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  • 橙黄胡椒酰胺

    Aurantiamide

    橙黄胡椒酰胺
    产品编号 CFN98984
    CAS编号 58115-31-4
    分子式 = 分子量 C25H26N2O3 = 402.5
    产品纯度 >=98%
    物理属性 Powder
    化合物类型 Alkaloids
    植物来源 The herbs of Walsura yunnanensis
    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
    橙黄胡椒酰胺 CFN98984 58115-31-4 1mg QQ客服:215959384
    橙黄胡椒酰胺 CFN98984 58115-31-4 5mg QQ客服:215959384
    橙黄胡椒酰胺 CFN98984 58115-31-4 10mg QQ客服:215959384
    橙黄胡椒酰胺 CFN98984 58115-31-4 20mg QQ客服:215959384
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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
  • Subang Jaya Medical Centre (Malaysia)
  • Universidad de Ciencias y Artes de Chiapas (Mexico)
  • Molecular Biology Institute of Barcelona (IBMB)-CSIC (Spain)
  • University of Zurich (Switzerland)
  • John Innes Centre (United Kingdom)
  • Monash University Sunway Campus (Malaysia)
  • Lodz University of Technology (Poland)
  • Chulalongkorn University (Thailand)
  • National Research Council of Canada (Canada)
  • Sapienza University of Rome (Italy)
  • S.N.D.T. Women's University (India)
  • VIB Department of Plant Systems Biology, UGent (PSB) (Belgium)
  • Harvard University (USA)
  • Uniwersytet Medyczny w ?odzi (Poland)
  • More...
  • 国外学术期刊发表的引用ChemFaces产品的部分文献
  • Molecules.2016, 21(6)
  • Enzyme Microb Technol.2022, 153:109941.
  • Korean J. Crop Sci.2018, 63(2):131-139
  • University of Stuttgart2021, 11682.
  • Evid Based Complement Alternat Med.2018, 2018:4259603
  • ACS Synth Biol.2022, doi: 10.1021.
  • Med Sci Monit.2019, 25:9499-9508
  • Clin Exp Pharmacol Physiol.2015, 42(11):1189-97
  • Journal of Ginseng Research2019, 10.1016
  • Aquaculture2017, 481:94-102
  • Phytother Res.2018, 32(5):923-932
  • Int Immunopharmacol.2022, 106:108603.
  • Journal of Food and Drug Analysis2023, 31(3), 9.
  • Microchemical Journal2022, 182: 107874.
  • Int J Mol Sci.2022, 23(23):14826.
  • Microchemical Journal2018, 137:168-173
  • Korean Herb. Med. Inf.2020, 8(2):233-242.
  • Plant Cell, Tissue and Organ Culture (PCTOC)2020, 143, 45-60(2020)
  • Molecules.2019, 25(1):E103
  • Foods. 2022, 11(23):3905.
  • J Basic Clin Physiol Pharmacol.2016, 27(1):1-8
  • Oxid Med Cell Longev.2021, 2021:4883398.
  • Appl. Sci.2020, 10(16),5482.
  • ...
  • 生物活性
    Description: Aurantiamide acetate has anti-cancer, anti-inflammatory and antinociceptive activities, it may suppress the growth of malignant gliomas by blocking autophagic flux, it also inhibits cysteine proteinases, in particular, cathepsin L (3.4.22.15) and B (3.4.22.1) with IC50 of 12 microM and 49 microM, respectively . Aurantiamide acetate has an anti-neuroinflammatory effect on LPS stimulation through its inhibition of the NF-κB, JNK and p38 pathways.
    Targets: Autophagy | NO | PGE | NOS | COX | TNF-α | IL Receptor | NF-kB | IkB | JNK | p38MAPK | IKK
    In vitro:
    Int Immunopharmacol. 2014 Dec;23(2):568-74.
    Anti-neuroinflammatory effect of aurantiamide acetate from the marine fungus Aspergillus sp. SF-5921: inhibition of NF-κB and MAPK pathways in lipopolysaccharide-induced mouse BV2 microglial cells.[Pubmed: 25448500]

