3d.FAB, CNRS, INSA, CPE-Lyon, UMR5246, ICBMS, Universite Claude Bernard Lyon 1, Villeurbanne, France.
Sartorius Stedim FMT, Aubagne, France.
Sci Rep. 2024 May 14;14(1):11003. doi: 10.1038/s41598-024-60382-2.
The future of organ and tissue biofabrication strongly relies on 3D bioprinting technologies. However, maintaining sterility remains a critical issue regardless of the technology used. This challenge becomes even more pronounced when the volume of bioprinted objects approaches organ dimensions. Here, we introduce a novel device called the Flexible Unique Generator Unit (FUGU), which is a unique combination of flexible silicone membranes and solid components made of stainless steel. Alternatively, the solid components can also be made of 3D printed medical-grade polycarbonate. The FUGU is designed to support micro-extrusion needle insertion and removal, internal volume adjustment, and fluid management. The FUGU was assessed in various environments, ranging from custom-built basic cartesian to sophisticated 6-axis robotic arm bioprinters, demonstrating its compatibility, flexibility, and universality across different bioprinting platforms. Sterility assays conducted under various infection scenarios highlight the FUGU's ability to physically protect the internal volume against contaminations, thereby ensuring the integrity of the bioprinted constructs. The FUGU also enabled bioprinting and cultivation of a 14.5 cm human colorectal cancer tissue model within a completely confined and sterile environment, while allowing for the exchange of gases with the external environment. This FUGU system represents a significant advancement in 3D bioprinting and biofabrication, paving the path toward the sterile production of implantable tissues and organs.
器官和组织的生物制造的未来强烈依赖于 3D 生物打印技术。然而,无论使用何种技术,保持无菌状态仍然是一个关键问题。当生物打印物体的体积接近器官尺寸时,这一挑战变得更加明显。在这里,我们介绍了一种名为“灵活独特生成单元”(FUGU)的新型设备,它是柔性硅树脂膜和由不锈钢制成的固体组件的独特组合。或者,固体组件也可以由 3D 打印的医疗级聚碳酸酯制成。FUGU 旨在支持微挤出针的插入和移除、内部体积调节和流体管理。FUGU 在各种环境中进行了评估,从定制的基本笛卡尔坐标系到复杂的 6 轴机械臂生物打印机,展示了其在不同生物打印平台上的兼容性、灵活性和通用性。在各种感染情况下进行的无菌性测试强调了 FUGU 能够物理保护内部体积免受污染,从而确保生物打印结构的完整性。FUGU 还能够在完全封闭和无菌的环境中生物打印和培养 14.5 厘米的人结直肠癌细胞组织模型,同时允许与外部环境进行气体交换。该 FUGU 系统代表了 3D 生物打印和生物制造的重大进展,为可植入组织和器官的无菌生产铺平了道路。