CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Neurominidase Inhibitor

  • Anti-influenza activities of polyphenols from the medicinal mushroom Phellinus baumii.

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    Abstract Title:

    Anti-influenza activities of polyphenols from the medicinal mushroom Phellinus baumii.

    Abstract Source:

    Bioorg Med Chem Lett. 2015 Aug 15 ;25(16):3256-60. Epub 2015 May 31. PMID: 26077494

    Abstract Author(s):

    Byung Soon Hwang, In-Kyoung Lee, Hwa Jung Choi, Bong-Sik Yun

    Article Affiliation:

    Byung Soon Hwang

    Abstract:

    Five polyphenols were isolated from the ethanolic extract of the fruiting bodies of Phellinus baumii. These compounds were identified by various spectroscopic methods as hispidin, hypholomine B, inoscavin A, davallialactone, and phelligridin D. All compounds inhibited noncompetitively H1N1, H5N1, and H3N2 neuraminidase activity and reduced the amount of virally-induced cytopathic effect (CPE) according to an MDCK cell-based assay.

  • Neuraminidase Inhibitors from the Fruiting Body of Phellinus igniarius📎

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    Abstract Title:

    Neuraminidase Inhibitors from the Fruiting Body of Phellinus igniarius.

    Abstract Source:

    Mycobiology. 2016 Jun ;44(2):117-20. Epub 2016 Jun 30. PMID: 27433123

    Abstract Author(s):

    Ji-Yul Kim, Dae-Won Kim, Byung Soon Hwang, E-Eum Woo, Yoon-Ju Lee, Kyeong-Woon Jeong, In-Kyoung Lee, Bong-Sik Yun

    Article Affiliation:

    Ji-Yul Kim

    Abstract:

    During our ongoing investigation of neuraminidase inhibitors from medicinal fungi, we found that the fruiting bodies of Phellinus igniarius exhibited significant inhibitory activity against neuraminidase from recombinant H3N2 influenza viruses. Two active compounds were isolated from the methanolic extract of P. igniarius through solvent partitioning and Sephadex LH-20 column chromatography. The active compounds were identified as phelligridins E and G on proton nuclear magnetic resonance ((1)H NMR) and electrospray ionization mass measurements. These compounds inhibited neuraminidases from recombinant rvH1N1, H3N2, and H5N1 influenza viruses, with IC50 values in the range of 0.7~8.1µM.

  • Neurominidase Inhibitor

  • Sialoresponsin and an antiviral action of ascorbic acid.

    Abstract Title:

    Sialoresponsin and an antiviral action of ascorbic acid.

    Abstract Source:

    Med Hypotheses. 1978 Jan-Feb;4(1):40-3. PMID: 634178

    Abstract Author(s):

    D Rotman

    Abstract:

    Several pathogens, both viral and bacterial, employ the enzyme neuraminidase (N-acetylneuraminate glycohydrolase, EC 3.2.1.1.8). The neuraminidase renders ineffective the hemagglutinin inhibitory mucins that confine the pathogens in a coating of host mucins. Sialoresponsin is a receptor "decoy" that inhibits neuraminidase. Several known antiviral agents, including ascorbic acid, inhibit neuraminidase. It is proposed that ascorbic acid may mediate an antiviral effect through the incorporation of ascorbic acid or some derivative of ascorbic acid as a part of the sialoresponsin molecule. Whether ascorbic acid works alone as a pharmacological inhibitor, or is incorporated in sialoresponsin as a physiological inhibitor; it may be useful against pathogens that employ neuraminidase.

  • Suppression of influenza A virus nuclear antigen production and neuraminidase activity by a nutrient mixture containing ascorbic acid, green tea extract and amino acids.

    Abstract Title:

    Suppression of influenza A virus nuclear antigen production and neuraminidase activity by a nutrient mixture containing ascorbic acid, green tea extract and amino acids.

    Abstract Source:

    Biofactors. 2007;31(1):1-15. PMID: 18806304

    Abstract Author(s):

    R J Jariwalla, M W Roomi, B Gangapurkar, T Kalinovsky, A Niedzwiecki, M Rath

    Abstract:

    Influenza, one of the oldest and most common infections, poses a serious health problem causing significant morbidity and mortality, and imposing substantial economic costs. The efficacy of current drugs is limited and improved therapies are needed. A unique nutrient mixture (NM), containing ascorbic acid, green tea extract, lysine, proline, N-acetyl cysteine, selenium among other micronutrients, has been shown to exert anti-carcinogenic and anti-atherogenic activity both in vitro and in vivo. Many of the constituents of NM have been shown to have an inhibitory effect on replication of influenza virus and HIV. This prompted us to study the effect of NM on influenza A virus multiplication in infected cells and neuraminidase activity (NA) in virus particles. Addition of NM to Vero or MDCK cells post infection resulted in dose-dependent inhibition of viral nucleoprotein (NP) production in infected cells. NM-mediated inhibition of viral NP was selective and not due to cytotoxicity towards host cells. This antiviral effect was enhanced by pretreatment of virus with the nutrient mixture. Individual components of NM, namely ascorbic acid and green tea extract, also blocked viral NP production, conferring enhanced inhibition when tested in combination. Incubation of cell-free virus with NM resulted in dose-dependent inhibition of associated NA enzyme activity. In conclusion, the nutrient mixture exerts an antiviral effect against influenza A virus by lowering viral protein production in infected cells and diminishing viral enzymatic activity in cell-free particles.