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Freeze Thaw-Induced Gelation of Hyaluronan: Physical Cryostructuration Correlated with Intermolecular Associations and Molecular Conformation

机译:冻融诱导的透明质酸凝胶化:物理冷冻系统与分子间关联和分子构象相关

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摘要

Physically cross-linked hydrogels from hyaluronan (hyaluronic acid, HA) were prepared by a freezethaw technique at low pH. The effect of the freezingthawing of HA solutions on the formation of physical cryogels is typical for the processes of noncovalent cryostructuration that takes the advantages of mild fabrication conditions and the absence of organic solvents and toxically cross-linking agents. The effects of processing steps (freezing time and number of freezethaw cycles), HA molecular weight (M-w), and the addition of typical polycarboxylic and polyhydric small molecules such as dicarboxylic acids and polyols on the formation of HA cryotropic hydrogels were investigated. Results verified that long freezing time and repeated freezethaw cycles benefited the alignment of polymer chains in the unfrozen liquid microphase, thereby promoting the formation of intermolecular aggregations and dense fibrillar network structures. High M-w of HA endowed the cryogel with strong mechanical strength. The influences of various small molecules on the cryogelation of HA revealed the different intermolecular association patterns in the gel network. Both succinic and glutaric acids participated in HA cryogelation, whereas oxalic, malic, and tartaric acids as well as some polyols (glycol, butanediol, and glycerol) inhibited the cryostructuration of HA. Hydrogen bonding and intermolecular interactions in acidic cryogels and in neutral cryogels obtained by in situ neutralizing the acidic cryogel were discussed at the molecular level in correlation with intermolecular associations and molecular conformation. A gelation mechanism for HA cryogel was proposed. In addition, experimental findings showed that the neutral HA cryogels possessed enhanced thermostability, resistance to acid decomposition, and enzyme degradation which are essentially important properties for biomaterials.
机译:通过在低pH下通过漂氟乙烷技术制备来自透明质酸(透明质酸,HA)的物理交联水凝胶。 HA溶解对HA溶液对物理冷冻胶质形成的影响是典型的,用于非共价低温的过程,其具有温和的制造条件温和的优点和没有有机溶剂和肉体交联剂。研究了处理步骤(冷冻时间和漂氟乙酰循环的数量),HA分子量(M-W)和添加典型的多元羧酸和多元小分子如二羧酸和多元醇的添加,而是在形成HA冷辐射水凝胶上。结果证明了长冰冻时间和重复的漂氟乙醚循环使聚合物链中的聚合物链对的对准使得在未冷却的液体脱节中,从而促进了分子间聚集和致密的原纤维网络结构的形成。高M-W的HA赋予了强大的机械强度的冷磁机。各种小分子对HA冷光凝胶的影响揭示了凝胶网络中不同的分子间关联模式。琥珀酸和戊二酸都参与了HA Cryogelation,而草酸,苹果酸和酒石酸以及一些多元醇(二醇,丁二醇和甘油)抑制了HA的低温。在与分子间联合和分子构象相关的分子水平的分子水平下讨论了酸性冷冻凝胶和通过原位中和而获得的中性冷冻凝胶中的氢键合和分子间相互作用。提出了HA Cryogel的凝胶化机制。此外,实验结果表明,中性HA Cryogels具有增强的热稳定性,耐酸分解,酶降解,其基本上是生物材料的重要性质。

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  • 来源
    《Macromolecules》 |2017年第17期|共12页
  • 作者单位

    Shanghai Jiao Tong Univ Adv Rheol Inst Dept Polymer Sci &

    Engn Sch Chem &

    Chem Technol Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Adv Rheol Inst Dept Polymer Sci &

    Engn Sch Chem &

    Chem Technol Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Adv Rheol Inst Dept Polymer Sci &

    Engn Sch Chem &

    Chem Technol Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Adv Rheol Inst Dept Polymer Sci &

    Engn Sch Chem &

    Chem Technol Shanghai 200240 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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