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首页> 外文期刊>Journal of materials science >Scale and structure dependent solute diffusivity within microporous tissue engineering scaffolds
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Scale and structure dependent solute diffusivity within microporous tissue engineering scaffolds

机译:微孔组织工程支架中的规模和结构依赖性溶质扩散性

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摘要

Diffusion of nutrients to cells cultured within three-dimensional scaffolds is fundamental for cell survival during development of the tissue construct, when no vasculature is present to aid transport. Significant efforts have been made to characterize the effect of structure on solute diffusivity in nanoporous hydrogels, yet a similar thorough characterization has not been attempted for microporous scaffolds. Here, we make use of freeze-dried collagen scaffolds, possessing pore sizes in the range 150-250 mu m and isotropic or aligned morphology, to study the diffusivity of fluorescent dextran molecules. Fluorescence recovery after photobleaching is used to measure the self diffusivity of the solutes within single pores, while Fickian diffusion over scales larger than the pore size is studied by assessing the solute concentration profile within the materials over time. We show that, not only do the morphological parameters of the scaffolds significantly affect the diffusivity of the solutes, but also that the assessment of such diffusivity depends on the length scale of diffusion of the molecules under investigation, with the resulting diffusion coefficients being differently affected by the scaffold structure. The results provided can guide the design of scaffolds with tailored diffusivity and nutrient concentration profiles.[GRAPHICS].
机译:营养成分在三维支架内培养的细胞的扩散是组织构建过程中的细胞存活的基础,当没有脉管系统以助行运输时。已经进行了重大努力,表征结构对纳米多孔水凝胶中的溶质扩散性的影响,但尚未试图对微孔支架进行类似的彻底表征。在这里,我们利用冻干胶原蛋白支架,具有150-250μm和各向同性或对齐形态的孔径,以研究荧光葡聚糖分子的扩散性。光漂白后的荧光回收用于测量单孔内溶质的自扩散率,而通过在时间内评估材料内的溶质浓度曲线,研究了大于孔径大的鳞片的鳞片扩散。我们表明,不仅支架的形态学参数显着影响溶质的扩散性,而且还认为这种扩散率的评估取决于所研究的分子扩散的长度规模,并产生不同影响的扩散系数通过脚手架结构。提供的结果可以指导具有量身定制的扩散性和营养浓度谱的支架设计。[图形]。

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