Radiology and Imaging Sciences, Indiana University School of Medicine, Indianapolis, IN, USA.
3D Bioprinting Core, Indiana University-Purdue University Indianapolis, Indianapolis, IN, USA.
Sci Rep. 2018 May 15;8(1):7561. doi: 10.1038/s41598-018-25663-7.
We are introducing the FABRICA, a bioprinter-agnostic 3D-printed bioreactor platform designed for 3D-bioprinted tissue construct culture, perfusion, observation, and analysis. The computer-designed FABRICA was 3D-printed with biocompatible material and used for two studies: (1) Flow Profile Study: perfused 5 different media through a synthetic 3D-bioprinted construct and ultrasonically analyzed the flow profile at increasing volumetric flow rates (VFR); (2) Construct Perfusion Study: perfused a 3D-bioprinted tissue construct for a week and compared histologically with a non-perfused control. For the flow profile study, construct VFR increased with increasing pump VFR. Water and other media increased VFR significantly while human and pig blood showed shallow increases. For the construct perfusion study, we confirmed more viable cells in perfused 3D-bioprinted tissue compared to control. The FABRICA can be used to visualize constructs during 3D-bioprinting, incubation, and to control and ultrasonically analyze perfusion, aseptically in real-time, making the FABRICA tunable for different tissues.
我们推出了 FABRICA,这是一个与生物打印机无关的 3D 打印生物反应器平台,专为 3D 生物打印组织构建的培养、灌注、观察和分析而设计。计算机设计的 FABRICA 使用生物相容性材料 3D 打印而成,并用于两项研究:(1)流动特性研究:通过合成的 3D 生物打印构建体灌注 5 种不同的介质,并在增加体积流量(VFR)时超声分析流动特性;(2)构建体灌注研究:对 3D 生物打印组织构建体进行一周的灌注,并与未灌注的对照组织进行组织学比较。对于流动特性研究,随着泵 VFR 的增加,构建体 VFR 增加。水和其他介质显著增加了 VFR,而人和猪的血液则显示出轻微的增加。对于构建体灌注研究,我们证实与对照相比,灌注的 3D 生物打印组织中有更多存活的细胞。FABRICA 可用于在 3D 生物打印、孵育期间可视化构建体,并实时进行无菌控制和超声分析灌注,使 FABRICA 可针对不同的组织进行调整。