论文标题

预测挤出生物打印过程中的细胞应激和应变

Predicting cell stress and strain during extrusion bioprinting

论文作者

Müller, Sebastian Johannes, Fabry, Ben, Gekle, Stephan

论文摘要

生物细胞的生物打印会导致重大形状变形,这可能严重影响细胞的存活和功能。虽然在细胞流动过程中发生的剪切应力已在一定程度上量化,但由于细胞将喷嘴留在自由打印链中时,出现的伸展应力大多被忽略。在这里,我们使用晶格 - 玻璃体模拟以及基于有限元的细胞模型来研究喷嘴出口处的细胞变形。我们的仿真结果与实验显微镜图像具有良好的定性一致性。我们表明,对于流在喷嘴中心的细胞,伸展应力可能很大,而对于流动中心的细胞,它们的变形主要由喷嘴内的剪切流动支配。根据这些模拟的结果,我们开发了两种仅需要打印参数(喷嘴直径,流速,生物智能流变学)的方法,以准确预测3D生物打印过程中发生的最大细胞应力,并且(ii)近似预测由发射嘴的延长性流量引起的细胞菌株。

Bioprinting of living cells can cause major shape deformations, which may severely affect cell survival and functionality. While the shear stresses occurring during cell flow through the printer nozzle have been quantified to some extent, the extensional stresses occurring as cells leave the nozzle into the free printing strand have been mostly ignored. Here we use Lattice-Boltzmann simulations together with a finite-element based cell model to study cell deformation at the nozzle exit. Our simulation results are in good qualitative agreement with experimental microscopy images. We show that for cells flowing in the center of the nozzle extensional stresses can be significant, while for cells flowing off-center their deformation is dominated by the shear flow inside the nozzle. From the results of these simulations, we develop two simple methods that only require the printing parameters (nozzle diameter, flow rate, bioink rheology) to (i) accurately predict the maximum cell stress occurring during the 3D bioprinting process and (ii) approximately predict the cell strains caused by the elongational flow at the nozzle exit.

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