食品科学 ›› 2026, Vol. 47 ›› Issue (13): 9-16.doi: 10.7506/spkx1002-6630-20251020-129

• 基础研究 • 上一篇    下一篇

硫酸酯化海带多糖结构解析及其自由基清除能力

杨欣雨,林石胜,黄银燕,王迪,程芊,冯学珍,冯书珍   

  1. (广西科技大学医学部,广西 柳州 545006)
  • 出版日期:2026-07-15 发布日期:2026-07-17
  • 基金资助:
    国家自然科学基金地区科学基金项目(32460318);广西自然科学基金青年科学基金项目(2023GXNSFBA026053); 广西产研院重大产业技术创新项目(CYY-HT2023-JSJJ-0038); 国家级大学生创新创业训练计划项目(202510594050)

Structural Characterization and Radical Scavenging Ability of Sulfated Laminaria japonica Polysaccharides

YANG Xinyu, LIN Shisheng, HUANG Yinyan, WANG Di, CHENG Qian, FENG Xuezhen, FENG Shuzhen   

  1. (School of Medicine, Guangxi University of Science and Technology, Liuzhou 545006, China)
  • Online:2026-07-15 Published:2026-07-17

摘要: 采用浓硫酸法对海带多糖(Laminaria japonica polysaccharides,LJP)进行硫酸酯化修饰,得到硫酸酯化LJP(sulfate LJP,S-LJP)。综合运用高碘酸氧化、Smith降解、甲基化、刚果红实验、傅里叶变换红外光谱、核磁共振以及基质辅助激光解吸电离飞行时间质谱(matrix-assisted laser desorption ionization-time-of-flight mass spectrometry,MALDI-TOF MS)等方法解析其结构特征,并评估修饰前后LJP对1,1-二苯基-2-三硝基苯肼(1,1-diphenyl-2-picrylhydrazyl,DPPH)自由基、超氧阴离子自由基和羟自由基的清除能力。结构分析结果表明,硫酸酯化显著改变了LJP的糖苷键组成与比例,S-LJP中以(1→3)糖苷键连接为主,且存在(1→2)、(1→4)、(1→6)等多种糖苷键类型,主链由→3)-Glc-(1→、→3)-Gal-(1→以及少量的→2)-Glc-(1→和→4)-Glc-(1→组成,形成具有分支特征的α/β型杂聚糖链,且不具备三股螺旋结构;MALDI-TOF MS测得其主要离子峰的分子质量约为6 844 Da。傅里叶变换红外光谱结果显示,S-LJP在1 227、1 046、844 cm-1处出现硫酸酯键特征吸收峰,证实修饰成功。硫酸酯化显著提升了LJP的DPPH自由基、超氧阴离子自由基和羟自由基清除能力,半抑制浓度分别由0.35、2.82、2.05 mg/mL显著降低至0.19、2.00、0.86 mg/mL(P<0.05)。本研究结果表明,硫酸酯化可通过调控LJP高级结构增强其生物活性,可以为海藻多糖在功能食品中的应用提供理论参考。

关键词: 硫酸酯化;海带多糖;结构表征;生物活性

Abstract: Sulfated modification of Laminaria japonica polysaccharides (LJP) was performed using a concentrated sulfuric acid method to obtain sulfated LJP (S-LJP). Periodate oxidation, Smith degradation, methylation, Congo red assay, Fourier infrared transform (FTIR) spectroscopy, nuclear magnetic resonance (NMR) spectroscopy and matrix-assisted laser desorption ionization-time-of-flight mass spectrometry (MALDI-TOF MS) were applied to determine the structural characteristics of LJP and S-LJP. The antioxidant activities of LJP and S-LJP were evaluated by determining their scavenging capacity toward 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical, O2–·, and ·OH. Structural analyses revealed that sulfation markedly altered the types and proportions of glycosidic linkages in LJP. S-LJP was predominantly composed of (1→3) linkages, along with multiple other linkage types including (1→2), (1→4), and (1→6). The backbone consisted mainly of →3)-Glc-(1→ and →3)-Gal-(1→ residues, with minor amounts of →2)-Glc-(1→ and →4)-Glc-(1→, forming a branched α/β-type heteropolysaccharide chain. No triple-helix conformation was observed. MALDI-TOF MS indicated that its major ion peak corresponded to a molecular mass of approximately 6 844 Da. The FTIR spectrum exhibited characteristic absorption bands at 1 227, 1 046, and 844 cm–1¹, confirming successful sulfation. Sulfation significantly enhanced the radical scavenging activity of LJP, with half maximal inhibitory concentration (IC50) for DPPH radical, O2–·, and ·OH scavenging activities decreasing from 0.35, 2.82, and 2.05 to 0.19, 2.00, and 0.86 mg/mL, respectively (P < 0.05). These findings suggest that sulfation improves the biological activity of LJP by modulating its advanced structural features, providing theoretical support for the potential application of seaweed polysaccharides in functional foods.

Key words: sulfation; Laminaria japonica polysaccharides; structural characterization; biological activity

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