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  • 没食子酸辛酯

    Octyl Gallate

    没食子酸辛酯
    产品编号 CFN93142
    CAS编号 1034-01-1
    分子式 = 分子量 C15H22O5 = 282.33
    产品纯度 >=98%
    物理属性 Powder
    化合物类型 Phenols
    植物来源 From Rhus chinensis Mill.
    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
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    产品名称 产品编号 CAS编号 包装 QQ客服
    没食子酸辛酯 CFN93142 1034-01-1 10mg QQ客服:215959384
    没食子酸辛酯 CFN93142 1034-01-1 20mg QQ客服:215959384
    没食子酸辛酯 CFN93142 1034-01-1 50mg QQ客服:215959384
    没食子酸辛酯 CFN93142 1034-01-1 100mg 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
  • Harvard University (USA)
  • Shanghai University of TCM (China)
  • Weizmann Institute of Science (Israel)
  • Chiang Mai University (Thailand)
  • Mendel University in Brno (Czech Republic)
  • University of Vigo (Spain)
  • Sri Sai Aditya Institute of Pharmaceutical Sciences and Research (India)
  • Subang Jaya Medical Centre (Malaysia)
  • Molecular Biology Institute of Barcelona (IBMB)-CSIC (Spain)
  • Osmania University (India)
  • Uniwersytet Gdański (Poland)
  • Nanjing University of Chinese Medicine (China)
  • Florida A&M University (USA)
  • St. Jude Children Research Hospital (USA)
  • More...
  • 国外学术期刊发表的引用ChemFaces产品的部分文献
  • J Ethnopharmacol.2024, 326:117902.
  • Arch Pharm Res.2015, 38(6):1080-9
  • Biochemistry.2018, 57(40):5886-5896
  • J Appl Biol Chem2022, 65:343−348.
  • Free Radic Biol Med.2021, 166:104-115.
  • Naunyn Schmiedebergs Arch Pharmacol.2024, 03148-x.
  • Molecules.2020, 25(7):1625.
  • Front Plant Sci.2017, 8:723
  • J of Food Quality2020, 8851285.
  • Cell Prolif.2021, 54(8):e13083.
  • Biomed Pharmacother.2021, 144:112300.
  • Toxins (Basel).2022, 14(12):824.
  • Current Traditional Medicine, 2021, 7:326-335(10).
  • Food Chem.2016, 191:81-90
  • Tropical Journal of Pharmaceutical Research 2021, 20(6):1165-1170.
  • Acta Pharm Sin B.2015, 5(4):323-9.
  • Journal of Applied Pharmaceutical Science2022, 0(00), pp:001-007
  • Mol Med Rep.2024, 29(2):26.
  • Anal Bioanal Chem.2018, 410(5):1561-1569
  • J Korean Med Ophthalmol Otolaryngol Dermatol2023, 36(1):1-20.
  • Antioxidants (Basel).2020, 9(2):E99
  • Chemistry of Natural Compounds2018, 54(3):572-576
  • J Clin Med.2019, 8(10):E1664
  • ...
  • 生物活性
    Description: Octyl Gallate is an antioxidant approved by the US Food and Drug Administration (FDA) as a food additive. Octyl Gallate has anticancer, antimetastatic, antimicrobial, and antiviral activities, it shows an inhibitory effect on the growth of herpes simplex virus type 1 (HSV-1) in HEp-2 or Vero cells. Combination therapy with octyl gallate and ferulic acid improves cognition and neurodegeneration in a transgenic mouse model of Alzheimer's disease.
    Targets: CDK | p21 | ROS | NADPH-oxidase | HSV | ATPase | Beta Amyloid | Antifection
    In vitro:
    Int J Antimicrob Agents. 2018 Jul;52(1):96-99.
    Antioxidant-based synergistic eradication of methicillin-resistant Staphylococcus aureus (MRSA) biofilms with bacitracin.[Pubmed: 29567095]
    Biofilms of methicillin-resistant Staphylococcus aureus (MRSA) have serious clinical implications. However, it is difficult to eradicate MRSA biofilms due to the increased tolerance to antimicrobials of biofilms.
