UHPLC–PDA–Q‐TOF–MS–α‐amylase–FLD activity detection system and molecular docking

Author:

Zhu Yaya1,Yang Yuangui1ORCID,Tang Zhishu12,Xue Taotao3,Chen Shizhong14,Yang Haodong1,Su Zenghu1,Xu Hongbo1ORCID

Affiliation:

1. Shaanxi Collaborative Innovation Center of Chinese Medicine Resources Industrialization, State Key Laboratory of Research & Development of Characteristic Qin Medicine Resources (Cultivation), Shaanxi Innovative Drug Research Center and College of Pharmacy Shaanxi University of Chinese Medicine Xianyang China

2. China Academy of Chinese Medical Sciences Beijing China

3. College of Pharmacy Xinjiang Medical University Urumqi China

4. School of Pharmaceutical Sciences Peking University Beijing China

Abstract

AbstractIntroductionTraditional and some scientific literature document the antidiabetic effects of the Ziziphi Spinosae Semen (ZSS). However, the bioactive compounds of ZSS responsible for the antidiabetic effects are not well known.ObjectivesThis study aimed to investigate the material basis of the antidiabetic effects of ZSS by inhibiting α‐amylase.MethodologyAn online analysis platform was established and optimized using an ultra‐performance liquid chromatography‐photo‐diode array‐quadrupole‐time‐of‐flight‐mass spectrometry‐α‐amylase‐fluorescence detector (UHPLC–PDA–Q‐TOF–MS–α‐amylase–FLD) system to screen α‐amylase inhibitors in ZSS rapidly. The inhibitory effect of these compounds was confirmed by molecular docking screening. and the molecular interactions between α‐amylase and active compounds were evaluated, which strongly supported the experimental results.ResultsSeventy‐eight compounds were identified in the ZSS extract, eleven of which were screened to have significant α‐amylase binding activity.ConclusionThis study demonstrated the feasibility of using an established platform to screen for effective components in ZSS, providing a practical method for the rapid screening of potential antidiabetic active ingredients in traditional Chinese medicine.

Publisher

Wiley

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