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吉林化工学院学报, 2024, 41(1): 1-8     https://doi.org/10.16039/j.cnki.cn22-1249.2024.01.001
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基于响应面法的人参皂苷Rg5的制备工艺优化及壳聚糖作用机制的初步探索

成乐琴1* 张仔豪1** 陈洁2 朱小涵2 李玲3 云梅1**

吉林化工学院 化学与制药工程学院,吉林 吉林 132022

Optimization of the Preparation Process of Ginsenoside Rg5 based on Response Surface Methodology and Preliminary Exploration of the Mechanism of Action of Chitosan

CHENG Leqin1, ZHANG Zihao1, CHEN Jie2, ZHU Xiaohan2,LI Ling3,YUN Mei
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摘要 人参皂苷Rg5是原人参二醇组皂苷(PPD)的转化产物,显示出良好的抗癌、消炎、改善记忆、抗糖尿病等药理活性。人参皂苷Rg5因其稳定性差,通常用比较温和的有机酸作催化剂制备,导致反应速率较慢、收率较低。本文为了提高人参皂苷Rg5的转化率和降低Rg5的分解,通过曲面响应法优化了高粘度壳聚糖辅助下的盐酸催化制备人参皂苷Rg5的工艺条件,并初步探索了壳聚糖的作用原理。实验结果表明,制备人参皂苷Rg5的最佳工艺为酸浓度0.17 mol/L,高粘度壳聚糖用量20 mg,反应温度65 ℃,反应时间100 min,此时Rg5的收率最高达到58.92%。对高粘度壳聚糖的吸附机理研究表明,壳聚糖先吸附氢质子,再通过氢质子吸附PPD皂苷,而且显示对强极性皂苷的吸附能力高于弱极性皂苷。高粘度壳聚糖的这种特性促使高粘度壳聚糖表面可以不断吸附极性较高的PPD皂苷,在其表面生成极性较弱的人参皂苷Rg5,再把生成的人参皂苷Rg5解析到有助于Rg5稳定的酸浓度较低的溶液中,形成吸附→转化→解析的循环,从而提高人参皂苷Rg5的收率和反应速率。
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成乐琴
张仔豪
陈洁
朱小涵
李玲
云梅
关键词:  人参皂苷Rg5  壳聚糖  制备  优化  作用机制    
Abstract: 

Ginsenoside Rg5 is a conversion product of the protopanaxadiol saponin (PPD), exhibiting good pharmacological activities such as anticancer, anti-inflammatory, memory improvement, and anti diabetes. Due to its poor stability, ginsenoside Rg5 is commonly prepared employing mild organic acids as catalysts, a practice that may result in diminished reaction rate and yield. This study aims to optimize the process conditions for the preparation of ginsenoside Rg5 catalyzed by hydrochloric acid assisted by high viscosity chitosan, with the objective of enhancing the conversion rate of ginsenoside Rg5 and minimizing its decomposition. The surface response method was employed for the optimization process. The preliminary exploration of the mechanism of action of chitosan was conducted. The experimental findings indicate that the acid concentration of 0.17 mol/L, high viscosity chitosan dosage of 20 mg, reaction temperature of 65 oC, and reaction time of 100 min constitute the optimal process for the preparation of ginsenoside Rg5. It was observed that under the optimal conditions, the highest yield of Rg5 achieved 58.92%. The investigation into the adsorption mechanism of high viscosity chitosan reveals that the initial adsorption process involves the binding of hydrogen protons by chitosan, followed by the subsequent adsorption of PPD saponins facilitated by the hydrogen protons. Furthermore, it is observed that high viscosity chitosan exhibits a greater affinity for strongly polar saponins compared to weakly polar saponins. The high viscosity chitosan facilitates the ongoing adsorption of PPD saponins, which possess greater polarity, onto the surface of chitosan. This process leads to the formation of ginsenoside Rg5, which exhibits lower polarity. Subsequently, the generated ginsenoside Rg5 is dissolved in a solution with reduced acid concentration, aiding in the stabilization of Rg5. This sequence of events involving adsorption, conversion, and desorption forms a cycle that enhances the yield and rate of ginsenoside Rg5 preparation.

Key words:  ginsenoside Rg5    high viscosity chitosan    preparation    optimization    mechanism
               出版日期:  2024-01-25      发布日期:  2024-01-25      整期出版日期:  2024-01-25
ZTFLH:  O629.21  
引用本文:    
成乐琴, 张仔豪, 陈洁, 朱小涵, 李玲, 云梅. 基于响应面法的人参皂苷Rg5的制备工艺优化及壳聚糖作用机制的初步探索[J]. 吉林化工学院学报, 2024, 41(1): 1-8.
CHENG Leqin, ZHANG Zihao, CHEN Jie, ZHU Xiaohan, LI Ling, YUN Mei.

Optimization of the Preparation Process of Ginsenoside Rg5 based on Response Surface Methodology and Preliminary Exploration of the Mechanism of Action of Chitosan . Journal of Jilin Institute of Chemical Technology, 2024, 41(1): 1-8.

链接本文:  
http://xuebao.jlict.edu.cn/CN/10.16039/j.cnki.cn22-1249.2024.01.001  或          http://xuebao.jlict.edu.cn/CN/Y2024/V41/I1/1
[1] 叶安琪, 张浩然, 张跃伟, 李玲, 成乐琴. 分子筛辅助人参须根粉快速制备人参皂苷Rg5的工艺研究 [J]. 吉林化工学院学报, 2021, 38(3): 1-6.
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