    METHODS AND RESULTS:
    In this study, we investigated the synergistic anti-biofilm effect of the combination of Octyl Gallate (OG), an antioxidant approved by the US Food and Drug Administration (FDA) as a food additive, and bacitracin, an antimicrobial peptide commonly used in topical antimicrobial ointments. The results of biofilm assays showed that OG enabled bacitracin at concentrations as low as 10-3 U/ml to inhibit biofilm formation in MRSA. A confocal microscopic analysis exhibited that the combination of bacitracin and OG suppressed biofilm formation in MRSA highly effectively compared to the single treatment of either bacitracin or OG. The synergistic anti-biofilm activity of bacitracin and OG was also confirmed in MRSA strains from humans, including USA300, which is the predominant clone of community-associated MRSA in the US.
    CONCLUSIONS:
    To the best of our knowledge, this is the first report about the synergistic anti-biofilm activity of an antimicrobial peptide and an antioxidant against MRSA.
    Food Funct. 2017 Jul 19;8(7):2500-2511.
    Octyl gallate, a food additive with potential beneficial properties to treat Helicobacter pylori infection.[Pubmed: 28640317 ]
    Helicobacter pylori infection is marked by intense production of reactive oxygen species (ROS) through the activation of neutrophils that are constantly attracted to the infected gastric mucosa.
    METHODS AND RESULTS:
    Here, gallic acid and its alkyl esters were evaluated as compounds able to act as antimicrobial agents and inhibitors of ROS released by H. pylori-activated neutrophils simultaneously. We found that the higher hydrophobicity caused by esterification of gallic acid led to a significant increase in its ability as a cytotoxic agent against H. pylori, a scavenger of ROS and an inhibitor of NADPH oxidase in neutrophils. Octyl Gallate, a widely used food additive, showed the highest antimicrobial activity against H. pylori, with a minimum inhibitory concentration (MIC) value of 125 μg mL-1, whereas gallic acid had a MIC value higher than 1000 μg mL-1. The production of superoxide anion radicals was almost 100% abolished by the addition of 10 μM (2.82 μg mL-1) Octyl Gallate, whereas gallic acid inhibited around 20%. A similar tendency was also found when measuring the production of hypochlorous acid. The protective effect of the esters was cytochemically confirmed.
    CONCLUSIONS:
    In conclusion, this study showed that hydrophobicity is a crucial factor to obtain a significant anti-ROS and anti-H. pylori activity. Finally, it highlights Octyl Gallate, a food additive widely used in the food industry, as a promising molecule in the treatment of H. pylori infection.
    Antiviral Res. 2007 Feb;73(2):85-91.
    Antiviral effect of octyl gallate against DNA and RNA viruses.[Pubmed: 16950523]
    The effects of gallic acid (3,4,5-trihydroxybenzoic acid) and its alkyl esters on virus growth and virion infectivity were examined.
    METHODS AND RESULTS:
    All the compounds tested showed an inhibitory effect on the growth of herpes simplex virus type 1 (HSV-1) in HEp-2 or Vero cells. The antiviral activity of gallic acid alkyl esters was enhanced by increasing the number of carbon in the alkyl moieties of the compounds, reaching maximum at a carbon number of 12 (lauryl gallate), but both cytocidal activity and cytopathic effect of the compounds were also significantly increased simultaneously. Among these compounds, Octyl Gallate showed a marked antiviral effect with a relatively moderate cytotoxity. In addition, Octyl Gallate suppressed the multiplication of RNA viruses, such as vesicular stomatitis virus and poliovirus.
    CONCLUSIONS:
    Quantitative characterization of the HSV-1 infection in the presence of Octyl Gallate revealed that: (1) this reagent can directly inactivate HSV-1 (virucidal activity), (2) it suppresses both the intracellar multiplication and the release of the virus, (3) it selectively accelerates death of the virus-infected cells and (4) the addition of the reagent even at 6-h post infection completely abolishes the formation of progeny virus in the infected cells.
