Inhibitory Kinetics and Mechanism of Flavonoids Extracted from Cotinus coggygria Scop. Against Glioblastoma Cancer.

This proposal seeks to study the potential therapeutic modality of chemoprevention and anticancer effects and mechanisms of the flavonoids fromCotinus coggygriaScop. on glioblastoma cancer. In the current study, the total flavonoids (TFs) isolated fromCotinus coggygriaScop. var. cinerea Engl. (Cotin...

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Publicado en:Nutrition & Cancer Vol. 68; no. 8; pp. 1357 - 1369
Autores principales: Wang, Gang, Wang, Jun-Jie, Du, Li, Fei, Li, To, Shing-shun Tony
Formato: research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Nov/Dec2016
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Nov/Dec2016
      vid: 68
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      pub: Taylor & Francis Ltd
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        10.1080/01635581.2016.1225105
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        atl: Inhibitory Kinetics and Mechanism of Flavonoids Extracted from Cotinus coggygria Scop. Against Glioblastoma Cancer.
      aug:
        au:
          Wang, Gang
          Wang, Jun-Jie
          Du, Li
          Fei, Li
          To, Shing-shun Tony
        affil: Department of Pharmaceutics, Shanghai Eighth People's Hospital, Jiangsu University, Shanghai, China
      sug:
        subj:
          Plants, Medicinal Therapeutic Use
          Flavonoids Therapeutic Use
          Kinetics
          Glioma Prevention and Control
          Nutrition
          Animal Studies
          Chemoprevention
          Cell Physiology
          Medicine, Herbal
          Mice
          Mass Spectrometry
          Flow Cytometry
          Biological Assay
          Blotting, Western Methods
          Flavonoids Classification
          Apoptosis
          Antineoplastic Agents
      ab: This proposal seeks to study the potential therapeutic modality of chemoprevention and anticancer effects and mechanisms of the flavonoids fromCotinus coggygriaScop. on glioblastoma cancer. In the current study, the total flavonoids (TFs) isolated fromCotinus coggygriaScop. var. cinerea Engl. (Cotinus coggygriaScop.) and the major flavonoids ofCotinus coggygriaScop. (CCFs) were identified, and the inhibitory kinetics of TF and CCF on glioblastoma cell lines were calculated. We also investigated whether TF or CCF regulated the apoptotic mechanism in cellular models of glio-blastoma cells. Finally, we evaluated whether treatment with TF or CCF suppressed tumor growth and inhibited migration in orthotopic mouse models of glioblastoma in vivo. In this study, the CCFs were identified as rutin, myricetin, and fisetin. TF and CCF remarkably inhibited cell proliferation and downregulated the PI3K/Akt and ERK signaling pathway in glioblastoma cell lines. Furthermore, the mitochondrial caspase-dependent cascade was regulated by TF and myricetin. In addition, TF and myricetin exhibited significant antitumor effects on glioblastoma in vivo. Taken together, these results suggest that phytochemical and biological data provide evidence for the active components inCotinus coggygria, and that the TFs are responsible for the anticancer effects on glioblastoma cell growth via induction of apoptosis. In addition, the representative compound myricetin could provide a clinically relevant therapeutic opportunity. Therefore, our data strongly suggest that myricetin-deprived CCF can serve as a potent chemopreventive herbal medicine.
      pubtype: Academic Journal
      doctype:
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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