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Assessing bioink shape fidelity to aid material development in 3D bioprinting

机译:评估生物型形状保真度,以援助3D BioPlinting的材料发展

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摘要

During extrusion-based bioprinting, the deposited bioink filaments are subjected to deformations, such as collapse of overhanging filaments, which compromises the ability to stack several layers of bioink, and fusion between adjacent filaments, which compromises the resolution and maintenance of a desired pore structure. When developing new bioinks, approaches to assess their shape fidelity after printing would be beneficial to evaluate the degree of deformation of the deposited filament and to estimate how similar the final printed construct would be to the design. However, shape fidelity has been prevalently assessed qualitatively through visual inspection after printing, hampering the direct comparison of the printability of different bioinks. In this technical note, we propose a quantitative evaluation for shape fidelity of bioinks based on testing the filament collapse on overhanging structures and the filament fusion of parallel printed strands. Both tests were applied on a hydrogel platform based on poloxamer 407 and poly(ethylene glycol) blends, providing a library of hydrogels with different yield stresses. The presented approach is an easy way to assess bioink shape fidelity, applicable to any filament-based bioprinting system and able to quantitatively evaluate this aspect of printability, based on the degree of deformation of the printed filament. In addition, we built a simple theoretical model that relates filament collapse with bioink yield stress. The results of both shape fidelity tests underline the role of yield stress as one of the parameters influencing the printability of a bioink. The presented quantitative evaluation will allow for reproducible comparisons between different bioink platforms.
机译:在基于挤出的生物监测期间,沉积的生物膜丝被进行变形,例如悬垂长丝的塌陷,这损害了堆叠几层的生物链和相邻长丝之间的熔化能力,这损害了所需孔结构的分辨率和维持。在开发新的生物链时,在印刷后评估其形状保真度的方法将有利于评估沉积的灯丝的变形程度,并估计最终印刷构造的变形程度是设计。然而,通过印刷后的目视检查,妨碍了不同生物链接的可印刷性的直接比较,已经通过视觉检查来定性地评估了形状保真度。在这本技术说明中,我们提出了基于测试灯丝塌陷的生物链形状保真度的定量评估,并在悬垂结构上塌陷和平行印刷股的细丝融合。基于泊洛沙姆407和聚(乙二醇)共混物的水凝胶平台施加两种测试,提供了具有不同屈服应力的水凝胶库。所提出的方法是评估生物链形状保真度的简便方法,适用于基于丝的生物监测系统,并且能够根据印刷灯丝的变形程度来定量评估这种可印刷性的这一方面。此外,我们构建了一种简单的理论模型,使丝坍塌与生物铅屈服应力相关。两种形状保真度测试的结果强调了屈服应力作为影响生物链接印刷性的参数之一。所呈现的定量评估将允许在不同的生物链平台之间进行可重复的比较。

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