2008•Unpublished venueRequires access

Determination of Honokiol and Magnolol in Both Human Plasma and Complex Magnoliae Officinalis by Second-order Calibration Coupled to Three-dimensional Excitation-emission Fluorescence Spectra

Jiang Jun

Open publisher page 1 citations

Abstract

A simple method,second-order calibration coupled to three-dimensional excitation-emission fluorescence spectroscopy,was described for the direct determination of honokiol and magnolol in human plasma and complicated magnoliae officinalis.When the component number(N)was set to 3,the obtained recoveries of honokiol and magnolol in human plasma by using the parallel factor analysis(PARAFAC)were(99.5±2.6)% and(90.2±1.8)%,respectively.As the alternating trilinear decomposition(ATLD)was utilized,the recoveries of honokiol and magnolol were(104.2±3.2)% and(98.7±4.0)% for N=3,(102.7±2.9)% and(99.0 4.6)% for N=4,respectively.And the method was used to determine honokiol and magnolol in complex magnoliae officinalis,the obtained results were also satisfactory.It was shown that the proposed method can be used to determine directly honokiol and magnolol,even in the presence of unknown interferences,with a simple pretreatment procedure.

About this research paper

What this paper is about

A simple method,second-order calibration coupled to three-dimensional excitation-emission fluorescence spectroscopy,was described for the direct determination of honokiol and magnolol in human plasma and complicated magnoliae officinalis.When the component number(N)was set to 3,the obtained recoveries of honokiol and magnolol in human plasma by using the parallel factor analysis(PARAFAC)were(99.5±2.6)% and(90.2±1.8)%,respectively.As the alternating trilinear decomposition(ATLD)was utilized,the recoveries of honokiol and magnolol were(104.2±3.2)% and(98.7±4.0)% for N=3,(102.7±2.9)% and(99.0 4.6)% for N=4,respectively.And the method was used to determine honokiol and magnolol in complex magnoliae officinalis,the obtained results were also satisfactory.It was shown that the proposed method can be used to determine directly honokiol and magnolol,even in the presence of unknown interferences,with a simple pretreatment procedure.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A simple method,second-order calibration coupled to three-dimensional excitation-emission fluorescence spectroscopy,was described for the direct determination of honokiol and magnolol in human plasma and complicated magnoliae officinalis.When the component number(N)was set to 3,the obtained recoveries of honokiol and magnolol in human plasma by using the parallel factor analysis(PARAFAC)were(99.5±2.6)% and(90.2±1.8)%,respectively.As the alternating trilinear decomposition(ATLD)was utilized,the recoveries of honokiol and magnolol were(104.2±3.2)% and(98.7±4.0)% for N=3,(102.7±2.9)% and(99.0 4.6)% for N=4,respectively.And the method was used to determine honokiol and magnolol in complex magnoliae officinalis,the obtained results were also satisfactory.It was shown that the proposed method can be used to determine directly honokiol and magnolol,even in the presence of unknown interferences,with a simple pretreatment procedure.

Key concepts: Honokiol, Magnolol, Magnolia officinalis, Chemistry, Chromatography, Calibration curve, Officinalis, Fluorescence spectroscopy

Related papers

Back to paper searchBrowse research topicsOriginal source
Determination of Honokiol and Magnolol in Both Human Plasma and Complex Magnoliae Officinalis by Second-order Calibration Coupled to Three-dimensional Excitation-emission Fluorescence Spectra — Research Paper | ScholarLens