    Int J Food Microbiol. 2002 Dec 15;79(3):193-201.
    Antifungal activity of octyl gallate.[Pubmed: 12371654]
    Antifungal activities of propyl (C3), octyl (C8) and dodecyl (C12) gallates (3,4,5-trihydroxybenzoate) were tested against Saccharomyces cerevisiae ATCC7754 and Zygosaccharomyces bailii ATCC 60483.
    METHODS AND RESULTS:
    Octyl Gallate was found to be the only active compound with the minimum fungicidal concentration of 25 microg/ml (89 microM) against S. cerevisiae and of 50 microg/ml (177 microM) against Z. bailii, respectively. The inactivation study showed that Octyl Gallate was fungicidal against both S. cerevisiae and Z. bailii at any stage of growth. These fungicidal activities were not influenced by pH values. Octyl Gallate at 100 microg /ml reduced plasma membrane fluidity to 48% of control. On the other hand, dodecyl gallate at the same concentration reduced it to 76% of control. Only Octyl Gallate inhibited glucose-induced medium acidification, indicating direct or indirect inhibition of plasma membrane H +-ATPase.
    CONCLUSIONS:
    The primary fungicidal activity of Octyl Gallate comes from its ability to act as a nonionic surface-active agent (surfactant), though it can not be inferred that membrane damage, such as a decrease in the membrane fluidity, is the only cause of the lethal effect.
    In vivo:
    Anticancer Drugs. 2017 Oct;28(9):977-988.
    Solid lipid nanoparticles improve octyl gallate antimetastatic activity and ameliorate its renal and hepatic toxic effects.[Pubmed: 28746057 ]
    Metastasis is the main cause of cancer-related death and requires the development of effective treatments with reduced toxicity and effective anticancer activity. Gallic acid derivatives have shown significant biological properties including antitumoral activity as shown in a previous study with Octyl Gallate (G8) in vitro. Thus, the aim of this work was to evaluate the antimetastatic effect of free and solid lipid nanoparticle-loaded G8 in mice in a lung metastasis model.
    METHODS AND RESULTS:
    Animals inoculated with melanoma cells presented metastasis in lungs, which was significantly inhibited by treatment with G8 and solid lipid nanoparticle-loaded G8, named G8-NVM. However, G8-treated mice showed an increase in several toxicological parameters, which were almost completely circumvented by G8-NVM treatment.
    CONCLUSIONS:
    This study supports the need for pharmacological studies on new potential medicinal plants to treat cancer and can provide new perspectives on using nanotechnology to improve biological activities while decreasing the chemotherapy toxicological effects of anticancer drugs.
    制备储备液(仅供参考)
    1 mg 5 mg 10 mg 20 mg 25 mg
    1 mM 3.542 mL 17.7098 mL 35.4195 mL 70.8391 mL 88.5489 mL
    5 mM 0.7084 mL 3.542 mL 7.0839 mL 14.1678 mL 17.7098 mL
    10 mM 0.3542 mL 1.771 mL 3.542 mL 7.0839 mL 8.8549 mL
    50 mM 0.0708 mL 0.3542 mL 0.7084 mL 1.4168 mL 1.771 mL
    100 mM 0.0354 mL 0.1771 mL 0.3542 mL 0.7084 mL 0.8855 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
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    盐酸水苏碱; Stachydrine hydrochloride CFN98506 4136-37-2 C7H14ClNO2 = 179.64 20mg QQ客服:2159513211
    Pedunsaponin A; Pedunsaponin A CFN80329 250613-27-5 C42H66O15 = 811.0 5mg QQ客服:2159513211
    (E,E,E)-2,7-二甲基-2,4,6-辛三烯二醛; (E,E,E)-2,7-dimethylocta-2,4,6-trienedial CFN91652 5056-17-7 C10H12O2 = 164.2 5mg QQ客服:1413575084

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