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Injectable alginate/hydroxyapatite gel scaffold combined with gelatin microspheres for drug delivery and bone tissue engineering

机译:可注射藻酸盐/羟基磷灰石凝胶支架与明胶微球相结合,用于药物输送和骨组织工程

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摘要

Injectable and biodegradable alginate-based composite gel scaffolds doubly integrated with hydroxyapatite (HAp) and gelatin microspheres (GMs) were cross-linked via in situ release of calcium cations. As triggers of calcium cations, CaCO_3 and glucono-D-lactone (GDL) were fixed as a mass ratio of 1:1 to control pH value ranging from 6.8 to 12 during gelation. Synchronously, tetracycline hydrochloride (TH) was encapsulated into GMs to enhance bioactivity of composite gel scaffolds. The effects of HAp and GMs on characteristics of gel scaffolds, including pH value, gelation time, mechanical properties, swelling ratio, degradation behavior and drug release, were investigated. The results showed that HAp and GMs successfully improved mechanical properties of gel scaffolds at strain from 0.1 to 0.5, which stabilized the gel network and decreased weight loss, as well as swelling ratio and gelation time. TH could be released from this composite gel scaffold into the local microenvironment in a controlled fashion by the organic/inorganic hybrid of hydrogel network. Our results demonstrate that the HAp and GMs doubly integrated alginate-based gel scaffolds, especially the one with 6% (w/v) HAp and 5% (w/v) GMs, have suitable physical performance and bioactive properties, thus provide a potential opportunity to be used for bone tissue engineering. The potential application of this gel scaffold in bone tissue engineering was confirmed by encapsulation behavior of osteoblasts. In combination with TH, the gel scaffold exhibited beneficial effects on osteoblast activity, which suggested a promising future for local treatment of pathologies involving bone loss.
机译:与羟基磷灰石(HAp)和明胶微球(GMs)双重结合的可注射和可生物降解的基于藻酸盐的复合凝胶支架通过钙阳离子的原位释放而交联。作为钙阳离子的引发剂,CaCO_3和葡萄糖酸-D-内酯(GDL)的质量比固定为1:1,从而在胶凝过程中将pH值控制在6.8到12之间。同步地,将四环素盐酸盐(TH)封装到GM中,以增强复合凝胶支架的生物活性。研究了HAp和GMs对凝胶支架特征的影响,包括pH值,胶凝时间,机械性能,溶胀率,降解行为和药物释放。结果表明,HAp和GMs在0.1至0.5的应变范围内成功改善了凝胶支架的机械性能,从而稳定了凝胶网络并减少了重量损失,以及溶胀率和胶凝时间。 TH可以通过水凝胶网络的有机/无机杂化物以受控方式从该复合凝胶支架释放到局部微环境中。我们的结果表明,HAp和GMs双重整合的基于藻酸盐的凝胶支架,特别是具有6%(w / v)HAp和5%(w / v)GM的凝胶支架,具有合适的物理性能和生物活性,因此具有潜在的应用前景有机会用于骨组织工程。通过成骨细胞的包封行为证实了该凝胶支架在骨组织工程中的潜在应用。与TH结合使用时,该凝胶支架对成骨细胞的活性表现出有益的作用,这为局部治疗涉及骨丢失的病理学提供了广阔的前景。

著录项

  • 来源
    《Materials science & engineering 》 |2016年第6期| 274-284| 共11页
  • 作者单位

    School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;

    School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;

    School of Materials Science and Engineering, Nanjing University of Science and Technology, 200 Xiao Ling Wei St, Nanjing 210094, China;

    School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;

    Department of Orthopaedics, Jinling Hospital Nanjing 210002, China;

    Department of Orthopaedics, Jinling Hospital Nanjing 210002, China;

    School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;

    School of Material Engineering, Jinling Institute of Technology, Nanjing 211169, China;

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

    Hydrogels; Alginate; Hydroxyapatite; Microspheres; Drug delivery; Tissue engineering;

    机译:水凝胶;海藻酸盐;羟基磷灰石;微球;药物输送;组织工程;

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