HPLC Analysis of Midodrine and Desglymidodrine in Culture Medium: Evaluation of Static and Shaken Conditions on the Biotransformation by Fungi

Journal of Chromatographic Science
2013.0

Abstract

A high-performance liquid chromatography (HPLC) method is presented for the simultaneous determination of midodrine and desglymidodrine (DMAE) in Czapek-Dox culture medium, to be used in biotransformation studies by fungi. The HPLC analysis was conducted using a Lichrospher 100 RP18 column, acetonitrile-40 mmol/L formic acid solution (60:40, v/v) as mobile phase, and ultraviolet detection at 290 nm. The sample preparation was conducted by liquid-liquid extraction using ethyl acetate as extractor solvent. The method was linear over the concentration range of 0.4-40.0 µg/mL for midodrine (r ≥ 0.9997) and DMAE (r ≥ 0.9998). Within-day and between-day precision and accuracy were evaluated by relative standard deviations (≤ 8.2%) and relative errors (-7.3 to 7.4%), respectively. The validated method was used to assess midodrine biotransformation by the fungi Papulaspora immersa Hotson SS13, Botrytis cinerea UCA 992 and Botrytis cinerea 2100 under static and shaken conditions. Under shaken conditions, the biotransformation of midodrine to DMAE was more efficient for all studied fungi, especially for the fungus Botrytis cinerea 2100, which converted 42.2% of midodrine to DMAE.

Knowledge Graph

Similar Paper

HPLC Analysis of Midodrine and Desglymidodrine in Culture Medium: Evaluation of Static and Shaken Conditions on the Biotransformation by Fungi
Journal of Chromatographic Science 2013.0
HPLC Analysis of Midodrine and Desglymidodrine in Culture Medium: Evaluation of Static and Shaken Conditions on the Biotransformation by Fungi
Journal of Chromatographic Science 2013.0
Enantioselective analysis of propranolol and 4‐hydroxypropranolol by CE with application to biotransformation studies employing endophytic fungi
ELECTROPHORESIS 2009.0
Stereoselective analysis of thioridazine-2-sulfoxide and thioridazine-5-sulfoxide: An investigation of rac-thioridazine biotransformation by some endophytic fungi
Journal of Pharmaceutical and Biomedical Analysis 2008.0
Stereoselective analysis of thioridazine-2-sulfoxide and thioridazine-5-sulfoxide: An investigation of rac-thioridazine biotransformation by some endophytic fungi
Journal of Pharmaceutical and Biomedical Analysis 2008.0
Capillary electrophoresis and hollow fiber liquid‐phase microextraction for the enantioselective determination of albendazole sulfoxide after biotransformation of albendazole by an endophytic fungus
ELECTROPHORESIS 2011.0
Optimization of the HPLC; Analysis of Biogenic Amines in<i>Peucedanum palustre</i>Plants and Cell Culture Lines
Planta Medica 1995.0
Simultaneous determination of asiaticoside and its novel metabolites in culture of Aspergilus niger by SPE-HPLC
2011 International Conference on Remote Sensing, Environment and Transportation Engineering 2011.0
Screening of Filamentous Fungi to Identify Biocatalysts for Lupeol Biotransformation
Molecules 2010.0
High performance liquid chromatography with fluorescence detection for the determination of phenylpropanolamine in human plasma and rat’s blood and brain microdialysates using DIB-Cl as a label
Journal of Pharmaceutical and Biomedical Analysis 2004.0