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  • 9-十八碳烯二酸

    9-Octadecenedioic acid

    9-十八碳烯二酸
    产品编号 CFN95301
    CAS编号 4494-16-0
    分子式 = 分子量 C18H32O4 = 312.5
    产品纯度 >=98%
    物理属性 Powder
    化合物类型 Lipids
    植物来源 The herbs of Piper cubeba
    ChemFaces的产品在影响因子大于5的优秀和顶级科学期刊中被引用
    提供自定义包装
    产品名称 产品编号 CAS编号 包装 QQ客服
    9-十八碳烯二酸 CFN95301 4494-16-0 1mg QQ客服:2056216494
    9-十八碳烯二酸 CFN95301 4494-16-0 5mg QQ客服:2056216494
    9-十八碳烯二酸 CFN95301 4494-16-0 10mg QQ客服:2056216494
    9-十八碳烯二酸 CFN95301 4494-16-0 20mg QQ客服:2056216494
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    ChemFaces的产品在许多优秀和顶级科学期刊中被引用

    Cell. 2018 Jan 11;172(1-2):249-261.e12.
    doi: 10.1016/j.cell.2017.12.019.
    IF=36.216(2019)

    PMID: 29328914

    Cell Metab. 2020 Mar 3;31(3):534-548.e5.
    doi: 10.1016/j.cmet.2020.01.002.
    IF=22.415(2019)

    PMID: 32004475

    Mol Cell. 2017 Nov 16;68(4):673-685.e6.
    doi: 10.1016/j.molcel.2017.10.022.
    IF=14.548(2019)

    PMID: 29149595

    ACS Nano. 2018 Apr 24;12(4): 3385-3396.
    doi: 10.1021/acsnano.7b08969.
    IF=13.903(2019)

    PMID: 29553709

    Nature Plants. 2016 Dec 22;3: 16206.
    doi: 10.1038/nplants.2016.205.
    IF=13.297(2019)

    PMID: 28005066

    Sci Adv. 2018 Oct 24;4(10): eaat6994.
    doi: 10.1126/sciadv.aat6994.
    IF=12.804(2019)

