Literature DB >> 17580687

[Determination of protocatechuic acid in rat plasma by high performance liquid chromatography].

Ying Han1, Zhili Xiong, Chunjuan Yang, Man Liu, Famei Li.   

Abstract

A method was developed for the quantitative determination of protocatechuic acid in rat plasma by high performance liquid chromatography (HPLC). With added p-hydroxybenzoic acid as internal standard, the plasma samples were extracted with a solvent mixture of methanol and acetonitrile ( 1: 5, v/v). The analyte was determined by HPLC with a Diamondsil C18 column and a mobile phase of acetonitrile-water (adjusted to pH 2.5 with H3PO4, 9: 91, v/v) at a flow rate of 1. 2 mL/min. The UV detection wavelength was 260 nm. The assay exhibited a good linearity in the concentration range from 0. 050 to 3. 20 mg/L with a correlation coefficient of 0. 997 8. The limit of quantification was 0. 050 mg/L. The relative standard deviations of intra-day and inter-day determination were both less than 7. 0% and the accuracy ranged from - 1. 4% to 2. 6%. The extraction recoveries of protocatechuic acid from rat plasma samples at three concentration levels were 83. 4%, 87. 3%, and 91. 1%, respectively. The developed method was applied to a pharmacokinetic study. The main pharmacokinetic parameters in rats after a single oral dose of 10 mL/kg body weight were as follows: Cmax of (3. 16 +0. 03) microg/mL, tmax of (0. 50 +/- 0. 00) h, AU0-->t of (39. 9 +/- 5. 9) microg x mL(-1) x h, AUC-->infinity of (54. 8 +/- 8. 1) microg x mL(-1) x h and t1/2 of (3. 87 +/- 0. 25) h. The method was proved to be simple, sensitive and accurate, thus suitable for the pharmacokinetic study of protocatechuic acid in rat plasma.

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Year:  2007        PMID: 17580687

Source DB:  PubMed          Journal:  Se Pu        ISSN: 1000-8713


  1 in total

1.  Graphene Oxide⁻PEG⁻Protocatechuic Acid Nanocomposite Formulation with Improved Anticancer Properties.

Authors:  Bullo Saifullah; Kalaivani Buskaran; Rabia Baby Shaikh; Farahnaz Barahuie; Sharida Fakurazi; Mohd Aris Mohd Moklas; Mohd Zobir Hussein
Journal:  Nanomaterials (Basel)       Date:  2018-10-11       Impact factor: 5.076

  1 in total

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