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纤维表面形貌如何影响细胞与电纺支架之间的相互作用:一项系统综述。

How Fiber Surface Topography Affects Interactions between Cells and Electrospun Scaffolds: A Systematic Review.

作者信息

Lopez Marquez Alex, Gareis Iván Emilio, Dias Fernando José, Gerhard Christoph, Lezcano María Florencia

机构信息

Faculty of Engineering and Health, University of Applied Sciences and Arts, 37085 Göttingen, Germany.

Laboratorio de Cibernética, Departamento de Bioingeniería, Facultad de Ingeniería, Universidad Nacional de Entre Ríos, Oro Verde 3100, Argentina.

出版信息

Polymers (Basel). 2022 Jan 5;14(1):209. doi: 10.3390/polym14010209.

Abstract

Electrospun scaffolds have a 3D fibrous structure that attempts to imitate the extracellular matrix in order to be able to host cells. It has been reported in the literature that controlling fiber surface topography produces varying results regarding cell-scaffold interactions. This review analyzes the relevant literature concerning in vitro studies to provide a better understanding of the effect that controlling fiber surface topography has on cell-scaffold interactions. A systematic approach following PRISMA, GRADE, PICO, and other standard methodological frameworks for systematic reviews was used. Different topographic interventions and their effects on cell-scaffold interactions were analyzed. Results indicate that nanopores and roughness on fiber surfaces seem to improve proliferation and adhesion of cells. The quality of the evidence is different for each studied cell-scaffold interaction, and for each studied morphological attribute. The evidence points to improvements in cell-scaffold interactions on most morphologically complex fiber surfaces. The discussion includes an in-depth evaluation of the indirectness of the evidence, as well as the potentially involved publication bias. Insights and suggestions about dose-dependency relationship, as well as the effect on particular cell and polymer types, are presented. It is concluded that topographical alterations to the fiber surface should be further studied, since results so far are promising.

摘要

电纺支架具有三维纤维结构,旨在模仿细胞外基质以便能够容纳细胞。文献报道,控制纤维表面形貌会对细胞与支架的相互作用产生不同的结果。本综述分析了有关体外研究的相关文献,以便更好地理解控制纤维表面形貌对细胞与支架相互作用的影响。采用了遵循PRISMA、GRADE、PICO以及其他系统评价标准方法框架的系统方法。分析了不同的形貌干预及其对细胞与支架相互作用的影响。结果表明,纤维表面的纳米孔和粗糙度似乎能促进细胞的增殖和黏附。对于每种研究的细胞与支架相互作用以及每种研究的形态学属性,证据的质量各不相同。证据表明,在大多数形态复杂的纤维表面上,细胞与支架的相互作用有所改善。讨论内容包括对证据间接性的深入评估以及潜在的发表偏倚。还提出了关于剂量依赖性关系以及对特定细胞和聚合物类型影响的见解和建议。结论是,由于目前的结果很有前景,因此应进一步研究纤维表面的形貌改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a48a/8747153/c75aa9889665/polymers-14-00209-g001.jpg

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