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定制化三维混合细胞培养支架。

Tailor-made three-dimensional hybrid scaffolds for cell cultures.

机构信息

Institute of Electronic Structure and Laser, Foundation for Research and Technology Hellas, PO Box 1527, 711 10 Heraklion, Crete, Greece.

出版信息

Biomed Mater. 2011 Aug;6(4):045008. doi: 10.1088/1748-6041/6/4/045008. Epub 2011 Jul 8.

Abstract

The construction of the ideal three-dimensional scaffold for cell culture is one of the most intriguing topics in tissue engineering. It has been shown that cells can be cultured on most organic biomimetic materials, which now are losing popularity in favour of novel, hybrid systems. In this study, a series of photosensitive sol-gel hybrid materials, based on silicon-zirconium and silicon-titanium oxides, have been investigated for their suitability in three-dimensional scaffold fabrication. These materials can be structured by two-photon polymerization, a laser-based technique allowing the fabrication of micrometre-size structures with submicron resolution. The work presented here examined the effect of the organic/inorganic composition of the materials on cell behaviour and the establishment of a 'cell-culture friendly' environment. This is vital for cell adhesion, growth and differentiation, as the organic part of the material provides the soft matrix for cell growth, whereas the inorganic component gives the mechanical stability and rigidity of the three-dimensional structures. In addition, the use of femtosecond laser structuring permits the fabrication of a wide range of mechanically stable scaffolds of different sizes and shapes to be tested in terms of cell viability, proliferation and orientation.

摘要

构建理想的细胞培养三维支架是组织工程中最引人关注的课题之一。研究表明,细胞可以在大多数有机仿生材料上培养,而这些材料现在已经不如新型混合系统受欢迎了。在这项研究中,一系列基于硅-锆和硅-钛氧化物的光敏溶胶-凝胶杂化材料因其在三维支架制造中的适用性而被研究。这些材料可以通过双光子聚合来构造,这是一种基于激光的技术,允许制造具有亚微米分辨率的微尺寸结构。本文研究了材料的有机/无机组成对细胞行为和建立“细胞培养友好”环境的影响。这对于细胞的黏附、生长和分化至关重要,因为材料的有机部分为细胞生长提供了柔软的基质,而无机部分则赋予三维结构机械稳定性和刚性。此外,飞秒激光微结构化可以制造出各种尺寸和形状的机械稳定支架,用于测试细胞活力、增殖和定向。

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