A low‐cost efficient online derivatization system for the determination of saccharides by high‐performance liquid chromatograph‐ultraviolet detector

Author:

Jiang Zheng1ORCID,Wang Hong2,Yu Miao1,Qu Cheng1,Yue Wei1,Wu Qinan134

Affiliation:

1. College of Pharmacy Nanjing University of Chinese Medicine Nanjing China

2. Department of Pharmacy the South Part of Jiangsu Province Hospital of Integrated Traditional Chinese and Western Medicine Lishui District Hospital of Traditional Chinese Medicine Nanjing China

3. Collaborative Innovation Center of Chinese Medicinal Resources Industrialization Nanjing China

4. National and Local Collaborative Engineering Center of Chinese Medicinal Resources Industrialization and Formulae Innovative Medicine Nanjing China

Abstract

In this study, a low‐cost efficient online derivatization system was developed which allows for the detection of various types of mono‐ and oligo‐saccharides only utilizing high‐performance liquid chromatography (HPLC)‐ultraviolet detector (UV) system. In the proposed method, phenylhydrazine was used as the derivatization reagent and directly spiked in the mobile phase, allowing for the separation and detection of mono‐ and oligosaccharides in an accessible instrument system (HPLC‐UV). And the online derivatization design of the proposed method has significantly reduced the potential harm of derivatization reagents to the analysts. Furthermore, critical chromatographic parameters were optimized via the Box‐Behnken design strategy, culminating in the ideal response for saccharides. Finally, the methodology validation of the proposed method was conducted. The proposed method showed satisfactory linear ranges with acceptable correlation coefficients (R2 > 0.99), outstanding accuracy (Recovery: 95.3%–105.6%), high intra‐day precision (relative standard deviation [RSD]: 1.4%–7.1%) and inter‐day precision (RSD: 2.0%–7.4%). The robustness and ruggedness of the proposed method were proved as the recovery values in the range of 95.0%–104.6% and 95.1%–104.8% for robustness and ruggedness, respectively. These satisfactory validation results confirm the applicability and reliability of the proposed method for the analysis of saccharides in various complex real‐world samples.

Publisher

Wiley

Subject

Filtration and Separation,Analytical Chemistry

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