首页> 外文期刊>Journal of materials science >Differential physical, rheological, and biological properties of rapid in situ gelable hydrogels composed of oxidized alginate and gelatin derived from marine or porcine sources
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Differential physical, rheological, and biological properties of rapid in situ gelable hydrogels composed of oxidized alginate and gelatin derived from marine or porcine sources

机译:由海洋或猪源的氧化藻酸盐和明胶组成的快速原位凝胶化水凝胶的不同物理,流变学和生物学特性

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摘要

Marine derived gelatin is not known to associate with any communicable diseases to mammals and could be a reasonable substitute for gelatin derived from either bovine or porcine sources. The low melting point of marine gelatin (8℃) also offers greater formulation flexibility than mammalian derived gelatins. However, the sub-optimal physical properties of marine gelatin generally limit the interest to further develop it for biomedical applications. This study aimed at investigating the feasibility of using oxidized alginate (Oalg) as a high activity macromolecular crosslinker of marine gelatin to formulate in situ gelable hydrogels with the goal of enhancing the latter's physical properties. The performance of Oalg/ marine gelatin hydrogel was compared to Oalg/porcine gelatin hydrogel; in general, the physicomechanical properties of both hydrogels were comparable, with the hydrogels containing porcine gelatin exhibiting moderately higher mechanical strengths with shorter gelation times, smaller size pores, and higher swelling ratios. On the contrary, the biological performances of the two hydrogels were significantly difference. Cells cultured in the marine gelatin derived hydrogel grew significantly faster, with greater than 60% more cells by 7 days and they exhibited more spread-out conformations as compared those cultured in the porcine derived hydrogel. Production of ECM by cells cultured in the Oalg/marine gelatin hydrogel was up to 2.4 times greater than that of in the Oalg/porcine gelatinrnhydrogel. The biodegradation rate of the hydrogel formulated from marine gelatin was greater than its counterpart prepared from porcine gelatin. These differences have important implications in the biomedical applications of the two hydrogels.
机译:已知海洋来源的明胶与哺乳动物的任何传染性疾病均不相关,并且可以合理地替代源自牛或猪来源的明胶。海洋明胶的低熔点(8℃)也比哺乳动物衍生的明胶具有更大的配方灵活性。然而,海洋明胶的次优物理性质通常限制了对其进一步开发以用于生物医学应用的兴趣。这项研究旨在研究使用氧化藻酸盐(Oalg)作为海洋明胶的高活性大分子交联剂来原位配制可凝胶化水凝胶的可行性,以增强后者的物理性能。将Oalg /海洋明胶水凝胶与Oalg /猪明胶水凝胶的性能进行了比较;通常,两种水凝胶的物理机械性能是可比的,含有猪明胶的水凝胶具有中等较高的机械强度,具有较短的胶凝时间,较小的孔尺寸和较高的溶胀率。相反,两种水凝胶的生物学性能有显着差异。在海洋明胶衍生的水凝胶中培养的细胞生长速度显着加快,到7天时细胞增长了60%以上,与在猪衍生的水凝胶中培养的细胞相比,它们展现出更多的分散构象。在Oalg /海洋明胶水凝胶中培养的细胞产生的ECM比在Oalg /猪明胶水凝胶中培养的细胞高2.4倍。由海洋明胶配制的水凝胶的生物降解速率大于由猪明胶制成的水凝胶的生物降解速率。这些差异在两种水凝胶的生物医学应用中具有重要意义。

著录项

  • 来源
    《Journal of materials science》 |2009年第6期|1263-1271|共9页
  • 作者单位

    Department of Biomedical Engineering, Health Science Center, State University of New York - Stony Brook. Stony Brook, NY 11794-8181, USA;

    Department of Biomedical Engineering, Health Science Center, State University of New York - Stony Brook. Stony Brook, NY 11794-8181, USA;

    Department of Biomedical Engineering, Health Science Center, State University of New York - Stony Brook. Stony Brook, NY 11794-8181, USA;

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

    hydrogel; oxidized alginate; porcine gelatin; marine gelatin; in situ;

    机译:水凝胶氧化藻酸盐猪明胶;海洋明胶;原位;

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