首页> 外文会议>ASME international manufacturing science and engineering conference >BIOPRINTING OF LIQUID HYDROGEL PRECURSORS IN A SUPPORT BATH BY ANALYZING TWO KEY FEATURES: CELL DISTRIBUTION AND SHAPE FIDELITY
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BIOPRINTING OF LIQUID HYDROGEL PRECURSORS IN A SUPPORT BATH BY ANALYZING TWO KEY FEATURES: CELL DISTRIBUTION AND SHAPE FIDELITY

机译:通过分析两个关键特征对细胞中的液态水前体进行生物印染:细胞分布和形状保真度

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Microextrusion-based bioprinting within a support bath material is an emerging additive manufacturing technique for fabricating complex three-dimensional (3D) tissue constructs. However, there exists fundamental knowledge gaps in understanding the spatiotemporal mapping of cells within the bioprinted constructs and their shape fidelity when embedded in a support bath material. To address these questions, this paper advances quantitative analyses to systematically determine the spatial distribution for cell-laden filament-based tissue constructs as a function of the bio-ink properties. Also, optimal bio-ink formulations are investigated to fabricate complex 3D structures with superior shape integrity. Specifically, for a ID filament printed in a support bath, cells suspended in low viscosity liquid hydrogel precursors are found to exhibit a characteristic non-uniform distribution as measured by a degree of separation (D_s) metric. In a 2D square wave pattern print, cells are observed to flow and aggregate downstream at certain positions along the in-plane print direction. In a 3D analysis, owing to the high cell density and gravity effects, a non-uniform cell distribution within a printed cylindrical structure is observed in the build direction. From the structural standpoint, the addition of CaCl_2 to the support bath activates the hydrogel cross-linking process during printing, resulting in 3D prints with enhanced structural outcomes. This multidimensional print analysis provides evidence that, under the emerging bioprinting support bath paradigm, the printable parameter space can be extended to low viscosity liquid hydrogel precursor materials that can be systematically characterized and optimized for key process performance outcomes in cell distribution and shape fidelity.
机译:支持浴材料中基于微挤压的生物印刷是一种新兴的增材制造技术,用于制造复杂的三维(3D)组织构造。但是,在理解生物印刷结构中的细胞的时空图及其嵌入支持浴材料中时的形状保真度方面存在基本的知识空白。为了解决这些问题,本文进行了定量分析,以系统地确定基于细胞的长丝组织组织结构的空间分布,该空间分布是生物墨水特性的函数。同样,研究了最佳的生物墨水配方,以制造具有出色形状完整性的复杂3D结构。具体地,对于在支撑浴中印刷的ID长丝,发现悬浮在低粘度液体水凝胶前体中的细胞表现出特征的不均匀分布,如通过分离度(D_s)度量所测量的。在二维方波图案打印中,观察到细胞沿平面内打印方向在某些位置向下游流动并聚集。在3D分析中,由于较高的单元密度和重力效应,在构建方向上观察到了打印的圆柱结构内的单元分布不均匀。从结构的角度来看,向支持液中添加CaCl_2可以激活打印过程中的水凝胶交联过程,从而获得具有增强的结构效果的3D打印。这种多维印刷分析提供了证据,在新兴的生物印刷支持浴范式下,可印刷的参数空间可以扩展到低粘度液体水凝胶前体材料,这些材料可以系统地表征和优化,以实现细胞分布和形状保真度方面的关键工艺性能结果。

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