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Synthesis and characterization of matrix metalloprotease sensitive-low molecular weight hyaluronic acid based hydrogels

机译:基质金属蛋白酶敏感的低分子量透明质酸基水凝胶的合成与表征

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摘要

Hyaluronic acid is a naturally derived glycos-aminoglycan (GAG) involved in biological processes. A low molecular weight hyaluronic acid (50 kDa)-based hydrogel was synthesized using acrylated hyaluronic acid. Matrix metalloproteinase (MMP) sensitive hyaluronic acid-based hydrogels were prepared by conjugation with two different peptides: cell adhesion peptides containing inte-grin binding domains (Arg-Gly-Asp: RGD) and a cross-linker with MMP degradable peptides to mimic the remodeling characteristics of natural extracellular matrices (ECMs) by cell-derived MMPs. Mechanical properties of these hydrogels were evaluated with different molecular weights of acrylated hyaluronic acid (10 kDa and 50 kDa) cross-linked by MMP sensitive peptides by measuring elastic modulus, viscous modulus, swelling ratio and degradation rate. The MMP sensitive hydrogel based on the 50 kDa hyaluronic acid showed a 31.5-fold shorter gelation time, 4.7-fold higher storage modulus and 0.51-fold smaller swelling ratio than those of the hydrogel based on the 10 kDa. Degradation rate was dependent on MMP sensitivity of the peptide cross-linker. MMP sensitive hyaluronic acid based hydrogels were degraded faster than MMP insensitive-hyaluronic acid-based hydrogels. Human mesenchymal stem cells (MSCs) were cultured in MMP-sensitive or insensitive hyaluronic, acid-based hydrogels (50 kDa hyaluronic acid) and/or immobilized cell adhesive RGD peptides. Cells cultured in the MMP-sensitive hydrogel with RGD peptides showed dramatic cell spreading compared with that of the control, which remained round. This MMP-sensitive low molecular weight hyaluronic acid-based hydrogel could be useful in tissue engineering by improving tissue defect regeneration and tissue remodeling.
机译:透明质酸是涉及生物过程的天然衍生的糖-氨基聚糖(GAG)。使用丙烯酸化的透明质酸合成了低分子量的透明质酸(50 kDa)基水凝胶。基质金属蛋白酶(MMP)敏感的透明质酸基水凝胶是通过与两种不同的肽缀合制备的:含有整联蛋白结合域的细胞粘附肽(Arg-Gly-Asp:RGD)和具有MMP可降解肽的交联剂以模仿细胞衍生的MMP对天然细胞外基质(ECM)的重塑特征。通过测量弹性模量,粘弹性模量,溶胀率和降解速率,以不同分子量的MMP敏感肽交联的丙烯酸化透明质酸(10 kDa和50 kDa)评估了这些水凝胶的机械性能。与基于10 kDa的水凝胶相比,基于50 kDa透明质酸的MMP敏感水凝胶的胶凝时间缩短了31.5倍,储能模量提高了4.7倍,溶胀比减小了0.51倍。降解速率取决于肽交联剂的MMP敏感性。 MMP敏感的透明质酸水凝胶比MMP不敏感的透明质酸水凝胶降解得更快。将人间充质干细胞(MSC)培养在对MMP敏感或不敏感的透明质酸,基于酸的水凝胶(50 kDa透明质酸)和/或固定化的细胞粘附RGD肽中。在带有RGD肽的MMP敏感性水凝胶中培养的细胞与对照组相比显示出了显着的细胞扩散,后者保持圆形。这种MMP敏感的低分子量透明质酸基水凝胶可通过改善组织缺损的再生和组织重塑而用于组织工程。

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  • 来源
    《Journal of materials science》 |2008年第11期|p.3311-3318|共8页
  • 作者单位

    Biomedical Engineering, Brain Korea 21 Project for Biomedical Science, Korea University Medical College, Seoul, Korea,Korea Artificial Organ Center, Korea University, Seoul, Korea;

    Korea Artificial Organ Center, Korea University, Seoul, Korea;

    Department of Biomedical Engineering, Korea University Medical College, Seoul 136-705, Korea,Department of Materials Science and Engineering, GIST,Seoul, Korea;

    Korea Artificial Organ Center, Korea University, Seoul, Korea,Department of Biomedical Engineering, Korea University Medical College, Seoul 136-705, Korea;

    Dental Research Institute, Brain Korea 21 2nd Program for Craniomaxillofacial Life Science, Seoul National University,Seoul, Korea,Department of Maxillofacial Cell and Developmental Biology,School of Dentistry, Seoul National University,Seoul, Korea,Department of Oral and Maxillofacial Surgery,School of Dentistry, Seoul National University,Seoul, Korea;

    Dental Research Institute, Brain Korea 21 2nd Program for Craniomaxillofacial Life Science, Seoul National University,Seoul, Korea;

    Department of Chemical Engineering, Seoul National University of Technology, Seoul, Korea;

    Biomedical Engineering, Brain Korea 21 Project for Biomedical Science, Korea University Medical College, Seoul, Korea,Korea Artificial Organ Center, Korea University, Seoul, Korea,Department of Biomedical Engineering, Korea University Medical College, Seoul 136-705, Korea,Department of Thoracic and Cardiovascular Surgery,Korea University Medical College, Seoul, Korea;

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