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Tendon-bioinspired wavy nanofibrous scaffolds provide tunable anisotropy and promote tenogenesis for tendon tissue engineering

机译:肌腱 - 生物悬浮的波浪纳米纤维支架提供可调谐各向异性,促进肌腱组织工程的初始化

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摘要

The development of tendon-biomimetic nanofibrous scaffolds with mesenchymal stem cells may represent a promising strategy to improve the unsatisfactory outcomes of traditional treatments in tendon repair. In the present study, the nanofibrous scaffolds comprised of poly(p-dioxanone) (PPDO) and silk fibroin (SF) composites were fabricated by using electrospinning technique and subsequent thermal ethanol treatment. The PPDO/SF composite scaffolds presented parallel fiber arrangement with crimped features and nonlinear mechanical properties, which mimic the structure-function relationship of native tendon tissue mechanics. We demonstrated that the fiber crimp degree and mechanical properties of as-prepared PPDO/SF wavy nanofibrous scaffolds (WNSs) could be tunable by adjusting the mass ratio of PPDO/SF. The biological tests revealed that the addition of SF obviously promoted the cell adhesion, proliferation, and phenotypic maintenance of human tenocytes on the WNSs. A preliminary study on the subcutaneous implantation showed that the PPDO/SF WNSs notably decreased the inflammatory response compared with pure PPDO WNSs. More importantly, a combination of growth factor induction and mechanical stimulation was found to notably enhance the tenogenic differentiation of human adipose derived mesenchymal stem cells on the PPDO/SF WNSs by upregulating the expressions of tendon-associated protein and gene markers. Overall, this study demonstrated that our PPDO/SF WNSs could provide a beneficial microenvironment for various cell activities, making them an attractive candidate for tendon tissue engineering research.
机译:具有间充质干细胞的肌腱生物染色纳米纤维支架的发展可以代表一种有望的策略,以改善肌腱修复中的传统治疗的不令人满意的结果。在本研究中,通过使用静电纺丝技术和随后的热乙醇处理来制造由聚(p-Dioxanone)(PPDO)和丝素蛋白(SF)复合材料组成的纳米纤维支架。 PPDO / SF复合支架具有卷曲特征和非线性机械性能的平行纤维布置,其模拟天然肌腱组织力学的结构功能关系。我们证明,通过调节PPDO / SF的质量比,可以通过调节质量比来调节制备的PPDO / SF波浪纳米纤维支架(WNSS)的纤维卷曲程度和机械性能。生物学试验显示,SF的添加明显促进了WNSS上人胞胎的细胞粘附,增殖和表型维持。对皮下植入的初步研究表明,与纯PPDO WNSS相比,PPDO / SF WNSS显着降低炎症反应。更重要的是,通过上调肌腱相关蛋白质和基因标志物的表达,发现生长因子诱导和机械刺激的组合尤其增强了人脂肪衍生的衍生间充质干细胞对PPDO / SF WNS的初步分化。总体而言,本研究表明,我们的PPDO / SF WNSS可以为各种细胞活动提供有益的微环境,使其成为肌腱组织工程研究的有吸引力的候选者。

著录项

  • 来源
    《Materials science & engineering》 |2021年第7期|112181.1-112181.13|共13页
  • 作者单位

    Qingdao Univ Coll Text & Clothing Qingdao Peoples R China;

    Qingdao Univ Coll Text & Clothing Qingdao Peoples R China;

    Qingdao Univ Coll Text & Clothing Qingdao Peoples R China;

    Shanghai Jiao Tong Univ Affiliated Peoples Hosp 6 Dept Sports Med Shanghai Peoples R China;

    Shanghai Jiao Tong Univ Affiliated Peoples Hosp 6 Dept Sports Med Shanghai Peoples R China;

    Univ Nebraska Med Ctr Dept Internal Med Mary & Dick Holland Regenerat Med Program Omaha NE USA|Univ Nebraska Med Ctr Dept Internal Med Div Cardiol Omaha NE USA|Univ Nebraska Med Ctr Coll Med Dept Surg Omaha NE USA|Univ Nebraska Lincoln Dept Mech & Mat Engn Lincoln NE USA;

    Qingdao Univ Coll Text & Clothing Qingdao Peoples R China;

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

    Electrospinning; Wavy structure; Tenogenic differentiation; Mechanical stimulation; Tendon regeneration;

    机译:静电纺丝;波浪结构;遗传分化;机械刺激;肌腱再生;

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