Metabolites profiling of Chrysanthemum pacificum Nakai parts using UPLC-PDA-MS coupled to chemometrics.

Methanol-soluble constituents from the flowers, non-flowering aerial parts and roots of Chrysanthemum pacificum Nakai were analysed via high resolution UPLC-PDA-qTOF-MS followed by chemometrics. Forty-seven chromatographic peaks belonging to various metabolite classes were detected. Most metabolite...

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Publicado en:Natural Product Research Vol. 29; no. 14; pp. 1342 - 1350
Autores principales: Farag, Nermeen F., Farag, Mohamed A., Abdelrahman, Enas H., Azzam, Shadia M., El-Kashoury, El-Sayeda A.
Formato: Journal Article
Publicado: Taylor & Francis Ltd Jul2015
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Jul2015
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        10.1080/14786419.2015.1025396
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        atl: Metabolites profiling of Chrysanthemum pacificum Nakai parts using UPLC-PDA-MS coupled to chemometrics.
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        au:
          Farag, Nermeen F.
          Farag, Mohamed A.
          Abdelrahman, Enas H.
          Azzam, Shadia M.
          El-Kashoury, El-Sayeda A.
        affil: Pharmacognosy Department, Faculty of Pharmacy, Cairo University, Kasr El-Aini Street, P.B. 11562Cairo, Egypt
      sug:
      ab: Methanol-soluble constituents from the flowers, non-flowering aerial parts and roots of Chrysanthemum pacificum Nakai were analysed via high resolution UPLC-PDA-qTOF-MS followed by chemometrics. Forty-seven chromatographic peaks belonging to various metabolite classes were detected. Most metabolite classes showed qualitative and quantitative differences across parts, with luteolin conjugates being mostly enriched in flowers whereas non-flowering aerial parts contained mostly quercetin and methoxylated flavone conjugates. Root sample ranked the lowest for all flavones and dicaffeoylquinic acids. In contrast, 1,5-di-caffeoylquinic acid levels were found at high levels in flowers and aerial parts reaching 3145 and 1390 μg/g, respectively, suggesting that C. pacificum could serve as a natural resource of this well-recognised anti-hepatotoxic phenolic. Principal component analysis was further used for organs classification in an untargeted manner. This study provides the first map of secondary metabolites distribution in C. pacificum Nakai organs.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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