    PMID: 30417089
    我们的产品现已经出口到下面的研究机构与大学,并且还在增涨
  • Chiang Mai University (Thailand)
  • University of Vigo (Spain)
  • Institute of Chinese Materia Medica (China)
  • University of Vienna (Austria)
  • Instituto de Investigaciones Agropecuarias (Chile)
  • Lodz University of Technology (Poland)
  • Sant Gadge Baba Amravati University (India)
  • Mahatma Gandhi University (India)
  • Center for protein Engineering (CIP) (Belgium)
  • Kamphaengphet Rajabhat University (Thailand)
  • University of Stirling (United Kingdom)
  • Universite Libre de Bruxelles (Belgium)
  • Srinakharinwirot University (Thailand)
  • University of Helsinki (Finland)
  • More...
  • 国外学术期刊发表的引用ChemFaces产品的部分文献
  • BMC Complement Altern Med.2016, 16:213
  • Molecules.2023, 28(3):958.
  • National Academy Science Letters2023, s40009.
  • Talanta.2022, 249:123645.
  • J Cell Mol Med.2023, 27(10):1423-1435.
  • Molecules.2021, 26(6):1635.
  • Applied Biological Chemistry2022, 65(12)
  • Phytother Res.2019, 33(4):1104-1113
  • J Microbiol Immunol Infect.2021, S1684-1182(21)00142-0.
  • Drug Des Devel Ther.2020, 14:969-976.
  • Plants (Basel).2022, 11(16):2126.
  • Int J Biol Macromol.2020, 169:342-351
  • Front. Plant Sci.2022, 13:757852.
  • Evid Based Complement Alternat Med.2018, 2018:1073509
  • The Catharanthus Genome2022,35-83.
  • Front Cell Dev Biol.2021, 9:764263.
  • Phytomedicine.2019, 67:153159
  • Synthetic and Systems Biotechnology2023, j.synbio.
  • J Cancer.2019, 10(23):5843-5851
  • J Agric Food Chem.2021, 69(11):3496-3510.
  • Separations2023, 10(11), 567;
  • Molecules.2023, 28(9):3685.
  • Biochem Biophys Res Commun.2017, 494(3-4):587-593
  • ...
  • 生物活性
    In vitro:
    Biochemical Engineering Journal Volume 166, February 2021, 107872
    Kinetic modelling of the biochemical 9-octadecenedioic acid production and lipid accumulation using differently functionalised C18:1 substrates[Reference: WebLink]
    The potential use of different hydrophobic substrates (oleic acid, oleyl alcohol, methyl oleate and rapeseed oil) for the production of high concentrations of 9-octadecenedioic acid by the genetically engineered C. tropicalis ATCC-20962 yeast was researched. For comparison purposes, data for growth, intracellular triacylglyceride (TAG) accumulation and dicarboxylic acid (DCA) production were obtained for mathematical description using both known and newly adapted models. Fermentations were carried out in an aerated, stirred 2L-fermenter in which temperature (30°C) and pH (8.2) were controlled automatically. Using oleic acid resulted in the highest DCA production, i.e. 31.3 g.L−1 in 144 h, as well as the highest intracellular TAG concentration (60.5 m%). Mass balance calculations proved that 35 % of the consumed oleic acid was used for TAG accumulation. The oleyl alcohol and rapeseed oil substrates showed high initial DCA production rates as well, however, after 80 h, DCA production stopped to reach a maximum. In contrast, with methyl oleate substrate, a very slow production was observed without approaching a maximum within the experimental time.
    制备储备液(仅供参考)
    1 mg 5 mg 10 mg 20 mg 25 mg
    1 mM 3.2 mL 16 mL 32 mL 64 mL 80 mL
    5 mM 0.64 mL 3.2 mL 6.4 mL 12.8 mL 16 mL
    10 mM 0.32 mL 1.6 mL 3.2 mL 6.4 mL 8 mL
    50 mM 0.064 mL 0.32 mL 0.64 mL 1.28 mL 1.6 mL
    100 mM 0.032 mL 0.16 mL 0.32 mL 0.64 mL 0.8 mL
    * Note: If you are in the process of experiment, it's need to make the dilution ratios of the samples. The dilution data of the sheet for your reference. Normally, it's can get a better solubility within lower of Concentrations.
    部分图片展示
    产品名称 产品编号 CAS编号 分子式 = 分子量 位单 联系QQ
    硬脂酸,十八碳酸,十八酸,十八(烷)酸; Stearic Acid CFN93165 57-11-4 C18H36O2 = 284.5 20mg QQ客服:1457312923
    亚油酸; Linoleic acid CFN93168 60-33-3 C18H32O2 = 280.5 20mg QQ客服:1413575084
    油酸; Oleic acid CFN94800 112-80-1 C18H34O2 = 282.5 20mg QQ客服:3257982914
    9,16-二氧代-10,12,14-十八碳三烯酸; 9,16-Dioxo-10,12,14-octadecatrienoic acid CFN98082 217810-46-3 C18H26O4 = 306.4 5mg QQ客服:3257982914
    2-羟基二十四烷酸乙酯; 2-Hydroxytetracosanoic acid ethyl ester CFN99353 124111-47-3 C26H52O3 = 412.7 5mg QQ客服:2159513211
    鱼腥草素纳; Sodium houttuyfonate CFN90975 1847-58-1 C14H27NaO5S = 330.4 20mg QQ客服:2159513211
    1,18-十八烷二醇; 1,18-Octadecanediol CFN98401 3155-43-9 C18H38O2 = 286.5 5mg QQ客服:2056216494
    癸二酸; Decanedioic acid CFN99210 111-20-6 C10H18O4 = 202.3 20mg QQ客服:215959384
    4-氧代十二烷二酸; 4-Oxododecanedioic acid CFN98390 30828-09-2 C12H20O5 = 244.3 5mg QQ客服:2056216494
    反-2-十三烯-1,13-二酸; trans-2-Tridecene-1,13-dioic acid CFN92762 14811-82-6 C13H22O4 = 242.3 5mg QQ客服:2056216494

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