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首页> 外文期刊>Tissue engineering, Part C. Methods >PAM2 (piston assisted microsyringe): a new rapid prototyping technique for biofabrication of cell incorporated scaffolds.
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PAM2 (piston assisted microsyringe): a new rapid prototyping technique for biofabrication of cell incorporated scaffolds.

机译:PAM2(活塞辅助微注射器):一种用于细胞结合支架生物制造的新型快速原型技术。

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摘要

Rapid prototyping techniques are widely used to fabricate well-defined three-dimensional structures of tissue homologs. The piston-assisted microsyringe (PAM2) is a rapid prototyping technology specifically developed for low-shear stress extrusion of viscous hydrogel solutions containing cells. In this article the working parameters of the system were established to guarantee the realization of spatially controlled hydrogel scaffolds. Moreover the shear stresses acting on the cell membrane during extrusion was investigated through a computational fluid-dynamic analysis. The computational models show that the shear stress on the cells is of the order of 100 Pa during the extrusion process. HepG2 cells encapsulated in alginate were then extruded into spatially organized hepatic lobule-like architectures and their viability and function were evaluated. The results show that the metabolic fingerprint of the cells is preserved with respect to controls and the cells are uniformly distributed through the gel scaffold.
机译:快速原型技术被广泛用于制造组织同源物的明确定义的三维结构。活塞辅助微注射器(PAM2)是一种快速成型技术,专门用于低剪切应力挤出含有细胞的粘性水凝胶溶液。在本文中,建立系统的工作参数以确保实现空间控制的水凝胶支架。此外,还通过计算流体动力学分析研究了挤出过程中作用于细胞膜上的剪切应力。计算模型表明,在挤压过程中,孔上的剪切应力约为100 Pa。然后将封装在藻酸盐中的HepG2细胞挤出成空间组织的肝小叶样结构,并评估其生存能力和功能。结果表明,相对于对照,细胞的代谢指纹得以保留,并且细胞通过凝胶支架均匀分布。

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