Meng Mingkun, Zhao Linlin, Shi Chunqiao, Song Yuying, Yu Qingya, Li Mengjia, Yang Xing, Liu Yue, Xu Tong, Zhang Yi
State Key Laboratory of Southwestern Chinese Medicine Resources, School of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.
School of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.
Pharmaceuticals (Basel). 2025 May 21;18(5):760. doi: 10.3390/ph18050760.
: This study aimed to characterize the physicochemical properties and antioxidant activities of polysaccharides from Aconitum pendulum Bush processed through different methods (the polysaccharide from A. pendulum (DT), the polysaccharide from A. pendulum processed with zanba (Z-DT), the polysaccharide from A. pendulum processed with highland barley wine (Q-DT), and the polysaccharide from A. pendulum processed with hezi (H-DT)). Additionally, the research focused on optimizing the hot water extraction process for DT using response surface methodology (RSM) to enhance extraction efficiency and establish a scientific basis for pharmaceutical applications. : The physicochemical properties and antioxidant activities of the four polysaccharides were systematically evaluated. RSM with a 17-run Box-Behnken design was employed to investigate the extraction process, examining three factors: extraction runs, liquid-solid ratio, and extraction time. : The physicochemical properties and antioxidant assays demonstrated that the DT exhibited significantly higher properties. The factors influencing the extraction process were ranked as extraction runs > liquid-solid ratio > extraction time. The optimal conditions for DT were a liquid-solid ratio of 25 mL/g, extraction time of 2.5 h, and four extraction runs, yielding a sugar content of 63.4%. Under these conditions, the extraction rate of DT was significantly higher than before optimization. : The study demonstrated distinct structural features among the four polysaccharides, providing a scientific framework for their potential pharmaceutical applications. What's more, the optimized hot water extraction protocol for DT was validated for high extraction rate and reproducibility.
本研究旨在表征不同方法处理的铁棒锤多糖的理化性质和抗氧化活性(铁棒锤多糖(DT)、藏巴处理的铁棒锤多糖(Z-DT)、青稞酒处理的铁棒锤多糖(Q-DT)和诃子处理的铁棒锤多糖(H-DT))。此外,该研究聚焦于使用响应面法(RSM)优化DT的热水提取工艺,以提高提取效率,并为其药用应用建立科学依据。系统评价了四种多糖的理化性质和抗氧化活性。采用具有17次运行的Box-Behnken设计的响应面法研究提取工艺,考察了提取次数、液固比和提取时间三个因素。理化性质和抗氧化分析表明,DT表现出显著更高的性质。影响提取过程的因素排序为:提取次数>液固比>提取时间。DT的最佳条件为液固比25 mL/g、提取时间2.5 h和四次提取,糖含量为63.4%。在此条件下,DT的提取率显著高于优化前。该研究证明了四种多糖具有不同的结构特征,为其潜在的药用应用提供了科学框架。此外,DT的优化热水提取方案经验证具有高提取率和可重复性。