    METHODS AND RESULTS:
    In the course of a search for anti-neuroinflammatory metabolites from marine fungi, Aurantiamide acetate (1) was isolated from marine-derived Aspergillus sp. as an anti-neuroinflammatory component. Compound 1 dose-dependently inhibited the production of nitric oxide (NO) and prostaglandin E2 (PGE2) in BV2 microglial cells. It also attenuated inducible NO synthase (iNOS), cyclooxygenase-2 (COX-2), and other pro-inflammatory cytokines, such as interleukin-1β (IL-1β) and tumor necrosis factor-α (TNF-α). In a further study designed to elucidate the mechanism of its anti-neuroinflammatory effect, Aurantiamide acetate was shown to block the activation of nuclear factor-kappa B (NF-κB) in lipopolysaccharide (LPS)-induced BV2 microglial cells by inhibiting the phosphorylation of the inhibitor kappa B-α (IκB)-α. In addition, Aurantiamide acetate decreased the phosphorylation levels of c-Jun N-terminal kinase (JNK) and p38 mitogen-activated protein kinases (MAPKs).
    CONCLUSIONS:
    These results suggest that Aurantiamide acetate has an anti-neuroinflammatory effect on LPS stimulation through its inhibition of the NF-κB, JNK and p38 pathways.
    In vivo:
    J Ethnopharmacol. 2015 Apr 22.
    An in vivo and in vitro assessment of the anti-inflammatory, antinociceptive, and immunomodulatory activities of Clematis terniflora DC. extract, participation of aurantiamide acetate.[Pubmed: 25910534]
    Clematis terniflora DC. has been widely used as a traditional Chinese medicine for the treatment of tonsillitis, rheumatoid arthritis, and prostatitis. Despite its widespread use in China, there are currently no studies systematically examined its therapeutic effects and mechanism of action. As such, the present study was conducted to evaluate the anti-inflammatory, antinociceptive, and immunomodulatory effects of C. terniflora DC. using rodent and cellular models.
    METHODS AND RESULTS:
    The anti-inflammatory properties of the 70% ethanol eluted fraction of the 70% ethanol extract of C. terniflora DC. (EECTD) were evaluated using the xylene-induced ear swelling test, the carrageenan-induced edema model, and the cotton pellet granuloma method. Its antinociceptive activities were determined using both the acetic acid-induced writhing test and the hot plate assay. In parallel, we conducted an in vitro assay in LPS-induced RAW264.7 cells to examine the anti-inflammatory effects of EECTD and its purified form, Aurantiamide acetate (AA) on inhibition of nitric oxide (NO) and prostaglandin E2 (PGE2) release. EECTD (300mg/kg) significantly reduced the number of writhing, extended the pain response latency, and suppressed xylene-induced ear swelling. Each EECTD treatment group also had significant inhibition of cotton granulation formation in addition to reduced carrageenan-induced paw edema. EECTD was also shown to alleviate signs of inflammation in histopathological paw sections. However, it had a less noticeable effect on mouse ear swelling in the delayed type hypersensitivity test. A purified compound was isolated from EECTD and its structure was identified as Aurantiamide acetate. In vitro experimental results showed that both EECTD and Aurantiamide acetate were able to significantly inhibit the release of pro-inflammatory cytokines NO and PGE2 on LPS-induced RAW264.7 cells.
    CONCLUSIONS:
    These results suggest that EECTD has significant anti-inflammatory and antinociceptive activities, partially related to one of the active substances identified as Aurantiamide acetate. We hypothesize that these effects are related to its ability to inhibit the production of cytokines NO and PGE2. However, further work will be needed to determine its exact mechanism of action.
    Biosci Biotechnol Biochem. 2001 May;65(5):1195-7.
    Aurantiamide acetate, a selective cathepsin inhibitor, produced by Aspergillus penicilloides.[Pubmed: 11440138]

    METHODS AND RESULTS:
    Aurantiamide acetate was isolated from the fermentation broth of Aspergillus penicilloides for the first time. Aurantiamide acetate inhibited cysteine proteinases, in particular, cathepsin L (3.4.22.15) and B (3.4.22.1) with IC50 of 12 microM and 49 microM, respectively. In the adjuvant-arthritic rat model, subcutaneously administered 10 mg/kg body weight of this compound suppressed hind paw swellin.
    制备储备液(仅供参考)
    1 mg 5 mg 10 mg 20 mg 25 mg
    1 mM 2.4845 mL 12.4224 mL 24.8447 mL 49.6894 mL 62.1118 mL
    5 mM 0.4969 mL 2.4845 mL 4.9689 mL 9.9379 mL 12.4224 mL
    10 mM 0.2484 mL 1.2422 mL 2.4845 mL 4.9689 mL 6.2112 mL
    50 mM 0.0497 mL 0.2484 mL 0.4969 mL 0.9938 mL 1.2422 mL
    100 mM 0.0248 mL 0.1242 mL 0.2484 mL 0.4969 mL 0.6211 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
    地骨皮甲素; Kukoamine A CFN93215 75288-96-9 C28H42N4O6 = 530.7 5mg QQ客服:2159513211
    地骨皮乙素; Kukoamine B CFN93216 164991-67-7 C28H42N4O6 = 530.7 10mg QQ客服:1457312923
    灰绿曲霉酰胺; Asperglaucide CFN98937 56121-42-7 C27H28N2O4 = 444.5 5mg QQ客服:215959384
    橙黄胡椒酰胺; Aurantiamide CFN98984 58115-31-4 C25H26N2O3 = 402.5 5mg QQ客服:2159513211
    金色酰胺醇苯甲酸酯; Aurantiamide benzoate CFN91929 150881-02-0 C32H30N2O4 = 506.59 5mg QQ客服:2159513211
    大麻酰胺B; Cannabisin B CFN95268 144506-17-2 C34H32N2O8 = 596.6 5mg QQ客服:2056216494
    大麻酰胺D; Cannabisin D CFN90405 144506-19-4 C36H36N2O8 = 624.69 5 mg QQ客服:215959384
    大麻酰胺P; Cannabisin P CFN95456 2756983-19-2 C34H34N2O9 = 614.7 5mg QQ客服:2056216494
    大麻酰胺M; Cannabisin M CFN95436 1831134-13-4 C34H32N2O8 = 596.6 5mg QQ客服:3257982914
    克罗酰胺; Grossamide CFN97672 80510-06-1 C36H36N2O8 = 624.69 5mg QQ客服:215959384

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