    • 保质期

      见包装

    • 英文名

      Scopoletin

    • 库存

      大量现货

    • 供应商

      上海研谨生物

    • CAS号

      92-61-5

    • 规格

      20mg

    东莨菪内酯

    分析标准品,HPLC≥99%

    Scopoletin

    CAS号:92-61-5

    分子式:C10H8O4

    分子量:192.17

    MDLMFCD00006872

    货号

    规格/参数/品牌

    价格

    货期

    YJ-B20309-20mg

    分析标准品,HPLC≥99%

    330.00

    现货

    YJ-B20309-200mg

    分析标准品,HPLC≥99%

    1742.00

    现货

    JS59766-50mg

    98%

    590.00

    现货

    JS59766-250mg

    98%

    1026.00

    现货

    JS59766-1g

    98%

    3118.00

    现货

    A10094-20mg

    分析标准品,含量94.4%,可溯源

    440.00

    现货

     

    产品介绍

    熔点:203-205℃

    沸点:413.5℃ at 760 mmHg

    外观:白色结晶

    溶解性:溶于氯仿,甲醇,丙tong

    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(46)

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    41. [IF=8.5] Congyan Su et al."Exploring the influence of fruit ripeness on the microbiome, bioactive components, and flavor profiles of naturally fermented noni (Morinda citrifolia L.) juice."FOOD CHEMISTRY.2025 Apr;:144192

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    39. [IF=8.5] Shengnan Wang et al."Postharvest changes in the phenolic and free volatile compound contents in Shine Muscat grapes at room temperature."FOOD CHEMISTRY.2025 Feb;465:141958

    38. [IF=2.3] Nixia Tan et al."Network Pharmacology and Molecular Dynamics Simulations Reveal the Mechanism of Total Alkaloid Components in Anisodus tanguticus (Maxim.) Pascher in Treating Inflammation and Pain.."CHEMISTRY & BIODIVERSITY.2024 Sep;:e202401199

    37. [IF=6.8] Chong Xie et al."Establishing a coumarin production platform by protein and metabolic engineering."METABOLIC ENGINEERING.2024 Nov;86:89

    36. [IF=7] Congyan Su et al."Insight into the changes in active metabolite profiles of noni (Morinda citrifolia L.) fruit subjected to different drying treatments."FOOD RESEARCH INTERNATIONAL.2024 Aug;:114858

    35. [IF=5] Luyao Liu et al."Targeted discovery of gut microbiome-remodeling compounds for the treatment of systemic inflammatory response syndrome."mSystems.

    34. [IF=2.6] Fan Yang et al."Preliminary Exploration of Potential Active Ingredients and Molecular Mechanisms of Yanggan Yishui Granules for Treating Hypertensive Nephropathy Using UPLC-Q-TOF/MS Coupled with Network Pharmacology and Molecular Docking Strategy."Journal

    33. [IF=5.9] Shufang Yang et al."Unraveling the variations and relationships between phytochemical constituents and anti-inflammatory potentials of three Zanthoxylum species through metabolomics and explainable machine learning."INDUSTRIAL CROPS AND PRODUCTS".2024 Jun

    32. [IF=2] Ying Tang et al."Geographical Origin Traceability of Atractylodes macrocephala Koidz. Using Mass Spectrometry Data Fusion and Ensemble Learning."ANALYTICAL LETTERS.10.1080/00032719.2024.2323074

    31. [IF=2.2] Yang Mengke et al."Feeding-induced plant metabolite responses to a phoretic gall mite, its carrier psyllid and both, after detachment."EXPERIMENTAL AND APPLIED ACAROLOGY.2023 Nov;91(3):381-403

    30. [IF=4.9] Zhang Min et al."Discovery and evaluation of active compounds from Xuanfei Baidu formula against COVID-19 via SARS-CoV-2 Mpro."Chinese Medicine.2023 Dec;18(1):1-14

    29. [IF=1.7] Zhouyi Zhang et al."Revealing the differences in phenolics in different parts of Taraxacum mongolicum using UPLC-MS/MS."Phytochemistry Letters.2023 Aug;56:13

    28. [IF=7] Ze Liang et al."Combined phenolomic approaches reveal elevated CO2 influences phenolic biosynthesis in wolfberry (Lycium barbarum)."POSTHARVEST BIOLOGY AND TECHNOLOGY.2023 Oct;204:112456

    27. [IF=3.776] Lele Zhang et al."Integration of UHPLC/Q-OrbitrapMS-based metabolomics and activities evaluation to rapidly explore the anti-inflammatory components from lasianthus.."Heliyon.2023 May;9(6):e16117-e16117

    26. [IF=8.005] Liao Zhenkun et al."A multifunctional true CCoAOMT enzyme participates in the biosynthesis of polymethoxylated flavones in citrus."PLANT PHYSIOLOGY.2023 Apr;:

    25. [IF=2.586] Mailing Zou et al."Profiling aromatic constituents of Chimonanthus nitens Oliv. leaf granule using mass spectrometry."RAPID COMMUNICATIONS IN MASS SPECTROMETRY.2023 Jan;:e9481

    24. [IF=5.168] Pan Wang et al."Discovery and characterization of novel ATP citrate lyase inhibitors from natural products by a luminescence-based assay."CHEMICO-BIOLOGICAL INTERACTIONS.2022 Nov;367:110199

