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Degradation of hyaluronic acid derived from tilapia eyeballs by a combinatorial method of microwave, hydrogen peroxide, and ascorbic acid

机译:微波,过氧化氢和抗坏血酸的组合方法降解罗非鱼眼球中的透明质酸

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摘要

Hyaluronic acid (HA) derived from tilapia eyeballs was depolymerized by microwave irradiation with ascorbic acid and hydrogen peroxide. Its effects on the structure of hyaluronic acid were determined by ultraviolet spectra (UV) and Fourier transform infrared spectra (FTIR). Molecular weight and the content of glucuronic acid were used as the index for comparison of the different effects of microwave alone, hydrogen peroxide combined with ascorbic acid, and microwave combined with ascorbic acid and hydrogen peroxide. The results showed that HA can be effectively degraded by a combinatorial method of microwave, hydrogen peroxide, and ascorbic acid. The optimal degradation condition was a 1:1 mol ratio between hydrogen peroxide and ascorbic acid at pH 4.0 at 30 min of reaction time and 60 ℃ of reaction temperature. The low molecular weight oligomeric product of HA was obtained, and the molecular weight of HA was <5 kDa. The content of glucuronic acid in degraded HA was 34.96%, and the yield of the degraded HA was 77.43%. The overall spectral pattern of FTIR and UV did not change between HA and low molecular weight HA (LMW-HA) degraded by the combinatorial method, demonstrating only minor damage to the structure of HA during the degradation process.
机译:罗非鱼眼球中的透明质酸(HA)通过抗坏血酸和过氧化氢的微波辐射解聚。通过紫外光谱(UV)和傅里叶变换红外光谱(FTIR)确定其对透明质酸结构的影响。以分子量和葡萄糖醛酸含量为指标,比较了单独微波,过氧化氢与抗坏血酸的结合以及微波与抗坏血酸和过氧化氢的结合的不同作用。结果表明,微波,过氧化氢和抗坏血酸的组合方法可有效降解HA。最佳的降解条件为:反应时间30 min,反应温度60℃,pH 4.0时,过氧化氢与抗坏血酸的摩尔比为1:1。获得了HA的低分子量低聚物产物,HA的分子量<5kDa。降解的HA中葡萄糖醛酸的含量为34.96%,降解的HA的产率为77.43%。 FTIR和UV的整体光谱图在HA和通过组合方法降解的低分子量HA(LMW-HA)之间没有变化,这表明在降解过程中对HA结构的损害很小。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2015年第2期|117-121|共5页
  • 作者单位

    Key Laboratory of Aquatic Product Processing, Ministry of Agriculture, National R&D Center for Aquatic Product Processing, South China Sea Fisheries Research Institute, CAFS, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing, Ministry of Agriculture, National R&D Center for Aquatic Product Processing, South China Sea Fisheries Research Institute, CAFS, Guangzhou 510300, China,Food and Biological Engineering College, Jiangsu University, Zhenjiang 212013, China;

    Food and Biological Engineering College, Jiangsu University, Zhenjiang 212013, China;

    Key Laboratory of Aquatic Product Processing, Ministry of Agriculture, National R&D Center for Aquatic Product Processing, South China Sea Fisheries Research Institute, CAFS, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing, Ministry of Agriculture, National R&D Center for Aquatic Product Processing, South China Sea Fisheries Research Institute, CAFS, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing, Ministry of Agriculture, National R&D Center for Aquatic Product Processing, South China Sea Fisheries Research Institute, CAFS, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing, Ministry of Agriculture, National R&D Center for Aquatic Product Processing, South China Sea Fisheries Research Institute, CAFS, Guangzhou 510300, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tilapia eyeballs; Hyaluronic acid (HA); Degradation; UV spectra; FTIR spectra;

    机译:罗非鱼眼球;透明质酸(HA);降解;紫外光谱红外光谱;

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