Literature DB >> 20521539

LC-MS-MS identification and determination of the flavone-C-glucoside vicenin-2 in rat plasma samples following intraperitoneal administration of Lychnophora extract.

Valquiria A Polisel Jabor1, Denis Melo Soares, Andrea Diniz, Glória Emilia Petto de Souza, Norberto Peporine Lopes.   

Abstract

The flavone C-glucoside, vicenin-2, in semi-purified extracts of the leaves of Lychnophora ericoides was quantified in rat plasma samples using a method based on reversed-phase high performance liquid chromatography coupled to tandem mass spectrometry. Vicenin-2 was analyzed on a LiChrospher RP18 column using an isocratic mobile phase consisting of a mixture of methanol: water (30:70, v/v) plus 2.0% glacial acetic acid at a flow rate of 0.8 mL min(-1). Genistein was used as internal standard. The mass spectrometer was operated in positive ionization mode and analytes were quantified by multiple reaction monitoring at m/z 595 >457 for vicenin-2 and m/z 271 >153 for internal standard. Prior to the analysis, each rat plasma sample was acidified with 200 microL of 50 mmol L(-1) acetic acid solution and extracted by solid-phase extraction using a C18 cartridge. The absolute recoveries were reproducible and the coefficients of variation values were lower than 5.2%. The method was linear over the 12.5-1500 ng mL(-1) concentration range and the quantification limit was 12.5 ng mL(-1). Within-day and between-day assay precision and accuracy were studied at three concentration levels (40, 400 and 800 ng mL(-1)) and were lower than 15%. The developed and validated method seems to be suitable for analysis of vicenin-2 in plasma samples obtained from rats that receive a single i.p. dose of 200 mg kg(-1) vicenin-2 extract.

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Year:  2010        PMID: 20521539

Source DB:  PubMed          Journal:  Nat Prod Commun        ISSN: 1555-9475            Impact factor:   0.986


  1 in total

1.  In Vivo Pharmacokinetic Analysis Utilizing Non-Targeted and Targeted Mass Spectrometry and In Vitro Assay against Transient Receptor Potential Channels of Maobushisaishinto and Its Constituent Asiasari Radix.

Authors:  Takashi Matsumoto; Mikina Takiyama; Shou Sanechika; Akiko Nakayama; Katsuyuki Aoki; Katsuya Ohbuchi; Hirotaka Kushida; Hitomi Kanno; Akinori Nishi; Junko Watanabe
Journal:  Molecules       Date:  2020-09-18       Impact factor: 4.411

  1 in total

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