    23. [IF=3.318] Zhenhua Tian et al."Affinity ultrafiltration and UPLC-HR-Orbitrap-MS based screening of neuraminidase inhibitors from Angelica pubescens."JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES.2022 Oct;1208:123398

    22. [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

    21. [IF=5.396] Xiaoqin Zhang et al."Chimonanthus salicifolius attenuated vascular remodeling by alleviating endoplasmic reticulum stress in spontaneously hypertensive rat."Food & Function. 2022 May;:

    20. [IF=5.165] Juanning Ren et al."Qualitative and quantitative analysis of multi-components in Xing-Su-Ning Capsules for quality improvement."Arab J Chem. 2022 Jun;15:103825

    19. [IF=3.69] Wumu Xu et al."Bajitianwan attenuates D-galactose-induced memory impairment and bone loss through suppression of oxidative stress in aging rat model."J Ethnopharmacol. 2020 Oct;261:112992

    18. [IF=3.978] Chen-Hui Zhao et al."Engineering budding yeast for the production of coumarins from lignin."Biochem Eng J. 2020 Aug;160:107634

    17. [IF=4.411] Liuyi Yu et al."Systematic Detection and Identification of Bioactive Ingredients from Citrus aurantium L. var. amara Using HPLC-Q-TOF-MS Combined with a Screening Method."Molecules. 2020 Jan;25(2):357

    16. [IF=0] B Zhou et al."Study on quality standards for Chimonanthus nitens."Genet Mol Res. 2016 Aug 29;15(3)

    15. [IF=2.52] Luo  Jinxiang et al."Photodegradation of Scopoletin in Organic Solvents and Aqueous Solutions: Kinetics and Degradation Pathways."Water Air Soil Poll. 2018 Feb;229(2):1-15

    14. [IF=3.645] Lijuan Wang et al."Systematic characterization and simultaneous quantification of the multiple components of Rhododendron dauricum based on high-performance liquid chromatography with quadrupole time-of-flight tandem mass spectrometry."J Sep Sci. 2015 Sep

    13. [IF=4.411] Yanling Zeng et al."Rapid Characterization of Components in Bolbostemma paniculatum by UPLC/LTQ-Orbitrap MSn Analysis and Multivariate Statistical Analysis for Herb Discrimination."Molecules. 2018 May;23(5):1155

    12. [IF=4.411] Liang Yang et al."New Insights into the Antibacterial Activity of Hydroxycoumarins against Ralstonia solanacearum."Molecules. 2016 Apr;21(4):468

    11.  Zhu, Hao, et al. "Anti-inflammatory effects of p-coumaric acid, a natural compound of Oldenlandia diffusa, on arthritis model rats." Evidence-Based Complementary and Alternative Medicine 2018 (2018).https:##doi.org/10.1155/2018/5198594

    10.  Liu, Huan, et al. "Antimicrobial activity and virulence attenuation of citral against the fish pathogen Vibrio alginolyticus." Aquaculture 515 (2020): 734578.https:##doi.org/10.1016/j.aquaculture.2019.734578

    9.  Xu, Wumu, et al. "Bajitianwan attenuates D-galactose-induced memory impairment and bone loss through suppression of oxidative stress in aging rat model." Journal of Ethnopharmacology 261 (2020): 112992.https:##doi.org/10.1016/j.jep.2020.112992

    8.  Luo, J., Tang, L., Zhang, Y. et al. Photodegradation of Scopoletin in Organic Solvents and Aqueous Solutions: Kinetics and Degradation Pathways. Water Air Soil Pollut 229, 50 (2018). https:##doi.org/10.1007/s11270-018-3685-5

    7.  小红,庞克坚,唐辉,张虹,魏沣,刘乐乐,姜国珍.蒙药哈日-沙布嘎(铁杆蒿)的质量标准提升[J].中国药房,2021,32(05):536-541.

    6.  刘国宇,崔新爱,李艳,王玮,周军辉.不同生长年限木本曼陀罗中莨菪碱和东莨菪碱含量比较研究[J].陕西农业科学,2020,66(09):43-44.

    5.  陈海君, 马尚智, 江敏,. 超滤亲和-液质联用和分子对接技术筛选毛菊苣根中α-葡萄糖苷酶抑制剂[J]. 中草药, 2019, 50(02):85-92.

    4.  周斌, 崔小弟, 程丹,. 山蜡梅颗粒剂中4种有效成分含量的反相高效液相色谱法同时测定[J]. 时珍国医国药, 2013, 24(11):2653-2654.

    3.  崔小弟  李梦杰  周斌 等. HPLC同时分析山蜡梅叶中4种有效成分的含量[J]. 中国实验方剂学杂志  2013  19(16):85-87.

    2.  汤荔枝  丁伟  罗金香  et al. 东莨菪内酯在水中的光解特性研究[J]. 农药学学报  2014  000(003):313-318.

    1.  刘铁  刘德龙  魏永巨 等. U-PLS/RBL三维荧光法测定藤络宁胶囊中东莨菪内酯含量[J]. 分析测试学报  2018  03(v.37):63-68.

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    东莨菪内酯
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