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Characterization of slow-gelling alginate hydrogels for intervertebral disc tissue-engineering applications

机译:用于椎间盘组织工程应用的慢凝胶藻酸盐水凝胶的表征

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摘要

Reversal of intervertebral disc degeneration can have a potentially monumental effect on spinal health. As such, the goal of this research is to create an injectable, cellularized alginate-based nucleus pulposus that will restore disc function; with the primary goal of creating an alginate gel with tailorable rates of gelation to improve functionality over standard CaCl_2 crosslinking techniques. Gelation characteristics of 1% sodium alginate were analyzed over various molar concentrations of a 1:2 ratio of CaCO_3:glucono-δ-lactone (GDL), with 10% CaCl_2 as the control crosslinker. Alginate construct characterization for all concentrations was performed via ultimate and cyclic compressive testing over a 28 day degradation period in PBS. Dehydration, swell testing, and albumin release kinetics were determined, and cytotoxicity and cell homogeneity tests showed promise for cellularization strategies. Overall, the 30 and 60 mM GDL alginate concentrations presented the most viable option for use in further studies, with a gelation time between 10 and 30 min, low hysteresis over control, low percent change in thickness and weight under both PBS degradation and swelling conditions, and stable mechanical properties over 28 days in vitro.
机译:椎间盘退变的逆转可能对脊柱健康产生潜在的巨大影响。因此,这项研究的目的是创建一种可注射的,基于细胞藻酸盐的髓核,可恢复椎间盘功能。其主要目标是创建具有可调整的胶凝速率的藻酸盐凝胶,以提高功能,使其优于标准的CaCl_2交联技术。在CaCO_3:葡萄糖酸-δ-内酯(GDL)为1:2的各种摩尔浓度下,以10%CaCl_2作为对照交联剂,分析了1%海藻酸钠的胶凝特性。在PBS中经过28天的降解期间,通过最终和循环压缩测试对所有浓度的藻酸盐构建体进行了表征。确定了脱水,溶胀试验和白蛋白释放动力学,细胞毒性和细胞均质性试验显示了细胞化策略的前景。总体而言,在进一步研究中,30和60 mM GDL海藻酸盐浓度是最可行的选择,胶凝时间在10和30分钟之间,滞后性低于对照,在PBS降解和溶胀条件下厚度和重量的百分比变化低,并在超过28天的体外力学性能稳定。

著录项

  • 来源
    《Materials science & engineering 》 |2016年第6期| 198-210| 共13页
  • 作者单位

    Parks College of Engineering, Aviation & Technology, Department of Biomedical Engineering, Saint Louis University, 3507 Lindell Boulevard, St. Louis, MO 63103, USA;

    Parks College of Engineering, Aviation & Technology, Department of Biomedical Engineering, Saint Louis University, 3507 Lindell Boulevard, St. Louis, MO 63103, USA;

    Parks College of Engineering, Aviation & Technology, Department of Biomedical Engineering, Saint Louis University, 3507 Lindell Boulevard, St. Louis, MO 63103, USA;

    Parks College of Engineering, Aviation & Technology, Department of Biomedical Engineering, Saint Louis University, 3507 Lindell Boulevard, St. Louis, MO 63103, USA;

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

    Intervertebral discs; Nucleus pulposus; Alginate; Rheology; In situ crosslinking;

    机译:椎间盘髓核;海藻酸盐;流变学原位交联;

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