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Textile cell-free scaffolds for in situ tissue engineering applications

机译:纺织无细胞支架,用于原位组织工程应用

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摘要

In this article, the benefits offered by micro-fibrous scaffold architectures fabricated by textile manufacturing techniques are discussed: How can established and novel fiber-processing techniques be exploited in order to generate templates matching the demands of the target cell niche? The problems related to the development of biomaterial fibers (especially from nature-derived materials) ready for textile manufacturing are addressed. Attention is also paid on how biological cues may be incorporated into micro-fibrous scaffold architectures by hybrid manufacturing approaches (e.g. nanofiber or hydrogel functionalization). After a critical review of exemplary recent research works on cell-free fiber based scaffolds for in situ TE, including clinical studies, we conclude that in order to make use of the whole range of favors which may be provided by engineered fibrous scaffold systems, there are four main issues which need to be addressed: (1) Logical combination of manufacturing techniques and materials. (2) Biomaterial fiber development. (3) Adaption of textile manufacturing techniques to the demands of scaffolds for regenerative medicine. (4) Incorporation of biological cues (e.g. stem cell homing factors).
机译:在本文中,将讨论由纺织制造技术制造的微纤维支架结构所提供的好处:如何利用已建立的和新颖的纤维处理技术来生成与目标细胞生态位需求相匹配的模板?解决了与准备用于纺织制造的生物材料纤维(尤其是来自自然界的材料)的开发有关的问题。还应注意如何通过混合制造方法(例如,纳米纤维或水凝胶功能化)将生物学线索掺入微纤维支架结构中。在对无细胞纤维基支架用于原位TE的示例性近期研究工作进行严格审查(包括临床研究)后,我们得出结论,为了利用工程纤维支架系统可能提供的全部优势,有四个主要问题需要解决:(1)制造技术和材料的逻辑结合。 (2)生物材料纤维的发展。 (3)纺织制造技术适应支架对再生医学的需求。 (4)纳入生物学线索(例如干细胞归巢因子)。

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  • 来源
    《Journal of materials science》 |2016年第3期|63.1-63.20|共20页
  • 作者单位

    Tech Univ Dresden, Fak Maschinenwesen, Inst Text Maschinen & Text Hochleistungswerkstoff, D-01062 Dresden, Germany;

    Tech Univ Dresden, Fak Maschinenwesen, Inst Text Maschinen & Text Hochleistungswerkstoff, D-01062 Dresden, Germany;

    Tech Univ Dresden, Fak Maschinenwesen, Inst Text Maschinen & Text Hochleistungswerkstoff, D-01062 Dresden, Germany;

    Tech Univ Dresden, Fak Maschinenwesen, Inst Text Maschinen & Text Hochleistungswerkstoff, D-01062 Dresden, Germany;

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