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首页> 外文期刊>Journal of materials science >Development and characterization of a suturable biomimetic patch for cardiac applications
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Development and characterization of a suturable biomimetic patch for cardiac applications

机译:心脏应用繁殖仿生贴剂的开发与表征

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摘要

3D scaffolds used to repair damaged tissues should be able to mimic both composition and functions of natural extracellular matrix, which is mainly composed of polysaccharides and proteins. In our previous research new biomimetic sponges, based on blends of alginate with gelatin, were produced and characterized for myocardial tissue engineering applications. It was observed that these scaffolds can potentially function as a promising cardiac extracellular matrix substitute, but a reinforcement is required to improve their suturing properties. Aim of the present work was the development of a suturable biomimetic patch by the inclusion of a synthetic mesh within an alginate/gelatin scaffold. The mesh, produced by dry spinning, was made of eight superimposed layers of polycaprolactone microfibers, each one rotated of 45 degrees with respect to the adjacent one. Reinforced scaffolds were obtained through the use of a mold, specially designed to place the fibrous mesh exactly in the center of the sponge. Both the reinforcement mesh and the reinforced scaffold were characterized. A perfect integration between the mesh and the sponge was observed. The fibrous mesh reduced the capacity of the sponge to absorb water, but the degree of hydrophilicity of the material was still comparable with that of natural cardiac tissue. The reinforced system showed a suitable stability in aqueous environment and it resulted much more resistant to suturing than not reinforced scaffold and even than human arteries. Polycaprolactone mesh was not cytotoxic and the reinforced scaffold was able to support cardiomyocytes adhesion and proliferation. Overall, the obtained results confirmed that the choice to modify the alginate/gelatin sponges through the insertion of an appropriate reinforcement system turned out to be correct in view of their potential use in myocardial tissue engineering.[GRAPHICS].
机译:用于修复受损组织的3D支架应该能够模仿天然细胞外基质的组成和功能,主要由多糖和蛋白质组成。在我们以前的研究中,基于与明胶的藻酸盐混合物进行了新的生物微米海绵,并进行了心肌组织工程应用。观察到这些支架可以作为有前途的心脏细胞外基质替代品功能起作用,但需要一种加强来改善其缝合性质。目前工作的目的是通过在藻酸盐/明胶支架中包含合成网,通过包含合成网的开发繁殖的仿生斑块。由干纺生产的网格由八个叠加层的聚己内酯微纤维制成,每个叠加层相对于相邻旋转45度。通过使用模具获得增强支架,专门设计用于将纤维网恰好放置在海绵的中心。表征增强网和增强支架。观察到网状物和海绵之间的完美集成。纤维网格降低了海绵吸收水的容量,但材料的亲水程度仍然与天然心脏组织的亲水程度相当。增强系统在水性环境中显示出合适的稳定性,并且它导致缝合的耐受性比不增强支架甚至人体动脉更耐受。聚己内酯网不是细胞毒性,增强支架能够支持心肌细胞粘附和增殖。总的来说,所获得的结果证实,考虑到它们在心肌组织工程中的潜在用途,通过插入适当的增强系统来改变藻酸盐/明胶海绵的选择。[图形]。

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  • 来源
    《Journal of materials science 》 |2019年第11期| 126.1-126.11| 共11页
  • 作者单位

    Univ Pisa Dept Civil & Ind Engn DICI I-56126 Pisa Italy|Interuniv Ctr 3Rs Principles Teaching & Res Ctr 3 I-56126 Pisa Italy;

    Univ Pisa Dept Civil & Ind Engn DICI I-56126 Pisa Italy|Interuniv Ctr 3Rs Principles Teaching & Res Ctr 3 I-56126 Pisa Italy;

    Univ Pisa Dept Civil & Ind Engn DICI I-56126 Pisa Italy;

    Univ Pisa Dept Civil & Ind Engn DICI I-56126 Pisa Italy;

    Univ Pisa Dept Civil & Ind Engn DICI I-56126 Pisa Italy;

    Univ Pisa Dept Civil & Ind Engn DICI I-56126 Pisa Italy|Interuniv Ctr 3Rs Principles Teaching & Res Ctr 3 I-56126 Pisa Italy;

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