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首页> 外文期刊>Journal of materials science >Investigation of 2D and 3D electrospun scaffolds intended for tendon repair
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Investigation of 2D and 3D electrospun scaffolds intended for tendon repair

机译:研究用于腱修复的2D和3D电纺支架

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摘要

Two-dimensional (2D) electrospun fibre mats have been investigated as fibrous sheets intended as bio-materials scaffolds for tissue repair. It is recognised that tissues are three-dimensional (3D) structures and that optimisation of the fabrication process should include both 2D and 3D scaffolds. Understanding the relative merits of the architecture of 2D and 3D scaffolds for tendon repair is required. This study investigated three different electrospun scaffolds based on poly(e-caprolactone) fibres intended for repair of injured tendons, referred to as; 2D random sheet, 2D aligned sheet and 3D bundles. 2D aligned fibres and 3D bundles mimicked the parallel arrangement of collagen fibres in natural tendon and 3D bundles further replicated the tertiary layer of a tendon's hierarchical configuration. 3D bundles demonstrated greatest tensile properties, being significantly stronger and stiffer than 2D aligned and 2D random fibres. All scaffolds supported adhesion and proliferation of tendon fibroblasts. Furthermore, 2D aligned sheets and 3D bundles allowed guidance of the cells into a parallel, longitudinal arrangement, which is similar to tendon cells in the native tissue. With their superior physical properties and ability to better replicate tendon tissue, the 3D electrospun scaffolds warrant greater investigation as synthetic grafts in tendon repair.
机译:二维(2D)电纺纤维毡已被研究为纤维薄板,旨在用作组织修复的生物材料支架。公认组织是三维(3D)结构,并且制造过程的优化应同时包括2D和3D支架。需要了解用于腱修复的2D和3D支架架构的相对优点。这项研究研究了三种不同的基于聚(ε-己内酯)纤维的电纺支架,旨在修复受伤的肌腱,被称为; 2D随机图纸,2D对齐的图纸和3D束。 2D对齐的纤维和3D束模仿了天然肌腱中胶原纤维的平行排列,而3D束进一步复制了肌腱层次结构的第三层。 3D束表现出最大的拉伸性能,比2D对齐的纤维和2D随机纤维明显更坚固。所有支架均支持肌腱成纤维细胞的粘附和增殖。此外,2D对齐的薄片和3D束允许将细胞引导成平行的纵向排列,这类似于天然组织中的腱细胞。凭借其优越的物理特性和更好地复制肌腱组织的能力,3D电纺丝支架值得进一步研究,因为它们是肌腱修复中的合成移植物。

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  • 来源
    《Journal of materials science 》 |2013年第6期| 1605-1614| 共10页
  • 作者单位

    School of Materials, Materials Science Centre, The University of Manchester, Grosvenor Street, Manchester M1 7HS, UK;

    Plastic Surgery Research, Institute of Inflammation and Repair,The University of Manchester, Stopford Building, Oxford Road,Manchester M13 9TP, UK;

    Plastic Surgery Research, Institute of Inflammation and Repair,The University of Manchester, Stopford Building, Oxford Road,Manchester M13 9TP, UK;

    School of Materials, Materials Science Centre, The University of Manchester, Grosvenor Street, Manchester M1 7HS, UK;

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