天然产物研究与开发 ›› 2025, Vol. 37 ›› Issue (9): 1689-1697.doi: 10.16333/j.1001-6880.2025.9.011 cstr: 32307.14.1001-6880.2025.9.011

• 开发研究 • 上一篇    下一篇

凉粉草多酚优效提取方法筛选及血糖调控通路分析研究

杜玉杰1,王逸秾2,郭  庭2,罗  威1,李  萍1,梁海娣1,李亚楠1,李劲涛2,3*   

  1. 1湛江幼儿师范专科学校(岭南师范学院基础教育学院),湛江 524037;2北京工业大学生命科学与生物工程学院;3环境与病毒肿瘤学北京市重点实验室,北京 100124
  • 出版日期:2025-09-24 发布日期:2025-09-24
  • 基金资助:
    广东省普通高校特色创新类项目(2022KTSCX350);湛江市工程技术研究中心项目(2022A115);湛江幼儿师范专科学校科研创新团队(ZY24PYD05)

Study on the optimal method for extracting polyphenols from Mesona chinensis Benth and analysis of blood glucose regulation pathways 

DU Yu-jie 1,WANG Yi-nong 2,GUO Ting 2,LUO Wei 1,LI Ping 1,LIANG Hai-di 1,LI Ya-nan 1,LI Jin-tao 2,3*   

  1. 1Zhanjiang Preschool Education College (College of Basic Education,Lingnan Normal University),Zhanjiang 524037,China;2College of Life Science and Bio-Engineering,Beijing University of Technology;3Beijing Key Laboratory of Environmental and Viral Oncology,Beijing,100124,China
  • Online:2025-09-24 Published:2025-09-24

摘要:

本研究旨在探究凉粉草多酚不同提取方法的提取率,不同方式所提多酚对胰岛素抵抗型HepG2细胞葡萄糖消耗的影响差别及凉粉草多酚降糖作用的枢纽基因和主要代谢通路。采用水提取(water extraction,Wat)、乙醇提取(ethanol extraction,Eth)、超声辅助提取(ultrasound-assisted extraction,Ult)、微波辅助提取(microwave-assisted extraction,Mic)、酶解提取(enzymatic extraction,Enz)五种方法提取凉粉草多酚。应用HepG2细胞构建胰岛素抵抗模型,对比不同方法提取的多酚对葡萄糖消耗的影响以筛选优效的提取方法。进一步应用最优提取方法获得的凉粉草多酚与盐酸二甲双胍分别处理HepG2细胞胰岛素抵抗模型进行高通量测序,筛选差异表达基因,并进行京都基因和基因组百科全书(Kyoto Encyclopedia of Genes and Genomes,KEGG)通路富集分析,通过构建蛋白互作(protein-protein interaction,PPI)网络进一步筛选枢纽基因。结果表明:凉粉草多酚Wat的提取率最高,Enz次之,Mic最低;但Enz提取的凉粉草多酚在0.06 mg/mL浓度下促进HepG2细胞的葡萄糖消耗作用效果最好,比盐酸二甲双胍对照组提高了36.36%;通过PPI网络的构建发现12个与糖尿病葡萄糖消耗相关的枢纽基因,其中ATF3、ACSS2、ASNS、INSIG1尚未见其在糖尿病发生或治疗领域中具体调控机制的相关研究报道;KEGG通路富集分析发现凉粉草多酚参与血糖调控或胰岛素敏感性调控相关的多条信号通路。综上,凉粉草多酚降血糖效果显著,所作用枢纽基因和信号通路的发现可为血糖调控提供新的作用靶点,为开发天然、安全、高效的凉粉草降糖药物提供数据支撑和理论依据,也可为糖尿病发生或治疗相关机制的研究提供新的视角。

关键词: 凉粉草, 多酚, 胰岛素抵抗, 葡萄糖消耗, 差异表达基因

Abstract:

This study aims to investigate the polyphenols extraction rate of various methods from Mesona chinensis Benth, compare the differences of glucose consumption in insulin-resistant HepG2 cells in the effect of polyphenols extracted by these methods, analysis the hub genes and main metabolic pathways involved in the hypoglycemic effect of M. chinensis polyphenols. Five extraction methods, including water extraction (Wat), ethanol extraction (Eth), ultrasound-assisted extraction (Ult), microwave-assisted extraction (Mic), and enzymatic extraction (Enz), were employed to extract polyphenols from M. chinensis. An insulin-resistant model was established using HepG2 cells to compare the effects of polyphenols extracted by different methods on glucose consumption and to select the optimal extraction method. Further, the insulin-resistant HepG2 cell model was treated with M. chinensis polyphenols obtained by the optimal extraction method and metformin hydrochloride separately, followed by high-throughput sequencing to screen for differentially expressed genes. KEGG pathway enrichment analysis was conducted, and a protein-protein interaction (PPI) network was constructed to further identify hub genes. The results indicated that the Wat had the highest extraction rate for M. chinensis polyphenols, followed by the Enz, while the Mic had the lowest rate. However, the polyphenols extracted by Enz demonstrated the best effect on promoting glucose consumption in insulin-resistant model cells at a concentration of 0.06 mg/mL, which was 36.36% higher than that of metformin hydrochloride control group. Through the construction of PPI network, 12 hub genes related to glucose consumption in diabetes were identified, among which ATF3, ACSS2, ASNS, and INSIG1 have not been reported in specific regulatory mechanisms or treatment of diabetes at present. KEGG pathway enrichment analysis revealed that M. chinensis polyphenols were involved in multiple signaling pathways related to blood glucose regulation or insulin sensitivity regulation. In summary, M. chinensis polyphenols exhibited significant hypoglycemic effects. The discovery of the hub genes and signaling pathways not only provided a new target for blood glucose regulation, offered data support and theoretical basis for the development of natural, safe and efficient hypoglycemic drugs, but also presented a perspective for the study of the related mechanisms of diabetes occurrence or treatment.

Key words: Mesona chinensis Benth; polyphenols, insulin resistance, glucose consumption, differential expression gene

中图分类号:  R931.6