天然产物研究与开发 ›› 2025, Vol. 37 ›› Issue (3): 502-511.doi: 10.16333/j.1001-6880.2025.3.013 cstr: 32307.14.1001-6880.2025.3.013

• 开发研究 • 上一篇    下一篇

白及干品与鲜品中白及胶的结构表征及其免疫活性研究

杨益娜1,2,曾 燚1,2,邵会艳2,李严朗2,席星雨1,2,胡江苗1,2*,杨 柳2*   

  1. 1安徽中医药大学药学院,合肥 2300122中国科学院昆明植物研究所植物化学与天然药物重点实验室,昆明 650201

  • 出版日期:2025-04-01 发布日期:2025-04-01
  • 基金资助:
    云南省科技厅科技计划(202401AT070199);北京植物医生生物科技有限公司企业合作项目(E0514252C1)

Study on structural characteristics and immunomodulatory activity of gel from dried and fresh Bletilla striata

YANG Yi-na1,2,ZENG Yi1,2,SHAO Hui-yan2,LI Yan-lang2,XI Xing-yu1,2,HU Jiang-miao1,2*,YANG Liu2*   

  1. 1College of Pharmacy,Anhui University of Chinese Medicine,Hefei 230012,China;2 Key Laboratory of Phytochemistry and Natural Medicines,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650201,China

  • Online:2025-04-01 Published:2025-04-01

摘要:

探究干品白及与鲜品白及中的白及胶(Bletilla striata gel,BSG)的理化性质、流变特性、结构特征以及免疫调节活性区别。通过水提醇沉法得到干品白及中的白及胶(BSG-1)和鲜品白及中的白及胶(BSG-2)。以结构表征和流变特性为主,结合理化性质阐明BSG-1和BSG-2的异同点,并进一步从细胞层面探究了两者的免疫活性差异。实验结果表明,BSG-1和BSG-2的分子量跨度大(3.90×102~1.37×108 Da);BSG-2的得率较高、单糖组成更加丰富,而BSG-1表现出更好的粘度。实验发现,在不同浓度、温度和pH条件下BSG-1和BSG-2的粘度随温度的下降呈直线下降趋势;酸碱度对粘度的影响明显,过酸或过碱均可减小其粘度;浓度是影响粘度的关键因素之一,随着BSG-1和BSG-2浓度的增加其粘度明显上升。值得关注的是,随着浓度大于2 mg/mL或环境pH>9,两者粘度差异显著增大,BSG-1粘度远高于BSG-2。从微观角度分析,BSG-2相较于BSG-1表面较光滑、其结构类型更丰富,并且具有独特的丝状结构和疏松的孔隙网状结构。BSG-1与BSG-2均表现出一定的免疫调节活性,但在不同浓度下两者表现的免疫活性存在差异性。本研究从多个层面揭示了干品白及与鲜品白及中的白及胶的差异,可为白及胶在食品、药品、保健品等领域的应用提供理论参考。

关键词: 白及胶, 流变学, 结构表征, 理化性质, 免疫调节

Abstract:

This study aims to compare the Bletilla striata gel (BSG) from fresh and dried from multiple aspects including physical and chemical properties, rheological properties, structural characterization and immunomodulatory activity. Gel of dried B. striata (BSG-1) and gel of fresh B. striata (BSG-2) were obtained using water-extraction and alcohol-precipitation method. The similarities and differences between BSG-1 and BSG-2 were primarily clarified through structural characterization and rheological properties, in conjunction with physicochemical properties, while exploring immune activity at the cellular level. BSG-1 and BSG-2 exhibited a wide range of molecular weights (3.90 ×102-1.37×108 Da). BSG-2 demonstrated a higher yield and richer monosaccharide composition, whereas BSG-1 exhibited better viscosity. Under varying concentrations, temperatures and pH conditions, the viscosity of BSG-1 and BSG-2 decreased with decreasing temperature. Partial acid or alkali treatment significantly reduced viscosity. Concentration emerged as a key factor influencing viscosity, with a notable increase in viscosity corresponding to higher BSG-1 and BSG-2 concentrations. It is noteworthy that when the sample concentration greater than 2 mg/mL or the ambient pH>9, the viscosity of BSG-1 is significantly higher than that of BSG-2 significantly. From a microscopic perspective, BSG-2 featured a smoother surface, a greater variety of structure types, and a unique filamentous and porous network structure compared to BSG-1. In terms of immunomodulatory activity, differences were observed in the activities of BSG-1 and BSG-2 at various concentrations. Research indicates that there are distinct difference in physicochemical properties, structural characterization and immune activity regulation between the gels from fresh and dried B. striata, which can provide the theoretical basis for the application of BSG in various fields.

中图分类号:  R932